ERIC Educational Resources Information Center
Aydeniz, Mehmet; Bilican, Kader; Kirbulut, Zubeyde Demet
2017-01-01
The purpose of this study was to explore Pre-service Elementary Science Teachers' (PSTs) conceptual understanding of Particulate Nature of Matter (PNM) through a three-tier diagnostic test. Participants were 215 PSTs from Turkey. Data consisted of participants' responses to the Particulate Nature of Matter Test (PNMT). The PNMT consists of…
Preservice and Inservice Science Teachers' Responses and Reasoning about the Nature of Science
ERIC Educational Resources Information Center
Buaraphan, Khajornsak
2009-01-01
An adequate understanding of the nature of science (NOS) is essential for science teachers. The Myths of Science Questionnaire (MOSQ) consisting of 14 items, which comprised both optional and written types of response, was utilized to explore 113 Thai preservice and 101 inservice science teachers' understanding and reasoning about the NOS,…
ERIC Educational Resources Information Center
Vazquez-Alonso, Angel; Garcia-Carmona, Antonio; Manassero-Mas, Maria Antonia; Bennassar-Roig, Antoni
2013-01-01
This paper describes Spanish science teachers' thinking about issues concerning the nature of science (NOS) and the relationships connecting science, technology, and society (STS). The sample consisted of 774 in-service and pre-service teachers. The participants responded to a selection of items from the Questionnaire of Opinions on Science,…
ERIC Educational Resources Information Center
Spector, Barbara S.; Burkett, Ruth; Leard, Cyndy
2012-01-01
This paper introduces a model for using informal science education venues as contexts within which to teach the nature of science. The model was initially developed to enable university education students to teach science in elementary schools so as to be consistent with "National Science Education Standards" (NSES) (1996) and "A Framework for…
ERIC Educational Resources Information Center
Çibik, Ayse Sert
2016-01-01
The aim of this study is to compare the change of pre-service science teachers' views about the nature of scientific knowledge through Project-Based History and Nature of Science training and Conventional Method. The sample of the study consists of two groups of 3rd grade undergraduate students attending teacher preparation program of science…
Design of Knowledge Models for Teaching Experimental Sciences at University
ERIC Educational Resources Information Center
Pérez de Villarreal, Maider
2018-01-01
Teaching Experimental Sciences is a compulsory subject in the Bachelor's Degree in Primary Education (BDPE). It belongs to the discipline of Education and to the field of "Knowledge of the social and natural environment", and consists of a total of 24 ECTS, of which 6 ECTS correspond to "Teaching Natural Sciences" (TNS). This…
ERIC Educational Resources Information Center
Bell, Randy L.; Matkins, Juanita Jo; Gansneder, Bruce M.
2011-01-01
This mixed-methods investigation compared the relative impacts of instructional approach and context of nature of science instruction on preservice elementary teachers' understandings. The sample consisted of 75 preservice teachers enrolled in four sections of an elementary science methods course. Independent variables included instructional…
NASA Astrophysics Data System (ADS)
Keske, Kristina Palmer
The purpose of this interpretive case study was to elucidate the conceptions of the nature of science held by seven elementary science teachers. The constructivist paradigm provided the philosophical and methodological foundation for the study. Interviews were employed to collect data from the participants about their formal and informal experiences with science. In addition, the participants contributed their perspectives on four aspects of the nature of science: what is science; who is a scientist; what are the methods of science; and how is scientific knowledge constructed. Data analysis not only revealed these teachers' views of science, but also provided insights into how they viewed science teaching. Four themes emerged from the data. The first theme developed around the participants' portrayals of the content of science, with participant views falling on a continuum of limited to universal application of science as procedure. The second theme dealt with the participants' views of the absolute nature of scientific knowledge. Participants' perceptions of the tentative nature of science teaching provided the basis for the third theme concerning the need for absolutes in practice. The fourth theme drew parallels between participants' views of science and science teaching, with two participants demonstrating a consistency in beliefs about knowledge construction across contexts. This study revealed both personal and contextual factors which impacted how the participants saw science and science teaching. Many of the participants' memories of formal science revolved around the memorization of content and were viewed negatively. All the participants had limited formal training in science. Of the seven participants, only two had chosen to be science teachers at the beginning of their careers. The participants' limited formal experiences with science provided little time for exploration into historical, philosophical, and sociological studies of science, a necessary requirement for understanding the scientific enterprise. This study also offered support for the elucidation of teachers' conceptions of the nature of science through in-depth conversations rather than convergent types of assessment. Data analysis of participant responses to isolated aspects of the nature of science yielded incomplete or inconsistent pictures of how the participants saw science. A more consistent picture of science emerged as the participants' beliefs about science and knowledge construction merged. This study proposed that all science teachers need to address their beliefs about knowledge construction across contexts.
Serendipitous Science Engagement: A Family Self-Ethnography
ERIC Educational Resources Information Center
Vedder-Weiss, Dana
2017-01-01
While opportunities for spontaneous, undesigned, serendipitous science engagement (SSE) are abundant and evidence regarding its affordances is accumulating, little is known about its nature. In this paper, I present a model defining and identifying SSE, which consists of a personal and a contextual continuum. To explore the nature of family SSE, I…
Changing Epistemological Beliefs with Nature of Science Implementations
ERIC Educational Resources Information Center
Johnson, Keith; Willoughby, Shannon
2018-01-01
This article discusses our investigation regarding nature of science (NOS) implementations and epistemological beliefs within an undergraduate introductory astronomy course. The five year study consists of two years of baseline data in which no explicit use of NOS material was implemented, then three years of subsequent data in which specific NOS…
NASA Astrophysics Data System (ADS)
Digiuseppe, Maurizio
Current reforms in elementary and secondary science education call for students and teachers to develop more informed views of the nature of science---a process in which learning materials like science textbooks play a significant role. This dissertation reports on a case study of the development of representations of the nature of science in one unit of a senior high school chemistry textbook by the book's author, editor, and publisher. The study examines the multiple discourses that arose as the developers reflected on their personal and shared understandings of the nature of science; squared these understandings with mandated curricula, the educational needs of chemistry students and teachers, and the exigencies of large-scale commercial textbook publishing; and developed and incorporated into the textbook representations of the nature of science they believed were the most suitable. Analyses of the data in this study indicate that a number of factors significantly influenced the development of representations of the nature of science, including representational accuracy (the degree to which suggested representations of the nature of science conformed to what the developers believed were contemporary understandings of the nature of science), representational consistency (the degree to which similar representations of the nature of science in different parts of the textbook conveyed the same meaning), representational appropriateness (the age-, grade-, and reading-level suitability of the suggested nature of science representations), representational alignment (the degree to which suggested representations of the nature of science addressed the requirements of mandated curricula), representational marketability (the degree to which textbook developers believed suggested representations of the nature of science would affect sales of the textbook in the marketplace), and a number of "Workplace Resources" factors such as the availability of time, relevant expertise, effective channels of communication, and opportunities for professional development. The developers of the unit of the textbook studied in this thesis made judicious decisions in the face of competing interests as they endeavoured to represent the nature of science in their science textbook.
NASA Astrophysics Data System (ADS)
Chun, Sajin
Scholars in science education advocate curriculum and instruction practices that reflect an understanding of the nature of science. This aspect of school science is an important component of scientific literacy, a primary goal of science education. Considering teaching as a thoughtful profession, there has been a growing research interest on the issue of the consistency between teacher beliefs and actions. Yet, the self-evident assumption that teachers' beliefs about the nature of science will impact on their classroom teaching actions has not been justified. The purpose of this study was to examine the relationship between science teaching actions and beliefs about the nature of science. Defining teacher beliefs as a broad construct, the researcher tried to examine not only teacher's cognitive understanding about the nature of science but also teachers' affect as well as actions with regard to the nature of science. Guiding research questions were as follows: (a) what are the teachers' beliefs about the nature of science; (b) how do the teachers, pedagogical actions reflect their beliefs about the nature of science; and (c) what are the other referent beliefs that mediate the teachers, pedagogical actions within a local school culture. The methodology of this study was an interpretive, qualitative approach that included multiple sources of data, interviews, classroom observations, and instructional materials. Six science teachers from a secondary school located in a rural area of the southeastern US were chosen by convenience. The cross-case study and the grounded theory study designs were adopted as the data analysis process. The constant comparative analysis method was used to generate the emerging themes for this study. This study revealed a gap between these teachers' personal beliefs of the nature of science and the concepts of the nature of science suggested by many researchers. These teachers' personal beliefs about the nature of science have been constructed based on their science teaching and learning experiences and as a result are closely related to their belief about the nature of school science. These teachers teaching actions reflected their own personal beliefs about the nature of science within the interaction of multiple referent beliefs with relation to science teaching and learning.
ERIC Educational Resources Information Center
Pekbay, Canay; Yilmaz, Serkan
2015-01-01
This study aims to explore the influence of nature of science (NOS) activities based on explicit-reflective and historical approach on preservice elementary teachers' views of NOS aspects. Mixed-method approach including both qualitative and quantitative methods was used. The sample consisted of 83 preservice elementary teachers of a public…
Enhancing the Scientific Process with Artificial Intelligence: Forest Science Applications
Ronald E. McRoberts; Daniel L. Schmoldt; H. Michael Rauscher
1991-01-01
Forestry, as a science, is a process for investigating nature. It consists of repeatedly cycling through a number of steps, including identifying knowledge gaps, creating knowledge to fill them, and organizing, evaluating, and delivering this knowledge. Much of this effort is directed toward creating abstract models of natural phenomena. The cognitive techniques of AI...
Spanish Students' Conceptions about NOS and STS Issues: A Diagnostic Study
ERIC Educational Resources Information Center
Vázquez-Alonso, Ángel; García-Carmona, Antonio; Manassero-Mas, María Antonia; Bennàssar-Roig, Antoni
2014-01-01
Spanish students' beliefs on themes of Science-Technology-Society (STS) and nature of science (NOS) are assessed. The sample consisted of 1050 science and non-science students who had concluded their pre-university education (18-19 years old). Each participant anonymously answered 30 items drawn from the Questionnaire of Opinions on Science,…
ERIC Educational Resources Information Center
Burgin, Stephen R.; Sadler, Troy D.
2013-01-01
The purpose of this research was to examine the consistency between students' practical and formal understandings of scientific epistemologies (also known as nature of science (NOS) understandings) in the context of a research apprenticeship program. Six high school student participants of a residential summer research apprenticeship program at a…
NASA Astrophysics Data System (ADS)
Oktarina, K.; Lufri, L.; Chatri, M.
2018-04-01
Referring to primary data collected through observation and interview to natural science teachers and some students, it is found that there is no natural science teaching materials in the form of learning modules that can make learners learn independently, build their own knowledge, and construct good character in themselves. In order to address this problem, then it is developed natural science learning module oriented to constructivism with the contain of character education. The purpose of this study is to reconstruct valid module of natural science learning materials. This type of research is a development research using the Plomp model. The development phase of the Plomp model consists of 3 stages, namely 1) preliminary research phase, 2) development or prototyping phase, and 3) assessment phase. The result of the study shows that natural science learning module oriented to constructivism with the contain of character education for students class VIII of Yunior High School 11 Sungai Penuh is valid. In future work, practicality and effectiveness will be investigated.
Learning and teaching about the nature of science through process skills
NASA Astrophysics Data System (ADS)
Mulvey, Bridget K.
This dissertation, a three-paper set, explored whether the process skills-based approach to nature of science instruction improves teachers' understandings, intentions to teach, and instructional practice related to the nature of science. The first paper examined the nature of science views of 53 preservice science teachers before and after a year of secondary science methods instruction that incorporated the process skills-based approach. Data consisted of each participant's written and interview responses to the Views of the Nature of Science (VNOS) questionnaire. Systematic data analysis led to the conclusion that participants exhibited statistically significant and practically meaningful improvements in their nature of science views and viewed teaching the nature of science as essential to their future instruction. The second and third papers assessed the outcomes of the process skills-based approach with 25 inservice middle school science teachers. For the second paper, she collected and analyzed participants' VNOS and interview responses before, after, and 10 months after a 6-day summer professional development. Long-term retention of more aligned nature of science views underpins teachers' ability to teach aligned conceptions to their students yet it is rarely examined. Participants substantially improved their nature of science views after the professional development, retained those views over 10 months, and attributed their more aligned understandings to the course. The third paper addressed these participants' instructional practices based on participant-created video reflections of their nature of science and inquiry instruction. Two participant interviews and class notes also were analyzed via a constant comparative approach to ascertain if, how, and why the teachers explicitly integrated the nature of science into their instruction. The participants recognized the process skills-based approach as instrumental in the facilitation of their improved views. Additionally, the participants saw the nature of science as an important way to help students to access core science content such as the theory of evolution by natural selection. Most impressively, participants taught the nature of science explicitly and regularly. This instruction was student-centered, involving high levels of student engagement in ways that represented applying, adapting, and innovating on what they learned in the summer professional development.
ERIC Educational Resources Information Center
Aglarci, Oya; Sariçayir, Hakan; Sahin, Musa
2016-01-01
The purpose of this study is to investigate the effect of explicit-reflective nature of science (NOS) instruction on Turkish prospective chemistry teachers' (PCTs) views of NOS. In the research, case study as a qualitative design was used and PCTs' views were examined thoroughly. The participants of the study consisted of 22 senior PCTs. Data…
ERIC Educational Resources Information Center
Taber, Keith S.; Billingsley, Berry; Riga, Fran; Newdick, Helen
2015-01-01
Teaching about the nature of science (NOS) is seen as a priority for science education in many national contexts. The present paper focuses on one central issue in learning about NOS: understanding the nature and status of scientific theories. A key challenge in teaching about NOS is to persuade students that scientific knowledge is generally…
How do the high school biology textbooks introduce the nature of science?
NASA Astrophysics Data System (ADS)
Lee, Young H.
2007-05-01
Although helping students to achieve an adequate understanding of the nature of science has been a consistent goal for science education for over half a century, current research reveals that the majority of students and teachers have naive views of the nature of science (Abd-El-khalick & Akerson, 2004; Bianchini & Colburn, 2000). This problem could be attributed not only to the complex nature of science, but also to the way the nature of science is presented to students during instruction. Thus, research must be conducted to examine how the science is taught, especially in science textbooks, which are a major instructional resource for teaching science. The aim of this study was to conduct a content analysis of the first chapter of four high school biology textbooks, which typically discusses "What is science?" and "What is biology?" This research used a content analysis technique to analyze the four high school biology textbooks, using a conceptual framework that has been used often for science textbook analysis. This conceptual framework consists of four themes of the nature of science: (a) science as a body of knowledge, (b) science as a way of thinking, (c) science as a way of investigating, and (d) the interaction of science, technology, and society. For this study, the four-theme-framework was modified to incorporate descriptors from national-level documents, such as Science for All Americans (AAAS, 1990) Benchmarks for Science Literacy (AAAS, 1993) and the National Science Education Standards (NRC, 1996), as well as science education research reports. A scoring procedure was used that resulted in good to excellent intercoder agreement with Cohen's kappa (k) ranging from .63 to .96. The findings show that the patterns of presentation of the four themes of the nature of science in the four high school biology textbooks are similar across the different locations of data, text, figures, and assessments. On the other hand, the pattern of presentation of the four themes is diverse by the publishing company. Some high school biology textbooks reflect a more reasonably balanced treatment of the four themes of the nature of science than other textbooks. The authors of most high school biology textbooks are attempting to convey an idea of biology and how scientific enterprise works by engaging students in investigations and revealing the thinking process of scientists. In addition to the quantitative analysis, a qualitative analysis was undertaken in an attempt to achieve a more comprehensive understanding of the nature of science in high school biology textbooks. A more experienced textbook analyst and nature of science researcher helped to confirm the conclusions by the investigator, who also examined the data sources from the introductory chapters of the biology textbooks. Examination of the first chapter of high school biology textbooks, using a qualitative analysis, reveals that each textbook describes the nature of science in a considerably different manner. While the approaches and emphases used to present scientific enterprise are remarkably different in each textbook, generally high school biology textbooks present several common topics, such as characteristics of life, scientific methods, biological issues, and tools used in science. Most of the high school biology textbooks present a narrow view of scientific methods as well as science, technology, and society. The qualitative/case study approach provided an insightful perspective of how science is presented to the user. Given the importance of textbooks on teaching and learning of science, it is recommended that teachers be informed of the findings of this study in order for them to understand how the first chapter presents the nature of science, which in turn may influence how they select biology textbooks and supplement this content Further, textbook publishers should also be informed of the results of the research in order to design future textbooks and materials to include a more authentic view of the nature of science.
Science Olympiad students' nature of science understandings
NASA Astrophysics Data System (ADS)
Philpot, Cindy J.
2007-12-01
Recent reform efforts in science education focus on scientific literacy for all citizens. In order to be scientifically literate, an individual must have informed understandings of nature of science (NOS), scientific inquiry, and science content matter. This study specifically focused on Science Olympiad students' understanding of NOS as one piece of scientific literacy. Research consistently shows that science students do not have informed understandings of NOS (Abd-El-Khalick, 2002; Bell, Blair, Crawford, and Lederman, 2002; Kilcrease and Lucy, 2002; Schwartz, Lederman, and Thompson, 2001). However, McGhee-Brown, Martin, Monsaas and Stombler (2003) found that Science Olympiad students had in-depth understandings of science concepts, principles, processes, and techniques. Science Olympiad teams compete nationally and are found in rural, urban, and suburban schools. In an effort to learn from students who are generally considered high achieving students and who enjoy science, as opposed to the typical science student, the purpose of this study was to investigate Science Olympiad students' understandings of NOS and the experiences that formed their understandings. An interpretive, qualitative, case study method was used to address the research questions. The participants were purposefully and conveniently selected from the Science Olympiad team at a suburban high school. Data collection consisted of the Views of Nature of Science -- High School Questionnaire (VNOS-HS) (Schwartz, Lederman, & Thompson, 2001), semi-structured individual interviews, and a focus group. The main findings of this study were similar to much of the previous research in that the participants had informed understandings of the tentative nature of science and the role of inferences in science, but they did not have informed understandings of the role of human imagination and creativity, the empirical nature of science, or theories and laws. High level science classes and participation in Science Olympiad did not translate into informed understandings of NOS. There were implications that labs with a set procedure and given data tables did not contribute to informed NOS understandings, while explicit instruction may have contributed to more informed understandings. Exploring these high achieving, Science Olympiad students' understandings of NOS was a crucial step to understanding what experiences formed these students' understandings so that teachers may better their practices and help more students succeed in becoming scientifically literate citizens.
ERIC Educational Resources Information Center
Khishfe, Rola; Alshaya, Fahad S.; BouJaoude, Saouma; Mansour, Nasser; Alrudiyan, Khalid I.
2017-01-01
The purpose of this study was to examine students understandings about nature of science (NOS) and their arguments in context of controversial socio-scientific issue (SSI). A total of 74 11th graders in six schools in Saudi Arabia participated in the study. The instrument used was a questionnaire consisting of four scenarios addressing SSI about…
Students' conceptions of evidence during a university introductory forensic science course
NASA Astrophysics Data System (ADS)
Yeshion, Theodore Elliot
Students' Conceptions of Science, Scientific Evidence, and Forensic Evidence during a University Introductory Forensic Science Course This study was designed to examine and understand what conceptions undergraduate students taking an introductory forensic science course had about scientific evidence. Because the relationships between the nature of science, the nature of evidence, and the nature of forensic evidence are not well understood in the science education literature, this study sought to understand how these concepts interact and affect students' understanding of scientific evidence. Four participants were purposefully selected for this study from among 89 students enrolled in two sections of an introductory forensic science course taught during the fall 2005 semester. Of the 89 students, 84 were criminal justice majors with minimal science background and five were chemistry majors with academic backgrounds in the natural and physical sciences. All 89 students completed a biographical data sheet and a pre-instruction Likert scale survey consisting of twenty questions relating to the nature of scientific evidence. An evaluation of these two documents resulted in a purposeful selection of four varied student participants, each of whom was interviewed three times throughout the semester about the nature of science, the nature of evidence, and the nature of forensic evidence. The same survey was administered to the participants again at the end of the semester-long course. This study examined students' assumptions, prior knowledge, their understanding of scientific inference, scientific theory, and methodology. Examination of the data found few differences with regard to how the criminal justice majors and the chemistry majors responded to interview questions about forensic evidence. There were qualitative differences, however, when the same participants answered interview questions relating to traditional scientific evidence. Furthermore, suggestions are offered for undergraduate science teachers, science teaching programs, and future research.
ERIC Educational Resources Information Center
Lujan, Heidi L.; DiCarlo, Stephen E.
2015-01-01
The American Association for the Advancement of Science (AAAS) strongly recommends that "science be taught as science is practiced." This means that the teaching approach must be consistent with the nature of scientific inquiry. In this article, the authors describe how they added scientific inquiry to a large lecture-based physiology…
The Scientific Theory Profile: A Philosophy of Science Model for Science Teachers.
ERIC Educational Resources Information Center
Loving, Cathleen
The model developed for use with science teachers--called the Scientific Theory Profile--consists of placing three well-known philosophers of science on a grid, with the x-axis being their methods for judging theories (rational vs. natural) and the y-axis being their views on scientific theories representing the Truth versus mere models of what…
Probing the Natural World, Volume 3A, Environmental Science, Crusty Problems, and Why You're You.
ERIC Educational Resources Information Center
Florida State Univ., Tallahassee. Dept. of Science Education.
This volume is the first of a three volume, one year program for use in junior high school, and consists of these three units: Environmental Science, Crusty Problems (earth science), and Why You're You (heredity). The environmental science unit is composed of chapters relating to these subjects: the black death (plague); energy, food chain, and…
Science and Creationism: A View from the National Academy of Sciences.
ERIC Educational Resources Information Center
National Academy of Sciences, Washington, DC.
Five central scientific issues are critical to consideration of the treatment in school curricula of the origin and evolution of the universe and of life on earth. These issues are: (1) the nature of science; (2) scientific evidence on the origin of the universe and the earth; (3) the consistent and validated scientific evidence for biological…
The Nature of Laboratory Learning Experiences in Secondary Science Online
NASA Astrophysics Data System (ADS)
Crippen, Kent J.; Archambault, Leanna M.; Kern, Cindy L.
2013-06-01
Teaching science to secondary students in an online environment is a growing international trend. Despite this trend, reports of empirical studies of this phenomenon are noticeably missing. With a survey concerning the nature of laboratory activities, this study describes the perspective of 35-secondary teachers from 15-different U.S. states who are teaching science online. The type and frequency of reported laboratory activities are consistent with the tradition of face-to-face instruction, using hands-on and simulated experiments. While provided examples were student-centered and required the collection of data, they failed to illustrate key components of the nature of science. The features of student-teacher interactions, student engagement, and nonverbal communications were found to be lacking and likely constitute barriers to the enactment of inquiry. These results serve as a call for research and development focused on using existing communication tools to better align with the activity of science such that the nature of science is more clearly addressed, the work of students becomes more collaborative and authentic, and the formative elements of a scientific inquiry are more accessible to all participants.
Natural science majors and liberal education: The impact of a living-learning community
NASA Astrophysics Data System (ADS)
Hutt, Chris D.
The purpose of this study was to explore the articulated experiences of natural science majors who were participating in a liberal arts living-learning community. Using the American Association of College and University's (2002) report, Greater Expectations as an organizing framework, this study sought to determine how - if at all - students in this learning community were encountering the organizational educational principles consistent with classical and contemporary liberal education. The study was a qualitative inquiry that examined students' precollege experiences and beliefs, their current perceptions on their academic experiences, and student reflections on the meaning of these experiences. The data collected and analyzed in the completion of this study consisted of a series of 19 individual interviews with students enrolled in both a natural science major and in a living- learning community (LLC). Analysis of the interview data led the researcher to identify four themes: (a) Students attributed intellectual growth to experiences in both the major and the LLC, and that the science curriculum was in some ways separated from the liberal arts curriculum; (b) Students experienced and defined diversity in meaningful ways; (c) Physical place and social space of the LLC contributed significantly to the program; and (d) Students reflected learning experiences and outcomes consistent with both classical and contemporary liberal educational environments. Ultimately, the students in this study viewed their participation in the LLC as a meaningful supplement to the science major. Further analysis of the findings, as well as conclusions and recommendations for both policy and practice, are discussed in the final chapter of the study.
ERIC Educational Resources Information Center
Boyer, Elisebeth C.
2012-01-01
This research investigates how three preservice elementary teachers were prepared to teach science using a Discursive Model of Meaning Making. The research is divided into two parts. The first consists of the nature of the participants' learning experiences in a science methods course within a school-university Professional Development School…
Native American student perspectives of challenges in natural resource higher education
Breanna Gervais; Chase R. Voirin; Chris Beatty; Grace Bulltail; Stephanie Cowherd; Shawn Defrance; Breana Dorame; Raymond Gutteriez; Jessica Lackey; Candy Lupe; April B. Negrette; Natalya C. Robbins Sherman; Ruth Swaney; Kevin Tso; Marvin Victor; Royale Wilson; Kimberly Yazzie; Jonathan W. Long; Serra J. Hoagland
2017-01-01
Native Americans have vital interests in promoting forest management decisions based on sound science and consistent with cultural values to sustain and conserve tribal natural resources. Advancing the next generation of natural resource professionals into key positions is essential to advance the self-determination of tribes; yet, there are unique challenges Native...
NASA Astrophysics Data System (ADS)
Vázquez-Alonso, Ángel; García-Carmona, Antonio; Manassero-Mas, María Antonia; Bennàssar-Roig, Antoni
2013-04-01
This paper describes Spanish science teachers' thinking about issues concerning the nature of science (NOS) and the relationships connecting science, technology, and society (STS). The sample consisted of 774 in-service and pre-service teachers. The participants responded to a selection of items from the Questionnaire of Opinions on Science, Technology & Society in a multiple response model. These data were processed to generate the invariant indices that are used as the bases for subsequent quantitative and qualitative analyses. The overall results reflect moderately informed conceptions, and a detailed analysis by items, categories, and positions reveals a range of positive and negative conceptions about the topics of NOS dealt with in the questionnaire items. The implications of the findings for teaching and teacher training on the themes of NOS are discussed.
Engaging underserved audiences in informal science education through community-based partnerships
NASA Astrophysics Data System (ADS)
Bouzo, Suzanne
This thesis explores the impact of the Science Education and Engagement of Denver (SEED) Partnership on three of its participant families. The partnership, consisting of large informal science organizations, as well as small community-based organizations, created its programming based on prior research identifying barriers to minority participation in informal science education programs. SEED aims to engage youth and families of emerging populations in science and nature. Three families were examined as a case study to have an in depth investigation about their involvement in the programs sponsored by the partnership. Findings suggest a positive impact on participant feelings and engagement in science and nature. Future recommendations are made for furthering programming as well as conducting a larger scale, more comprehensive program evaluation. This research addresses prior studies that have identified several barriers toward participation of underserved audiences in informal science education programs and how the SEED partnership has addressed specific identified barriers.
Adults' Learning about Science in Free-choice Settings
NASA Astrophysics Data System (ADS)
Rennie, Léonie J.; Williams, Gina F.
2006-06-01
This paper synthesizes findings from three studies to answer a general question: What do casual, adult visitors learn about science from their science-related experiences in free-choice settings? Specifically we asked whether there are changes in how people think about science in their daily lives, the nature and use of scientific knowledge, and its communication by scientists. The three studies involved samples of visitors to an interactive science centre, visitors to a traditional natural history museum, and attendees at a series of public lectures, each given by an expert scientist in human genetics. Pretest and post-test data collected by parallel questionnaires indicated that, despite the different nature of their experience in the three different settings, participants became more positive about the value of science and the work done by scientists and their ability to communicate with the public. At all venues, however, participants became less scientific in their thinking about the nature of scientific knowledge, becoming more likely to believe it to be infallible. The consistency of these findings was surprising, and participants’ changed views about the nature of scientific knowledge were unexpected. Possible explanations for theses outcomes were suggested in terms of participants’ reasons for attending the venue, the nature of their engagement, and the non-controversial ways in which the exhibitions and lectures were structured. The findings suggest that the educational role of free-choice settings should be considered carefully, particularly with regard to the representation of science.
Forming of science teacher thinking through integrated laboratory exercises
NASA Astrophysics Data System (ADS)
Horváthová, Daniela; Rakovská, Mária; Zelenický, Ľubomír
2017-01-01
Within the three-semester optional course Science we have also included into curricula the subject entitled Science Practicum consisting of laboratory exercises of complementary natural scientific disciplines whose content exceeds the boundaries of relevant a scientific discipline (physics, biology, …). The paper presents the structure and selected samples of laboratory exercises of physical part of Science Practicum in which we have processed in an integrated way the knowledge of physics and biology at secondary grammar school. When planning the exercises we have proceeded from those areas of mentioned disciplines in which we can appropriately apply integration of knowledge and where the measurement methods are used. We have focused on the integration of knowledge in the field of human sensory organs (eye, ear), dolphins, bats (spatial orientation) and bees (ommatidium of faceted eye) and their modelling. Laboratory exercises are designed in such a way that they would motivate future teachers of natural scientific subjects to work independently with specialized literature of the mentioned natural sciences and ICT.
Forest, Land, and Water: Understanding Our Natural Resources. Natural Resources Education Series.
ERIC Educational Resources Information Center
Sunal, Dennis; And Others
This curriculum consists of a Teacher's Guide and a series of 12 instructional modules, that are centered around concepts important in the study of national resource science. The modules are designed to supplement textbooks with activities for students in primary and middle grades (K-8). The titles of the modules are: (1) Natural History of a…
NASA Astrophysics Data System (ADS)
Reeves, Carolyn T.
This research attempted to test the effectiveness of strategies designed for teaching the nature of science to Biology I students and to examine the effects of frequency of use of the strategies. Some strategies were designed to identify misconceptions about the nature of science; others were designed to correct misconceptions or provide correct concepts about the nature of science. This research commenced during the 3rd week of the 2001--2002 school year after obtaining IRB approval and permissions from school officials. The study ended after the 15th week. All participating students were given a pretest and a posttest of the Nature of Scientific Knowledge Scale Enhanced (NSKSE) test. Part I, 48 items, consisted of the NSKS test by Rubba & Anderson (1978). Part II, 10 items, consisted of a test constructed by the researcher. Part I contained questions about 6 tenets of the nature of science. Part II contained questions about how science works. The strategies were tested in two Biology I experimental classes, n = 41, and compared with two Biology I control classes, n = 34, by means of an analysis of covariance with the pretest scores used as the covariate. The overall mean posttest scores of the experimental and the control group were not found to be significantly different on either Part I, F(1,72) = 1.059, p = .307, or Part II, F(1,72) = 3.136, p = .081, of the test instrument. The number of times a strategy was used in each experimental classroom was determined. It was found that strategies were used almost twice as often in one classroom than in the other. A second set of ANCOVA analyses compared mean scores between Experimental Class A, Experimental Class B, and the control group. There was no significant difference between the groups on Part I, F(2,71) = .921, p = .403, but the difference between groups on Part II, F(2,71) = 5.769, p = .005, was significant. A post hoc Scheffe analysis showed that the class using strategies most often differed significantly with the control group, p = .009, but the other class did not, p = .929. This study suggests that frequent use of the designed strategies was effective in helping Biology I students understand some aspects of the nature of science. It also suggests that minimal use of the strategies was not effective.
A New "Idea of Nature" for Chemical Education
ERIC Educational Resources Information Center
Earley, Joseph E., Sr.
2013-01-01
"The idea of nature" (general model of how things work) that is accepted in a society strongly influences that group's social and technological progress. Currently, science education concentrates on "analysis" of stable pre-existing items to minimum constituents. This emphasis is consistent with an outlook that has been…
S.C.I.S. - Sciencing Considered from an Invitational Stance.
ERIC Educational Resources Information Center
Wheeler, Alan E.
This paper focuses on the refinement and articulation of the invitational education concept to science teaching in the classroom, an approach consistent with the underlying philosophy of SCIS. The first section of the paper outlines the nature of invitations and disinvitations and describes the ability of teachers to send formal or informal…
NASA Astrophysics Data System (ADS)
Castano Rodriguez, Carolina
2016-12-01
Through a critical textual analysis of the content and structure of the new Australian science curriculum, in this paper I identify the values it encourages and those that are absent. I investigate whether the Australian science curriculum is likely to promote the attitudes needed to educate generations of children who act more responsibly with other species and the environment. Over the past decades, there has been an increasing awareness of the human impact on the environment and other species. Consistently, there is a growing awareness of the role of education in encouraging children to act in a more ethical, responsible, and caring way. However, it is still unclear as to whether national curricula can (or will aspire to) accomplish this. In Australia, a national science curriculum has been implemented. In this paper I argue that the Australian science curriculum is likely to miss the opportunity to cultivate values of care for nature and other species. Instead, it is likely to reinforce anthropocentric attitudes toward our natural environment. The importance of explicitly promoting values that encourage care and respect for all species and challenges anthropocentric views of other animals and nature are discussed.
ERIC Educational Resources Information Center
McGhee, Max B.; Cheek, Jimmy G.
An activity was undertaken to develop written criterion-referenced tests for each of the instructional areas comprising the Fundamentals of Agribusiness and Natural Resources Occupations Program. Designed to be taught at the ninth grade level, the program consists of six major instructional areas: agribusiness management, animal science, plant…
ERIC Educational Resources Information Center
Giazzoni, Michael J.
2009-01-01
The Two Cultures phenomenon, first given its name by C. P. Snow in 1956, consists of a conflict between participants in the academic communities of the natural sciences and the humanities; it also mirrors the methodological debate in the social sciences. This phenomenon also occurs in undergraduates in an interdisciplinary research fellowship at…
Martynov, Alexander V; Radchenko, Alexander G
2016-03-30
The collection of W.A. Karawajew is one of the richest and most famous ant collections of the World. Much of this collection consists of dry mounted specimens, including types of about 550 taxa, housed in the Shmalhausen Institute of Zoology of the National Academy of Sciences of Ukraine (Kiev). Nevertheless, we located a considerable part of Karawajew's collection, containing about 25,000 specimens in alcohol, that is preserved in the National Museum of Natural History of the National Academy of Sciences of Ukraine (Kiev). The latter material was recently examined and we found types of 24 taxa. This type material was partly mounted, re-ordered and catalogued. In this paper we present a catalogue of these type specimens housed in the National Museum of Natural History.
Consistency of Nature of Science Views across Scientific and Socio-Scientific Contexts
ERIC Educational Resources Information Center
Khishfe, Rola
2017-01-01
The purpose of the investigation was to investigate the consistency of NOS views among high school students across different scientific and socio-scientific contexts. A total of 261 high school students from eight different schools in Lebanon participated in the investigation. The schools were selected based on different geographical areas in…
NASA Astrophysics Data System (ADS)
Tianmin, Wu; Tianjun, Wang; Xian, Chen; Bin, Fang; Ruiting, Zhang; Wei, Zhuang
2016-01-01
We herein review our studies on simulating the thermal unfolding Fourier transform infrared and two-dimensional infrared spectra of peptides. The peptide-water configuration ensembles, required forspectrum modeling, aregenerated at a series of temperatures using the GBOBC implicit solvent model and the integrated tempering sampling technique. The fluctuating vibrational Hamiltonians of the amide I vibrational band are constructed using the Frenkel exciton model. The signals are calculated using nonlinear exciton propagation. The simulated spectral features such as the intensity and ellipticity are consistent with the experimental observations. Comparing the signals for two beta-hairpin polypeptides with similar structures suggests that this technique is sensitive to peptide folding landscapes. Project supported by the National Natural Science Foundation of China (Grant No. 21203178), the National Natural Science Foundation of China (Grant No. 21373201), the National Natural Science Foundation of China (Grant No. 21433014), the Science and Technological Ministry of China (Grant No. 2011YQ09000505), and “Strategic Priority Research Program” of the Chinese Academy of Sciences (Grant Nos. XDB10040304 and XDB100202002).
Science learning based on local potential: Overview of the nature of science (NoS) achieved
NASA Astrophysics Data System (ADS)
Wilujeng, Insih; Zuhdan Kun, P.; Suryadarma, IGP.
2017-08-01
The research concerned here examined the effectiveness of science learning conducted with local potential as basis from the point of a review of the NoS (nature of science) achieved. It used the non equivalent control group design and took place in the regions of Magelang and Pati, Province of Central Java, and the regions of Bantul and Sleman, Province of the Special Region of Yogyakarta. The research population consisted of students of the first and second grades at each junior high school chosen with research subjects sampled by means of cluster sampling. The instruments used included: a) an observation sheet, b) a written test, and c) a questionnaire. The learning and research instruments had been declared valid and reliable according to previous developmental research. In conclusion, the science learning based on local potential was effective in terms of all the NoS aspects.
NASA Astrophysics Data System (ADS)
Anderson, Dayle; Moeed, Azra
2017-05-01
Current curriculum demands require primary teachers to teach about the Nature of Science; yet, few primary teachers have had opportunity to learn about science as a discipline. Prior schooling and vicarious experiences of science may shape their beliefs about science and, as a result, their science teaching. This qualitative study describes the impact on teacher beliefs about science and science education of a programme where 26 New Zealand primary (elementary) teachers worked fulltime for 6 months alongside scientists, experiencing the nature of work in scientific research institutes. During the 6 months, teachers were supported, through a series of targeted professional development days, to make connections between their experiences working with scientists, the curriculum and the classroom. Data for the study consisted of mid- and end-of-programme written teacher reports and open-ended questionnaires collected at three points, prior to and following 6 months with the science host and after 6 to 12 months back in school. A shift in many teachers' beliefs was observed after the 6 months of working with scientists in combination with curriculum development days; for many, these changes were sustained 6 to 12 months after returning to school. Beliefs about the aims of science education became more closely aligned with the New Zealand curriculum and its goal of developing science for citizenship. Responses show greater appreciation of the value of scientific ways of thinking, deeper understanding about the nature of scientists' work and the ways in which science and society influence each other.
ERIC Educational Resources Information Center
Brigido, Maria; Bermejo, M. Luisa; Conde, M. Carmen; Mellado, Vicente
2010-01-01
A study was made of different emotions that prospective primary school teachers report with respect to science subjects, when they were pupils, and during their practice teaching, taking into account the variables gender and the specialty they studied in the secondary education. The study consisted of a questionnaire completed by 63 primary…
High School Biology Today: What the Committee of Ten Did Not Anticipate
ERIC Educational Resources Information Center
Vasquez, Jose
2006-01-01
Since the recommendation of biology (or natural history, as it used to be called) in 1893 as part of the high school science curriculum, biology was considered a descriptive subject. In the late 1890s biology consisted of zoology, botany, and physiology. The group that decided on the high school science course configuration was the Committee of…
"Menaced Rationality": Husserl and Merleau-Ponty on the Crisis and Promise of Science.
Singer, Jonathan D
2015-12-01
In this paper I provide an overview of Husserl's and Merleau-Ponty's phenomenological critique of science, and suggest that such a critique is not only necessary in order to resolve an aporia that is otherwise apparently endemic to science, but that such a critique may also offer resources for productively addressing related philosophical difficulties, particularly the relationship between ideality and materiality/"nature." Following Husserl and Merleau-Ponty, I maintain that only a phenomenologically grounded science can be consistently "scientific." Copyright © 2015. Published by Elsevier Ltd.
Quantum Logic Networks for Probabilistic and Controlled Teleportation of Unknown Quantum States
NASA Astrophysics Data System (ADS)
Gao, Ting
2004-08-01
We present simplification schemes for probabilistic and controlled teleportation of the unknown quantum states of both one particle and two particles and construct efficient quantum logic networks for implementing the new schemes by means of the primitive operations consisting of single-qubit gates, two-qubit controlled-not gates, Von Neumann measurement, and classically controlled operations. In these schemes the teleportation are not always successful but with certain probability. The project supported by National Natural Science Foundation of China under Grant No. 10271081 and the Natural Science Foundation of Hebei Province of China under Grant No. A2004000141
NASA Astrophysics Data System (ADS)
Adibelli-Sahin, Elif; Deniz, Hasan
2017-04-01
This qualitative study explored elementary teachers' perceptions about the effective features of explicit-reflective nature of science (NOS) instruction. Our participants were four elementary teachers from a public charter school located in the Southwestern U.S.A. The four elementary teachers participated in an academic year-long professional development about NOS which consisted of NOS training and NOS teaching phases. After each phase of the professional development, we specifically asked our participants which features of the explicit-reflective NOS instruction they found effective in improving their NOS conceptions by presenting pre- and post-profiles of their NOS conceptions. We identified nine features perceived by the participants as effective components of explicit-reflective NOS instruction: (1) specific focus on NOS content, (2) participation in hands-on NOS activities, (3) introductory NOS readings, (4) multiple types/forms of reflection, (5) multiple exposure to NOS content, (6) structural consistency in the presentation of NOS content, (7) the evaluation of secondary NOS data from elementary students, (8) the analysis of national and state science standards in terms of NOS content, and (9) NOS teaching experience.
NASA Astrophysics Data System (ADS)
Patho, Khanittha; Yuenyong, Chokchai; Chamrat, Suthida
2018-01-01
The nature of science has been part of Thailand's science education curriculum since 2008. However, teachers lack of understanding about the nature of science (NOS) and its teaching, particularly element school science teachers. In 2012, the Science Institute of Thailand MOE, started a project of Elementary Science Teacher Professional Development to enhance their thinking about the Nature of Science. The project aimed to enhance teachers' understanding of NOS, science teaching for explicit and reflective NOS, with the aim of extending their understanding of NOS to other teachers. This project selected 366 educational persons. The group was made up of a teacher and a teacher supervisor from 183 educational areas in 74 provinces all Thailand. The project provided a one week workshop and a year's follow up. The week-long workshop consisted of 11 activities of science teaching for explicit reflection on 8 aspects of NOS. Workshop of NOS explicit and reflective on force and motion learning activity is one of eight activities. This activity provided participants to learn force and motion and NOS from the traditional toy "Bang-Poh". The activity tried to enhance participants to explicit NOS for 5 aspects including empirical basis, subjectivity, creativity, observation and inference, and sociocultural embeddedness. The explicit NOS worksheet provided questions to ask participants to reflect their existing ideas about NOS. The paper examines elementary school science teachers' understanding of NOS from the force and motion learning activity which provided explicit reflection on 5 NOS aspects. An interpretive paradigm was used to analyse the teachers' reflections in a NOS worksheet. The findings indicated that majority of them could reflect about the empirical basis of science and creativity but few reflected on observation and inference, or sociocultural embeddedness. The paper will explain the teachers' NOS thinking and discuss the further enhancing of their understanding and organizing NOS explicit and reflective science teaching.
On the advancement of highly cited research in China: An analysis of the Highly Cited database.
Li, John Tianci
2018-01-01
This study investigates the progress of highly cited research in China from 2001 to 2016 through the analysis of the Highly Cited database. The Highly Cited database, compiled by Clarivate Analytics, is comprised of the world's most influential researchers in the 22 Essential Science Indicator fields as catalogued by the Web of Science. The database is considered an international standard for the measurement of national and institutional highly cited research output. Overall, we found a consistent and substantial increase in Highly Cited Researchers from China during the timespan. The Chinese institutions with the most Highly Cited Researchers- the Chinese Academy of Sciences, Tsinghua University, Peking University, Zhejiang University, the University of Science and Technology of China, and BGI Shenzhen- are all top ten universities or primary government research institutions. Further evaluation of separate fields of research and government funding data from the National Natural Science Foundation of China revealed disproportionate growth efficiencies among the separate divisions of the National Natural Science Foundation. The most development occurred in the fields of Chemistry, Materials Sciences, and Engineering, whereas the least development occurred in Economics and Business, Health Sciences, and Life Sciences.
Programmers, professors, and parasites: credit and co-authorship in computer science.
Solomon, Justin
2009-12-01
This article presents an in-depth analysis of past and present publishing practices in academic computer science to suggest the establishment of a more consistent publishing standard. Historical precedent for academic publishing in computer science is established through the study of anecdotes as well as statistics collected from databases of published computer science papers. After examining these facts alongside information about analogous publishing situations and standards in other scientific fields, the article concludes with a list of basic principles that should be adopted in any computer science publishing standard. These principles would contribute to the reliability and scientific nature of academic publications in computer science and would allow for more straightforward discourse in future publications.
Science education in Elementary school by using of "Geopark", Oki Islands, Japan
NASA Astrophysics Data System (ADS)
Oku, S.; Matsumoto, I.
2012-12-01
The Oki islands are located at Japan sea coast side of southwest Japan and belonging to Shimane Prefecture. And there is rich Nature which is consist of mainly alkaline volcanic rocks and metamorphic rocks. Aiming at authorization "Geopark" authorization of Oki Islands, Geologist, Biologist, and residents of Oki Islands are doing investigation and advertisement. Promotion of the science education which utilized the precious Nature, or environmental education is very important in the viewpoint of the science literacy which can protect a Nature and the earth. In this presentation, we mainly propose activity at an elementary school about how to advance the science education by using of this precious Nature. Children learn about the geology which constitutes the ground, and its petro-genesis in the Science of the sixth grade of elementary school. The viewpoint of having been formed by volcano, Earthquake, etc, in long global time is important for the precious and beautiful geology which constitutes the ground. It is at the same time important for a global change to teach also about often doing serious damage to human beings or a living thing with an Earthquake, a volcano, tsunami, etc. That is, we can push (teaching beautiful geology and a precious living thing using "Geopark"), and can learn about the blessing and disaster of a Nature. Moreover, teaching materials and teaching tools like a local textbook or a signboard with which a teacher and a resident can teach them to a child are required.
Self-Consistent Sources Extensions of Modified Differential-Difference KP Equation
NASA Astrophysics Data System (ADS)
Gegenhasi; Li, Ya-Qian; Zhang, Duo-Duo
2018-04-01
In this paper, we investigate a modified differential-difference KP equation which is shown to have a continuum limit into the mKP equation. It is also shown that the solution of the modified differential-difference KP equation is related to the solution of the differential-difference KP equation through a Miura transformation. We first present the Grammian solution to the modified differential-difference KP equation, and then produce a coupled modified differential-difference KP system by applying the source generation procedure. The explicit N-soliton solution of the resulting coupled modified differential-difference system is expressed in compact forms by using the Grammian determinant and Casorati determinant. We also construct and solve another form of the self-consistent sources extension of the modified differential-difference KP equation, which constitutes a Bäcklund transformation for the differential-difference KP equation with self-consistent sources. Supported by the National Natural Science Foundation of China under Grant Nos. 11601247 and 11605096, the Natural Science Foundation of Inner Mongolia Autonomous Region under Grant Nos. 2016MS0115 and 2015MS0116 and the Innovation Fund Programme of Inner Mongolia University No. 20161115
Scientists Interacting With University Science Educators
NASA Astrophysics Data System (ADS)
Spector, B. S.
2004-12-01
Scientists with limited time to devote to educating the public about their work will get the greatest multiplier effect for their investment of time by successfully interacting with university science educators. These university professors are the smallest and least publicized group of professionals in the chain of people working to create science literate citizens. They connect to all aspects of formal and informal education, influencing everything from what and how youngsters and adults learn science to legislative rulings. They commonly teach methods of teaching science to undergraduates aspiring to teach in K-12 settings and experienced teachers. They serve as agents for change to improve science education inside schools and at the state level K-16, including what science content courses are acceptable for teacher licensure. University science educators are most often housed in a College of Education or Department of Education. Significant differences in culture exist in the world in which marine scientists function and that in which university science educators function, even when they are in the same university. Subsequently, communication and building relationships between the groups is often difficult. Barriers stem from not understanding each other's roles and responsibilities; and different reward systems, assumptions about teaching and learning, use of language, approaches to research, etc. This presentation will provide suggestions to mitigate the barriers and enable scientists to leverage the multiplier effect saving much time and energy while ensuring the authenticity of their message is maintained. Likelihood that a scientist's message will retain its authenticity stems from criteria for a university science education position. These professors have undergraduate degrees in a natural science (e.g., biology, chemistry, physics, geology), and usually a master's degree in one of the sciences, a combination of natural sciences, or a master's including about eighteen hours in a natural science. Their doctorates in science education include in-depth understanding of how people construct basic science concepts and ways to mitigate conceptions not consistent with current science. They have learned ways to transform scientific information to various audiences enabling learners to construct meaningful understanding of science phenomena, the nature of science, and its historical and philosophical underpinnings. Lessons learned from current and past innovations will be presented.
ERIC Educational Resources Information Center
Constantine, Angelina; Rózowa, Paula; Szostkowski, Alaina; Ellis, Joshua; Roehrig, Gillian
2017-01-01
In the age of STEM education, teachers consistently struggle to understand the nature of technology and how to integrate it. This multiple-case study uses the TPACK framework to explore the beliefs and practices of three elementary science and engineering teachers from an urban school district with a recently implemented 1:1 iPad policy. All three…
A new six-component super soliton hierarchy and its self-consistent sources and conservation laws
NASA Astrophysics Data System (ADS)
Han-yu, Wei; Tie-cheng, Xia
2016-01-01
A new six-component super soliton hierarchy is obtained based on matrix Lie super algebras. Super trace identity is used to furnish the super Hamiltonian structures for the resulting nonlinear super integrable hierarchy. After that, the self-consistent sources of the new six-component super soliton hierarchy are presented. Furthermore, we establish the infinitely many conservation laws for the integrable super soliton hierarchy. Project supported by the National Natural Science Foundation of China (Grant Nos. 11547175, 11271008 and 61072147), the First-class Discipline of University in Shanghai, China, and the Science and Technology Department of Henan Province, China (Grant No. 152300410230).
NASA Astrophysics Data System (ADS)
Sickel, Aaron J.; Friedrichsen, Patricia
2018-02-01
Pedagogical content knowledge (PCK) has become a useful construct to examine science teacher learning. Yet, researchers conceptualize PCK development in different ways. The purpose of this longitudinal study was to use three analytic lenses to understand the development of three beginning biology teachers' PCK for teaching natural selection simulations. We observed three early-career biology teachers as they taught natural selection in their respective school contexts over two consecutive years. Data consisted of six interviews with each participant. Using the PCK model developed by Magnusson et al. (1999), we examined topic-specific PCK development utilizing three different lenses: (1) expansion of knowledge within an individual knowledge base, (2) integration of knowledge across knowledge bases, and (3) knowledge that explicitly addressed core concepts of natural selection. We found commonalities across the participants, yet each lens was also useful to understand the influence of different factors (e.g., orientation, subject matter preparation, and the idiosyncratic nature of teacher knowledge) on PCK development. This multi-angle approach provides implications for considering the quality of beginning science teachers' knowledge and future research on PCK development. We conclude with an argument that explicitly communicating lenses used to understand PCK development will help the research community compare analytic approaches and better understand the nature of science teacher learning.
NASA Astrophysics Data System (ADS)
Liu, Shiang-Yao
This exploratory investigation aimed to identify preservice science teachers' conceptions of the nature of science (NOS), and worldviews that represent their culturally dependent beliefs about the world, in the context of Taiwan. The interrelationships between the responses elicited from both the assessments of NOS understandings and worldviews were examined. Participants included 54 third-year students enrolled in the departments of science education and mathematics education at a teachers college. Their worldviews and NOS conceptions were tabulated by two questionnaires and 14 of them were purposefully selected to participate follow-up interviews. The worldview questionnaire contained five open-ended items, of which each examines one of the worldview domains in Kearney's model (1984). The NOS questionnaire consisting of nine open-ended questions was developed, specifically addressing cultural characteristics, to assess participants' views on the development of scientific knowledge. An anthropocentric-moderate continuum emerged to describe participants' views of the humanity's relationship with Nature. It was found that participants with informed NOS conceptions were more likely to emphasize harmony with Nature, recognize the limitations of scientific knowledge, and accept the idea that science involves subjective and cultural components. On the other hand, participants who provided a pragmatic perspective of Nature seemed to possess narrow views about the scientific enterprises by describing science as close to technology and as a materialistic benefit. Authoritarianism was also a noticeable cultural trait hindering some participants from reflecting on the values inherent to the development of scientific knowledge, and also prohibiting them from searching empirical evidence to solve problems. It was found that there were differences between science education and mathematics education majors in their worldviews and NOS understandings. The results in this study not only depict a group of nonwestern preservice teachers' worldviews, but also reveal the interplay between their sociocultural beliefs and NOS conceptions. People with different worldviews may have differing views about science. The study calls for the consideration of incorporating sociocultural perspectives in science instruction and the need for introducing contemporary conceptions of the NOS to science learners.
Building Vietnamese Herbal Database Towards Big Data Science in Nature-Based Medicine
2018-01-04
metabolites, diseases, and geography in order to convey a composite description of each individual species. VHO consists of 2881 species, 10887 metabolites...plants, metabolites, diseases, and geography in order to convey a composite description of each individual species. VHO consists of 2881 species...feature description are extremely diverse and highly redundant. Besides the original words or the key words for description , there are millions of
The scientific theory profile: A philosophy of science model for science teachers
NASA Astrophysics Data System (ADS)
Loving, Cathleen C.
A model called the Scientific Theory Profile was developed for use with preservice and inservice science teachers or with graduate students interested in the various ways scientific theories are perceived. Early indications - from a survey of institutions with science education programs and a survey of current science methods texts - are that too little emphasis is placed on what contemporary writings reveal about the nature and importance of scientific theories. This prompted the development of the Profile. The Profile consists of a grid, with the x-axis representing methods for judging theories (rational vs. natural), and the y-axis representing views on reigning scientific theories as being the Truth versus models of what works best (realism vs. anti-realism). Three well-known philosophers of science who were selected for detailed analysis and who form the keystone positions on the Profile are Thomas Kuhn, Carl Hempel, and Sir Karl Popper. The hypothesis was that an analysis of the writings of respected individuals in philosophy and history of science who have different perspectives on theories (as well as overarching areas of agreement) could be translated into relative coordinates on a graph; and that this visual model might be helpful to science teachers in developing a balanced philosophy of science and a deeper understanding of the power of reigning theories. Nine other contemporary philosophers, all influenced by the three originals, are included in brief analyses, with their positions on the grid being relative to the keystones. The Scientific Theory Profile then forms the basis for a course, now in the planning stages, in perspectives on the nature of science, primarily for science teachers, with some objectives and activities suggested.
NASA Astrophysics Data System (ADS)
Elder, Anastasia Danos
Elementary students' beliefs about the nature of knowledge---epistemological beliefs---are an emerging concern for science education and research. Composed of a critique of research literature and two studies, this dissertation investigated the epistemological beliefs of fifth-grade students who participated in inquiry-based, hands-on science program. The goals were to characterize their beliefs about the nature of knowledge in science and to investigate the relation between these beliefs and their learning of scientific process skills. In the first study, fifth-grade students (N = 211) were surveyed about their beliefs regarding the (1) purpose of science, (2) sources of scientific knowledge, (3) roles of evidence and experiments, (4) changing nature of knowledge in science, and (5) coherence of a scientific knowledge base. Descriptive statistics and analysis of variance (ANOVA) were conducted to assess the interrelations among various epistemological belief constructs. Fifth-graders' epistemological beliefs in science were found to reflect a mixture of naive and sophisticated understanding. Few differences in beliefs were found according to gender, ethnicity, and socio-economic status. Students' understanding of the purpose of science and the changing nature of science seemed to act as two important constructs in their beliefs. Furthermore, students' epistemological beliefs was characterized as an emerging system in which beliefs were related to each other in consistent ways. In the second study, fifth-grade students (N = 194) responded to questionnaire items about their epistemological beliefs in science and completed performance assessments testing their science process skills in two units---one which embedded learning of process skills with conceptual knowledge and another in which process skills were learned with minimal reference to conceptual knowledge. Based on correlational and ANOVA analyses, modest links were found between students' epistemological beliefs and their science learning. The relations varied by instructional unit. Findings defined a number of areas for further investigation including a consideration of how beliefs are characterized, a greater emphasis on understanding the role of aptitude and prior knowledge, and developmental issues in the relation between students' epistemological beliefs and their learning of science. Theoretical, methodological, and educational implications of this work were discussed.
Code of Federal Regulations, 2014 CFR
2014-10-01
... approach that will ensure the integrated use of the natural and social sciences, and environmental... GENERAL ENVIRONMENTAL CONSIDERATIONS General § 10.4 Policy. (a) FEMA shall act with care to assure that... mitigation and flood insurance, it does so in a manner consistent with national environmental policies. Care...
Code of Federal Regulations, 2012 CFR
2012-10-01
... approach that will ensure the integrated use of the natural and social sciences, and environmental... GENERAL ENVIRONMENTAL CONSIDERATIONS General § 10.4 Policy. (a) FEMA shall act with care to assure that... mitigation and flood insurance, it does so in a manner consistent with national environmental policies. Care...
Matching in an undisturbed natural human environment.
McDowell, J J; Caron, Marcia L
2010-05-01
Data from the Oregon Youth Study, consisting of the verbal behavior of 210 adolescent boys determined to be at risk for delinquency (targets) and 210 of their friends (peers), were analyzed for their conformance to the complete family of matching theory equations in light of recent findings from the basic science, and using recently developed analytic techniques. Equations of the classic and modern theories of matching were fitted as ensembles to rates and time allocations of the boys' rule-break and normative talk obtained from conversations between pairs of boys. The verbal behavior of each boy in a conversation was presumed to be reinforced by positive social responses from the other boy. Consistent with recent findings from the basic science, the boys' verbal behavior was accurately described by the modern but not the classic theory of matching. These findings also add support to the assertion that basic principles and processes that are known to govern behavior in laboratory experiments also govern human social behavior in undisturbed natural environments.
NASA Astrophysics Data System (ADS)
Harlow, Danielle B.; Swanson, Lauren H.; Dwyer, Hilary A.; Bianchini, Julie A.
2010-10-01
We report on an adapted version of the Physics and Everyday Thinking (PET) curriculum. A unique aspect of PET is its inclusion of special activities that focus on Learning about Learning (LAL) in which undergraduates analyze videos of children talking about science and explicitly consider the nature of science. To create a course that intentionally linked science content, children's ideas, and strategies for science instruction, we augmented the existing LAL activities with discussions about teaching, and added activities focused on LAL from companion curricula such as Physical Science and Everyday Thinking (PSET) and Learning Physical Science (LEPS). To compensate for the additional time on LAL, we reduced the content activities to only those that directly supported LAL activities. We found that students made significant gains on the CLASS and expressed beliefs about teaching consistent with the PET pedagogy.
Modern Chemical Technology, Volume 7.
ERIC Educational Resources Information Center
Pecsok, Robert L.; Chapman, Kenneth
This volume is one of the series for the Chemical Technician Curriculum Project (ChemTeC) of the American Chemical Society funded by the National Science Foundation. It consists of discussions, exercises, and experiments on the following topics: the nature of reversible processes, equilibrium constants, variable reaction tendencies, practical…
Modern Chemical Technology, Volume 8.
ERIC Educational Resources Information Center
Pecsok, Robert L.; Chapman, Kenneth
This volume is one of a series for the Chemical Technician Curriculum Project (ChemTeC) of the American Chemical Society funded by the National Science Foundation. It consists of discussions, exercises, and experiments on the following topics: amino acids and proteins, carbohydrates, synthetic polymers, other natural products, chemical separations…
Space biology class as part of science education programs for high schools in Japan.
Kamada, Motoshi; Takaoki, Muneo
2004-11-01
Declining incentives and scholastic abilities in science class has been concerned in Japan. The Ministry of Education, Culture, Sports, Science and Technology encourages schools to cooperate with research institutions to raise student's interest in natural sciences. The Science Partnership Program (SPP) and the Super Science High-School (SSH) are among such efforts. Our short SPP course consists of an introductory lecture on space biology in general and a brief laboratory practice on plant gravitropism. Space biology class is popular to students, despite of the absence of flight experiments. We suppose that students are delighted when they find that their own knowledge is not a mere theory, but has very practical applications. Space biology is suitable in science class, since it synthesizes mathematics, physics, chemistry and many other subjects that students might think uninteresting.
NASA Astrophysics Data System (ADS)
Adibelli, Elif
This qualitative study aimed to explore the changes in elementary science teachers' conceptions of nature of science (NOS) and their beliefs about the developmental appropriateness and importance of NOS after participating in an academic, year-long professional development program (PDP) as well as the factors facilitating these changes. The PDP consisted of two phases. In the first phase, the participants received NOS training designed with an explicit-reflective instructional approach. In the second phase, the participants implemented several NOS training activities in their classrooms. Four elementary science teachers who volunteered and completed all components of the PDP (i.e., the NOS training and the NOS teaching) comprised the participants of the present study. A multiple-embedded case study design was employed to explore the changes in the elementary science teachers' conceptions of NOS and their beliefs about the developmental appropriateness and importance of NOS. The study data were collected from multiple sources. The primary data sources included (a) Views of Nature of Science Elementary School Version 2 (VNOS-D2) questionnaire (Lederman & Khishfe, 2002), (b) Ideas about Science for Early Elementary (K-4) Students questionnaire (Sweeney, 2010), and (c) follow-up semi-structured interviews. The secondary data sources included videotaping of meetings with teachers, reflective field notes, and artifacts produced by teachers and their students. Data were analyzed using Yin's (1994, 2003) analytic tactics of pattern matching, explanation building, and cross-case synthesis. The findings of the study revealed that the elementary science teachers showed gradual, but substantial changes in their conceptions, and beliefs about the developmental appropriateness and importance of the NOS aspects over the course of participation in the PDP. Moreover, the participants identified nine components in the PDP that facilitated these changes in their conceptions, and beliefs about the developmental appropriateness and importance of the NOS aspects. These components were (a) specific focus on the NOS content, (b) participation in hands-on activities on NOS, (c) educational readings on NOS, (d) multiple types/ formats of reflection, (e) multiple exposure to the NOS content, (f) structural consistency in the presentation of the NOS content, (g) the evaluation of secondary student data, (h) the analysis of national and state science standards in terms of NOS, and (i) the implementation of the NOS activities in the classroom. Based on the findings of this study, it may be concluded that explicit-reflective NOS instruction coupled with NOS teaching is sufficient to evolve and crystallize teachers' conceptions and beliefs about the developmental appropriateness and importance of the NOS aspects.
Cohen, Joel I
2016-01-01
In 1836, Charles Darwin returned to England with finches classified and seemingly showing little resemblance. However, subsequent examination by John Gould revealed 13 closely related species endemic to the Galápagos Islands. Despite initial confusion, and Darwin's overlooking to label these birds by island, some 100 years later they had become evolution's icon. The same could be said of Darwin's education and scientific pursuits, beginning in a rough, trial and error manner, lacking direction, but eventually benefitting from an unexpected opportunity that would lead to his theory of natural selection. This case study examines Darwin's way of learning and the reserve of courage and perseverance that he would need to see his treatise on evolution and natural selection published. To do this, themes from studying the "Nature of Science" are used to examine how Darwin's "way of knowing" advanced before and after his voyage upon HMS Beagle. Five themes from the "Nature of Science" were selected to illustrate Darwin's struggles and triumph: creating scientific knowledge is a human endeavor, such knowledge can explain an order and consistency in natural systems, knowledge comes from a scientist's way of knowing, is open to revision, and based on empirical evidence. The "Nature of Science" as applied to Charles Darwin is explored through the three above mentioned themes identified by the Next Generation Science Standards. Together, the themes help explain Darwin's way of knowing, from boyhood to manhood. This explanation helps humanize Darwin, allows students to see how he arrived at his theories, how the time taken to do so wore on his health and safety, and the risk Darwin had to weigh from their eventual publication. Each theme ends with a summary and related extension questions to draw students into the case, and facilitate inquiry. They relate Darwin's way of learning from the 1800s and his commitment to see his work published, to the learning environment of students today.
NASA Astrophysics Data System (ADS)
Alrehaly, Essa D.
Examination of Saudi Arabian educational practices is scarce, but increasingly important, especially in light of the country's pace in worldwide mathematics and science rankings. The purpose of the study is to understand and evaluate parental influence on male children's science education achievements in Saudi Arabia. Parental level of education and participant's choice of science major were used to identify groups for the purpose of data analysis. Data were gathered using five independent variables concerning parental educational practices (attitude, involvement, autonomy support, structure and control) and the dependent variable of science scores in high school. The sample consisted of 338 participants and was arbitrarily drawn from the science-based colleges (medical, engineering, and natural science) at Jazan University in Saudi Arabia. The data were tested using Pearson's analysis, backward multiple regression, one way ANOVA and independent t-test. The findings of the study reveal significant correlations for all five of the variables. Multiple regressions revealed that all five of the parents' educational practices indicators combined together could explain 19% of the variance in science scores and parental attitude toward science and educational involvement combined accounted for more than 18% of the variance. Analysis indicates that no significant difference is attributable to parental involvement and educational level. This finding is important because it indicates that, in Saudi Arabia, results are not consistent with research in Western or other Asian contexts.
NASA Astrophysics Data System (ADS)
Gilbert, Amanda M.
This study investigated the nature of instructional coaching interactions in three formats: online synchronous, online asynchronous, and face-to-face. Knight's (2007) Seven Partnership Principles of Instructional Coaching were used as a framework to analyze and compare the coaching interactions between coach and teacher to determine whether online coaching may be a viable option to provide support for the teachers unprepared to teach the new science standards. Some previous research has suggested that online communication can result in deeper personal interactions (Walther, 1996), while other studies suggest that interactions are more natural and easier in formats that are more similar to face-to-face interactions (Kock, 2005). The findings of this study support the media naturalness theory (Kock, 2005) and suggest that collaboration may be especially difficult in asynchronous online communication. Although differences were noted in the actual interactions, teacher perception remained fairly consistently positive across the three formats. Research beyond this exploratory study is needed to make findings generalizable.
Welch Science Process Inventory, Form D. Revised.
ERIC Educational Resources Information Center
Welch, Wayne W.
This inventory, developed for use with the Harvard Project Physics curriculum, consists of 135 two-choice (agree-disagree) items. Items cover perceptions of the role of scientists, the nature and functions of theories, underlying assumptions made by scientists, and other aspects of the scientific process. The test is suitable for high school…
The Concept of Nondeterminism: Its Development and Implications for Teaching
ERIC Educational Resources Information Center
Armoni, Michal; Ben-Ari, Mordechai
2009-01-01
Nondeterminism is a fundamental concept in computer science that appears in various contexts such as automata theory, algorithms and concurrent computation. We present a taxonomy of the different ways that nondeterminism can be defined and used; the categories of the taxonomy are domain, nature, implementation, consistency, execution and…
Young Children's Analogical Reasoning in Science Domains
ERIC Educational Resources Information Center
Haglund, Jesper; Jeppsson, Fredrik; Andersson, Johanna
2012-01-01
This exploratory study in a classroom setting investigates first graders' (age 7-8 years, N = 25) ability to perform analogical reasoning and create their own analogies for two irreversible natural phenomena: mixing and heat transfer. We found that the children who contributed actively to a full-class discussion were consistently successful at…
A Graphical Database Interface for Casual, Naive Users.
ERIC Educational Resources Information Center
Burgess, Clifford; Swigger, Kathleen
1986-01-01
Describes the design of a database interface for infrequent users of computers which consists of a graphical display of a model of a database and a natural language query language. This interface was designed for and tested with physicians at the University of Texas Health Science Center in Dallas. (LRW)
NASA Astrophysics Data System (ADS)
Cavagnetto, Andy; Hand, Brian M.; Norton-Meier, Lori
2010-03-01
This case study aimed to determine the nature of student interactions in small groups in an elementary classroom utilizing the Science Writing Heuristic approach. Fifth grade students were audio-recorded over four units of study while working in small groups to generate knowledge claims after conducting student-directed investigations. Analysis consisted of (1) identifying amount of on/off task talk, (2) categorizing on-task talk as generative (talk associated with generating an argument) or representational (talk associated with representing an argument in a final written form), (3) characterizing the generative components of argument, and (4) determining the functions of language used. Results indicate that students were on task 98% of the time. Students engaged in generative talk an average of 25% of the time and representational talk an average of 71% of the time. Students engaged in components of Toulmin's model of argument, but challenging of each other's ideas was not commonplace. Talk was dominated by the informative function (representing one's ideas) of language as it was found 78.3% of the time and to a lesser extent (11.7%) the heuristic function (inquiring through questions). These functions appear to be intimately tied to the task of generating knowledge claims in small groups. The results suggest that both talking and writing are critical to using science discourse as an embedded strategy to learning science. Further, nature and structure of the task are important pedagogical considerations when moving students toward participation in science discourse.
NASA Astrophysics Data System (ADS)
Millette, Patricia M.
Authentic field geology research is a inquiry method that encourages students to interact more with their local environment, and by solving genuine puzzles, begin to increase their intuitive understanding of the nature and processes of science. The goal of the current study was to determine if conducting authentic field research and giving high school students the opportunity to present findings to adult audiences outside of the school setting 1) enhances students' understanding of the nature of science, and 2) affects students views of themselves as researchers. To accomplish this, ninth-grade students from a public school in northern New England engaged in a community-initiated glacial geology problem, completed a field research investigation, and presented their findings at several professional conferences. Following the completion of this student-centered field research, I investigated its effects by using a mixed methods approach consisting of qualitative and quantitative data from two sources. These included selected questions from an open-response survey (VNOS-c), and interviews that were conducted with fifteen of the students of different ages and genders. Findings show that conducting original field research seems to have a positive influence on these students' understanding of the NOS as well as the processes of science. Many of the students reported feelings of accomplishment, acceptance of responsibility for the investigation, a sense of their authentic contribution to the body of scientific knowledge in the world, and becoming scientists. This type of authentic field investigation is significant because recent reforms in earth-science education stress the importance of students learning about the nature and processes of scientific knowledge along with science content.
Orthia, Lindy A
2011-07-01
Much of the public understanding of science literature dealing with fictional scientists claims that scientist villains by their nature embody an antiscience critique. I characterize this claim and its founding assumptions as the "mad scientist" trope. I show how scientist villain characters from the science fiction television series Doctor Who undermine the trope via the programme's use of rhetorical strategies similar to Gilbert and Mulkay's empiricist and contingent repertoires, which define and patrol the boundaries between "science" and "non-science." I discuss three such strategies, including the literal framing of scientist villains as "mad." All three strategies exclude the characters from science, relieve science of responsibility for their villainy, and overtly or covertly contribute to the delivery of pro-science messages consistent with rationalist scientism. I focus on scientist villains from the most popular era of Doctor Who, the mid 1970s, when the show embraced the gothic horror genre.
NASA Astrophysics Data System (ADS)
Ferrero, Elena; Magagna, Alessandra; Giardino, Marco
2014-05-01
Starting from the assumption that Earth Sciences education is fundamental to improve people's consciousness on proper management of natural hazards and georesources, to develop resilience's capacity in the population and the effectiveness of protection measures, we analyze different strategies adopted in the educational system of the Piemonte Region (NW Italy). Experiences refer to primary and secondary schools, to universities courses of Natural Sciences and Geological Sciences Degrees, to Preparatory courses for teachers of primary and secondary level. In addition to this formal educational context, experiences were performed in informal situation, like field trips and seminars promoted by other agencies and associations, such as for instance the National Association of Natural Sciences Teachers (ANISN), Natural History Museums, Natural Parks of the Region. Another particular case study included cooperation projects based on partnerships between students of different countries, cultures and languages. This type of educational activities is quite challenging for the teachers to organize, but it is very stimulating for the students and extremely fruitful: it allows students to experience complex situations with open mind, to learn and understand cross relationships between different disciplines and between different and faraway countries. In all cases a common starting point consisted in stressing the attention of the educational project on the motivation and the personal involvement of the participants, both from the emotional point of view and the operative and cognitive point of view. Case studies will be presented for showing the way students consider georesources and their sustainable exploitation and perceive natural hazards and risks, not only the major and catastrophic ones, but also the minor, hidden and silent ones.
Initiative bridges gap among humanities, science, and society
NASA Astrophysics Data System (ADS)
Frodeman, Robert
The environmental challenges we face today are inherently cross-disciplinary in nature. Addressing questions of global climate change, damaged mine lands, or the restoration of urban landscapes requires the integration of scientific information with ethical, historical, and cultural perspectives. But how can society better approach the challenge of usefully combining such values with the insights of science for effective decision-making?New Directions in the Earth Sciences and the Humanities focuses on this question. Launched in the spring of 2001 with a $15,000 grant from the Colorado School of Mines, New Directions consists of a series of projects based on the premise that the humanities represent a largely untapped resource for helping the Earth sciences relate more effectively to society.
Howard University program for radiotherapeutic technology.
Tabron, M J
1975-01-01
The Howard University program for radiotherapeutic technology provides for a career ladder with steps of two years. After the first two years everyone must take and pass examination in radiotherapeutic technology given by The American Registry of Radiologic Technologists. The candidate then can proceed with two years of university courses to a Bachelor of Science degree. Depending upon his interest, he can emphasize business, education, or science. The latter would qualify him for application medical school. The core of the curriculum for the first two years consists of clinical work in the radiotherapy department every morning and of two integrated multidisciplinary courses in the afternoon, namely, life sciences (anatomy, physiology, pathology and oncology) and natural sciences (mathematics, physics, radiation physics and treatment planning).
NASA Astrophysics Data System (ADS)
Danielsson, Anna T.; Andersson, Kristina; Gullberg, Annica; Hussénius, Anita; Scantlebury, Kathryn
2016-12-01
In this article we explore the places pre- and primary school (K-6) student teachers associate with their science learning experiences and how they view the relationship between these places and science. In doing so, we use `place' as an analytical entry point to deepen the understanding of pre- and primary school student teachers' relationship to science. Inspired by theories from human geography we firstly explore how the university science classroom can be conceptualised as a meeting place, where trajectories of people as well as artefacts come together, using this conceptualisation as the stepping stone for arguing the importance of the place-related narrations of science the students bring to this classroom. We thereafter analyse how a sense of place, including affective dimensions, is reflected in Swedish student teachers' science learning narratives (collected in the form of an essay assignment where the student teachers' reflected upon their in and out of school science learning experiences). The empirical material consists of 120 student essays. The most prominent feature of the empirical material as a whole is the abundance of affective stories about the student teachers' experiences in natural environments, often expressing a strong sense of belonging to, and identification with, a particular place. However, the student narratives also give voice to an ambivalent valuing of the affective experiences of natural environments. Sometimes such affective experiences are strongly delineated from what the students consider actual science knowledge, on other occasions, students, in a somewhat contradictious way, stress natural environments as the authentic place for doing science, in contrast to the perceived in-authenticity of teaching science in the classroom. When student teachers explicitly discuss the classroom as a place, this was almost without exception with strong negative emotions, experiences of outsideness and alienation.
Learning at Workstations in Two Different Environments: A Museum and a Classroom
ERIC Educational Resources Information Center
Sturm, Heike; Bogner, Franz X.
2010-01-01
Our study compared the learning and motivational outcome of one educational approach in two different learning environments, a natural science museum and a classroom, drawing on studies about the effects of field trips on students' learning and motivation. The educational intervention consisted of an introduction phase in the classroom and…
Federal Register 2010, 2011, 2012, 2013, 2014
2010-01-13
... INFORMATION: Title: Citizen Science Phenology Monitoring in National Parks. Form(s): None. Type of Request: A... consistent with the NPS Management Policies (2006), which emphasize the ``use of qualitative and quantitative... that ``studies, research, and collection activities by non-NPS personnel involving natural and cultural...
Factors affecting student achievement in science: A study of teacher beliefs
NASA Astrophysics Data System (ADS)
Hayes, Jonathan
This study employed a mixed methods and mixed model research design to explore secondary science teachers' beliefs. Specifically, this study focused on factors that secondary science teachers believe affect student achievement in science, and the extent to which teacher beliefs transfer to teacher practice. This study is significant because the outcomes may inform professional development and policy decisions at the school, district, and provincial level. Results from self-reporting data of 82 secondary science teachers indicate that teacher beliefs in each of the fourteen topics surveyed (Classroom Management, Learning Styles, Inclusion, Equity, Science-Technology-Society (STS), Formative Assessment, Summative Assessment, Constructivism, Thematic Approach, Hands-On/Minds-On Activities, The Nature of Science, Science Subject Matter, Electronic Learning and Cooperative Learning) are positive for most Prince Edward Island (P.E.I.) secondary science teachers. Furthermore, secondary science teachers reported having strong beliefs in their ability to affect student learning (self-efficacy beliefs). However, it is apparent from the survey and interview data that teachers believe there are other influential factors that are preventing some students from learning despite the teachers' best efforts and ability. Regarding implementation, this study indicates that beliefs and the enactment of beliefs in classroom practice are positively correlated. The data also shows that at least seventy percent of teachers reported that they implement practices consistent with all but two topics -- The Nature of Science and Electronic Learning -- at least once a week. The findings of this study are discussed in the context of the P.E.I. secondary science setting. Limitations and implications of this study are also addressed.
A Thai pre-service teacher's understanding of nature of science in biology teaching
NASA Astrophysics Data System (ADS)
Srisawat, Akkarawat; Aiemsum-ang, Napapan; Yuenyong, Chokchai
2018-01-01
This study was conducted on the effect of understanding and instruction of the nature of science of Ms. Wanida, a pre-service student under science education program in biology, Faculty of Education, Khon Kaen University. Wanida was a teaching practicum student majoring in biology at Khon Kaen University Demonstration School (Modindaeng). She was teaching biology for 38 Grade 10 students. Methodology regarded interpretive paradigm. The study aimed to examine 1) Wanida's understanding of the nature of science, 2) Wanida's instruction of the nature of science, 3 students' understanding of the nature of science from Wanida's instruction, and 4) the effects of Wanida's understanding and instruction of the nature of science on students' understanding of the nature of science from Wanida's instruction. Tools of interpretation included teaching observation, a semi-structured interview, open-ended questionnaire, and an observation record form for the instruction of the nature of science. The data obtained was interpreted, encoded, and classified, using the descriptive statistics. The findings indicated that Wanida held good understanding of the nature of science. She could apply the deficient nature of science approach mostly, followed by the implicit nature of science approach. Unfortunately, she could not show her teaching as explicit nature of science. However, her students' the understanding of the nature of science was good.
NASA Astrophysics Data System (ADS)
Rao, Deepa
This study documents the development of an educational art-science kit about natural fractals, whose aim is to unite artistic and scientific inquiry in the informal learning of science and math. Throughout this research, I argue that having an arts-integrated approach can enhance the learner of science and math concepts. A guiding metaphor in this thesis is the Enlightenment-era cabinet of curiosities that represents a time when art and science were unified in the process of inquiry about the natural world. Over time, increased specialization in the practice of arts and science led to a growing divergence between the disciplines in the educational system. Recently, initiatives like STEAM are underway at the national level to integrate "Arts and Design" into the Science, Technology, Engineering, and Math (STEM) formal education agenda. Learning artifacts like science kits present an opportunity to unite artistic and scientific inquiry in informal settings. Although science kits have been introduced to promote informal learning, presently, many science kits have a gap in their design, whereby the activities consist of recipe-like instructions that do not encourage further inquiry-based learning. In the spirit of the cabinet of curiosities, this study seeks to unify visual arts and science in the process of inquiry. Drawing from educational theories of Dewey, Piaget, and Papert, I developed a novel, prototype "art-science kit" that promotes experiential, hands-on, and active learning, and encourages inquiry, exploration, creativity, and reflection through a series of art-based activities to help users learn science and math concepts. In this study, I provide an overview of the design and development process of the arts-based educational activities. Furthermore, I present the results of a pilot usability study (n=10) conducted to receive user feedback on the designed materials for use in improving future iterations of the art-science fractal kit. The fractal kit booklet that I designed can be found in the supplemental materials to this thesis.
Toward to Disaster Mitigation Science
NASA Astrophysics Data System (ADS)
Kaneda, Yoshiyuki; Shiraki, Wataru; Tokozakura, Eiji
2016-04-01
Destructive natural disasters such as earthquakes and tsunamis have occurred frequently in the world. For the reduction and mitigation of damages by destructive natural disasters, early detection of natural disasters and speedy and proper evacuations are indispensable. And hardware and software preparations for reduction and mitigation of natural disasters are quite important and significant. Finally, methods on restorations and revivals are necessary after natural disasters. We would like to propose natural disaster mitigation science for early detections, evacuations and restorations against destructive natural disasters. In natural disaster mitigation science, there are lots of research fields such as natural science, engineering, medical treatment, social science and literature/art etc. Especially, natural science, engineering and medical treatment are fundamental research fields for natural disaster mitigation, but social sciences such as sociology, psychology etc. are very important research fields for restorations after natural disasters. We have to progress the natural disaster mitigation science against destructive natural disaster mitigation. in the near future. We will present the details of natural disaster mitigation science.
Operation of the Institute for Computer Applications in Science and Engineering
NASA Technical Reports Server (NTRS)
1975-01-01
The ICASE research program is described in detail; it consists of four major categories: (1) efficient use of vector and parallel computers, with particular emphasis on the CDC STAR-100; (2) numerical analysis, with particular emphasis on the development and analysis of basic numerical algorithms; (3) analysis and planning of large-scale software systems; and (4) computational research in engineering and the natural sciences, with particular emphasis on fluid dynamics. The work in each of these areas is described in detail; other activities are discussed, a prognosis of future activities are included.
Science, religion, and the quest for knowledge and truth: an Islamic perspective
NASA Astrophysics Data System (ADS)
Guessoum, Nidhal
2010-03-01
This article consists of two parts. The first one is to a large extent a commentary on John R. Staver's "Skepticism, truth as coherence, and constructivist epistemology: grounds for resolving the discord between science and religion?" The second part is a related overview of Islam's philosophy of knowledge and, to a certain degree, science. In responding to Staver's thesis, I rely strongly on my scientific education and habit of mind; I also partly found my views on my Islamic background, though I enlarge my scope to consider western philosophical perspectives as well. I differ with Staver in his definition of the nature, scope, and goals of religion (concisely, "explaining the world and how it works"), and I think this is the crux of the matter in attempting to resolve the perceived "discord" between science and religion. The heart of the problem is in the definition of the domains of action of science and religion, and I address this issue at some length, both generically and using Islamic principles, which are found to be very widely applicable. The concept of "reality," so important to Staver's thesis, is also critically reviewed. The philosophy of knowledge (and of science) in Islam is briefly reviewed in the aim of showing the great potential for harmony between the two "institutions" (religion and science), on the basis of the following philosophy: science describes nature, whereas religion gives us not only a philosophy of existence but also an interpretative cloak for the discoveries of science and for the meaning of the cosmos and nature. I conclude by insisting that though science and religion can be considered as two worldviews that propose to describe "reality" and to explain our existence and that of the world; they may come to compete for humans' minds and appear to enter into a conflicting position, but only if and when we confuse their domains and modes of action. [InlineMediaObject not available: see fulltext.][InlineMediaObject not available: see fulltext.
Peoples, Shelagh M; O'Dwyer, Laura M; Shields, Katherine A; Wang, Yang
2013-01-01
This research describes the development process, psychometric analyses and part validation study of a theoretically-grounded Rasch-based instrument, the Nature of Science Instrument-Elementary (NOSI-E). The NOSI-E was designed to measure elementary students' understanding of the Nature of Science (NOS). Evidence is provided for three of the six validity aspects (content, substantive and generalizability) needed to support the construct validity of the NOSI-E. A future article will examine the structural and external validity aspects. Rasch modeling proved especially productive in scale improvement efforts. The instrument, designed for large-scale assessment use, is conceptualized using five construct domains. Data from 741 elementary students were used to pilot the Rasch scale, with continuous improvements made over three successive administrations. The psychometric properties of the NOSI-E instrument are consistent with the basic assumptions of Rasch measurement, namely that the items are well-fitting and invariant. Items from each of the five domains (Empirical, Theory-Laden, Certainty, Inventive, and Socially and Culturally Embedded) are spread along the scale's continuum and appear to overlap well. Most importantly, the scale seems appropriately calibrated and responsive for elementary school-aged children, the target age group. As a result, the NOSI-E should prove beneficial for science education research. As the United States' science education reform efforts move toward students' learning science through engaging in authentic scientific practices (NRC, 2011), it will be important to assess whether this new approach to teaching science is effective. The NOSI-E can be used as one measure of whether this reform effort has an impact.
Greek Students' Science-related Interests and Experiences: Gender differences and correlations
NASA Astrophysics Data System (ADS)
Christidou, Vasilia
2006-08-01
This paper explores the science-related interests and out-of-school experiences of 583 ninth-grade Greek students. The instrument of data collection consisted of a questionnaire including items on science-related topics that could be of interest to students and on everyday, out-of-school, science-related experiences. Factor analysis yielded six distinct fields of interest and five types of science-related experiences. Significant gender differences emerge: girls are more interested in topics related to human biology, health, and fitness, and are more familiar with using instruments and devices, seeking information about nature, and doing cuisine and handicraft; while boys are more interested in science, technology, and their social dimension, and the threatening aspects of science and technology, and tend to engage more in manual work and computer use. The results of this study indicate that there is a need for the Greek science curriculum to become more appealing to students, by integrating topics and experiences that are interesting and relevant to them.
Communicating Ocean Sciences to Informal Audiences (COSIA): Case Studies
ERIC Educational Resources Information Center
Inverness Research, 2010
2010-01-01
The three case studies presented in this paper are descriptive and evaluative in nature, and are designed to describe, explain, and portray in some detail three examples of COSIA partnerships. These cases are context bound; the place-based aspect of these cases is critical to the phenomenon being explored. Consistent with the goal for employing a…
METEO in the TALNET project after 5 years - meteorology for talented high schools students
NASA Astrophysics Data System (ADS)
Pisoft, P.; Miksovsky, J.
2010-09-01
TALNET is a project aiming to systematically identify and work with gifted youth (13-19 years). Specifically, it applies online educational activities combined with face to face activities. It has been organised by the Faculty of Maths and Physics (MFF) of Charles University in Prague (UK) and National Institute for Youth (NIDM) since 2003, later in cooperation with other faculties, e.g. Natural Sciences (PrF UK), universities and science and research institutes in the Czech Republic and abroad, e.g. DLR, Germany. Topics of the educational activities come from natural sciences (such as physics, astronomy, biology, chemistry, meteorology etc.) and mathematics. The presented project's part METEO embraces lessons primarily focused on basics of meteorology and atmospheric physics in general and it has been part of the Talnet project for 5 years. The meteorological lectures consist of description of, e.g., climate system, meteorological quantities, weather forecasting, ozone and the stratosphere, climate change or atmospheric optics. On top of the lectures, the students are encouraged to work on enclosed homework such as meteorological time series analysis, clouds observation and classification, halo simulation and so on. The METEO course lasts one semester and the students make their seminar thesis at the end. The presented materials will consist of examples of the contemporary lectures and their organization, homeworks or seminar theses.
Learner Characteristics and Understanding Nature of Science. Is There an Association?
NASA Astrophysics Data System (ADS)
Çetinkaya-Aydın, Gamze; Çakıroğlu, Jale
2017-11-01
The purpose of this study was to investigate the possible associations between preservice science teachers' understanding of nature of science and their learner characteristics; understanding of nature of scientific inquiry, science teaching self-efficacy beliefs, metacognitive awareness level, and faith/worldview schemas. The sample of the current study was 60 3rd-year preservice science teachers enrolled in the Nature of Science and History of Science course. Using a descriptive and associational case study design, data were collected by means of different qualitative and quantitative questionnaires. Analysis of the data revealed that preservice science teachers' understanding of nature of science and nature of scientific inquiry were highly associated. Similarly, science teaching self-efficacy beliefs, metacognitive awareness levels, and faith/worldviews of the preservice science teachers were found to be significantly associated with their understanding of nature of science. Thus, it can be concluded that there might be other factors interfering with the learning processes of nature of science.
NASA Astrophysics Data System (ADS)
Kattoula, Ehsan Habib
Recent reform efforts in science education have culminated in National Science Education Standards (NSES), which include the nature of science and science inquiry themes across all grade levels. Consideration must be given to pre-service science teachers' nature of science conceptions and their perceived roles in implementing the nature of science in the science classroom. This qualitative study investigates how pre-service science teachers' views about the nature of science develop and change when learning a college physics unit on waves in an urban university. The study uses case study methodology with four pre-service science teachers as individual units of analysis. Data regarding the participants' views about the nature of science were collected before and after the instruction on the physics of waves unit. The research design used 'The Views of Nature of Science/Views of Scientific Inquiry-Physics Questionnaire' followed by structured interviews throughout the wave unit. In addition, the participants responded to daily questions that incorporated nature of science themes and constructed concept maps regarding the physics content and their nature of science understanding. After completing the VNOS/VOSI-PHYS questionnaire the pre-service science teachers' views of the nature of science were found to be mainly naive and transitional before the instruction. At the end of the wave unit instruction, the data indicated that conceptual change occurred in participants' nature of science views, shifting toward informed views. The findings of this study provide evidence that using explicit instruction with specific activities, such as experiments and concept mapping, shifted the pre-service science teachers' views away from naive and toward informed.
An investigation of Taiwanese early adolescents' views about the nature of science.
Huang, Chao-Ming; Tsai, Chin-Chung; Chang, Chun-Yen
2005-01-01
This study developed a Pupils' Nature of Science Scale, including the subscales of the invented and changing nature of science, the role of social negotiation on science, and cultural context on science, to assess early adolescents' views about the nature of science. More than 6,000 fifth and sixth graders in Taiwan responded to the Scale. The study revealed that the adolescents had quite different perspectives toward different subscales of the nature of science. Moreover, male adolescents tended to express more constructivist-oriented views toward the nature of science than did their female counterparts. The adolescents of different grades and races also displayed varying views toward the nature of science.
Conversations Around Practice: Mediating Opportunities to Learn about Teaching Science
NASA Astrophysics Data System (ADS)
Ricketts, Amy Rene
This study contributes to the knowledge base regarding the ways in which school-based, ongoing, professional learning communities mediate teacher learning. Specifically, it investigates an organic learning group as they met in various contexts over a full school year, engaging in conversations around their teaching practices that focused on supporting students' explanations of scientific phenomena. The group consisted of ten middle school science teachers from three schools in the same public school district, their district science coordinator and a professor of science education. Drawing on traditions of ethnography and discourse analysis, this case study: 1) characterizes each episode of the group's conversations around practice in terms of its potential for generating transformative learning opportunities, 2) identifies which spontaneous and designed features of those conversations accounted for differences in the generative nature of the talk, and 3) explains how those features mediated the generative nature of the talk. In this group, the differences between more- and less- generative talk could be attributed to five features: the context of the conversation; the tools participants used to represent their practice; the stance with which they represented and took up one another's practices in the talk; the resources they drew on (in terms of expertise); the conversational routines in which they engaged. These five features interacted in complex, patterned ways to mediate the generative nature of the group's talk.
NASA Astrophysics Data System (ADS)
Adams, April Dean
In this study, the relationships between student beliefs about the nature of science, student attitudes, and conceptual change about the nature of forces were investigated within a traditional and within a constructivistic high school physics classroom. Students in both classrooms were honors students taking a first year high school physics course and were primarily white and middle to upper SES. Students in the traditional classroom were all high ability juniors, and physics instruction was integrated with pre-calculus. Students in the constructivistic classroom were a mixture of juniors and seniors. Due to the interrelated nature of these factors and the complexity of their interactions, a naturalistic inquiry design was chosen. The data sources included videotape of 7-9 weeks of instruction; analysis of the videotapes using the Secondary Teacher Analysis Matrix (Gallagher & Parker, 1995); field notes; pretest/posttest assessment with the Force Concept Inventory (Hestenes, Wells, & Swackhammer, 1992); student responses from the Views on Science-Technology-Society questionnaire (Aikenhead & Ryan, 1992), the Questionnaire for the Assessment of a Science Course (Chiappetta, 1995), and the Constructivist Learning Environment Survey (Taylor, Fraser, & White, 1994); student interviews; and teacher interviews. In the traditional classroom, (a) students did not think that physics was relevant to everyday experiences; (b) high conceptual change students were more likely to have an angular world view (Cobern, 1993) and have views more similar to the teacher's about the nature of science; and (c) high conceptual change students were able to develop an internally consistent understanding of the content; however, that content appeared to be isolated knowledge in some students. In the constructivistic classroom, (a) students saw physics as relevant and useful; (b) there was no difference in world view or agreement with the teacher's views on the nature of science between high and low conceptual change students; (c) students appreciated the importance of empirical evidence; and (d) low conceptual change students had low classroom engagement. Mean gains in conceptual change were larger for the traditional classroom.
Low-lying 1/2- hidden strange pentaquark states in the constituent quark model
NASA Astrophysics Data System (ADS)
Li, Hui; Wu, Zong-Xiu; An, Chun-Sheng; Chen, Hong
2017-12-01
We investigate the spectrum of the low-lying 1/2- hidden strange pentaquark states, employing the constituent quark model, and looking at two ways within that model of mediating the hyperfine interaction between quarks - Goldstone boson exchange and one gluon exchange. Numerical results show that the lowest 1/2- hidden strange pentaquark state in the Goldstone boson exchange model lies at ˜1570 MeV, so this pentaquark configuration may form a notable component in S 11(1535) if the Goldstone boson exchange model is applied. This is consistent with the prediction that S 11(1535) couples very strongly to strangeness channels. Supported by National Natural Science Foundation of China (11675131, 11645002), Chongqing Natural Science Foundation (cstc2015jcyjA00032) and Fundamental Research Funds for the Central Universities (SWU115020)
NASA Astrophysics Data System (ADS)
Taylor, Bryan Keith
Scope and method of study. The context and nature of self-efficacy beliefs provides a vector upon which to explore science instructors' perceptions of their own competence, self beliefs, and beliefs concerning their students as a function of ethnicity (Pajares, 1996). Currently, available cross-sectional data that concomitantly compares efficacy for environmental and general science curricula among instructors with contrasting class ethnicity distributions (CED) (minority vs. non-minority) is diminutive. Here, a modified research instrument that incorporates the Environmental Education Efficacy Belief Instrument (Sia, 1992), the Science Teaching Efficacy Beliefs Instrument (Riggs & Enochs, 1990), and factors 2 & 3 from the Ohio State Teacher Efficacy Scale (Tschannen-Moran & Hoy, 2001) is employed to create a bi-disciplinary four dimensional assessment that measures personal teacher efficacy (PTE), outcome expectancy (OE), classroom management (CM), and student engagement (SE). Instructors' willingness to, and utilization of, practical instruction to reinforce science learning is also assessed. Findings and conclusions. Overall, efficacy levels for environmental and general science curriculum among instructors with high minority CED (n=22) were consistently lower than that of instructors with high non-minority CED (n = 18); consistently diminished efficacy levels were evidenced upon analysis of CED and all independent variables analyzed. While all four dimensions of efficacy were consistently low for instructors with high minority CED, markedly low mean CM and SE responses were evidenced. A link exists between teacher self-efficacy and the conditions present that impinge on the successful completion of work goals (Metz, 1978). Many studies have examined the lowered-level of minority involvement in environmental careers, issues, and concerns (Taylor, 1989). While all science instructors were willing to utilize outdoor classrooms, markedly lower outdoor classroom utilization was evidenced among instructors with high minority CED. The consistently low efficacy scores referenced herein for science instructors with high minority CED can be utilized to highlight science teacher efficacy as a critical point of concern as well as a crucial factor in tracing the genesis of the minority achievement gap in science. This research provides for the determination of efficacy as a contributive factor within the pathway for substantive rationale underlying the lack of minority representation and achievement within the many disciplines of science.
Understanding nature of science as progressive transitions in heuristic principles
NASA Astrophysics Data System (ADS)
Niaz, Mansoor
2001-11-01
This study has the following objectives: (a) understand nature of science as progressive transitions in heuristic principles as conceptualized by Schwab (1962); (b) reformulate Smith and Scharmann's characterization of nature of science (Smith & Scharmann, 1999) in the light of evidence from history and philosophy of science; and (c) provide a rationale for the inclusion of three more characteristics of nature of science, to the original five suggested by Smith and Scharmann. It is concluded that nature of science manifests in the different topics of the science curriculum as heuristic principles. Science education, by emphasizing not only the empirical nature of science but also the underlying heuristic principles, can facilitate conceptual understanding.
Determination of the number of ψ(3686) events at BESIII
NASA Astrophysics Data System (ADS)
Ablikim, M.; Achasov, M. N.; Ai, X. C.; Ambrose, D. J.; Amoroso, A.; An, F. F.; An, Q.; Bai, J. Z.; Baldini Ferroli, R.; Ban, Y.; Bennett, J. V.; Bertani, M.; Bian, J. M.; Boger, E.; Bondarenko, O.; Boyko, I.; Briere, R. A.; Cai, H.; Cai, X.; Cakir, O.; Calcaterra, A.; Cao, G. F.; Cetin, S. A.; Chang, J. F.; Chelkov, G.; Chen, G.; Chen, H. S.; Chen, J. C.; Chen, M. L.; Chen, S. J.; Chen, X.; Chen, X. R.; Chen, Y. B.; Chu, X. K.; Chu, Y. P.; Cronin-Hennessy, D.; Dai, H. L.; Dai, J. P.; Dedovich, D.; Deng, Z. Y.; Denig, A.; Denysenko, I.; Destefanis, M.; Ding, Y.; Dong, C.; Dong, J.; Dong, L. Y.; Dong, M. Y.; Du, S. X.; Fan, J. Z.; Fang, J.; Fang, S. S.; Fang, Y.; Fava, L.; Feldbauer, F.; Feng, C. Q.; Fu, C. D.; Gao, Q.; Gao, Y.; Goetzen, K.; Gong, W. X.; Gradl, W.; Greco, M.; Gu, M. H.; Gu, Y. T.; Guan, Y. H.; Guo, A. Q.; Guo, Y. P.; Han, Y. L.; Harris, F. A.; He, K. L.; He, M.; Held, T.; Heng, Y. K.; Hou, Z. L.; Hu, H. M.; Hu, T.; Huang, G. S.; Huang, J. S.; Huang, L.; Huang, X. T.; Hussain, T.; Ji, Q.; Ji, Q. P.; Ji, X. B.; Ji, X. L.; Jiang, L. L.; Jiang, X. S.; Jiao, J. B.; Jiao, Z.; Jin, D. P.; Jin, S.; Johansson, T.; Kalantar-Nayestanaki, N.; Kang, X. L.; Kang, X. S.; Kavatsyuk, M.; Kloss, B.; Kopf, B.; Kornicer, M.; Kupsc, A.; Kühn, W.; Lai, W.; Lange, J. S.; Lara, M.; Larin, P.; Li, C. H.; Li, Cheng; Li, D. M.; Li, F.; Li, G.; Li, H. B.; Li, J. C.; Li, Kang; Li, Ke; Li, Lei; Li, P. R.; Li, Q. J.; Li, W. D.; Li, W. G.; Li, X. L.; Li, X. N.; Li, X. Q.; Li, X. R.; Li, Z. B.; Liang, H.; Liang, Y. F.; Liang, Y. T.; Liao, G. R.; Lin, D. X.; Liu, B. J.; Liu, C. X.; Liu, F. H.; Liu, Fang.; Liu, Feng.; Liu, H. B.; Liu, H. M.; Liu, Huihui.; Liu, J.; Liu, J. P.; Liu, K.; Liu, K. Y.; Liu, Q.; Liu, S. B.; Liu, X.; Liu, Y. B.; Liu, Z. A.; Liu, Zhiqiang.; Liu, Zhiqing.; Loehner, H.; Lou, X. C.; Lu, H. J.; Lu, H. L.; Lu, J. G.; Lu, Y.; Lu, Y. P.; Luo, C. L.; Luo, M. X.; Luo, T.; Luo, X. L.; Lv, M.; Lyu, X. R.; Ma, F. C.; Ma, H. L.; Ma, Q. M.; Ma, S.; Ma, T.; Ma, X. Y.; Maas, F. E.; Maggiora, M.; Mao, Y. J.; Mao, Z. P.; Messchendorp, J. G.; Min, J.; Min, T. J.; Mitchell, R. E.; Mo, X. H.; Mo, Y. J.; Morales Morales, C.; Moriya, K.; Muchnoi, N. Yu.; Muramatsu, H.; Nefedov, Y.; Nikolaev, I. B.; Ning, Z.; Nisar, S.; Niu, S. L.; Niu, X. Y.; Olsen, S. L.; Ouyang, Q.; Pacetti, S.; Pelizaeus, M.; Peng, H. P.; Peters, K.; Ping, J. L.; Ping, R. G.; Poling, R.; Qi, M.; Qian, S.; Qiao, C. F.; Qin, X. S.; Qin, Z. H.; Qiu, J. F.; Rashid, K. H.; Redmer, C. F.; Ripka, M.; Rong, G.; Sarantsev, A.; Schoenning, K.; Shan, W.; Shao, M.; Shen, C. P.; Shen, X. Y.; Sheng, H. Y.; Shepherd, M. R.; Song, W. M.; Song, X. Y.; Sosio, S.; Spataro, S.; Sun, G. X.; Sun, J. F.; Sun, S. S.; Sun, Y. J.; Sun, Y. Z.; Sun, Z. J.; Tang, C. J.; Tang, X.; Tapan, I.; Thorndike, E. H.; Toth, D.; Uman, I.; Varner, G. S.; Wang, B.; Wang, D.; Wang, D. Y.; Wang, K.; Wang, L. L.; Wang, L. S.; Wang, M.; Wang, P.; Wang, P. L.; Wang, Q. J.; Wang, W.; Wang, X. F.; Wang(Yadi, Y. D.; Wang, Y. F.; Wang, Y. Q.; Wang, Z.; Wang, Z. G.; Wang, Z. Y.; Wei, D. H.; Weidenkaff, P.; Wen, S. P.; Wiedner, U.; Wolke, M.; Wu, L. H.; Wu, Z.; Xia, L. G.; Xia, Y.; Xiao, D.; Xiao, Z. J.; Xie, Y. G.; Xiu, Q. L.; Xu, G. F.; Xu, L.; Xu, Q. J.; Xu, Q. N.; Xu, X. P.; Yan, W. B.; Yan, Y. H.; Yang, H. X.; Yang, Y.; Yang, Y. X.; Ye, H.; Ye, M.; Ye, M. H.; Yu, B. X.; Yu, C. X.; Yu, J. S.; Yuan, C. Z.; Yuan, Y.; Zafar, A. A.; Zeng, Y.; Zhang, B. X.; Zhang, B. Y.; Zhang, C. C.; Zhang, D. H.; Zhang, H. H.; Zhang, H. Y.; Zhang, J. J.; Zhang, J. Q.; Zhang, J. W.; Zhang, J. Y.; Zhang, J. Z.; Zhang, L.; Zhang, R.; Zhang, S. H.; Zhang, X. J.; Zhang, X. Y.; Zhang, Y. H.; Zhang, Yao.; Zhang, Z. H.; Zhang, Z. P.; Zhang, Z. Y.; Zhao, G.; Zhao, J. W.; Zhao, J. Z.; Zhao, Lei; Zhao, Ling.; Zhao, M. G.; Zhao, Q.; Zhao, Q. W.; Zhao, S. J.; Zhao, T. C.; Zhao, Y. B.; Zhao, Z. G.; Zhemchugov, A.; Zheng, B.; Zheng, J. P.; Zheng, Y. H.; Zhong, B.; Zhou, L.; Zhou, X.; Zhou, X. K.; Zhou, X. R.; Zhou, X. Y.; Zhu, K.; Zhu, K. J.; Zhu, X. L.; Zhu, Y. C.; Zhu, Y. S.; Zhu, Z. A.; Zhuang, J.; Zou, B. S.; Zou, J. H.; BESIII Collaboration
2018-02-01
The numbers of ψ(3686) events accumulated by the BESIII detector for the data taken during 2009 and 2012 are determined to be (107.0+/- 0.8)× {10}6 and (341.1+/- 2.1)× {10}6, respectively, by counting inclusive hadronic events, where the uncertainties are systematic and the statistical uncertainties are negligible. The number of events for the sample taken in 2009 is consistent with that of the previous measurement. The total number of ψ(3686) events for the two data taking periods is (448.1+/- 2.9)× {10}6. Supported by the Ministry of Science and Technology of China (2009CB825200), National Natural Science Foundation of China (NSFC) (11235011, 11322544, 11335008, 11425524, 11475207), the Chinese Academy of Sciences (CAS) Large-Scale Scientific Facility Program, the Collaborative Innovation Center for Particles and Interactions (CICPI), Joint Large-Scale Scientific Facility Funds of the NSFC and CAS (11179014), Joint Large-Scale Scientific Facility Funds of the NSFC and CAS (11179007, U1232201, U1532257, U1532258), Joint Funds of the National Natural Science Foundation of China (11079008), CAS (KJCX2-YW-N29, KJCX2-YW-N45), 100 Talents Program of CAS, National 1000 Talents Program of China, German Research Foundation DFG (Collaborative Research Center CRC 1044), Istituto Nazionale di Fisica Nucleare, Italy, Koninklijke Nederlandse Akademie van Wetenschappen (KNAW) (530-4CDP03), Ministry of Development of Turkey (DPT2006K-120470), National Natural Science Foundation of China (11205082), The Swedish Research Council, U. S. Department of Energy (DE-FG02-05ER41374, DE-SC-0010118, DE-SC-0010504), U.S. National Science Foundation, University of Groningen (RuG) and the Helmholtzzentrum fuer Schwerionenforschung GmbH (GSI), Darmstadt, WCU Program of National Research Foundation of Korea (R32-2008-000-10155-0).
ERIC Educational Resources Information Center
Kutluca, A. Y.; Aydin, A.
2017-01-01
The study explored the changes in pre-service science teachers' understanding of the nature of science and their opinions about the nature of science, science teaching and argumentation after their participation in explicit nature of science (NOS) and socioscientific argumentation processes. The participants were 56 third-grade pre-service science…
Can economics be a physical science?
NASA Astrophysics Data System (ADS)
Foley, Duncan K.
2016-12-01
Economics and other social sciences stem from the same methodological scientific revolution that gave birth to the natural sciences. The natural and social sciences share a commitment to the dialectical process of theory formation on the basis of empirical findings and theory revision to incorporate empirical anomalies. Claims that the subject matter of social and natural sciences differ qualitatively in terms of mathematical formalism, statistical modeling, or reductionism are unconvincing. The notion of a "value-free" character to natural sciences fails historical and critical tests. Natural and social sciences share an ideological component in their representation of the relation between the subject and the external natural and social world. Natural sciences arise from the struggles of human beings with nature in the process of social reproduction, while social sciences arise from the struggles of human beings with each other and with the class divisions social reproduction imposes.
More Authors, More Institutions, and More Funding Sources: Hot Papers in Biology from 1991 to 1993.
ERIC Educational Resources Information Center
Haiqi, Zhang
1997-01-01
A bibliometric study analyzed the authorship of biology periodicals, "Nature,""Science," and "Cell" from 1991 to 1993. The source data consisted of "hot papers" in biology and a sample of articles from the three periodicals. Results showed that the hot papers have more authors and participating institutions, and that funding sources are related to…
Japan Report, Science and Technology.
1987-02-06
cyclodextrin, which consists of natural cyclic oligosaccharides . Recently, the author and co-workers have found that methylated CD works as an effective...industry as catalysts for the production of olefin derivatives. This is quite interesting, when we compare it with the shitasu process . Research on...lasers in machin- ing and medicine, particularly in semiconductor processing . According to the Optoelectronic Industry and Technology Development
ERIC Educational Resources Information Center
Lucas, K. C.; Dippenaar, S. M.; Du Toit, P. H.
2014-01-01
Summative assessment qualifies the achievement of a student in a particular field of specialization at a given time. Questions should include a range of cognitive levels from Bloom's taxonomy and be consistent with the learning outcomes of the module in question. Furthermore, a holistic approach to assessment, such as the application of the…
ERIC Educational Resources Information Center
Ryoo, Kihyun; Toutkoushian, Emily; Bedell, Kristin
2018-01-01
Energy and matter are fundamental, yet challenging concepts in middle school chemistry due to their abstract, unobservable nature. Although it is important for science teachers to elicit a range of students' ideas to design and revise their instruction, capturing such varied ideas using traditional assessments consisting of multiple-choice items…
USDA-ARS?s Scientific Manuscript database
Phytopthora ramorum populations are clonal and consist of three clonal lineages. EU1 is the only lineage found in Europe with a few isolated nursery infections in the USA, NA1 is associated with natural infestations in California and Oregon as well as some nursery infections in North America, and NA...
NASA Astrophysics Data System (ADS)
Hemler, Debra A.
1997-11-01
The purpose of this study was to examine the effectiveness of the preservice teacher component of the Research Experiences in Teacher Preparation (RETP) project aimed at enhancing teacher perceptions of the nature of science, science research, and science teaching. Data was collected for three preservice teacher groups during the three phases of the program: (I) a one week institute held at the National Radio Astronomy Observatory in Green Bank, West Virginia where teachers performed astronomy research using a 40 foot diameter radio telescope; (II) a secondary science methods course; and (III) student teaching placements. Four Likert-type instruments were developed and administered pre and post-institute to assess changes in perceptions of science, attitudes toward research, concerns about implementing research in the classroom, and evaluation of the institute. Instruments were re-administered following the methods course and student teaching. Observations of classroom students conducting research were completed for seven preservice teacher participants in their student teaching placements. Analysis, using t-tests, showed a significant increase in preservice teachers perceptions of their ability to do research. Preservice teachers were not concerned about implementing research in their placements. No significant change was measured in their understanding of the nature of science and science teaching. Concept maps demonstrated a significant increase in radio astronomy content knowledge. Participants responded that the value of institute components, quality of the research elements, and preparation for implementing research in the classroom were "good" to "excellent". Following the methods course (Phase II) no significant change in their understanding of the nature of science or concerns about implementing projects in the classroom were measured. Of the 7 preservice teachers who were observed implementing research projects, 5 projects were consistent with the Green Bank model. Student teachers who had initiated research in their classrooms had fewer concerns about doing them than those that had not. No significant change was measured in their perceptions of science and science teaching. The RETP project serves as a viable constructivist model for exposing preservice teachers to science research and transferring that experience to the classroom.
Sciences of the brain: The long road to scientific maturity and to present-day reductionism.
Le Moal, Michel; Swendsen, Joël
2015-01-01
When examined in a long-term perspective, brain sciences demonstrate certain conceptual consistencies as well as theoretical oppositions that have lasted for centuries, ever since Ancient Greece. The neurosciences have progressed more on the basis of technological than conceptual advances, and the constant recuperation of new techniques from other sciences have led to a continually reductionist view of the brain and its functions. In a different perspective, if not opposite to the reductionism, are the psychological constructs and those that constitute the functional unity of individuals, which are still mysterious. In fact, the gap between these two approaches has never been larger than it is now. This chapter discusses the enduring nature of some of these problems and their recent consequences. Copyright © 2015 Académie des sciences. Published by Elsevier SAS. All rights reserved.
Fort Collins Science Center: Policy Analysis and Science Assistance
Lamb, Berton L.
2004-01-01
PASA's mission is to integrate biological, social, and economic research so that resource managers can use the resulting information to make informed decisions and resolve resource management conflicts. PASA scientists pursue and conduct scientific analyses that help agencies and Native American tribes to (1) identify impending policy controversies and areas where social and natural science research is needed to address future policy questions; (2) develop methods and approaches to assist researchers in preparing scientific evidence; (3) assess habitat alteration in a manner consistent with policy needs; and (4) evaluate policy options. Branch scientists also evaluate policy options (e.g., effects of different land treatments, fish and wildlife management practices, or visitor/recreation management practices) in response to specific questions faced by policymakers and managers.
The Nature of Science in Science Curricula: Methods and Concepts of Analysis
ERIC Educational Resources Information Center
Ferreira, Sílvia; Morais, Ana M.
2013-01-01
The article shows methods and concepts of analysis of the nature of science in science curricula through an exemplary study made in Portugal. The study analyses the extent to which the message transmitted by the Natural Science curriculum for Portuguese middle school considers the nature of science. It is epistemologically and sociologically…
Interfacing DNA nanodevices with biology: challenges, solutions and perspectives
NASA Astrophysics Data System (ADS)
Vinther, Mathias; Kjems, Jørgen
2016-08-01
The cellular machinery performs millions of complex reactions with extreme precision at nanoscale. From studying these reactions, scientists have become inspired to build artificial nanosized molecular devices with programmed functions. One of the fundamental tools in designing and creating these nanodevices is molecular self-assembly. In nature, deoxyribonucleic acid (DNA) is inarguably one of the most remarkable self-assembling molecules. Governed by the Watson-Crick base-pairing rules, DNA assembles with a structural reliability and predictability based on sequence composition unlike any other complex biological polymer. This consistency has enabled rational design of hundreds of two- and three-dimensional shapes with a molecular precision and homogeneity not preceded by any other known technology at the nanometer scale. During the last two decades, DNA nanotechnology has undergone a rapid evolution pioneered by the work of Nadrian Seeman (Kallenbach et al 1983 Nature 205 829-31). Especially the introduction of the versatile DNA Origami technique by Rothemund (2006 Nature 440 297-302) led to an efflorescence of new DNA-based self-assembled nanostructures (Andersen et al 2009 Nature 459 73-6, Douglas et al 2009 Nature 459 414-8, Dietz et al 2009 Science 325 725-30, Han et al 2011 Science 332 342-6, Iinuma et al 2014 Science 344 65-9), and variations of this technique have contributed to an increasing repertoire of DNA nanostructures (Wei et al 2012 Nature 485 623-6, Ke et al 2012 Science 338 1177-83, Benson et al 2015 Nature 523 441-4, Zhang et al 2015 Nat. Nanotechnol. 10 779-84, Scheible et al 2015 Small 11 5200-5). These advances have naturally triggered the question: What can these DNA nanostructures be used for? One of the leading proposals of use for DNA nanotechnology has been in biology and biomedicine acting as a molecular ‘nanorobot’ or smart drug interacting with the cellular machinery. In this review, we will explore and examine the perspective of DNA nanotechnology for such use. We summarize which requirements DNA nanostructures must fulfil to function in cellular environments and inside living organisms. In addition, we highlight recent advances in interfacing DNA nanostructures with biology.
Putting humans in ecology: consistency in science and management.
Hobbs, Larry; Fowler, Charles W
2008-03-01
Normal and abnormal levels of human participation in ecosystems can be revealed through the use of macro-ecological patterns. Such patterns also provide consistent and objective guidance that will lead to achieving and maintaining ecosystem health and sustainability. This paper focuses on the consistency of this type of guidance and management. Such management, in sharp contrast to current management practices, ensures that our actions as individuals, institutions, political groups, societies, and as a species are applied consistently across all temporal, spatial, and organizational scales. This approach supplants management of today, where inconsistency results from debate, politics, and legal and religious polarity. Consistency is achieved when human endeavors are guided by natural patterns. Pattern-based management meets long-standing demands for enlightened management that requires humans to participate in complex systems in consistent and sustainable ways.
Jauho, Mikko
2016-04-01
The article looks at conceptions of science and expertise among lay proponents of the low-carbohydrate high-fat diet in Finland. The research data consist of comments on a webpage related to a debate on the health dangers of animal fats screened in Finnish national television in autumn 2010. The article shows that contrary to the prevailing image advocated by the national nutritional establishment, which is based on the deficit model of public understanding of science, the low-carbohydrate high-fat proponents are neither ignorant about scientific facts nor anti-science. Rather, they express nuanced viewpoints about the nature of science, the place of individual experience in nutritional recommendations and the reliability of experts. Inspired by discussions on the social construction of ignorance, the article argues that the low-carbohydrate high-fat proponents are engaged in what it callsthe social construction of competencewhen they present their position as grounded in science and stylize themselves as lay experts. © The Author(s) 2014.
ERIC Educational Resources Information Center
Faikhamta, Chatree
2013-01-01
The nature of science (NOS) has become a central goal of science education in many countries. This study sought an understanding of the extent to which a nature of science course (NOSC), designed according to the conceptualization of pedagogical content knowledge (PCK) for teaching nature of science (NOS), affects in-service science teachers'…
ERIC Educational Resources Information Center
Matkins, Juanita Jo; Bell, Randy; Irving, Karen; McNall, Rebecca
Science educators have identified the development of accurate understandings of the nature of science as an instruction goal for nearly a century. Unfortunately, science instructors are unlikely to focus on the nature of science in content courses and the nature of science lessons are generally relegated to the methods courses where they are…
NASA Astrophysics Data System (ADS)
Guo, Feng; Zhang, Hong; Hu, Hai-Quan; Cheng, Xin-Lu; Zhang, Li-Yan
2015-11-01
We investigate the Hugoniot curve, shock-particle velocity relations, and Chapman-Jouguet conditions of the hot dense system through molecular dynamics (MD) simulations. The detailed pathways from crystal nitromethane to reacted state by shock compression are simulated. The phase transition of N2 and CO mixture is found at about 10 GPa, and the main reason is that the dissociation of the C-O bond and the formation of C-C bond start at 10.0-11.0 GPa. The unreacted state simulations of nitromethane are consistent with shock Hugoniot data. The complete pathway from unreacted to reacted state is discussed. Through chemical species analysis, we find that the C-N bond breaking is the main event of the shock-induced nitromethane decomposition. Project supported by the National Natural Science Foundation of China (Grant No. 11374217) and the Shandong Provincial Natural Science Foundation, China (Grant No. ZR2014BQ008).
Learning and Teaching about the Nature of Science through Process Skills
ERIC Educational Resources Information Center
Mulvey, Bridget K.
2012-01-01
This dissertation, a three-paper set, explored whether the process skills-based approach to nature of science instruction improves teachers' understandings, intentions to teach, and instructional practice related to the nature of science. The first paper examined the nature of science views of 53 preservice science teachers before and after a…
Kick-Starting the Nature of Science
ERIC Educational Resources Information Center
Bull, Ally; Joyce, Chris; Spiller, Lorraine; Hipkins, Rosemary
2010-01-01
Nature of Science is the core strand of science in "The New Zealand Curriculum". This resource aims to support teachers to understand the different aspects of the Nature of Science and what this might mean in practice. All aspects of this strand are covered: Understanding about science; Investigating in science; Communicating in science;…
The Sustainable Development Goals - conceptual approaches for science and research projects
NASA Astrophysics Data System (ADS)
Schmalzbauer, Bettina; Visbeck, Martin
2017-04-01
Challenged to provide answers to some of the world's biggest societal and environmental problems, the scientific community has consistently delivered exciting and solid information that is often used to assess the situation in many different parts of the globe to document the anthropogenic cause of environmental changes and to provide perspectives on possible development scenarios. With the adoption of the Paris climate agreement and the 2030 Agenda for Sustainable Development (and its 17 Sustainable Development Goals (SDGs)) major issues for society are now in its complexity in implementation. That are: consistency with other political processes (e.g. UNFCCC, IPBES), implementability (e.g. interactions between SDGs, pathways) and measurability (e.g. indicators). We argue that science can contribute to all these aspects by providing fundamental knowledge necessary for decision-making and practical implementation of the SDGs. Cooperation beyond disciplines and national boarders is essential, as well as the integration of concepts and methods of natural and social sciences. The outcome of two international conferences has called out four specific areas where science can make significant contributions towards SDG implementation: First, deep and integrated scientific knowledge is needed for better understanding key interactions, synergies and trade-offs embedded in the SDGs. Second, sound scientific input is needed for co-designing and executing of scientific assessments in the context of the SDG process (going beyond the good examples set by IPCC and IPBES). Third, science can support the establishment of evidence-based procedures for the development of scenarios and identify possible pathways for the world in 2030 or beyond. Fourth, progress on SDG implementation needs to be supported by a meaningful indicator framework, and this framework needs scientific input to refine indicators, and further develop and standardise methods. The main conclusion is that a comprehensive approach is needed that combines basic science and solution-oriented science, and integrates knowledge from natural science, social sciences, engineering and humanities (but also from other knowledge domains) to meet the overall objective of the 2030 Agenda. Foresight, integrated assessment and integrated modelling can be possible successful approaches for knowledge exchange, learning, and identifying possible coherent development pathways towards global sustainability.To ensure rapid and effective uptake of new research results the concepts of co-design of research projects and co-production of knowledge show promise.
Edaq530: A Transparent, Open-End and Open-Source Measurement Solution in Natural Science Education
ERIC Educational Resources Information Center
Kopasz, Katalin; Makra, Peter; Gingl, Zoltan
2011-01-01
We present Edaq530, a low-cost, compact and easy-to-use digital measurement solution consisting of a thumb-sized USB-to-sensor interface and measurement software. The solution is fully open-source, our aim being to provide a viable alternative to professional solutions. Our main focus in designing Edaq530 has been versatility and transparency. In…
ERIC Educational Resources Information Center
Grant, Jacqualine; Patterson, Delaney
2016-01-01
The arts animate learning because they are inherently experiential and because of their potential to develop creative and critical thinking skills in students. These same skills are valued in science, technology, engineering, and math (STEM) education, but the arts have not been consistently included in STEM lessons. We transformed our STEM…
The science between tsunami science and evacuation decisions
NASA Astrophysics Data System (ADS)
McCaughey, J.; Dewi, P. R.; Mundzir, I.; Rosemary, R.; Safrina, L.; Daly, P.; Patt, A.
2014-12-01
The science of rare natural hazards provides us an opportunity that our ancestors lacked: the chance to learn what hazards we could face, and how reliable any particular precursor may or may not be. Connecting hazard science to societal learning is far too complex a challenge for our intuitions to be of much use. Instead, we need to use evidence - the science of science communication - to identify what actually works. As practitioners, we first worked with NGOs and local governments in coastal Sumatran communities to develop tsunami evacuation guidance that is consistent with the science of tsunamis and suitable for the communities that face the threat. This work identified important practical questions that social science can address: how do people decide whether to evacuate, and how do hazard knowledge and experience influence this? How acceptable are false alarms? What modes of communicating tsunami science and its uncertainties may lead to greater willingness to evacuate, and greater acceptance of false alarms? Which parts of the vast body of research on communication, risk perception, and decision-making might be significant in these contexts? We are beginning research at the household level that will address these questions and feed back into our continuing science-communication practice.
Science Education and the Nature of Nature: Bruno Latour's Ontological Politics
ERIC Educational Resources Information Center
Gleason, Tristan
2017-01-01
This article explores recent developments in the field of science and technology, and the work of Bruno Latour in particular, to problematize the nature of Nature in science education. Although science and technology studies, and the scholarship on science education alike, have become increasingly attentive to the antidemocratic habits of science…
NASA Astrophysics Data System (ADS)
Narasimhan, T. N.
2008-01-01
SummaryIn a world with water resources severely impacted by technology, science must actively contribute to water law. To this end, this paper is an earth scientist's attempt to comprehend essential elements of water law, and to examine their connections to science. Science and law share a common logical framework of starting with a priori prescribed tenets, and drawing consistent inferences. In science, observationally established physical laws constitute the tenets, while in law, they stem from social values. The foundations of modern water law in Europe and the New World were formulated nearly two thousand years ago by Roman jurists who were inspired by Greek philosophy of reason. Recognizing that vital natural elements such as water, air, and the sea were governed by immutable natural laws, they reasoned that these elements belonged to all humans, and therefore cannot be owned as private property. Legally, such public property was to be governed by jus gentium, the law of all people or the law of all nations. In contrast, jus civile or civil law governed private property. Remarkably, jus gentium continues to be relevant in our contemporary society in which science plays a pivotal role in exploiting vital resources common to all. This paper examines the historical roots of modern water law, follows their evolution through the centuries, and examines how the spirit of science inherent in jus gentium is profoundly influencing evolving water and environmental laws in Europe, the United States and elsewhere. In a technological world, scientific knowledge has to lie at the core of water law. Yet, science cannot formulate law. It is hoped that a philosophical understanding of the relationships between science and law will contribute to their constructively coming together in the service of society.
Physical applications of GPS geodesy: a review.
Bock, Yehuda; Melgar, Diego
2016-10-01
Geodesy, the oldest science, has become an important discipline in the geosciences, in large part by enhancing Global Positioning System (GPS) capabilities over the last 35 years well beyond the satellite constellation's original design. The ability of GPS geodesy to estimate 3D positions with millimeter-level precision with respect to a global terrestrial reference frame has contributed to significant advances in geophysics, seismology, atmospheric science, hydrology, and natural hazard science. Monitoring the changes in the positions or trajectories of GPS instruments on the Earth's land and water surfaces, in the atmosphere, or in space, is important for both theory and applications, from an improved understanding of tectonic and magmatic processes to developing systems for mitigating the impact of natural hazards on society and the environment. Besides accurate positioning, all disturbances in the propagation of the transmitted GPS radio signals from satellite to receiver are mined for information, from troposphere and ionosphere delays for weather, climate, and natural hazard applications, to disturbances in the signals due to multipath reflections from the solid ground, water, and ice for environmental applications. We review the relevant concepts of geodetic theory, data analysis, and physical modeling for a myriad of processes at multiple spatial and temporal scales, and discuss the extensive global infrastructure that has been built to support GPS geodesy consisting of thousands of continuously operating stations. We also discuss the integration of heterogeneous and complementary data sets from geodesy, seismology, and geology, focusing on crustal deformation applications and early warning systems for natural hazards.
NASA Astrophysics Data System (ADS)
Qin, Haiyun; Zhao, Wei; Zhang, Chen; Liu, Yong; Wang, Guiren; Wang, Kaige
2018-03-01
Not Available Project supported by the National Natural Science Foundation of China (Grant Nos. 11672229 and 61378083), International Cooperation Foundation of the National Science and Technology Major Project of the Ministry of Science and Technology of China (Grant No. 2011DFA12220), Major Research Plan of the National Natural Science Foundation of China (Grant No. 91123030), Natural Science Foundation of Shaanxi Province of China (Grant Nos. 2010JS110 and 2013SZS03-Z01), Natural Science Basic Research Program of Shaanxi Province — Major Basic Research Project, China (Grant No. 2016ZDJC-15), Young Scientist Fund of the National Natural Science Foundation of China (Grant No. 11504294), and the Youth Talent Plan of the Natural Science Foundation of Shaanxi Province of China (Grant No. 2016JQ103).
NASA Astrophysics Data System (ADS)
Kenyon, Lisa Orvik
Reform efforts have placed strong emphasis on teaching practices that should help students learn about the nature of science. Researchers have examined two general instructional approaches, explicit and implicit, believed to be useful in teaching science. Of these two approaches, researchers emphasize explicit instruction as the more effective approach when enhancing students' views of the scientific endeavor (Abd-El-Khalick & Lederman, 2000; Bell, 2001; Billeh & Hasan, 1975; Carey & Stauss, 1968; Schwartz et al., 2000). Furthermore, recent studies (Schwartz et al ., 2000, 2001) indicate that teaching science inquiry through investigative activities and reflective discussions have demonstrated to be most effective for understanding science. The purpose of this study was to describe the effect of explicit, inquiry instruction on the understanding of freshman college science majors regarding the nature of science. Participants included 74 freshman college science majors, 50 students in the experimental group and 24 students in the control group. The experimental group was exposed to the treatment of the study, which took place in a Succeeding in Science course. The course content included explicit instruction on the nature of science, emphasizing scientific inquiry and the processes that scientists carry out in their work. The course reflected three aspects of inquiry-based science that are discussed in the Inquiry and the National Science Education Standards (2000) which are (1) to learn the principles and concepts of science; (2) to participate in scientific investigations; and (3) to reflect on the epistemology of science. The research design of this study used a pretest-posttest instrument, The Views of Nature of Science Questionnaire Form C (VNOS-C) (Lederman et al., 2001) and an essay paper at the end of the course to assess students' understanding about the nature of science. The results from the VNOS-C were analyzed using analysis of covariance in which the dependent variable was student understanding of science as measured by the posttest, and the covariate was student understanding of nature of science as measured by the pretest. The results indicated that the understanding of the nature of science of freshman college science majors who have participated in explicit, inquiry instruction is statistically greater than the understanding of the nature of science of freshman college science majors who have participated in traditional instruction. The essays provided insight into the apparent increase in student understanding of the nature of science. The results from pretesting and posttesting indicated that a one-semester credit hour course, which focuses directly on teaching about the nature of science can improve freshman science majors' understanding of the nature of science.
NASA Astrophysics Data System (ADS)
Alegria, Adelina Victoria
The goal of this study was to explore bilingual and English-only elementary teachers' science knowledge, their conceptions of the nature of science, their attitudes about teaching science, and their self-reported science instructional skills. In this study, a bilingual teacher was defined as a teacher who provides instruction in Spanish and English in core academic subjects and has completed and/or is completing a bilingual certification program. An English-only teacher was defined as a monolingual teacher that only speaks and instructs in English. The principal questions guiding this dissertation investigation were the following: How do bilingual elementary teachers differ from English-only elementary teachers in (a) their science knowledge, (b) their conceptions of the nature of science, (c) their attitude about teaching science, and (d) their self-reported science instructional skills? This dissertation study is a component of a three-year long Eisenhower Project granted to Hueneme School District and the University of California, Santa Barbara Southcoast Science Project. While the Project will last three years (1997--2000), this dissertation study was developed to answer only a subset of questions of the entire project and data was collected in 1998. The research design for this study consisted of a self-administered questionnaire that was given to Hueneme School District elementary teachers that teach science and was developed by reviewing the relevant literature about teachers' science knowledge, their conceptions of the nature of science, their attitudes about teaching science, and the instructional strategies that support science learning. The findings showed that both the bilingual and the English-only respondents demonstrated a similar science knowledge base, which is suggested, by this researcher, to be limited. That both bilingual and English-only teacher respondents demonstrated similar positive attitudes about teaching science and both reported making use of similar instructional strategies, many of which are known to support science learning in the classroom (laboratory/hands-on activities, whole group discussion, questioning, and cooperative/small group activities). Concerning assessment strategies, both the bilingual and English-only groups reported very similar answers. They reported usually making use of students' projects, student's logs/journals/diaries, performance activities such as lab practicals and hands-on tests to assess science learning. They also reported seldom or never making use of paper/pencil quizzes nor end-of-chapter/unit tests. There was not enough clear information to decide whether bilingual and English-only elementary respondents hold similar or different views of science. This study's implications encompass two different areas: (a) changes that bilingual and elementary credentialing programs need to undergo and (b) further bilingual science teaching research. The findings concerned with science knowledge, that both bilingual and English-only elementary teachers possess a limited science knowledge base leads me to suggest, just as the science teaching literature has suggested, that elementary credentialing programs need to strengthen their candidates' science content by increasing the science content addressed in the science methodology courses and/or by requiring a greater number of science undergraduate courses (most liberal arts majors require no more than five courses, San Diego State University, 1999). (Abstract shortened by UMI.)
Changing epistemological beliefs with nature of science implementations
NASA Astrophysics Data System (ADS)
Johnson, Keith; Willoughby, Shannon
2018-06-01
This article discusses our investigation regarding nature of science (NOS) implementations and epistemological beliefs within an undergraduate introductory astronomy course. The five year study consists of two years of baseline data in which no explicit use of NOS material was implemented, then three years of subsequent data in which specific NOS material was integrated into the classroom. Our original study covered two years of baseline data and one year of treatment data. Two additional years of treatment course data have revealed intriguing new insights into our students' epistemic belief structure. To monitor the evolution of belief structures across each semester we used student pre-post data on the Epistemological Beliefs About the Physical Sciences (EBAPS) assessment. The collected data were also partitioned and analyzed according to the following variables: college (Letters of Science, Business, Education, etc.), degree (BA or BS), status (freshman, sophomore, etc.), and gender (male or female). We find that the treatment course no longer undergoes significant overall epistemic deterioration after a semester of instruction. We also acquire a more detailed analysis of these findings utilizing the aforementioned variables. Most notably, we see that this intervention had a pronounced positive impact on males and on students within the college of Education, Arts & Architecture, and those with no concentration. Lastly, whether or not students believe their ability to learn science is innate or malleable did not seem to change, remaining a rigid construct with student epistemologies.
Thai in-service teacher understanding of nature of science in biology teaching: Case of Mali
NASA Astrophysics Data System (ADS)
Aiemsum-ang, Napapan; Yuenyong, Chokchai
2018-01-01
This paper aimed to investigate the existing ideas of nature of science (NOS) teaching in Thailand biology classroom. The study reported the existing ideas of nature of science (NOS) teaching of one biology teacher Mrs. Mali who had been teaching for 6 years at in a school in Khon Kaen city. Methodology regarded interpretive paradigm. Tools of interpretation included 2 months of classroom observation, interviewing, and questionnaire of NOS. The findings revealed Mali held good understanding of the nature of science in the aspect of the use of evidence, the aspect of knowledge inquiry through different observation and deduction, the aspect of creativity and imagination influencing science knowledge inquiry, and the aspect of changeable scientific knowledge. Her biology teaching indicated that she used both the deficient nature of science approach and the implicit nature of science approach. The implicit nature of science approach was applied mostly in 7 periods and only 2 periods were arranged using the deficient nature of science approach. The paper has implication for professional development and pre-service program on NOS teaching in Thailand.
What is technology? A study of fifth and eighth grade student ideas about the Nature of Technology
NASA Astrophysics Data System (ADS)
Digironimo, Nicole
Most, if not all, standards for science and technology education and curriculum indicate that knowledge of the Nature of Technology is an educational goal, yet the literature lacks an established definition for the Nature of Technology. Additionally, the research on student ideas about the Nature of Technology is insufficient. After reviewing the literature on science and technology education, the philosophy of technology, and the history of technology, this study presents an internally consistent definition for the Nature of Technology. This definition illustrates how the Nature of Technology includes five dimensions: Technology as Artifacts; Technology as a Creation Process; Technology as a Human Practice; The History of Technology; and The Current Role of Technology. Using an interview protocol developed for this study, a small group of 5th and 8th grade students were interviewed to ascertain their ideas about the Nature of Technology. The results indicate that there are a variety of ideas present in the thinking of young people. All of the participants expressed one of two ideas about technological artifacts: technological artifacts are electronic or technological artifacts are invented. All of the participants identified particular skills needed to invent technological artifacts; some of the participants included mobility and concluded that disabled people cannot be inventors. Despite their experiences with technological artifacts (including educational technology tools), a few of the participants were uncertain whether they would identify themselves as technological. More than half of the participants did not believe older artifacts can still be considered technology. Most of the participants were apprehensive about our technological future; the main issue expressed by the participants was the environment. Other than environmental concerns, most of the participants were unable to identify global issues regarding technological use and development. Overall, these findings increase our knowledge of the ideas young people have about the Nature of Technology, which can inform future research on teaching and learning about science and technology.
Informal STEM Education in Antarctica
NASA Astrophysics Data System (ADS)
Chell, K.
2010-12-01
Tourism in Antarctica has increased dramatically with tens of thousands of tourists visiting the White Continent each year. Tourism cruises to Antarctica offer a unique educational experience for lay people through informal science-technology-engineering-mathematics (STEM) education. Passengers attend numerous scientific lectures that cover topics such as the geology of Antarctica, plate tectonics, glaciology, and climate change. Furthermore, tourists experience the geology and glaciology first hand during shore excursions. Currently, the grand challenges facing our global society are closely connected to the Earth sciences. Issues such as energy, climate change, water security, and natural hazards, are consistently on the legislative docket of policymakers around the world. However, the majority of the world’s population is uninformed about the role Earth sciences play in their everyday lives. Tourism in Antarctica provides opportunities for informal STEM learning and, as a result, tourists leave with a better understanding and greater appreciation for both Antarctica and Earth sciences.
ERIC Educational Resources Information Center
Wan, Zhi Hong; Wong, Siu Ling; Zhan, Ying
2013-01-01
Nature of science (NOS) is beginning to find its place in the science education in China. In a study which investigated Chinese science teacher educators' conceptions of teaching NOS to prospective science teachers through semi-structured interviews, five key dimensions emerged from the data. This paper focuses on the dimension, "NOS content…
More than a Museum: Natural History is Relevant in 21st Century Environmental Science
NASA Astrophysics Data System (ADS)
Hernandez, R. R.; Murphy-Mariscal, M. L.; Barrows, C. W.
2015-12-01
In the Anthropocene, the relevancy of natural history in environmental science is challenged and marginalized today more than ever. We tested the hypothesis that natural history is relevant to the fields of environmental science and ecology by assessing the values, needs, and decisions related to natural history of graduate students and environmental science professionals across 31 universities and various employers, respectively, in California. Graduate students surveyed (93.3%) agreed that natural history was relevant to science, approximately 70% believed it "essential" for conducting field-based research; however, 54.2% felt inadequately trained to teach a natural history course and would benefit from additional training in natural history (> 80%). Of the 185 professionals surveyed, all felt that natural history was relevant to science and "essential" or "desirable" in their vocation (93%). Our results indicate a disconnect between the value and relevancy of natural history in 21st century ecological science and opportunities for gaining those skills and knowledge through education and training.
The nature of science and the preservice elementary teacher: Changes in understanding and practice
NASA Astrophysics Data System (ADS)
Rivas, Michael Gerald
This action research project studies preservice elementary teachers in a science methods course. The purpose of this research project was to enhance preservice teachers' understanding of specific nature of science (NOS) tenets so as to promote equity and access within the elementary science classroom. In particular, I chose five NOS tenets that were listed in the first chapter of the AAAS (1989) document titled, "The Nature of Science," and connected them to equitable educational goals and practices. The theoretical framework guiding this study came from bodies of scholarship relating to the NOS, social constructivism, and action research. This study addressed the following three questions: (1) What opportunities were provided the preservice teachers so that they could enhance their understandings of the NOS? (2) What were the changes in preservice teachers' understanding of the NOS as a result? (3) How did the prospective teachers' understandings of the NOS translate into their classroom practice? The analysis revealed that the science methods course's operational curriculum consisted of implicit and explicit teaching of the NOS, as well as intended and untended NOS tenets. The prospective teachers initially held a limited view of the NOS, but by the end of the course their view had been enhanced. In addition, the participants made direct connections between their new understandings of the NOS and equity and access in the science classroom. In their teaching, the preservice teachers as a group implicitly taught all five of the NOS tenets. In fact, a majority taught three of the five intended tenets. Explicitly, only one tenet was taught, but it was taught with a direct connection to making the science classroom more inclusive. The findings of this study indicate that preservice teachers can have their views of the NOS enhanced even though they may have experienced years of deficient science instruction. They pointed out that this enhanced view of the NOS can be translated into classroom practice. The findings also showed that a direct connection can be made between understandings of the NOS and issues of equity and access at the elementary level.
Can we enhance amphibians' habitat restoration in the post-mining areas?
Klimaszewski, Krzysztof; Pacholik, Ewa; Snopek, Adam
2016-09-01
The study was aimed to evaluate the selected improvements of nature restoration in a depleted gravel pit. The study site consisted of four water reservoirs of different shapes and sizes, flooded after the gravel extraction ended. Ecological succession monitoring, conducted by the Warsaw University of Life Sciences students associated in the Student Scientific Association of Animal Sciences Faculty since the completion of mining, have focused on amphibians. A twofold approach upheld amphibian species population dynamics, as well as selected habitat elements. The restoration practices dedicated to habitat conditions enhancing have been proved to be definitely effective and useful for similar sites.
Grade six students' understanding of the nature of science
NASA Astrophysics Data System (ADS)
Cochrane, Donald Brian
The goal of scientific literacy requires that students develop an understanding of the nature of science to assist them in the reasoned acquisition of science concepts and in their future role as citizens in a participatory democracy. The purpose of this study was to investigate and describe the range of positions that grade six students hold with respect to the nature of science and to investigate whether gender or prior science education was related to students' views of the nature of science. Two grade six classes participated in this study. One class was from a school involved in a long-term elementary science curriculum project. The science curriculum at this school involved constructivist epistemology and pedagogy and a realist ontology. The curriculum stressed hands-on, open-ended activities and the development of science process skills. Students were frequently involved in creating and testing explanations for physical phenomena. The second class was from a matched school that had a traditional science program. Results of the study indicated that students hold a wider range of views of the nature of science than previously documented. Student positions ranged from having almost no understanding of the nature of science to those expressing positions regarding the nature of science that were more developed than previous studies had documented. Despite the range of views documented, all subjects held realist views of scientific knowledge. Contrary to the literature, some students were able to evaluate a scientific theory in light of empirical evidence that they had generated. Results also indicated that students from the project school displayed more advanced views of the nature of science than their matched peers. However, not all students benefited equally from their experiences. No gender differences were found with respect to students' understanding of the nature of science.
The Nature of Science Education for Enhancing Scientific Literacy
ERIC Educational Resources Information Center
Holbrook, Jack; Rannikmae, Miia
2007-01-01
This article explores the meaning of the nature of science education to enhance scientific literacy. It argues that the teaching approach for science education should be regarded as "education through science", rather than "science through education". A model of the nature of science education is proposed, having its foundations based on activity…
ERIC Educational Resources Information Center
Kötter, Mario; Hammann, Marcus
2017-01-01
In this article, the argument is put forth that controversies about the scope and limits of science should be considered in Nature of Science (NOS) teaching. Reference disciplines for teaching NOS are disciplines, which reflect upon science, like philosophy of science, history of science, and sociology of science. The culture of these disciplines…
Reconceptualizing the Nature of Science for Science Education: Why Does it Matter?
ERIC Educational Resources Information Center
Dagher, Zoubeida R.; Erduran, Sibel
2016-01-01
Two fundamental questions about science are relevant for science educators: (a) What is the nature of science? and (b) what aspects of nature of science should be taught and learned? They are fundamental because they pertain to how science gets to be framed as a school subject and determines what aspects of it are worthy of inclusion in school…
DOE Office of Scientific and Technical Information (OSTI.GOV)
Narasimhan, T.N.
In a world with water resources severely impacted bytechnology, science must actively contribute to water law. To this end,this paper is an earth scientist s attempt to comprehend essentialelements of water law, and to examine their connections to science.Science and law share a common logical framework of starting with apriori prescribed tenets, and drawing consistent inferences. In science,observationally established physical laws constitute the tenets, while inlaw, they stem from social values. The foundations of modern water law inEurope and the New World were formulated nearly two thousand years ago byRoman jurists who were inspired by Greek philosophy of reason.Recognizing thatmore » vital natural elements such as water, air, and the seawere governed by immutable natural laws, they reasoned that theseelements belonged to all humans, and therefore cannot be owned as privateproperty. Legally, such public property was to be governed by jusgentium, the law of all people or the law of all nations. In contrast,jus civile or civil law governed private property. Remarkably, jusgentium continues to be relevant in our contemporary society in whichscience plays a pivotal role in exploiting vital resources common to all.This paper examines the historical roots of modern water law, followstheir evolution through the centuries, and examines how the spirit ofscience inherent in jus gentium is profoundly influencing evolving waterand environmental laws in Europe, the United States and elsewhere. In atechnological world, scientific knowledge has to lie at the core of waterlaw. Yet, science cannot formulate law. It is hoped that a philosophicalunderstanding of the relationships between science and law willcontribute to their constructively coming together in the service ofsociety.« less
An Overview of Environmental Education in Middle School Natural Science Courses
ERIC Educational Resources Information Center
Zhanbao, Shu
2004-01-01
Environmental education in middle school natural science courses is based on integrating environmental knowledge into natural science education. Therefore, environmental education objectives should be set as an extension of the objectives for natural science education. However, in order to reach the objectives laid out for environmental education…
76 FR 9598 - Notice of Inventory Completion: Denver Museum of Nature & Science, Denver, CO
Federal Register 2010, 2011, 2012, 2013, 2014
2011-02-18
... Museum of Nature & Science, Denver, CO AGENCY: National Park Service, Interior. ACTION: Notice. SUMMARY: The Denver Museum of Nature & Science has completed an inventory of human remains, in consultation... Nature & Science, 2001 Colorado Blvd., Denver, CO 80205, telephone (303) 370-6378. SUPPLEMENTARY...
ERIC Educational Resources Information Center
Peters-Burton, Erin E.
2013-01-01
To fully incorporate nature of science knowledge into classrooms, teachers must be both proficient in their own nature of science knowledge, but also skillful in translating their knowledge into a learning environment which assesses student knowledge. Twenty-eight inservice teachers enrolled in a graduate course which in part required a clinical…
NASA Astrophysics Data System (ADS)
Phillips, Marianne C.
Science teachers rely heavily on their textbooks; for many, it is the only curriculum they use (Weiss, 1993). Therefore, it is important these materials convey an accurate conception of the nature of science. Science for All Americans (AAAS, 1990) and the National Science Education Standards (NRC, 1996) call for teaching students about the nature of science. Including the nature of science throughout science textbooks will produce scientifically literate citizens (Driver and others, 1993) with an improved ability to make informed decisions (McComas, 1998). Teaching the nature of science supports the successful learning of science content and process (Driver and others, 1996), and bridges the gap between the two cultures of practicing scientists and school science (Sorsby, 2000). Do middle school science textbooks provide a balanced presentation of the nature of science throughout their text? To determine the answer, this investigation used a content analysis technique to analyze a random sample from the introduction chapter and the rest of the textbook chapters from twelve middle school science textbooks for the four aspects of the nature of science (Chiappetta, Fillman, & Sethna, 2004). Scoring procedures were used to determine interrater agreement using both Cohen's kappa (kappa) and Krippendorff's alpha (alpha). Kappa values were determined to be fair to excellent beyond chance among the three coders. The resulting values for Krippendorff's alpha ranged from acceptable (alpha > .80) to unacceptable (alpha < .67). The results from this content analysis indicated little change from previous studies in the balance for the themes of the nature of science. This investigation found the sixth-grade, seventh-grade, and eighth-grade science textbooks adopted by Texas to have unbalanced presentations for the four aspects of the nature of science. In addition, it found these middle school science textbooks are not balanced across programs. This imbalance is providing students with a rudimentary and fragmented view of how science works, despite the fact that science impacts every aspect of life (McComas, 1998). Given the impact of textbooks on learning, it is recommended that teachers be informed of these shortcomings to enable them to supplement content where it is lacking.
NASA Astrophysics Data System (ADS)
DiBenedetto, Christina M.
This study is the first of its kind to explore the thoughts, beliefs, attitudes and values of secondary educators as they experience conceptual change in their understanding of the nature of science learning vis a vis the Framework for K-12 Science Education published by the National Research Council. The study takes aim at the existing gap between the vision for science learning as an active process of inquiry and current pedagogical practices in K-12 science classrooms. For students to understand and explain everyday science ideas and succeed in science studies and careers, the means by which they learn science must change. Focusing on this change, the study explores the significance of educator attitudes, beliefs and values to science learning through interpretive phenomenological analysis around the central question, "In what ways do educators understand and articulate attitudes and beliefs toward the nature of science learning?" The study further explores the questions, "How do educators experience changes in their understanding of the nature of science learning?" and "How do educators believe these changes influence their pedagogical practice?" Study findings converge on four conceptions that science learning: is the action of inquiry; is a visible process initiated by both teacher and learner; values student voice and changing conceptions is science learning. These findings have implications for the primacy of educator beliefs, attitudes and values in reform efforts, science teacher leadership and the explicit instruction of both Nature of Science and conceptual change in educator preparation programs. This study supports the understanding that the nature of science learning is cognitive and affective conceptual change. Keywords: conceptual change, educator attitudes and beliefs, framework for K-12 science education, interpretive phenomenological analysis, nature of science learning, next generation science standards, science professional development, secondary science education.
Coal: Fuel of the Past, Hope of the Future. A Basic Teaching Unit on Energy. Revised.
ERIC Educational Resources Information Center
McDermott, Hugh, Ed.; Scharmann, Larry, Ed.
Recommended for grades 9-12 science and/or social studies classes, this 13-14 day unit is designed to allow students to explore coal and its properties, examining the nature of coal, where it is found, materials made from coal, and the role of coal in the past and its promise for the future. The unit consists of 11 activities with rationale,…
2001-08-08
entropy inequality with independent variables consistent with several natural systems and apply the resulting constitutive theory near equi- librium...1973. [3] L. S. Bennethum and J. H. Cushman. Multiscale , hybrid mixture theory for swelling systems - I: Balance laws. International Journal of...Engineering Science, 34(2):125–145, 1996. [4] L. S. Bennethum and J. H. Cushman. Multiscale , hybrid mixture theory for swelling systems - II: Constitutive
Robert E. Kennedy; Philip A. Townsend; John E. Gross; Warren B. Cohen; Paul Bolstad; Wang Y. Q.; Phyllis Adams
2009-01-01
Remote sensing provides a broad view of landscapes and can be consistent through time, making it an important tool for monitoring and managing protected areas. An impediment to broader use of remote sensing science for monitoring has been the need for resource managers to understand the specialized capabilities of an ever-expanding array of image sources and analysis...
76 FR 14061 - Notice of Inventory Completion: Denver Museum of Nature & Science, Denver, CO
Federal Register 2010, 2011, 2012, 2013, 2014
2011-03-15
... Museum of Nature & Science, Denver, CO AGENCY: National Park Service, Interior. ACTION: Notice. SUMMARY: The Denver Museum of Nature & Science has completed an inventory of human remains and associated... contact the Denver Museum of Nature & Science at the address below by April 14, 2011. ADDRESSES: Dr. Chip...
Nature of Science or Nature of the Sciences?
ERIC Educational Resources Information Center
Schizas, Dimitrios; Psillos, Dimitris; Stamou, George
2016-01-01
The present essay examines the emerging issue of domain-general versus domain-specific nature of science (NOS) understandings from a perspective that illuminates the value of domain-specific philosophies of science for the growth and development of the NOS educational field. Under the assumption that individual sciences do have their own…
Upper Secondary School Pupils' Attitudes towards Natural Science
ERIC Educational Resources Information Center
Akarsu, Bayram; Kariper, Afsin
2013-01-01
Students' attitudes towards natural science constitute an important area in science education as fewer students are interested in natural science and they do not choose corresponding science disciplines in postsecondary education. The current study reports preliminary results of a survey on high school students' interests and attitudes towards…
Epistemological Predictors of Prospective Biology Teachers' Nature of Science Understandings
ERIC Educational Resources Information Center
Köseoglu, Pinar; Köksal, Mustafa Serdar
2015-01-01
The purpose of this study was to investigate epistemological predictors of nature of science understandings of 281 prospective biology teachers surveyed using the Epistemological Beliefs Scale Regarding Science and the Nature of Science Scale. The findings on multiple linear regression showed that understandings about definition of science and…
NASA Astrophysics Data System (ADS)
Brooks, Kristine M.
The goal of science education is the preparation of scientifically literate students (Abd-El-Khalick & Lederman, 2000, & American Association for the Advancement of Science (AAAS), 1990). In order to instruct students in the nature of science with its history, development, methods and applications, science teachers use textbooks as the primary organizer for the curriculum (Chippetta, Ganesh, Lee, & Phillips, 2006). Science textbooks are the dominant instructional tool that exerts great influence on instructional content and its delivery (Wang, 1998). Science and science literacy requires acquiring knowledge about the natural world and understanding its application in society, or, in other words, the nature of science. An understanding of the nature of science is an important part of science literacy (Abd-El-Khalik & Lederman, 2000, & AAAS, 1990). The nature of science has four basic themes or dimensions: science as a body of knowledge, science as a way of thinking, science as a way of investigating, and science with its interaction with technology and society (Chippetta & Koballa, 2006). Textbooks must relay and incorporate these themes to promote science literacy. The results from this content analysis provide further insights into science textbooks and their content with regard to the inclusion of the nature of science and ethnic diversity. Science textbooks usually downplay human influences (Clough & Olson, 2004) whether as part of the nature of science with its historical development or its interaction with societies of diverse cultures. Minority students are underperforming in science and science is divided on ethnic, linguistic, and gender identity (Brown, 2005). Greater representations of diversity in curriculum materials enable minority students to identify with science (Nines, 2000). Textbooks, with their influence on curriculum and presentation, must include links for science and students of diverse cultures. What is the balance of the four aspects of the nature of science and what is the balance of ethnic diversity in the participants in science (students and scientists) in physical science textbooks? To establish an answer to these questions, this investigation used content analysis. For the balance of the four aspects of the nature of science, the analysis was conducted on random page samples of five physical science textbooks. A random sampling of the pages within the physical science textbooks should be sufficient to represent the content of the textbooks (Garcia, 1985). For the balance of ethnic diversity of the participants in science, the analysis was conducted on all pictures or drawings of students and scientists within the content of the five textbooks. One of these IPC books is under current use in a large, local school district and the other four were published during the same, or similar, year. Coding procedures for the sample used two sets of coders. One set of coders have previously analyzed for the nature of science in a study on middle school science textbooks (Phillips, 2006) and the coders for ethnic diversity are public school teachers who have worked with ethnically diverse students for over ten years. Both sets of coders were trained and the reliability of their coding checked before coding the five textbooks. To check for inter-coder reliability, percent agreement, Cohen's kappa and Krippendorff's alpha were calculated. The results from this study indicate that science as a body of knowledge and science as a way of investigating are the prevalent themes of the nature of science in the five physical science textbooks. This investigation also found that there is an imbalance in the ethnic diversity of students and scientists portrayed within the chapters of the physical science textbooks studied. This imbalance reflects ratios that are neither equally balanced nor in align with the U.S. Census. Given that textbooks are the main sources of information in most classrooms, the imbalance of the nature of science could provide the students, and the teachers, with an incomplete perception and understanding of the nature of science. This imbalance could also provide the students with inadequate skills to develop and process science information and apply it to their world. The ethnic diversity portrayed in the physical science textbooks provides an inadequate link between the students' ethnic backgrounds and the ethnic diversity of the participants of science. Educators and publishers should provide science textbooks that incorporate all four aspects of the nature of science to a degree that science is perceived as more than just facts and information. Science must be recognized as a way of investigating, a way of thinking, and a way of applying knowledge to society. Further, in order to recognize all people who take part in science, students and scientists from a variety of ethnic groups should be portrayed in the physical science textbooks.
NASA Astrophysics Data System (ADS)
Kaneda, Y.; Takahashi, N.; Hori, T.; Kawaguchi, K.; Isouchi, C.; Fujisawa, K.
2017-12-01
Destructive natural disasters such as earthquakes and tsunamis have occurred frequently in the world. For instance, 2004 Sumatra Earthquake in Indonesia, 2008 Wenchuan Earthquake in China, 2010 Chile Earthquake and 2011 Tohoku Earthquake in Japan etc., these earthquakes generated very severe damages. For the reduction and mitigation of damages by destructive natural disasters, early detection of natural disasters and speedy and proper evacuations are indispensable. And hardware and software developments/preparations for reduction and mitigation of natural disasters are quite important. In Japan, DONET as the real time monitoring system on the ocean floor is developed and deployed around the Nankai trough seismogenic zone southwestern Japan. So, the early detection of earthquakes and tsunamis around the Nankai trough seismogenic zone will be expected by DONET. The integration of the real time data and advanced simulation researches will lead to reduce damages, however, in the resilience society, the resilience methods will be required after disasters. Actually, methods on restorations and revivals are necessary after natural disasters. We would like to propose natural disaster mitigation science for early detections, evacuations and restorations against destructive natural disasters. This means the resilience society. In natural disaster mitigation science, there are lots of research fields such as natural science, engineering, medical treatment, social science and literature/art etc. Especially, natural science, engineering and medical treatment are fundamental research fields for natural disaster mitigation, but social sciences such as sociology, geography and psychology etc. are very important research fields for restorations after natural disasters. Finally, to realize and progress disaster mitigation science, human resource cultivation is indispensable. We already carried out disaster mitigation science under `new disaster mitigation research project on Mega thrust earthquakes around Nankai/Ryukyu subduction zone', and `SATREPS project of earthquake and tsunami disaster mitigation in the Marmara region and disaster education in Turkey'. Furthermore, we have to progress the natural disaster mitigation science against destructive natural disaster in the near future.
The Nature of Science as Viewed by Science Teachers in Najran District, Saudi Arabia
ERIC Educational Resources Information Center
Saif, Abdulsalam Dale Amer
2016-01-01
This study aims to investigate the views of Saudi Science Teachers in Najran district about the nature of science (NOS). A questionnaire of fourteen items was developed and administered to a sample of 83 science teachers. The questionnaire covers five aspects of the nature of science which are: scientific theories and models; role of scientists;…
Natural Science of the Great Plains as it Relates to the American Indian: A Syllabus and Sourcebook.
ERIC Educational Resources Information Center
Bluemle, Mary E.
Providing an Indian Studies field course in natural science, this dissertation includes: a sourcebook of pertinent reference materials; reservation specific sample lesson plans; natural science roadlogs; a syllabus designed to stress natural science processes and to serve as a unifying factor for field work, lecture, and course discussions.…
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... Denver Museum of Nature & Science, Denver, CO, that meets the definition of an object of cultural... Cultural Item: Denver Museum of Nature and Science, Denver, CO AGENCY: National Park Service, Interior. ACTION: Notice. SUMMARY: The Denver Museum of Nature & Science, in consultation with the appropriate...
Making Cosmic Connections in the Nature of Science
NASA Astrophysics Data System (ADS)
Androes, D. L.
2011-09-01
Presenting the rich heritage of astronomy includes exposing the process of science, warts and all. In the quest to comprehensively cover science content, the nature of science is often neglected. A cursory inclusion of the nature of science generally showcases in the lives and times of the Copernican Revolution - and rightly so. Astronomy owes its mark of fame in all other disciplines to the radical shift in thinking about our place in the cosmos that occurred in the late 1500s and early 1600s. However, the nature of science offers a much broader range of connections between science objectives and course content.
Comparison of Views of the Nature of Science between Natural Science and Nonscience Majors
ERIC Educational Resources Information Center
Desaulniers Miller, Marie C.; Montplaisir, Lisa M.; Offerdahl, Erika G.; Cheng, Fu-Chih; Ketterling, Gerald L.
2010-01-01
Science educators have the common goal of helping students develop scientific literacy, including understanding of the nature of science (NOS). University faculties are challenged with the need to develop informed NOS views in several major student subpopulations, including science majors and nonscience majors. Research into NOS views of…
Preservice Teachers' Perception about Nature of Science
ERIC Educational Resources Information Center
Nuangchalerm, Prasart
2009-01-01
Teacher student is an important role improving their own perception what science should be anticipated in classroom. Also, science learning in the current studies try to have relied understanding in the nature of science. This research aimed to study teacher students' perception in the nature of science. One hundred and one of junior teacher…
Astrobiology Outreach and the Nature of Science: The Role of Creativity
Oliver, Carol; Walter, Malcolm R.
2012-01-01
Abstract There is concern in many developed countries that school students are turning away from science. However, students may be choosing not to study science and dismissing the possibility of a scientific career because, in the junior secondary years, they gain a false view of science and the work of scientists. There is a disparity between science as it is portrayed at school and science as it is practiced. This paper describes a study to explore whether engaging in science through astrobiology outreach activities may improve students' understanding of the nature and processes of science, and how this may influence their interest in a career in science. The results suggest that the students attending these Mars research–related outreach activities are more interested in science than the average student but are lacking in understanding of aspects of the nature of science. A significant difference was detected between pre- and posttest understandings of some concepts of the nature of science. Key Words: Science education—School science—Creativity—Nature and processes of science—Attitudes—Astrobiology. Astrobiology 12, 1143–1153. PMID:23134090
Genetics instruction with history of science: Nature of science learning
NASA Astrophysics Data System (ADS)
Kim, Sun Young
2007-12-01
This study explored the effect of history of genetics in teaching genetics and learning the nature of science (NOS). A quasi-experimental control group research design with pretests, posttests, and delayed posttests was used, combining qualitative data and quantitative data. Two classes which consisted of tenth grade biology students participated in this study. The present study involved two instructional interventions, Best Practice Instruction with History of Genetics (BPIw/HG) and Best Practice Instruction (BPI). The experimental group received BPIw/HG utilizing various historical materials from the history of genetics, while the control group was not introduced to historical materials. Scientific Attitude Inventory II, Genetics Terms' Definitions with Concept Mapping (GTDCM), NOS Terms' Definitions with Concept Mapping (NTDCM), and View of Nature of Science (VNOS-C) were used to investigate students' scientific attitude inventory, and their understanding of genetics as well as the NOS. The results showed that students' scientific attitude inventory, and their understanding of genetics and the NOS were not statistically significantly different in the pretest (p>.05). After the intervention, the experimental group of students who received BPIw/HG demonstrated better understanding of the NOS. NTDCM results showed that the experimental group was better in defining the NOS terms and constructing a concept map ( p<.01). In addition, the experimental group retained their understanding of the NOS two-months after the completion of the intervention, showing no statistically significant difference between the posttest and the delayed posttest of NTDCM (p>.05). Further, VNOS-C data indicated that a greater percentage of the experimental group than the control group improved their understanding of the NOS. However, the two groups' understanding of genetics concepts did not show any statistically significant difference in the pretest, the posttest, and the delayed posttest (p>.05). This result implicated that allocating classroom time in introducing history of science neither helped nor hindered learning science content.
ERIC Educational Resources Information Center
Aydin, Sevgi
2015-01-01
This is an interpretive case study to examine the teaching of an experienced science faculty who had a strong interest in teaching undergraduate and graduate science courses and nature of science specifically. It was interested in how he transformed knowledge from his experience as a scientist and his ideas about nature of science into forms…
NASA Astrophysics Data System (ADS)
Hampton, Kathryn Walker
This project was an effort to study the effect of integrating children's trade books into the fourth grade science curriculum on the students' views of the nature of science and their scientific attitude. The effect on the students' reading and language achievement, and science content knowledge was also analyzed. This was done by comparing the nature of science views and scientific attitudes, reading and language achievement scores, and the science grades of the treatment group, prior to and immediately following the intervention period, with the control group which did not participate in the integration of children's books. The science teacher's views on the nature of science and her attitude towards teaching science were also evaluated prior to and after the intervention. The selected trade books were evaluated for their coverage of nature of science aspects. Three intact classes of fourth grade students from a local elementary school were involved in the study along with their science and reading teacher. Two of the classes made up the experimental group and the remaining class served as the control group. All students were assessed prior to the intervention phase on their views of the nature of science and scientific attitudes. The experimental group was engaged in reading selected science trade books during their science class and study hall over a semester period. The results of the study showed a significant difference in the groups' initial reading and language achievement, which may have affected the lack of an effect from the intervention. The instrument selected to assess the student's views on the nature of science and scientific attitude (SAI II) was not reliable with this group. There was no significant difference on the students' science content knowledge as measured by their semester grade averages. The results from the teacher's response on the STAS II did indicate slight changes on her views on the nature of science. Sixty-nine of the eighty-three children's trade books selected had one or more aspects of the nature of science included.
Understanding the True Meaning of Nature of Science
ERIC Educational Resources Information Center
Crowther, David T.; Lederman, Norman G.; Lederman, Judith S.
2005-01-01
Along with the awesome responsibility to teach science content and inquiry comes a responsibility to nurture an understanding of the nature of science. Just what is nature of science? As simple as this statement sounds, the term in and of itself is not readily agreed upon in scientific communities. For K-12 and science education communities,…
Pseudo-Science: A Meaningful Context for Assessing Nature of Science
ERIC Educational Resources Information Center
Afonso, Ana Sofia; Gilbert, John K.
2010-01-01
Although an understanding of nature of science is a core element in scientific literacy, there is considerable evidence that school and university students hold naive conceptions about it. It is argued that, whilst the failure to learn about nature of science arises from its neglect in formal science education, a major reason is the adherence to…
ERIC Educational Resources Information Center
Van Dijk, Esther M.
2014-01-01
This paper is concerned with the conceptualization of pedagogical content knowledge (PCK) for teaching about the nature of science. In contrast to the view that science teachers need to develop a specific "PCK for nature of science," an alternative, more comprehensive notion of PCK for science teaching is suggested. The point of…
An Analysis of Several Instruments Measuring "Nature of Science" Objectives
ERIC Educational Resources Information Center
Doran, Rodney L.; And Others
1974-01-01
Reported is an investigation of the relationship among three selected instruments based on the responses of a sample of high school students. The instruments were the Nature of Science Scale (NOSS), the Science Support Scale (SSS), and the Test on the Social Aspects of Science (TSAS). All purport to measure "nature of science"…
Political science, public administration, and natural hazards: contributions and connections
NASA Astrophysics Data System (ADS)
Lindquist, E.
2009-04-01
The connection between the natural and social sciences has become stronger, and has increasingly been recognized as a vital component in the area of natural hazards research. Moving applied natural hazards research into the public policy or administration realm is not often easy, or effective. An improved understanding of the connection between the natural and social sciences can assist in this process and result in better public policy, acceptance from the public for these policies, and a safer and better educated public. This paper will present initial findings from a larger data set on natural hazards and social science research. Specifically we will review the current contribution of the formal academic disciplines of political science and public administration within recent natural hazards-related scholarship. The general characteristics of the contributions (e.g. coauthored, interdisciplinary, etc.), specific theories and methods being applied, and the types of natural hazards being scrutinized by these related fields will be assessed. In conclusion we will discuss future contributions and areas for potential collaboration between the natural and social sciences in the area of natural hazards research.
NASA Astrophysics Data System (ADS)
Patonah, Siti; Nuvitalia, Duwi; Saptaningrum, Ernawati; Khumaedi; Rusilowati, Ani
2017-04-01
The purpose of this study was to develop the teaching aid required in the curriculum implemented 2013 science subjects at the junior level. The method used in this research is the Research and Development. In this article will be described in the description of the development of the teaching aids that have been generated. Teaching aids consist of three pieces, namely water filtration magical, electric convection box and Musschenbroek bimetal. Based on the expert validation, then all three devices have fulfilled the requirements as teaching aids. Where all three can be used to demonstrate the concept of separation of mixtures, air convection, and thermal expansion of the metal. All three are decent teaching aids used to learn science subjects at junior in implementing the curriculum in 2013.
ERIC Educational Resources Information Center
Aktamis, Hilal; Higde, Emrah
2018-01-01
This study aimed to determine the changes in understanding about the nature of science (NOS) and conceptual values of 28 elementary science teacher candidates who engaged in the instruction of the nature and history of science (NHOS). A values scale was used to determine the values of science teacher candidates in six areas of the conceptual…
ERIC Educational Resources Information Center
Asmolov, A. G.
2015-01-01
In this article we discuss the past, present, and future of the cultural activity approach as a methodology for integrating the humanities and natural sciences as well as psychotechnical and theoretical knowledge. It is suggested that the meaning of historical crisis of cultural activity-psychology consists in reflecting on the future prospects of…
Pre-service Teachers Learn the Nature of Science in Simulated Worlds
NASA Astrophysics Data System (ADS)
Marshall, Jill
2007-10-01
Although the Texas Essential Knowledge and Skills include an understanding of the nature of science as an essential goal of every high school science course, few students report opportunities to explore essential characteristics of science in their previous classes. A simulated-world environment (Erickson, 2005) allows students to function as working scientists and discover these essential elements for themselves (i.e. that science is evidence-based and involves testable conjectures, that theories have limitations and are constantly being modified based on new discoveries to more closely reflect the natural world.) I will report on pre-service teachers' exploration of two simulated worlds and resulting changes in their descriptions of the nature of science. Erickson (2005). Simulating the Nature of Science. Presentation at the 2005 Summer AAPT Meeting, Salt Lake City, UT.
Representing Nature of Science in a Science Textbook: Exploring author-editor-publisher interactions
NASA Astrophysics Data System (ADS)
DiGiuseppe, Maurice
2014-05-01
Current reforms in elementary and secondary science education call for students and teachers to develop more informed views of the nature of science (NOS)-a process in which science textbooks play a significant role. This paper reports on a case study of the development of representations of the NOS in a senior high school chemistry textbook by the book's author, editor, and publisher. The study examines the multiple discourses that arose as the developers reflected on their personal and shared understandings of NOS; squared these with mandated curricula, the educational needs of chemistry students and teachers, and the exigencies of large-scale commercial textbook publishing. As a result, the team developed and incorporated, in the textbook, representations of NOS they believed were the most pedagogically suitable. Analysis of the data in this study indicates that a number of factors significantly influenced the development of representations of NOS, including representational accuracy (the degree to which representations of NOS conformed to informed views of the NOS), representational consistency (the degree to which representations of NOS in different parts of the book conveyed the same meaning), representational appropriateness (the age-, grade-, and reading-level appropriateness of the NOS representations), representational alignment (the degree to which NOS representations aligned with mandated curriculum), representational marketability (the degree to which NOS representations would affect sales of the textbook), and 'Workplace Resources' factors including availability of time, relevant expertise, and opportunities for professional development.
Marketing the `Broad Line': Invitations to STEM education in a Swedish recruitment campaign
NASA Astrophysics Data System (ADS)
Andrée, Maria; Hansson, Lena
2013-01-01
In many Western societies, there is a concern about the tendency of young people not choosing Science, Technology, Engineering, and Mathematics (STEM) education and occupations. In response, different initiatives have been launched. If one believes that science should have a place in more young people's lives, an important question is to what extent recruitment campaigns communicate messages that open up for STEM education to become relevant in young people's identity formation. Here, we analyse a Swedish government-initiated, primarily Internet-based recruitment attempt ('The Broad Line Campaign') aimed at increasing the number of young people choosing the natural science programme in upper secondary school. The campaign is based on marketing principles and deliberately draws on identity issues. The data analysed consists of campaign films and written resources describing the campaign. Data are analysed by use of the constant comparative approach in order to produce categories describing different messages about why to engage in STEM education. These messages are then analysed from an identity perspective using the concept of subjective values. Our results show that the messages communicated in the Broad Line campaign emphasise utility value, attainment value and relative cost rather than interest-enjoyment. The campaign communicates that the natural science programme is to be associated with a high attainment value without establishing relations to the field of science. Finally, potential consequences of the communicated messages in the campaign are discussed in light of previous research.
Student conceptions of the nature of science
NASA Astrophysics Data System (ADS)
Talbot, Amanda L.
Research has shown that students from elementary school to college have major misconceptions about the nature of science. While an appropriate understanding of the nature of science has been an objective of science education for a century, researchers using a variety of instruments, continue to document students' inadequate conceptions of what science is and how it operates as an enterprise. Current research involves methods to improve student understanding of the nature of science. Students often misunderstand the creative, subjective, empirical, and tentative nature of science. They do not realize the relationship between laws and theories, nor do they understand that science does not follow a prescribed method. Many do not appreciate the influence culture, society, and politics; nor do they have an accurate understanding of the types of questions addressed by science. This study looks at student understanding of key nature of science (NOS) concepts in order to examine the impact of implementing activities intended to help students better understand the process of science and to see if discussion of key NOS concepts following those activities will result in greater gains in NOS understanding. One class received an "activities only" treatment, while the other participated in the same activities followed by explicit discussion of key NOS themes relating to the activity. The interventions were implemented for one school year in two high school anatomy and physiology courses composed of juniors and seniors. Student views of the nature of science were measured using the Views of the Nature of Science-Form C (VNOS-C). Students in both classes demonstrated significant gains in NOS understanding. However, contrary to current research, the addition of explicit discussion did not result in significantly greater gains in NOS understanding. This suggests that perhaps students in higher-level science classes can draw the correlations between NOS related activities and important aspects of "real" science. Or perhaps that a curriculum with a varied approach my expose students to more aspects of science thus improving their NOS understanding.
Tools to Assess the Impact of Teacher Enhancement Programs
NASA Astrophysics Data System (ADS)
Heatherly, S. A.; Maddalena, R. J.; Govett, A.; Hemler, D.
1997-05-01
Beginning in 1994, the NRAO has hosted an NSF-funded program, ``Research Experience in Teacher Preparation (RETP),'' in which inservice and preservice science teachers participate in residential institutes lasting one or two weeks. While on site, they conduct open-ended investigations using a 40-foot diameter working radio telescope. The aim of RETP has been to deepen and personalize participants' understanding of the nature of science, and to assist them in applying their newfound knowledge to their classroom teaching. So far RETP, and the teacher enhancement programs from which it evolved, have trained 434 inservice and 69 preservice teachers. The impact of the research experience on teachers' perceptions of themselves as professionals and their views of science was initially assessed through open-ended questionnaires and participant journals. From teachers' responses we learned that the research experience has a profound, positive influence on participants' views of science and increased their confidence in using research-based teaching methods. However, determining what actually happens in the classroom is harder to evaluate and requires a more structured approach. Therefore, to determine what changes occurred in teachers and their students, five survey instruments were developed. The instruments: 1) assess changes in teachers' perceptions of their ability to conduct research; 2) gauge teachers' perceptions of three aspects of the institute; 3) measure changes in teachers' concerns about implementing classroom research projects; 4) evaluate the development of teachers' understanding into the nature of science; and 5) determine changes in their students' perceptions of science and science class. To increase the reliability of the instruments, the survey questions were tested for internal consistency. Early results show that the RETP program has significantly affected participants and their students. These instruments are useful not only for evaluating this program but also for evaluating other teacher enhancement and preparation programs.
ERIC Educational Resources Information Center
Ramnarain, Umesh; Padayachee, Keshni
2015-01-01
This study reports on the analysis of South African Life Sciences and Biology textbooks for the inclusion of the nature of science using a conceptual framework developed by Chiappetta, Fillman and Sethna (1991). In particular, we investigated the differences between the representation of the nature of science in Biology textbooks that were written…
Is homeopathy a science?--Continuity and clash of concepts of science within holistic medicine.
Schmidt, Josef M
2009-06-01
The question of whether homeopathy is a science is currently discussed almost exclusively against the background of the modern concept of natural science. This approach, however, fails to notice that homeopathy-in terms of history of science-rests on different roots that can essentially be traced back to two most influential traditions of science: on the one hand, principles and notions of Aristotelism which determined 2,000 years of Western history of science and, on the other hand, the modern concept of natural science that has been dominating the history of medicine for less than 200 years. While Aristotle's "science of the living" still included ontologic and teleologic dimensions for the sake of comprehending nature in a uniform way, the interest of modern natural science was reduced to functional and causal explanations of all phenomena for the purpose of commanding nature. In order to prevent further ecological catastrophes as well as to regain lost dimensions of our lives, the one-sidedness and theory-loadedness of our modern natural-scientific view of life should henceforth be counterbalanced by lifeworld-practical Aristotelic categories. In this way, the ground would be ready to conceive the scientific character of homeopathy-in a broader, Aristotelian sense.
Nonlocal Symmetries and Interaction Solutions for Potential Kadomtsev-Petviashvili Equation
NASA Astrophysics Data System (ADS)
Ren, Bo; Yu, Jun; Liu, Xi-Zhong
2016-03-01
The nonlocal symmetry for the potential Kadomtsev-Petviashvili (pKP) equation is derived by the truncated Painlevé analysis. The nonlocal symmetry is localized to the Lie point symmetry by introducing the auxiliary dependent variable. Thanks to localization process, the finite symmetry transformations related with the nonlocal symmetry are obtained by solving the prolonged systems. The inelastic interactions among the multiple-front waves of the pKP equation are generated from the finite symmetry transformations. Based on the consistent tanh expansion method, a nonauto-Bäcklund transformation (BT) theorem of the pKP equation is constructed. We can get many new types of interaction solutions because of the existence of an arbitrary function in the nonauto-BT theorem. Some special interaction solutions are investigated both in analytical and graphical ways. Supported by the National Natural Science Foundation of China under Grant Nos. 11305106, 11275129 and 11405110, the Natural Science Foundation of Zhejiang Province of China under Grant No. LQ13A050001
Understandings of the nature of science and decision making on science and technology-based issues
NASA Astrophysics Data System (ADS)
Bell, Randy Lee
Current reforms emphasize the development of scientific literacy as the principal goal of science education. The nature of science is considered a critical component of scientific literacy and is assumed to be an important factor in decision making on science and technology based issues. However, little research exists that delineates the role of the nature of science in decision making. The purpose of this investigation was to explicate the role of the nature of science in decision making on science and technology based issues and to delineate the reasoning and factors associated with these types of decisions. The 15-item, open-ended "Decision Making Questionnaire" (DMQ) based on four different scenarios concerning science and technology issues was developed to assess decision making. Twenty-one volunteer participants purposively selected from the faculty of geographically diverse universities completed the questionnaire and follow-up interviews. Participants were subsequently grouped according to their understandings of the nature of science, based on responses to a second open-ended questionnaire and follow-up interview. Profiles of each group's decision making were constructed, based on their previous responses to the DMQ and follow-up interviews. Finally, the two groups' decisions, decision making factors, and decision making strategies were compared. No differences were found between the decisions of the two groups, despite their disparate views of the nature of science. While their reasoning did not follow formal lines of argumentation, several influencing factors and general reasoning patterns were identified. Participants in both groups based their decisions primarily on personal values, morals/ethics, and social concerns. While all participants said they considered scientific evidence in their decision making, most did not require absolute "proof," even though Group B participants held more absolute conceptions of the nature of science. Overall, the nature of science did not figure prominently in either group's decisions. These findings contrast with the assumptions of the science education community and current reform efforts and call for a reexamination of the goals of nature of science instruction. Developing better decision making skills---even on science and technology based issues---may involve other factors, including more values-based instruction and attention to intellectual/moral development.
The Nature of Science and Science Education: A Bibliography
NASA Astrophysics Data System (ADS)
Bell, Randy; Abd-El-Khalick, Fouad; Lederman, Norman G.; Mccomas, William F.; Matthews, Michael R.
Research on the nature of science and science education enjoys a long history, with its origins in Ernst Mach's work in the late nineteenth century and John Dewey's at the beginning of the twentieth century. As early as 1909 the Central Association for Science and Mathematics Teachers published an article - A Consideration of the Principles that Should Determine the Courses in Biology in Secondary Schools - in School Science and Mathematics that reflected foundational concerns about science and how school curricula should be informed by them. Since then a large body of literature has developed related to the teaching and learning about nature of science - see, for example, the Lederman (1992)and Meichtry (1993) reviews cited below. As well there has been intense philosophical, historical and philosophical debate about the nature of science itself, culminating in the much-publicised Science Wars of recent time. Thereferences listed here primarily focus on the empirical research related to the nature of science as an educational goal; along with a few influential philosophical works by such authors as Kuhn, Popper, Laudan, Lakatos, and others. While not exhaustive, the list should prove useful to educators, and scholars in other fields, interested in the nature of science and how its understanding can be realised as a goal of science instruction. The authors welcome correspondence regarding omissions from the list, and on-going additions that can be made to it.
Connecting Science and Mathematics: The Nature of Proof and Disproof in Science and Mathematics
ERIC Educational Resources Information Center
Oehrtman, Michael; Lawson, Anton E.
2008-01-01
Disagreements exist among textbook authors, curriculum developers, and even among science and mathematics educators/researchers regarding the meanings and roles of several key nature-of-science (NOS) and nature-of-mathematics (NOM) terms such as proof, disproof, hypotheses, predictions, theories, laws, conjectures, axioms, theorems, and…
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Learner Characteristics and Understanding Nature of Science: Is There an Association?
ERIC Educational Resources Information Center
Çetinkaya-Aydin, Gamze; Çakiroglu, Jale
2017-01-01
The purpose of this study was to investigate the possible associations between preservice science teachers' understanding of nature of science and their learner characteristics; understanding of nature of scientific inquiry, science teaching self-efficacy beliefs, metacognitive awareness level, and faith/worldview schemas. The sample of the…
Understanding Natural Sciences Education in a Reggio Emilia-Inspired Preschool
ERIC Educational Resources Information Center
Inan, Hatice Zeynep; Trundle, Kathy Cabe; Kantor, Rebecca
2010-01-01
This ethnographic study explored aspects of how the natural sciences were represented in a Reggio Emilia-inspired laboratory preschool. The natural sciences as a discipline--a latecomer to preschool curricula--and the internationally known approach, Reggio Emilia, interested educators and researchers, but there was little research about science in…
ERIC Educational Resources Information Center
Conseil des Colleges, Quebec (Quebec).
A series of recommendations developed by the Council of Colleges of the Colleges of General and Professional Education (CEGEP) in Quebec (Canada) are presented in this report to the Ministry of Higher Education and Science for redesigning the CEGEP's natural sciences curriculum. The proposed reforms are designed to meet legislative requirements…
Reconceptualizing the Nature of Science for Science Education
NASA Astrophysics Data System (ADS)
Dagher, Zoubeida R.; Erduran, Sibel
2016-03-01
Two fundamental questions about science are relevant for science educators: (a) What is the nature of science? and (b) what aspects of nature of science should be taught and learned? They are fundamental because they pertain to how science gets to be framed as a school subject and determines what aspects of it are worthy of inclusion in school science. This conceptual article re-examines extant notions of nature of science and proposes an expanded version of the Family Resemblance Approach (FRA), originally developed by Irzik and Nola (International handbook of research in history, philosophy and science teaching. Springer, Dordrecht, pp 999-1021, 2014) in which they view science as a cognitive-epistemic and as an institutional-social system. The conceptual basis of the expanded FRA is described and justified in this article based on a detailed account published elsewhere (Erduran and Dagher in Reconceptualizing the nature of science for science education: scientific knowledge, practices and other family categories. Springer, Dordrecht, 2014a). The expanded FRA provides a useful framework for organizing science curriculum and instruction and gives rise to generative visual tools that support the implementation of a richer understanding of and about science. The practical implications for this approach have been incorporated into analysis of curriculum policy documents, curriculum implementation resources, textbook analysis and teacher education settings.
ERIC Educational Resources Information Center
Ramnarain, Umesh Dewnarain; Chanetsa, Tarisai
2016-01-01
This article reports on an analysis and comparison of three South African Grade 9 (13-14 years) Natural Sciences textbooks for the representation of nature of science (NOS). The analysis was framed by an analytical tool developed and validated by Abd-El-Khalick and a team of researchers in a large-scale study on the high school textbooks in the…
Understanding the nature of science through the historical development of conceptual models
NASA Astrophysics Data System (ADS)
Metz, Donald J.
Understanding the nature of science has been a common goal in science education for years and continues to hold a distinct place in the recently developed Pan-Canadian science framework. Although the nature of science is often prominent in the front end of such reform documents, the implementation of these goals is presumed to be taught implicitly with the delivery of knowledge outcomes. Research strongly indicates that most students have naive conceptions about the nature of science. Surprisingly, research also clearly shows that science teachers do not fare much better, and that when they do possess adequate understanding of the nature of science it does not significantly influence their behaviour in the classroom. Norm Lederman (1998), one of the leading scholars in this field, describes two approaches advocated by curriculum reform documents to address the nature of science outcomes. The first approach suggests that students can achieve nature of science outcomes by "doing science", the second suggests that history of science can enhance students' understanding of the nature of science. While Lederman advocates the use of the history of science, he argues that these approaches are not effective when used implicitly. He recommends that an explicit approach be used (planned for, taught, assessed), but so far there have been no studies which employ this technique beyond short lessons or limited case histories. This thesis advocates an explicit approach to teaching the nature of science using the historical development of conceptual models. The research study of this thesis integrated the historical development of conceptual models with the traditional content found in a typical grade ten chemistry curriculum. Participants in the research were 74 senior 2 (grade 10) science students from four different classes in three different schools in the province of Manitoba. Prior to, and after instruction, students wrote Lederman's VNOS nature of science test. The tests were reviewed by the researcher and a nature of science profile was compiled for each student. From this profile and the student responses, 24 students (8 from each group) were selected to be interviewed. The research indicates that the HDCM unit was a successful means to improve students' understanding of models, theories, evidence, and the tentativeness of science. The manner in which students employed their examples in the post-test suggests that the historical content of the unit accounts for this change. On the relationship between laws and theories the research indicates that the view that theories advance to laws is an extremely tenacious misconception although students did seem to improve their understanding of laws and theories independently. The HDCM unit did not yield significant results in advancing students understandings of the creative and imaginative aspects of the nature of science. However, there were individual cases where progress was made which might indicate that more opportunity and a longer development time could enhance student understanding in this area. Students also indicated positive attitudes towards the inclusion of the history of science in their curriculum. The HDCM unit presented a more humanistic view of science to the students which was reflected in their interest, motivation, and responses to the curriculum. We should view this results as positive for future curriculum development in this area. Finally, the HDCM unit was shown to significantly influence one practising teacher's understanding of the nature of science.
NASA Astrophysics Data System (ADS)
Akcay, Behiye
The purpose of this study was to investigate the influence of a history of science course on pre-service science teachers' understanding of the nature of science concepts. Subjects in the study were divided in two groups: (1) students who enrolled in only in the history of science course, (2) students who enrolled both the meaning of science and the history of science courses. An interpretative-descriptive approach and constant comparative analysis were used to identify similarities and differences among pre-service teachers' views about nature of scientific knowledge prior to and after the history of science course. The results of this study indicate that explicitly addressing certain aspects of the nature of science is effective in promoting adequate understanding of the nature of science for pre-service science teachers. Moreover, the results indicate that a student's prior experience with the history of science helps to improve their understanding of the history and nature of science. The history of science course helped pre-service teachers to develop the following views which are parallel with these advocated in both the Benchmarks (AAAS, 1993) and the National Science Education Standards (NRC, 1996) concerning the nature of scientific knowledge: (1) Scientific knowledge is empirically based and an ongoing process of experimentation, investigation, and observation. (2) Science is a human endeavor. (3) People from different cultures, races, genders, and nationality contribute to science. (4) Scientific knowledge is not based on myths, personal beliefs, and religious values. (5) Science background and prior knowledge have important roles for scientific investigations. (6) Scientific theories and laws represent different kinds of knowledge. (7) Science is affected by political, social, and cultural values. (8) Creativity and imagination are used during all stages of scientific investigations. (9) Theories change because of new evidence and new views of existing data as well as advances in technology. (10) Theories have significant roles in generating future research questions. (11) Adequate understanding of differences between observations and inferences develop from considering the history of science. (12) There is no single universal step-by-step scientific method. (13) Learning about the nature of scientific knowledge helps students to become scientifically literate.
NASA Astrophysics Data System (ADS)
Zulvia, Pepi; Kurnia, Anang; Soleh, Agus M.
2017-03-01
Individual and environment are a hierarchical structure consist of units grouped at different levels. Hierarchical data structures are analyzed based on several levels, with the lowest level nested in the highest level. This modeling is commonly call multilevel modeling. Multilevel modeling is widely used in education research, for example, the average score of National Examination (UN). While in Indonesia UN for high school student is divided into natural science and social science. The purpose of this research is to develop multilevel and panel data modeling using linear mixed model on educational data. The first step is data exploration and identification relationships between independent and dependent variable by checking correlation coefficient and variance inflation factor (VIF). Furthermore, we use a simple model approach with highest level of the hierarchy (level-2) is regency/city while school is the lowest of hierarchy (level-1). The best model was determined by comparing goodness-of-fit and checking assumption from residual plots and predictions for each model. Our finding that for natural science and social science, the regression with random effects of regency/city and fixed effects of the time i.e multilevel model has better performance than the linear mixed model in explaining the variability of the dependent variable, which is the average scores of UN.
76 FR 9604 - Notice of Inventory Completion: Denver Museum of Nature & Science, Denver, CO
Federal Register 2010, 2011, 2012, 2013, 2014
2011-02-18
... Museum of Nature & Science, Denver, CO AGENCY: National Park Service, Interior. ACTION: Notice. SUMMARY: The Denver Museum of Nature & Science has completed an inventory of human remains, in consultation... affiliation with the human remains should contact Dr. Chip Colwell-Chanthaphonh, Denver Museum of Nature...
Science as Story: "Communicating the Nature of Science through Historical Perspectives on Science"
ERIC Educational Resources Information Center
Wieder, Will
2006-01-01
Historical perspectives on science serve to humanize the sciences, increase student motivation, communicate academic content, and convey the nature of science. This paper briefly reviews pertinent literature regarding the history of science and narrates the author's experiences of incorporating historical perspectives in high school biology…
ERIC Educational Resources Information Center
Abell, Sandra; Martini, Mariana; George, Melissa
2001-01-01
Describes a science methods course for elementary education majors in which students investigated the phases of the moon. Concludes that students did not make direct connections between their science learning activities and the nature of science. Provides a set of recommendations related to the nature of science and moon study. (Contains 27…
From Orthodoxy to Plurality in the Nature of Science (NOS) and Science Education: A Metacommentary
ERIC Educational Resources Information Center
Bazzul, Jesse
2017-01-01
This article provides a metacommentary on the special issue on nature of science (NOS). The issue is composed of senior scholars discussing Hodson and Wong's (2017, this issue) critique of the consensus view of nature of science, which on a basic level states that there are agreed-upon aspects of science that can be taught in K-12 schools. Each…
ERIC Educational Resources Information Center
Michel, Hanno; Neumann, Irene
2016-01-01
Besides viewing knowledge about the nature of science (NOS) as important for its own value with respect to scientific literacy, an adequate understanding of NOS is expected to improve science content learning by fostering the ability to interrelate scientific concepts and, thus, coherently acquire scientific content knowledge. However, there is a…
MRCI+Q study of the low-lying electronic states of CdF including spin-orbit coupling
NASA Astrophysics Data System (ADS)
Zhao, Shu-Tao; Yan, Bing; Li, Rui; Wu, Shan; Wang, Qiu-Ling
2017-02-01
Not Available Project supported by the National Natural Science Foundation of China (Grant Nos. 11604052, 11404180, and 11574114 ), the Natural Science Foundation of Heilongjiang Province, China (Grant No. A2015010), the Natural Science Foundation of Anhui Province, China (Grant No. 1608085MA10), the International Science & Technology Cooperation Program of Anhui Province, China (Grant No. 1403062027), the University Nursing Program for Young Scholars with Creative Talents in Heilongjiang Province, China (Grant No. 2015095), and the Natural Science Foundation of Jilin Province, China (Grant No. 20150101003JC).
NASA Astrophysics Data System (ADS)
Boudry, Maarten; Blancke, Stefaan; Braeckman, Johan
2012-08-01
According to a widespread philosophical opinion, science is strictly limited to investigating natural causes and putting forth natural explanations. Lacking the tools to evaluate supernatural claims, science must remain studiously neutral on questions of metaphysics. This (self-imposed) stricture, which goes under the name of `methodological naturalism', allows science to be divorced from metaphysical naturalism or atheism, which many people tend to associate with it. However, ruling the supernatural out of science by fiat is not only philosophically untenable, it actually provides grist to the mill of anti-evolutionism. The philosophical flaws in this conception of methodological naturalism have been gratefully exploited by advocates of intelligent design creationism to bolster their false accusations of naturalistic bias and dogmatism on the part of modern science. We argue that it promotes a misleading view of the scientific endeavor and is at odds with the foremost arguments for evolution by natural selection. Reconciling science and religion on the basis of such methodological strictures is therefore misguided.
The Particulate Nature of Matter in Science Education and in Science.
ERIC Educational Resources Information Center
Vos, Wobbe de; Verdonk, Adri H.
1996-01-01
Discusses ideas about the particulate nature of matter and assesses the extent to which these represent a compromise between scientific and educational considerations. Analyzes relations between the particulate nature of matter in science and science education in an attempt to understand children's inclination to attribute all kinds of macroscopic…
Nature of Science Contextualized: Studying Nature of Science with Scientists
ERIC Educational Resources Information Center
Tala, Suvi; Vesterinen, Veli-Matti
2015-01-01
Understanding nature of science (NOS) is widely considered an important educational objective and views of NOS are closely linked to science teaching and learning. Thus there is a lively discussion about what understanding NOS means and how it is reached. As a result of analyses in educational, philosophical, sociological and historical research,…
How Nonfiction Reveals the Nature of Science
ERIC Educational Resources Information Center
Zarnowski, Myra; Turkel, Susan
2013-01-01
In this article, the authors consider whether children's trade books promote an authentic understanding of the nature of science. They begin by discussing the characteristics of the nature of science and then examine existing research in children's science books for evidence of the visibility of these features. They describe the problems…
Science Teachers' Conceptions of Nature of Science: The Case of Bangladesh
ERIC Educational Resources Information Center
Sarkar, Md. Mahbub Alam; Gomes, Jui Judith
2010-01-01
This study explored Bangladeshi science teachers' conceptions of nature of science (NOS) with a particular focus on the nature of (a) scientific knowledge, (b) scientific inquiry and (c) scientific enterprise. The tentative, inferential, subjective and creative NOS, in addition to the myths of the scientific method and experimentation, the nature…
Astrobiology outreach and the nature of science: the role of creativity.
Fergusson, Jennifer; Oliver, Carol; Walter, Malcolm R
2012-12-01
There is concern in many developed countries that school students are turning away from science. However, students may be choosing not to study science and dismissing the possibility of a scientific career because, in the junior secondary years, they gain a false view of science and the work of scientists. There is a disparity between science as it is portrayed at school and science as it is practiced. This paper describes a study to explore whether engaging in science through astrobiology outreach activities may improve students' understanding of the nature and processes of science, and how this may influence their interest in a career in science. The results suggest that the students attending these Mars research-related outreach activities are more interested in science than the average student but are lacking in understanding of aspects of the nature of science. A significant difference was detected between pre- and posttest understandings of some concepts of the nature of science.
NASA Technical Reports Server (NTRS)
Acker, James; Riebeek, Holli; Ledley, Tamara Shapiro; Herring, David; Lloyd, Steven
2008-01-01
"Citizen science" generally refers to observatoinal research and data collection conducted by non-professionals, commonly as volunteers. In the environmental science field, citizen scientists may be involved with local nad regional issues such as bird and wildlife populations, weather, urban sprawl, natural hazards, wetlands, lakes and rivers, estuaries, and a spectrum of public health concerns. Some citizen scientists may be primarily motivated by the intellectual challenge of scientific observations. Citizen scientists may now examine and utilize remote-sensing data related to their particular topics of interest with the easy-to-use NASA Web-based tools Giovanni and NEO, which allow exploration and investigation of a wide variety of Earth remote sensing data sets. The CARSON (Citizens and Remote Sensing Observational Network) Guide will be an online resource consisting of chapters each demonstrating how to utilize Giovanni and NEO to access and analyze specific remote-sensing data. Integrated in each chapter will be descriptions of methods that citizen scientists can employ to collect, monitor, analyze, and share data related to the chapter topic which pertain to environmental and ecological conditions in their local region. A workshop held in August 2008 initiated the development of prototype chapters on water quality, air quality, and precipitation. These will be the initial chapters in the first release of the CARSON Guide, which will be used in a pilot project at the Maryland Science Center in spring 2009. The goal of the CARSON Guide is to augment and enhance citizen scientist environmental research with NASA satellite data by creating a participatory network consisting of motivated individuals, environmental groups and organizations, and science-focused institutions such as museuma and nature centers. Members of the network could potentially interact with government programs, academic research projects, and not-for-profit organizations focused on environmental issues.
"The Name of the Rose": A Path to Discuss the Birth of Modern Science
ERIC Educational Resources Information Center
Guerra, Andreia; Braga, Marco
2014-01-01
Various science education researchers believe that science tuition should include some discussion about how science has developed over time. Therefore, deliberations about the nature of science should be integrated in the science curriculum. Many researchers argue that teaching the history of science is a good way to place the nature of science in…
Constitutions of Nature by Teacher Practice and Discourse in Ontario Grade 9 and 10 Academic Science
NASA Astrophysics Data System (ADS)
Hoeg, Darren Glen
This thesis presents an ethnographic study, based broadly on principles and methods of institutional ethnography, on the constitution of nature by nine Ontario Grade 9 and 10 Academic Science teachers. The intent of this methodological approach is to examine how the daily practice of participants works toward constituting nature in specific ways that are coordinated by the institution (Ontario public school and/or school science). Critical Discourse Analysis and general inductive analysis were performed on interview transcripts, texts related to teaching science selected by participants, and policy documents (i.e. curriculum; assessment policy) that coordinate science teacher practice. Findings indicate specific, dominant, and relatively uniform ontological and epistemological constitutions of nature. Nature was frequently constituted as a remote object, distant from and different than students studying it. More complex representations included constituting nature as a model, machine, or mathematical algorithm. Epistemological constitutions of nature were enacted through practices that engaged students in manipulating nature; controlling nature, and dominating nature. Relatively few practices that allow students to construct different constitutions of nature than those prioritized by the institution were observed. Dominant constitutions generally assume nature is simply the material to study, from which scientific knowledge can be obtained, with little ethical or moral consideration about nature itself, or how these constitutions produce discourse and relationships that may be detrimental to nature. Dominant constitutions of nature represent a type of objective knowledge that is prioritized, and made accessible to students, through science activities that attain a position of privilege in local science teacher cultures. The activities that allow students to attain the requisite knowledge of nature are collected, collated, and shared among existing science teachers. Activities are adapted to meet the knowledge requirements of the curriculum, which is institutionally coordinated by a system of management, based on accountability and performance. Thus, teachers come to see teaching practice that 'works' as contained in those science activities that engage students in learning nature as a specific representation (model/machine) or through science methods that control students learning so that they arrive at the correct knowledge. This allows teachers to assess and evaluate students' acquisition of the institutionally valued knowledge of nature. This system of coordination is sustained through discourse that enables teaching practices that aligns with institutional priorities of measuring performance, while at the same time, limiting teachers from being able to conceive of other teaching practices that might enable different constitutions of nature.
NASA Astrophysics Data System (ADS)
Jimakorn, Narakorn; Yuenyong, Chokchai
2018-01-01
This paper aimed to study of primary school students' understanding of nature of science in learning about force and motion for Explicit Nature of Science through science technology and society (STS) approach. Participants were 11 Grade 5 students who study in Baan Khongtaphet, Bothong, Chonburi, Thailand. This research regarded interpretive paradigm. The intervention of STS physics provided 4 weeks of teaching about force and motion through Yuenyong (2006) science technology and society (STS) approach. The issues of making skate board was brought into the class in order to enhance students learning about force and motion and applying knowledge for designing skate board. The intervention was also designed to allow students explicitly mentioning their ideas about nature of science related to learning activities of STS force and motion. Students' understanding of nature of science was interpreted through students' worksheets, participant observation, students' journal writing and informal interview. The findings revealed that majority of students could reflect their ideas related to many aspects of nature of science. This included Science demands and relies on empirical evidence; knowledge production in science shares many common factors and shared habits of mind, norms, logical thinking and methods; tentative of scientific knowledge; historical, cultural and social influences on science; historical, cultural and social influences on science; science and its methods cannot answer all questions. The study has implications for NOS teaching in Thailand primary school.
77 FR 23504 - Notice of Inventory Completion: Denver Museum of Nature & Science, Denver, CO
Federal Register 2010, 2011, 2012, 2013, 2014
2012-04-19
... Museum of Nature & Science, Denver, CO AGENCY: National Park Service, Interior. ACTION: Notice. SUMMARY: The Denver Museum of Nature & Science has completed an inventory of human remains and [[Page 23505... affiliated with the human remains and associated funerary objects may contact the Denver Museum of Nature...
Gregor Mendel's classic paper and the nature of science in genetics courses.
Westerlund, Julie F; Fairbanks, Daniel J
2010-12-01
The discoveries of Gregor Mendel, as described by Mendel in his 1866 paper Versuche uber Pflanzen-Hybriden (Experiments on plant hybrids), can be used in undergraduate genetics and biology courses to engage students about specific nature of science characteristics and their relationship to four of his major contributions to genetics. The use of primary source literature as an instructional tool to enhance genetics students' understanding of the nature of science helps students more clearly understand how scientists work and how the science of genetics has evolved as a discipline. We offer a historical background of how the nature of science developed as a concept and show how Mendel's investigations of heredity can enrich biology and genetics courses by exemplifying the nature of science. © 2010 The Authors.
Application of the thermoelectric MEMS microwave power sensor in a power radiation monitoring system
NASA Astrophysics Data System (ADS)
Bo, Gao; Jing, Yang; Si, Jiang; Debo, Wang
2016-08-01
A power radiation monitoring system based on thermoelectric MEMS microwave power sensors is studied. This monitoring system consists of three modules: a data acquisition module, a data processing and display module, and a data sharing module. It can detect the power radiation in the environment and the date information can be processed and shared. The measured results show that the thermoelectric MEMS microwave power sensor and the power radiation monitoring system both have a relatively good linearity. The sensitivity of the thermoelectric MEMS microwave power sensor is about 0.101 mV/mW, and the sensitivity of the monitoring system is about 0.038 V/mW. The voltage gain of the monitoring system is about 380 times, which is relatively consistent with the theoretical value. In addition, the low-frequency and low-power module in the monitoring system is adopted in order to reduce the electromagnetic pollution and the power consumption, and this work will extend the application of the thermoelectric MEMS microwave power sensor in more areas. Project supported by the National Natural Science Foundation of China (No. 11304158), the Province Natural Science Foundation of Jiangsu (No. BK20140890), the Open Research Fund of the Key Laboratory of MEMS of Ministry of Education, Southeast University (No. 3206005302), and the Scientific Research Foundation of Nanjing University of Posts and Telecommunications (Nos. NY213024, NY215139).
Simple webs of natural environment theme as a result of sharing in science teacher training
NASA Astrophysics Data System (ADS)
Tapilouw, M. C.; Firman, H.; Redjeki, S.; Chandra, D. T.
2018-03-01
Thematic learning is one type of integrated science (Biology, Physics, Chemistry and Earth Science) in Science Education. This study is concerning about simple webs of natural environment theme in science learning, as one of training material in science teacher training program. Making simple web is a goal of first step in teacher training program. Every group explain their web illustration to other group. Twenty Junior High School science teacher above one education foundation participate in science teacher training program. In order to gather simple webs, sharing method was used in this first step of science teacher training. The result of this study is five different simple web of natural environment themes. These webs represent science learning in class VII/Semester I, class VII/Semester II, Class VIII, Class IX/Semester I, Class IX/Semester II based on basic competency in National Curriculum 2013. Each group discussed web of natural environment theme based on their learning experience in real class which basic competency and subject matters are linked with natural environment theme. As a conclusion, simple webs are potential to develop in the next step of science teacher training program and to be implemented in real class.
Lu, Pei-Pei; Ting, Shing-Shiang; Chen, Mei-Ling; Tang, Woung-Ru
2005-12-01
The purpose of this study is to discuss the historical context of qualitative and quantitative research so as to explain the principle of qualitative study and examine the positioning of nursing research within academic study as a whole. This paper guides the readers towards the historical context from empirical science, discusses the influences of qualitative and quantitative research on nursing research, then investigates the nature of research paradigms, examines the positioning of nursing research, which includes the characteristics of fields such as natural science, humanity and social studies, and science, and lastly, presents the research standard proposed by Yardley in 2000. The research paradigms include Positivism, Postpositivism, Criticism, and Constructivism, which can be compared with Ontology, Epistemology, and Methodology. The nature of the paradigm is to determine the assumption of the paradigm on the basis of Ontology, Epistemology, and Methodology. The paradigm determines how the researcher views the world and decides on what to answer, how to research, and how to answer. The difference in academic environment is reflected in the long-term dialogue between qualitative and quantitative studies, as well as the standard for criticism. This paper introduces the method of evaluation of the quality of qualitative study proposed by Yardley in 2002, namely the sensitivity of the context, the promise and conscientiousness, transparency and consistency, influence and significance. The paper is intended to provide a guideline for readers in evaluating the quality of qualitative study.
Cognitive and developmental components of understanding the nature of science
NASA Astrophysics Data System (ADS)
Dotger, Sharon
The purpose of this study is to determine the degree to which years of education, college major, or reflective judgment stage influences individual's understandings of the nature of science. Using a cross-sectional design influenced by the literature describing the development of reflective judgment and nature of science understandings, this study encompasses the viewpoints of 323 individuals from ninth grade through graduate study. This research involves the careful selection of instruments for assessing these two complex constructs, and the processes used to select and rate participants responses is described in detail. Multinomial ordinal regression was used to determine the significance of educational level, major, and reflective judgment on nature of science views. Results indicate that high school students as a whole are least likely to respond appropriately to questions about the nature of science. However, the performance of college students is inconsistent with predictions, college freshmen more often select the desired response than college seniors or graduate students. Additionally, college major has no significant impact on nature of science understandings. Reflective judgment, a term that describes cognitive developmental model of advanced thinking skills, is found to have the most significant correlations with nature of science views. Reflective thinkers are more likely to select the desired nature of science response than quasi-reflective and pre-reflective thinkers for six of the ten questions. Discussion of results is followed by implications for science teaching and learning in K-12 classrooms.
NASA Astrophysics Data System (ADS)
Chin, Chi-Chin
2005-10-01
Scientific literacy and attitudes toward science play an important role in human daily lives. The purpose of this study was to investigate whether first-year pre-service teachers in colleges in Taiwan have a satisfactory level of scientific literacy. The domains of scientific literacy selected in this study include: (1) science content; (2) the interaction between science, technology and society (STS); (3) the nature of science; and (4) attitudes toward science. In this study, the instruments used were Chinese translations of the Test of Basic Scientific Literacy (TBSL) and the Test of Science-related Attitudes. Elementary education majors (n = 141) and science education majors (n = 138) from four teachers’ colleges responded to these instruments. The statistical results from the tests revealed that, in general, the basic scientific literacy of first-year pre-service teachers was at a satisfactory level. Of the six scales covered in this study, the pre-service teachers displayed the highest literacy in health science, STS, and life science. Literacy in the areas of the nature of science and earth science was rated lowest. The results also showed that science education majors scored significantly higher in physical science, life science, nature of science, science content, and the TBSL than elementary science majors. Males performed better than females in earth science, life science, science content, and the TBSL. Next, elementary education majors responded with more “don’t know” responses than science education majors. In general, the pre-service teachers were moderately positive in terms of attitudes toward science while science education majors had more positive attitudes toward science. There was no significant difference in attitudes between genders. Previous experience in science indicated more positive attitudes toward science. The results from stepwise regression revealed that STS, the nature of science, and attitudes toward science could explain 50.6% and 60.2% variance in science content in elementary education and science education majors, respectively. For science education majors, the first three scales—the nature of science, health science and physical science—determined basic scientific literacy. However, for elementary education majors, the top three factors were physical science, life science and the nature of science. Based on these results, several strategies for developing the professional abilities of science teachers have been recommended for inclusion in pre-service programs.
Defining Computational Thinking for Mathematics and Science Classrooms
NASA Astrophysics Data System (ADS)
Weintrop, David; Beheshti, Elham; Horn, Michael; Orton, Kai; Jona, Kemi; Trouille, Laura; Wilensky, Uri
2016-02-01
Science and mathematics are becoming computational endeavors. This fact is reflected in the recently released Next Generation Science Standards and the decision to include "computational thinking" as a core scientific practice. With this addition, and the increased presence of computation in mathematics and scientific contexts, a new urgency has come to the challenge of defining computational thinking and providing a theoretical grounding for what form it should take in school science and mathematics classrooms. This paper presents a response to this challenge by proposing a definition of computational thinking for mathematics and science in the form of a taxonomy consisting of four main categories: data practices, modeling and simulation practices, computational problem solving practices, and systems thinking practices. In formulating this taxonomy, we draw on the existing computational thinking literature, interviews with mathematicians and scientists, and exemplary computational thinking instructional materials. This work was undertaken as part of a larger effort to infuse computational thinking into high school science and mathematics curricular materials. In this paper, we argue for the approach of embedding computational thinking in mathematics and science contexts, present the taxonomy, and discuss how we envision the taxonomy being used to bring current educational efforts in line with the increasingly computational nature of modern science and mathematics.
Empirical topological investigation of practical supply chains based on complex networks
NASA Astrophysics Data System (ADS)
Liao, Hao; Shen, Jing; Wu, Xing-Tong; Chen, Bo-Kui; Zhou, Mingyang
2017-10-01
Not Available Project supported by the National Natural Science Foundation of China (Grant Nos. 11547040 and 61703281), Guangdong Province Natural Science Foundation, China (Grant Nos. 2016A030310051 and 2015KONCX143), Shenzhen Fundamental Research Foundation, China (Grant Nos. JCYJ20150625101524056 and JCYJ20160520162743717), SZU Student Innovation Fund, China, the PhD Start-up Fund of Natural Science Foundation of Guangdong Province, China (Grant No. 2017A030310374), the Young Teachers Start-up Fund of Natural Science Foundation of Shenzhen University, China, the Natural Science Foundation of SZU, China (Grant No. 2016-24), and the Singapore Ministry of Education Academic Research Fund Tier 2 (Grant No. MOE 2013-T2-2-033).
Introducing Taiwanese Undergraduate Students to the Nature of Science through Nobel Prize Stories
ERIC Educational Resources Information Center
Eshach, Haim; Hwang, Fu-Kwun; Wu, Hsin-Kai; Hsu, Ying-Shao
2013-01-01
Although there is a broad agreement among scientists and science educators that students should not only learn science, but also acquire some sense of its nature, it has been reported that undergraduate students possess an inadequate grasp of the nature of science (NOS). The study presented here examined the potential and effectiveness of Nobel…
Paradigms and problems: The practice of social science in natural resource management
Michael E. Patterson; Daniel R. Williams
1998-01-01
Increasingly, natural resource management is seeing calls for new paradigms. These calls pose challenges that have implications not only for planning and management, but also for the practice of science. As a consequence, the profession needs to deepen its understanding of the nature of science by exploring recent advances in the philosophy of science....
Multicultural Chemistry and the Nature of Science: But What about Knowledge?
ERIC Educational Resources Information Center
Tan, Michael
2012-01-01
In response to Goff, Boesdorfer, and Hunter's article on the use of a multicultural approach to teaching chemistry and the nature of science, I forward this critical reflective essay to discuss more general curriculum aspects of the relationship between the nature of science and science education in school contexts. Taking a social realist…
Turkish Version of Students' Ideas about Nature of Science Questionnaire: A Validation Study
ERIC Educational Resources Information Center
Cansiz, Mustafa; Cansiz, Nurcan; Tas, Yasemin; Yerdelen, Sundus
2017-01-01
Mass assessment of large samples' nature of science views has been one of the core concerns in science education research. Due to impracticality of using open-ended questionnaires or conducting interviews with large groups, another line of research has been required for mass assessment of pupils' nature of science conception meaningfully.…
ERIC Educational Resources Information Center
Loo, Seng Piew
2007-01-01
Culture without nature is empty, nature without culture is deaf Intercultural dialogue in higher education around the globe is needed to improve the theory, policy and practice of science and science education. The culture, cosmology and philosophy of "global" science as practiced today in all societies around the world are seemingly anchored in…
The Development of the Nature of Science View Scale (NOSvs) at University Level
ERIC Educational Resources Information Center
Temel, Senar; Sen, Senol; Özcan, Özgür
2018-01-01
Background: Determining individuals' views of the nature of science is quite important for researchers since it is both a component of scientific literacy and a fundamental aim of science education. Purpose: This study aims to develop a NOSvs for assessing prospective teachers' views of the nature of science and to analyse their psychometric…
Regulatory science requirements of labeling of genetically modified food.
Moghissi, A Alan; Jaeger, Lisa M; Shafei, Dania; Bloom, Lindsey L
2018-05-01
This paper provides an overview of the evolution of food labeling in the USA. It briefly describes the three phases of agricultural development consisting of naturally occurring, cross-bred, and genetically engineered, edited or modified crops, otherwise known as Genetically Modified Organisms (GMO). It uses the Best Available Regulatory Science (BARS) and Metrics for Evaluation of Regulatory Science Claims (MERSC) to evaluate the scientific validity of claims applicable to GMO and the Best Available Public Information (BAPI) to evaluate the pronouncements by public media and others. Subsequently claims on health risk, ecological risk, consumer choice, and corporate greed are evaluated based on BARS/MERSC and BAPI. The paper concludes by suggesting that labeling of food containing GMO should consider the consumer's choice, such as the food used by those who desire kosher and halal food. Furthermore, the consumer choice is already met by the exclusion of GMO in organic food.
A Heuristic Model of Consciousness with Applications to the Development of Science and Society
NASA Technical Reports Server (NTRS)
Curreri, Peter A.
2010-01-01
A working model of consciousness is fundamental to understanding of the interactions of the observer in science. This paper examines contemporary understanding of consciousness. A heuristic model of consciousness is suggested that is consistent with psycophysics measurements of bandwidth of consciousness relative to unconscious perception. While the self reference nature of consciousness confers a survival benefit by assuring the all points of view regarding a problem are experienced in sufficiently large population, conscious bandwidth is constrained by design to avoid chaotic behavior. The multiple hypotheses provided by conscious reflection enable the rapid progression of science and technology. The questions of free will and the problem of attention are discussed in relation to the model. Finally the combination of rapid technology growth with the assurance of many unpredictable points of view is considered in respect to contemporary constraints to the development of society.
Inclusive science education: learning from Wizard
NASA Astrophysics Data System (ADS)
Koomen, Michele Hollingsworth
2016-06-01
This case study reports on a student with special education needs in an inclusive seventh grade life science classroom using a framework of disability studies in education. Classroom data collected over 13 weeks consisted of qualitative (student and classroom observations, interviews, student work samples and video-taped classroom teaching and learning record using CETP-COP) methods. Three key findings emerged in the analysis and synthesis of the data: (1) The learning experiences in science for Wizard are marked by a dichotomy straddled between autonomy ["Sometimes I do" (get it)] and dependence ["Sometimes I don't (get it)], (2) the process of learning is fragmented for Wizard because it is underscored by an emerging disciplinary literacy, (3) the nature of the inclusion is fragile and functional. Implications for classroom practices that support students with learning disabilities include focusing on student strengths, intentional use of disciplinary literacy strategies, and opportunities for eliciting student voice in decision making.
NASA Astrophysics Data System (ADS)
Jennings, L. N.; Treasure, E.; Moore Myers, J.; McNulty, S.
2012-12-01
There is an ever-increasing volume of useful scientific knowledge about climate change effects and management options for natural ecosystems. Agencies such as the USDA Forest Service have been charged with the need to evaluate this body of knowledge and if necessary adapt to the impacts of climate change in their forest planning and management. However, the combined volume of existing information and rate of development of new information, lack of climate change specialists, and limited technology transfer mechanisms make efficient access and use difficult. The Template for Assessing Climate Change Impacts and Management Options (TACCIMO) addresses this difficulty through its publically accessible web-based tool that puts current and concise climate change science at the fingertips of forest planners and managers. A collaborative product of the USDA Forest Service Research Stations and the National Forest System, TACCIMO integrates peer-reviewed research with management and planning options through search and reporting tools that connect land managers with information they can trust. TACCIMO highlights elements from the wealth of climate change science with attention to what natural resource planners and managers need through a searchable repository of over 4,000 effects of climate change and close to 1,000 adaptive management options, all excerpted from a growing body of peer-reviewed scientific literature. A geospatial mapping application provides downscaled climate data for the nation and other spatially explicit models relevant to evaluating climate change impacts on forests. Report generators assist users in capturing outputs specific to a given location and resource area in a consistent and organized manner. For USDA Forest Service users, science findings can be readily linked with management conditions and capabilities from national forest management plans. The development of TACCIMO was guided by interactions with natural resource professionals, resulting in a flexible framework that allows new information to be added routinely and existing information to be reorganized as new science emerges and management needs change. TACCIMO is currently being used to support climate change science assessments for national forest land and management plan revisions in El Yunque National Forest in Puerto Rico, the Southern Sierra national forests in California, and Francis Marion National Forest in South Carolina. The tool is also being actively used by state, extension, and private natural resource professionals for climate change education and outreach. For all users, TACCIMO provides a fast, concise, and creditable starting point to guide critical thinking, additional analysis, and expert consultation to support all aspects of natural resource management decision making.
NASA Astrophysics Data System (ADS)
Kits, Kara M.
Both worldview and conceptions of nature of science (NOS) are important components in teaching and learning science. However, few empirical studies have examined the interplay between both of these components for teachers or students. Therefore, this study examines the possible relationship between worldview and conceptions of nature of science for secondary science teachers who currently teach at a Christian school. Qualitative methodologies developed a rich description of the worldview beliefs and conceptions of NOS for teachers in this study. Eight secondary science teachers employed at a private Christian school participated in the study. A Views of Nature of Science (VNOS) questionnaire and follow-up interviews elicited participants' conceptions of NOS. A semi-structured interview and Test of Preferred Explanations (TOPE) questionnaire elicited participants' worldview beliefs regarding nature and the natural world and causality. Participants communicated understandings of NOS that ranged from uninformed to informed in various aspects. In addition, while their worldview beliefs and conceptions of NOS reflected their faith beliefs, participants did not have a less informed view of NOS than other science teachers in previous studies. In fact, for several aspects of NOS, these participants articulated more informed conceptions of NOS than participants in previous studies. For these participants, faith did not appear to interfere with their ability to think scientifically in regards to their worldview beliefs regarding nature and causality. Rather, faith was incorporated into a scientifically compatible worldview regarding nature and causality that is not much different from other teachers. Other than the fact that these science teachers integrated their faith beliefs into some of their responses regarding worldview and NOS, these teachers did not appear to be much different from other science teachers. That is, there was no predictable pattern between worldview beliefs regarding nature and causality and conceptions of NOS. Therefore, this study provides empirical evidence that it is not necessary to be "devoid" of religious beliefs in order to have a scientifically informed view of the world. Teachers with religious convictions can have very scientific view of the world in terms of their worldview beliefs regarding nature and the natural world and conceptions of NOS.
Making sense of biologists' teaching: Two case studies of beliefs and discourse practices
NASA Astrophysics Data System (ADS)
Fifield, Steven James
1999-09-01
Undergraduate science courses are often criticized for their overemphasis of content coverage, neglect of inquiry approaches, and misrepresentation of the nature of science. Because conventional courses are influential models for future science teachers, they are often viewed as impediments to K--12 science education reform. To effectively modify how professors teach, we first need to better understand their beliefs and practices as teachers. This is an interpretive study of how two biology professors (Jim and Sue) make sense of their classroom practices in an introductory undergraduate course. Interviews are used to analyze their beliefs about teaching, learning, and science. Discourse analysis of lectures on classical genetics is used to examine their classroom practices as situated constructions of scientific knowledge. The two professors' held distinct beliefs about teaching and learning that were intricately interwoven with their beliefs about science. Jim's beliefs were largely consistent with conventional approaches to introductory science courses. He thought that introductory courses support the development of knowledge and skills that students need before they can engage in scientific inquiry. Sarah was critical of these conventional approaches. She valued courses that foster active learning and focus on applications of biology that are relevant to students' lives. But she could not enact many of her beliefs due to situational constraints associated with the course. Instead she viewed her efforts to help students succeed in a conventional course as a way to resist her colleagues' expectations that most students cannot do well in science. Discourse analysis of the professors' lectures revealed that they both relied on narratives to represent concepts in classical genetics. These narratives of concepts were distinct from other narrative forms in technical and popular presentations of biology. The relationship among these professors' beliefs and classroom practices suggest that what scientists' believe and do as teachers should be understood as dimensions of the nature of science. From this perspective, for some science professors, science education reform may entail not simply using different instructional strategies, but doing and thinking about science in radically new ways. The implications of this perspective for educational reform are discussed.
ERIC Educational Resources Information Center
Hacieminoglu, Esme
2014-01-01
The purpose of this study is to investigate how the in-service science teachers' (IST) perceptions and practices about curriculum and integration of the history of science (HOS) and the nature of science (NOS) affect their science courses. For this aim, how ISTs integrated the NOS and HOS in their elementary science courses for understanding of…
NASA Astrophysics Data System (ADS)
Smith, Trenton John
Pre-service secondary science individuals, future middle or high school instructors training to become teachers, along with both Honors and general first year undergraduate biology students were investigated to determine how they reason about and understand two core topics in Biology: matter and energy flow through biological systems and evolution by natural selection. Diagnostic Question Clusters were used to assess student understanding of the processes by which matter and energy flow through biological systems over spatial scales, from the atomic-molecular to ecosystem levels. Key concepts and identified misconceptions were examined over topics of evolution by natural selection using the multiple-choice Concept Inventory of Natural Selection (CINS) and open-response Assessing COntextual Reasoning about Natural Selection (ACORNS). Pre-service teachers used more scientifically based reasoning than the undergraduate students over the topics of matter and energy flow. The Honors students used more scientific and less improper informal reasoning than the general undergraduates over matter and energy flow. Honors students performed best on both the CINS and ACORNS items over natural selection, while the general undergraduates scored the lowest on the CINS, and the pre-service instructors scored lowest on the ACORNS. Overall, there remain a large proportion of students not consistently using scientific reasoning about these two important concepts, even in future secondary science teachers. My findings are similar to those of other published studies using the same assessments. In general, very few biology students at the college level use scientific reasoning that exhibits deep conceptual understanding. A reason for this could be that instructors fail to recognize deficiencies in student reasoning; they assume their students use principle-based reasoning. Another reason could be that principle-based reasoning is very difficult and our teaching approaches in college promote memorization of content rather than conceptual change. My findings are significant to the work and progression of concept inventories in biology education, as well as to the instructors of students at all levels of biology curriculum, and those of future science teachers.
,
2007-01-01
The U.S. Geological Survey (USGS), the Nation's largest water, earth, and biological science and civilian mapping agency, has studied the natural features of Alaska since its earliest geologic expeditions in the 1800s. The USGS Alaska Science Center (ASC), with headquarters in Anchorage, Alaska, studies the complex natural science phenomena of Alaska to provide scientific products and results to a wide variety of partners. The complexity of Alaska's unique landscapes and ecosystems requires USGS expertise from many science disciplines to conduct thorough, integrated research.
NASA Astrophysics Data System (ADS)
Wan, Zhi Hong; Wong, Siu Ling; Zhan, Ying
2013-05-01
Nature of science (NOS) is beginning to find its place in the science education in China. In a study which investigated Chinese science teacher educators' conceptions of teaching NOS to prospective science teachers through semi-structured interviews, five key dimensions emerged from the data. This paper focuses on the dimension, NOS content to be taught to prospective science teachers. Among a total of twenty NOS elements considered by the Chinese science teacher educators to be important ideas to be taught, five were suggested by no less than a half of the educators. They are (1) empirical basis of scientific investigation, (2) logics in scientific investigation, (3) general process of scientific investigation, (4) progressive nature of scientific knowledge, and (5) realist views of mind and natural world. This paper discusses the influence of Marxism, a special socio-cultural factor in China, on Chinese science teacher educators' conceptions of NOS content to be taught to prospective science teachers. We argue the importance of considering ideological traditions (mainly those in general philosophy and religion) when interpreting views of NOS or its content to be taught in different countries and regions and understanding students' conceptual ecology of learning NOS.
Portraying Real Science in Science Communication
ERIC Educational Resources Information Center
van Dijk, Esther M.
2011-01-01
In both formal and informal settings, not only science but also views on the nature of science are communicated. Although there probably is no singular nature shared by all fields of science, in the field of science education it is commonly assumed that on a certain level of generality there is a consensus on many features of science. In this…
Beyond Nature of Science: The Case for Reconceptualising "Science" for Science Education
ERIC Educational Resources Information Center
Erduran, Sibel
2014-01-01
In this paper, I argue that contemporary accounts of nature of science (NoS) are limited in their depiction of "science" and that new perspectives are needed to broaden their characterisation and appeal for science education. In particular, I refer to the role of interdisciplinary characterisations of science in informing the theory and…
Evidence of The Importance of Philosophy of Science Course On Undergraduate Level
NASA Astrophysics Data System (ADS)
Suyono
2018-01-01
This study aimed to describe academic impact of Philosophy of Science course in change of students’ conceptions on the Nature of science (NOS) before and after attending the course. This study followed one group pretest-posttest design. Treatment in this study was Philosophy of Science course for one semester. Misconception diagnostic tests of the NOS had been developed by Suyono et al. (2015) equipped with Certainty of Response Index (CRI). It consists of 15 concept questions about the NOS. The number of students who were tested on Chemistry Education Program (CEP) and Chemistry Program (CP) respectively 42 and 45 students. This study shows that after the learning of Philosophy of Science course happened: (1) the decrease of the number of misconception students on the NOS from 47.47 to 19.20% in CEP and from 47.47 to 18.18% in CP and (2) the decrease in the number of concepts that understood as misconception by the large number of students from 11 to 2 concepts on the CEP and from 10 to 2 concepts on CP. Therefore, the existence of Philosophy of Science course has a positive academic impact on students from both programs on undergraduate level.
The theoretical cognitive process of visualization for science education.
Mnguni, Lindelani E
2014-01-01
The use of visual models such as pictures, diagrams and animations in science education is increasing. This is because of the complex nature associated with the concepts in the field. Students, especially entrant students, often report misconceptions and learning difficulties associated with various concepts especially those that exist at a microscopic level, such as DNA, the gene and meiosis as well as those that exist in relatively large time scales such as evolution. However the role of visual literacy in the construction of knowledge in science education has not been investigated much. This article explores the theoretical process of visualization answering the question "how can visual literacy be understood based on the theoretical cognitive process of visualization in order to inform the understanding, teaching and studying of visual literacy in science education?" Based on various theories on cognitive processes during learning for science and general education the author argues that the theoretical process of visualization consists of three stages, namely, Internalization of Visual Models, Conceptualization of Visual Models and Externalization of Visual Models. The application of this theoretical cognitive process of visualization and the stages of visualization in science education are discussed.
NASA Astrophysics Data System (ADS)
Hằng, Ngô Vũ Thu; Meijer, Marijn Roland; Bulte, Astrid M. W.; Pilot, Albert
2017-09-01
The implementation of social constructivist approaches to learning science in primary education in Vietnamese culture as an example of Confucian heritage culture remains challenging and problematic. This theoretical paper focuses on the initial phase of a design-based research approach; that is, the description of the design of a formal, written curriculum for primary science education in which features of social constructivist approaches to learning are synthesized with essential aspects of Vietnamese culture. The written design comprises learning aims, a framework that is the synthesis of learning functions, learning settings and educational expectations for learning phases, and exemplary curriculum units. Learning aims are formulated to comprehensively develop scientific knowledge, skills, and attitudes toward science for primary students. Derived from these learning aims, the designed framework consists of four learning phases respectively labeled as Engagement, Experience, Exchange, and Follow-up. The designed framework refers to knowledge of the "nature of science" education and characteristics of Vietnamese culture as an example of Confucian heritage culture. The curriculum design aims to serve as an educational product that addresses previously analyzed problems of primary science education in the Vietnamese culture in a globalizing world.
NASA Astrophysics Data System (ADS)
Wadness, Michael J.
This dissertation addresses the research question: To what extent do secondary school science students attending the U.S. Particle Physics Masterclass change their view of the nature of science (NOS)? The U.S. Particle Physics Masterclass is a physics outreach program run by QuarkNet, a national organization of secondary school physics teachers and particle physicists partially funded by the National Science Foundation and the Department of Energy. The Masterclass is a one-day event in which high school physics students gather at a local research institution to learn about particle physics and the scientific enterprise. Student activities include introductory lectures in particle physics, laboratory tours, data analysis, and the discussion of their findings in a conference-like atmosphere. Although the Masterclass has been previously evaluated for students' learning of particle physics content, it was unknown if students' understanding of NOS changed after attending the Masterclass. This research concerns the problem of science literacy, specifically students' understanding of the nature of science (NOS). Previous research suggests that students do not implicitly acquire a sufficient understanding of NOS through the instruction of science content or through inquiry investigations. The literature suggests that sufficient understanding of NOS will only be successful if it is explicitly taught within a context. Unfortunately, research also suggests that many teachers do not include explicit instruction of NOS due various reasons that include a lack of time, understanding, and resources. Therefore, a need presents itself for curriculum extension programs in which explicit learning of NOS may occur. Due to the Masterclass explicitly including NOS within its introductory presentations, it was hypothesized that the remaining Masterclass activities may provide a context for student learning of NOS. The design of this study was a mixed methodology utilizing repeated quantitative and qualitative measures. Data collection consisted of a survey instrument consisting of Likert-type and open-response items administered as a pretest prior to the Masterclass, a posttest immediately following the Masterclass, and a second posttest administered two to three weeks after the Masterclass. Additional data were also collected through the use of phone interviews. Three different Masterclasses were evaluated over a two-year period at Fermilab (outside of Chicago) in February 2009 and February 2010 and at U.C. Irvine (outside of Los Angeles) in March 2010. The results of the combined analyses suggested students' understanding of NOS may have changed after attending the Masterclass, specifically in the NOS tenets regarding: indirect, subjective observations; use of imagination and creativity; collaboration; and the image of a scientist. Students' understanding of NOS did not appear to change in the NOS tenets regarding: tentative yet stable; social and cultural influences; no universal scientific method; and a comprehensive understanding of theory versus law. Although there are a number of outreach programs involving scientists in K-12 education, very few of them have been formally evaluated to determine if they provide adequate learning of NOS. Therefore, the significance of this study is that it provides data to support the claim that science outreach programs may be designed to address science literacy, specifically as a context for explicit NOS instruction.
Six University Canada/US/Mexico exchange program in Earth Hazards (EHaz)
NASA Astrophysics Data System (ADS)
Stix, J.; Rose, W. I.
2005-12-01
This program is a consortium of six research-based universities in Canada, Mexico, and the U.S (Michigan Tech, Buffalo, McGill, Waterloo, UNAM and Colima) funded by the Department of education in the US and equivalent organizations in Canada and Mexico as part of the NAFTA agreement. The focus area for the mobility program is mitigation of geological natural hazards in North America. The consortium universities will exchange students and faculty in several engineering and science disciplines (e.g. environmental engineering, civil engineering, geological engineering, social sciences and geology) involved in the study of natural geological hazards. Students in the social sciences also will be exchanged, recognizing that the solution of natural hazards problems involves critical political, social, and economic aspects. Students will be mobilized among the participating universities through one- to two-semester visits and up to 60 more students will be mobilized via short-term, intensive courses. Student activities will consist of three stages: intensive language training, natural hazards coursework, and professional or research internships with local industries, agencies or at the host university. In each of the next three years there will be a joint advanced volcanology class run via videoconferencing and a three week field trip to areas of volcanological interest in Canada, US and Mexico. The course and field trip foci for the next three years are: 2006: Megaeruptions/ LongValley and Yellowstone; 2007: Volcanic edifice failure/ Cascades and Western Canada 2008: Convergent plate Boundary Volcanism/ Mexican Volcanic Belt Although the six universities will have first access to the exchange we are constructing ways for other volcanology programs to share the teleconference courses and field trips.
NASA Astrophysics Data System (ADS)
Martin, Anita; Park, Soonhye; Hand, Brian
2017-08-01
This qualitative case study examined the process of change in an experienced elementary teacher's belief structure during implementation of an inquiry-based science program. Difficulties generally associated with ascertaining beliefs were minimized by using Leatham's (Journal of Mathematics Teacher Education, 9, 91-102 (2006) Sensible System Framework, enabling researchers to obtain rich descriptions of the teacher's belief structure by focusing on words (professed beliefs), intentions (intended beliefs), and actions (enacted beliefs). Models were constructed of the teacher's belief structure before and after implementation of the Science Writing Heuristic (SWH) approach (Hand et al. International Journal of Science Education, 26(2), 131-149, 2004), an inquiry-based approach to teaching science. Key beliefs for this teacher were related to how students learn, goals for teaching science, focus of instruction, and roles of teacher and student. Ultimately, the teacher shifted her professed, intended, and enacted beliefs resulting in a shift from a teacher-centered to a student-centered classroom. Findings support Thagard's Coherence Theory of Justification (2002), positing that change in one belief creates a state of disequilibrium that must be alleviated by changing/realigning other beliefs in order to re-establish coherence in the overall belief structure. This research focus is distinct from the general trend in teacher beliefs research in important ways. Most significant is that this study was not focused on the traditional two lists—those beliefs that were consistent with practice and those that were inconsistent with practice—but instead focused on the entwined nature of beliefs and practice and have shown that a teacher's practice can be viewed as their enacted beliefs, an integral part of the teacher's overall belief structure.
Understandings of the nature of science and decision making on science and technology based issues
NASA Astrophysics Data System (ADS)
Bell, Randy L.; Lederman, Norman G.
2003-05-01
The purpose of this investigation was to explicate the role of the nature of science in decision making on science and technology based issues and to delineate factors and reasoning associated with these types of decisions. Twenty-one volunteer participants purposively selected from the faculty of geographically diverse universities completed an open-ended questionnaire and follow-up interview designed to assess their decision making on science and technology based issues. Participants were subsequently placed in one of two groups based upon their divergent views of the nature of science as assessed by a second open-ended questionnaire and follow-up interview. Profiles of each group's decision making were then constructed, based on participants' previous responses to the decision making questionnaire and follow-up interviews. Finally, the two groups' decisions, decision influencing factors, and decision making strategies were compared. No differences were found between the decisions of the two groups, despite their disparate views of the nature of science. Participants in both groups based their decisions primarily on personal values, morals/ethics, and social concerns. While all participants considered scientific evidence in their decision making, most did not require absolute proof, even though many participants held absolute conceptions of the nature of science. Overall, the nature of science did not figure prominently in either group's decisions. These findings contrast with basic assumptions of current science education reform efforts and call for a re-examination of the goals of nature of science instruction. Developing better decision making skills - even on science and technology based issues - may involve other factors, including more value-based instruction and attention to intellectual/moral development.
On teaching the nature of science: perspectives and resources
NASA Astrophysics Data System (ADS)
Radloff, Jeffrey
2016-06-01
In this paper, I present a critical review of the recent book, On Teaching the Nature of Science: Perspectives and Resources, written by Douglas Allchin (2013). This publication presents an in-depth examination of the nature of science construct, as well as instruction for educators about how to teach it effectively utilizing historical case studies as vehicles for knowledge. Although several themes in the book merit further attention, a central issue present across all chapters is the largely masculine, monocultural nature of science presented, which is common to a multitude of scientific publications. In this review, I illustrate how culture and gender in science is not addressed throughout the book. I also discuss where we can build on the work of the author to integrate more aspects of gender and culture in teaching the nature of science.
A Unscientific Physics: Hegel and Whitehead on the Philosophy of Nature
NASA Astrophysics Data System (ADS)
Kite, David Knight
The thesis of this dissertation is that nature is not merely the province of the natural sciences, and that contemporary philosophy could greatly benefit from a recovery of the Philosophy of Nature. Although philosophy has traditionally developed its own concept of nature, philosophers have recently come to dispute the ability of philosophy to contribute to natural knowledge, and to deny that there is any knowledge of nature beyond that offered by the empirical sciences. This dissertation is an attempt to isolate the particular problems and questions which form a philosophical idea of nature. This study investigates the work of G. W. F. Hegel and Alfred North Whitehead in this field. These two philosophers are especially relevant to this task because they took up these questions during an age after natural science had become separate and distinct from philosophy. The relationship between empirical science and philosophy is therefore a central concern in their work in this area. This investigation concludes that the natural sciences present an abstract and partial account of nature while Philosophy of Nature is largely an attempt to describe the rationality of the individual. Both Hegel and Whitehead feel the central problem of philosophy of nature is to explain how nature itself is the agent of its own rationality, and how notions such as subjectivity, value and rationality are part of all forms and levels of physical existence. The Philosophy of Nature is therefore central to many current fields of philosophical interest, such as the Philosophy of Science and Natural Knowledge, the Philosophy of Mind, Ethics and the Metaphysics of Morals, and offers an important response to the division between the sciences and the humanities. The first three chapters examine Whitehead's and Hegel's critiques of scientific understanding and the limitations of such an approach to nature. The latter three chapters then present the basic features of Hegel's and Whitehead's own work in this field, and conclude with some reflections upon the relevance of this type of philosophy to contemporary problems.
ERIC Educational Resources Information Center
Partin, Matthew L.; Underwood, Eileen M.; Worch, Eric A.
2013-01-01
To develop a more scientifically literate society, students need to understand the nature of science, which may be affected by controversial topics such as evolution. There are conflicting views among researchers concerning the relationships between understanding evolution, acceptance of evolution, and understanding of the nature of science. Four…
ERIC Educational Resources Information Center
Kruse, Jerrid W.; Wilcox, Jesse L.
2013-01-01
Just as science education is too often limited to the acquisition of facts, technology education is too often limited to proficient use of technology. Neither of these goals fully realize a robust definition of science and technology literacy. To achieve greater science and technology literacy, students must understand the natures of both science…
Education of natural science in the work of the Municipal Center for Extracurricular Activities
NASA Astrophysics Data System (ADS)
Jokin, I.
2012-04-01
In the description of my work I presented my own experience in the organizing and carrying out of extracurricular activities with the students, the used modes and methods of work, the obtained results and some good practices in the field of natural sciences. Organizing and carrying out of scientific festivals, participation in joint projects together with scientific organizations. Key words: European dimension, interactive methods, key competences, natural sciences, extracurricular activities. We are witnesses of a fundamental change in the pedagogical culture and practice in our schools to establish the parameters of the quality of training. The good scientific culture is an important part of the students' education. Unfortunately, at the present time the scientific and technological culture is on a low level. One of the contemporary problems and realities of the education in natural science school subjects, as a whole and in particular in the secondary education, is the decreased interest for the training in them and in particular in physics, as well as synchronization of the interrelations: school environment - society. In many countries there is a drop in the orientation of the students towards the science and technology - the problem of Science and Technology (S&T). The training of the young people often creates some problems. The teachers meet with the problem of insufficient motivation of the learners for study and difficulties that they encounter in the process of training. The students find it difficult to apply the mastered knowledge to an applied context. The knowledge is rather academic and rather remote from the context, in which the children live and communicate, which makes it nonfunctional. At present there are not enough extracurricular activities that should meet these necessities of the Bulgarian school. The reasons are various, but they mainly consist in the lack of a material base, an exchange of experience and good practices and motivation. The necessity for key competences to improve their educational achievements is a part of the strategies of the European Union for spiritual growth, professional realization and sustainable development. The basic knowledge in the field of natural sciences and technologies is one of the eight equally important key competences presented in the European Reference Framework adopted in 2006 by the European Parliament and the Council of Europe. The educative work through extracurricular activities provides an opportunity to acquire these skills and so to achieve the inter-subject standards in education. The used methods and modes of work are active with regard to the realized activities: project training (method of J. Dewey), working groups, round tables, role games, learning and upbringing through cooperation (method of Kegan).
36 CFR 219.24 - Science consistency evaluations.
Code of Federal Regulations, 2011 CFR
2011-07-01
... 36 Parks, Forests, and Public Property 2 2011-07-01 2011-07-01 false Science consistency... AGRICULTURE PLANNING National Forest System Land and Resource Management Planning The Contribution of Science § 219.24 Science consistency evaluations. (a) The responsible official must ensure that plan amendments...
36 CFR 219.24 - Science consistency evaluations.
Code of Federal Regulations, 2010 CFR
2010-07-01
... 36 Parks, Forests, and Public Property 2 2010-07-01 2010-07-01 false Science consistency... AGRICULTURE PLANNING National Forest System Land and Resource Management Planning The Contribution of Science § 219.24 Science consistency evaluations. (a) The responsible official must ensure that plan amendments...
Teaching the Nature of Science with Scientific Narratives
ERIC Educational Resources Information Center
Adúriz-Bravo, Agustín
2014-01-01
The aim of this paper is to discuss the use of short science stories based on the history of science for science teacher education. Such stories are implemented to acquaint prospective and practicing science teachers in all educational levels with a conceptualisation of the nature of science (NOS) drawing from recent and contemporary developments…
Bayesian Methods and Universal Darwinism
NASA Astrophysics Data System (ADS)
Campbell, John
2009-12-01
Bayesian methods since the time of Laplace have been understood by their practitioners as closely aligned to the scientific method. Indeed a recent Champion of Bayesian methods, E. T. Jaynes, titled his textbook on the subject Probability Theory: the Logic of Science. Many philosophers of science including Karl Popper and Donald Campbell have interpreted the evolution of Science as a Darwinian process consisting of a `copy with selective retention' algorithm abstracted from Darwin's theory of Natural Selection. Arguments are presented for an isomorphism between Bayesian Methods and Darwinian processes. Universal Darwinism, as the term has been developed by Richard Dawkins, Daniel Dennett and Susan Blackmore, is the collection of scientific theories which explain the creation and evolution of their subject matter as due to the Operation of Darwinian processes. These subject matters span the fields of atomic physics, chemistry, biology and the social sciences. The principle of Maximum Entropy states that Systems will evolve to states of highest entropy subject to the constraints of scientific law. This principle may be inverted to provide illumination as to the nature of scientific law. Our best cosmological theories suggest the universe contained much less complexity during the period shortly after the Big Bang than it does at present. The scientific subject matter of atomic physics, chemistry, biology and the social sciences has been created since that time. An explanation is proposed for the existence of this subject matter as due to the evolution of constraints in the form of adaptations imposed on Maximum Entropy. It is argued these adaptations were discovered and instantiated through the Operations of a succession of Darwinian processes.
Kuhn in the Classroom, Lakatos in the Lab: Science Educators Confront the Nature-of-Science Debate.
ERIC Educational Resources Information Center
Turner, Steven; Sullenger, Karen
1999-01-01
Examines how science educators and educational researchers have drawn on the fragmented teachings of science studies about the nature of science, and how they have used those teachings as a resource in their own projects. Analyzes some of the deep assumptions about the relationship between science, school science, and children's learning.…
How Can Science Help Us Care for Nature? Hermeneutics, Fragility, and Responsibility for the Earth
ERIC Educational Resources Information Center
Joldersma, Clarence W.
2009-01-01
In this review essay, Clarence Joldersma argues for a novel role for science in developing an affirmative answer to his title question, "How can science help us care for nature?" He does so in dialogue with Clare Palmer's edited volume, "Teaching Environmental Ethics," Dirk Postma's "Why Care for Nature?" and Michael Bonnett's "Retrieving Nature."…
ERIC Educational Resources Information Center
Marchlewicz, Sara C.; Wink, Donald J.
2011-01-01
Nature of science refers to the processes of scientific activity and the social and cultural premises involved in the creation of scientific knowledge. Having an informed view of nature of science is important in the development of scientifically literate citizens. However, students often come to the classroom with misconceptions about nature of…
Relationship between students' understandings of nature of science and instructional context
NASA Astrophysics Data System (ADS)
Khishfe, Rola Fouad
The study investigated and compared two different instructional approaches (integrated and nonintegrated), which address the explicit teaching of nature of science (NOS), in relation to improving students' understanding of NOS. Participants were three teachers and their students---a total of 129---which comprised six groups of 89 ninth and 40 10th/11th graders. Each teacher taught two intact sections of the same grade level within a specific science discipline (environmental science, chemistry, or biology). The treatment for all groups spanned five to six weeks and involved teaching a unit, which included both the regular science content and NOS. Participants in each of the two intact classes were taught by the same teacher about their regular science content, with the difference being the context in which NOS was explicitly taught (integrated or nonintegrated). In the integrated group, NOS instruction was related to the science content addressed in the unit. In the nonintegrated group, NOS was taught through a set of generic (non content-embedded) activities that specifically addressed NOS aspects and were "interspersed" across the science content addressed in the unit. An open-ended questionnaire, in conjunction with semi-structured interviews, was used to assess participants' views prior to and following instruction. Data analysis involved a systematic process consistent with analytic induction. Results showed general improvements in participants' views of NOS regardless of whether or not NOS was integrated within the regular science content. The results of this study do not support the appealing assumption held by many science educators that integrating NOS within the context of the science content would better enhance the learning of NOS. However, the results suggest the possibility of an interaction between the type of change (naive to transitional, transitional to informed, naive to informed, no changes, regression) in students' views and the explicit instructional approach (integrated or nonintegrated) to teach NOS. Moreover, the findings suggest the transferability of NOS understandings among various contexts, with the consequence that learning NOS might not be context-dependent. Implications for the teaching and learning of NOS are discussed.
Natural science modules with SETS approach to improve students’ critical thinking ability
NASA Astrophysics Data System (ADS)
Budi, A. P. S.; Sunarno, W.; Sugiyarto
2018-05-01
SETS (Science, Environment, Technology and Society) approach for learning is important to be developed for middle school, since it can improve students’ critical thinking ability. This research aimed to determine feasibility and the effectiveness of Natural Science Module with SETS approach to increase their critical thinking ability. The module development was done by invitation, exploration, explanation, concept fortifying, and assessment. Questionnaire and test performed including pretest and posttest with control group design were used as data collection technique in this research. Two classes were selected randomly as samples and consisted of 32 students in each group. Descriptive data analysis was used to analyze the module feasibility and t-test was used to analyze their critical thinking ability. The results showed that the feasibility of the module development has a very good results based on assessment of the experts, practitioners and peers. Based on the t-test results, there was significant difference between control class and experiment class (0.004), with n-gain score of control and the experiment class respectively 0.270 (low) and 0.470 (medium). It showed that the module was more effective than the textbook. It was able to improve students’ critical thinking ability and appropriate to be used in learning process.
Wilson, Kristy J.; Rigakos, Bessie
2016-01-01
The scientific process is nonlinear, unpredictable, and ongoing. Assessing the nature of science is difficult with methods that rely on Likert-scale or multiple-choice questions. This study evaluated conceptions about the scientific process using student-created visual representations that we term “flowcharts.” The methodology, Scientific Process Flowchart Assessment (SPFA), consisted of a prompt and rubric that was designed to assess students’ understanding of the scientific process. Forty flowcharts representing a multidisciplinary group without intervention and 26 flowcharts representing pre- and postinstruction were evaluated over five dimensions: connections, experimental design, reasons for doing science, nature of science, and interconnectivity. Pre to post flowcharts showed a statistically significant improvement in the number of items and ratings for the dimensions. Comparison of the terms used and connections between terms on student flowcharts revealed an enhanced and more nuanced understanding of the scientific process, especially in the areas of application to society and communication within the scientific community. We propose that SPFA can be used in a variety of circumstances, including in the determination of what curricula or interventions would be useful in a course or program, in the assessment of curriculum, or in the evaluation of students performing research projects. PMID:27856551
The Impact of the Issue of Demarcation on Pre-Service Teachers' Beliefs on the Nature of Science
ERIC Educational Resources Information Center
Turgut, Halil; Akcay, Hakan; Irez, Serhat
2010-01-01
The arguments about the dimensions of nature of science and the strategies for teaching it are still controversial. In this research, as part of these arguments, a context based on the issue of demarcation of science from pseudoscience was offered and questioned for its effectiveness in nature of science teaching. The research was planned for an…
ERIC Educational Resources Information Center
Peters, Erin E.
2012-01-01
Knowledge about the nature of science has been advocated as an important component of science because it provides a framework on which the students can incorporate content knowledge. However, little empirical evidence has been provided that links nature of science knowledge with content knowledge. The purpose of this mixed method study was to…
Optical properties of a three-dimensional chiral metamaterial
NASA Astrophysics Data System (ADS)
Guo, Juan-Juan; Wang, Mao-Sheng; Huang, Wan-Xia
2017-12-01
Not Available Project supported by the National Natural Science Foundation of China (Grant No. 11304002), the Natural Science Foundation of Education Bureau of Anhui Province, China (Grant No. KJ2013A136), and the Natural Science Foundation of Anhui Province, China (Grant No. 1208085MA07).
NASA Astrophysics Data System (ADS)
Zhao, Gao; Wang, Yu; Niu, Chen; Liu, Zhong-Wei; Ouyang, Jiting; Chen, Qiang
2017-09-01
Not Available Project supported by the National Natural Science Foundation of China (Grant Nos. 11175024, 11375031, and 11505013), the Beijing Natural Science Foundation of China (Grant No. KZ201510015014), and the Beijing Municipal Natural Science Foundation, China (Grant No. 4162024).
Myths about the Nature of Technology and Engineering
ERIC Educational Resources Information Center
Kruse, Jerrid; Edgerly, Hallie; Easter, Jaclyn; Wilcox, Jesse
2017-01-01
Increasingly, science teachers are expected to devote instruction to technology and engineering, as encouraged by the Next Generation Science Standards (NGSS Lead States 2013). Just as scientific literacy requires understanding the nature of science (NOS), technological literacy must include understanding the philosophy and nature of technology…
The Philosophy of Science and Technology in China: Political and Ideological Influences
NASA Astrophysics Data System (ADS)
Guo, Yuanlin
2014-09-01
In China, the philosophy of science and technology (PST) is derived from "Dialectics of Nature" (DN), which is based on Engels' unfinished book Dialektik der Natur. DN as a political ideology provides political guidance for scientists and engineers. Therefore, since 1981, "Introduction to Dialectics of Nature" (IDN) has been an obligatory course for master's degree students who study natural science or technology. In 1987, DN was renamed PST by the Chinese government in order to communicate and do research. The IDN teachers constitute most of the scholars who research PST. Nowadays, in China, PST includes philosophy of nature, philosophy of science, philosophy of technology, sociology of science, sociology of technology, "science, technology and society," history of science, history of technology, management of science, and management of technology due to having too many IDN teachers. In fact, it is neither a branch of philosophy, nor a subject. The number of the IDN teachers has been increasing since 1981, which makes PST a miscellaneous collection of many branches or subjects. Finally, PST is facing two new challenges: the reduction of IDN and academic corruption.
NASA Astrophysics Data System (ADS)
Peters, Erin E.
The purpose of the present quasi-experimental mixed-method design is to examine the effectiveness of a developmental intervention (4-phase EMPNOS) to teach the nature of science using metacognitive prompts embedded in an inquiry unit. Eighty-eight (N=88) eighth grade students from four classrooms were randomly assigned to an experimental and a control group. All participants were asked to respond to a number of tests (content and nature of science knowledge) and surveys (metacognition of the nature of science, metacognitive orientation of the classroom, and self-regulatory efficacy). Participants were also interviewed to find problem solving techniques and shared experiences between the groups. It was hypothesized that the experimental group would outperform the control group in all measures. Partial support for the hypotheses was found. Specifically, results showed significant gains in content knowledge and nature of science knowledge of the experimental group over the control group. Qualitative findings revealed that students in the control group reported valuing authority over evidence, while the experimental group reported that they depended on consensus of their group on the interpretation of the evidence rather than authority, which is more closely aligned to the aspects of the nature of science. Four-phase EMPNOS may have implications as a useful classroom tool in guiding students to check their thinking for alignment to scientific thinking.
What Scientists Say: Scientists' Views of Nature of Science and Relation to Science Context
ERIC Educational Resources Information Center
Schwartz, Renee; Lederman, Norman
2008-01-01
The purpose of this study is to examine practicing scientists' views of nature of science (NOS) and explore possible relationships between these views and science context. Science educators emphasize teaching NOS through inquiry-based learning experiences throughout science disciplines. Yet aspects of NOS that are agreed upon as relevant to…
ERIC Educational Resources Information Center
Karaman, Ayhan
2016-01-01
Many countries all over the world have recently integrated nature of science (NOS) concepts into their science education standards. Providing professional support to teachers about NOS concepts is crucially important for successful implementation of the standards. For this purpose, a summer science camp was offered to elementary and science…
Collection and collation: theory and practice of Linnaean botany.
Müller-Wille, Staffan
2007-09-01
Historians and philosophers of science have interpreted the taxonomic theory of Carl Linnaeus (1707-1778) as an 'essentialist', 'Aristotelian', or even 'scholastic' one. This interpretation is flatly contradicted by what Linnaeus himself had to say about taxonomy in Systema naturae (1735), Fundamenta botanica (1736) and Genera plantarum (1737). This paper straightens out some of the more basic misinterpretations by showing that: (1) Linnaeus's species concept took account of reproductive relations among organisms and was therefore not metaphysical, but biological; (2) Linnaeus did not favour classification by logical division, but criticized it for necessarily failing to represent what he called 'natural' genera; (3) Linnaeus's definitions of 'natural' genera and species were not essentialist, but descriptive and polytypic; (4) Linnaeus's method in establishing 'natural' definitions was not deductive, but consisted in an inductive, bottom-up procedure of comparing concrete specimens. The conclusion will discuss the fragmentary and provisional nature of Linnaeus's 'natural method'. I will argue in particular that Linnaeus opted for inductive strategies not on abstract epistemological grounds, but in order to confer stability and continuity to the explorative practices of contemporary natural history.
A Geometric Model to Teach Nature of Science, Science Practices, and Metacognition
ERIC Educational Resources Information Center
Nyman, Matthew; St. Clair, Tyler
2016-01-01
Using the science practice model in science classes for preservice teachers addresses three important aspects of science teacher preparation: teaching the nonlinear nature of scientific process, using scientific practices rather than the ambiguous term "inquiry-based," and emphasizing the process of metacognition as an important tool in…
The Role of Philosophy of Science in Science Teacher Education.
ERIC Educational Resources Information Center
Bentley, Michael L.; Garrison, James W.
1991-01-01
Discusses teacher knowledge of nature of science. Asserts this is aspect of science content knowledge frequently neglected in teacher education. Differentiates between positivism and postpositivism. Describes textbook's role in fostering student misconceptions of nature of science. Suggests students be given chance to carry out their own…
Transformative Multicultural Science curriculum: A case study of middle school robotics
NASA Astrophysics Data System (ADS)
Grimes, Mary Katheryn
Multicultural Science has been a topic of research and discourse over the past several years. However, most of the literature concerning this topic (or paradigm) has centered on programs in tribal or Indigenous schools. Under the framework of instructional congruence, this case study explored how elementary and middle school students in a culturally diverse charter school responded to a Multicultural Science program. Furthermore, this research sought to better understand the dynamics of teaching and learning strategies used within the paradigm of Multicultural Science. The school's Robotics class, a class typically stereotyped as fitting within the misconceptions associated with the Western Modern Science paradigm, was the center of this case study. A triangulation of data consisted of class observations throughout two semesters; pre and post student science attitude surveys; and interviews with individual students, Robotic student teams, the Robotics class instructor, and school administration. Three themes emerged from the data that conceptualized the influence of a Multicultural Science curriculum with ethnically diverse students in a charter school's Robotics class. Results included the students' perceptions of a connection between science (i.e., Robotics) and their personal lives, a positive growth in the students' attitude toward science (and engineering), and a sense of personal empowerment toward being successful in science. However, also evident in the findings were the students' stereotypical attitudes toward science (and scientists) and their lack of understanding of the Nature of Science. Implications from this study include suggestions toward the development of Multicultural Science curricula in public schools. Modifications in university science methods courses to include the Multicultural Science paradigm are also suggested.
Aligning USGS senior leadership structure with the USGS science strategy
,
2010-01-01
The U.S. Geological Survey (USGS) is realigning its management and budget structure to further enhance the work of its science programs and their interdisciplinary focus areas related to the USGS Science Strategy as outlined in 'Facing Tomorrow's Challenges-U.S. Geological Survey Science in the Decade 2007-2017' (U.S. Geological Survey, 2007). In 2007, the USGS developed this science strategy outlining major natural-science issues facing the Nation and focusing on areas where natural science can make a substantial contribution to the well being of the Nation and the world. These areas include global climate change, water resources, natural hazards, energy and minerals, ecosystems, and data integration.
ERIC Educational Resources Information Center
Wan, Zhi Hong; Wong, Siu Ling; Yung, Benny Hin Wai
2011-01-01
Teaching nature of science (NOS) is beginning to take root in science education in China. This exploratory study interviewed 24 science teacher educators from economically developed parts of China about their conceptions of teaching NOS to prospective science teachers. Five key dimensions emerged from the data. This paper focuses on the dimension…
Social and Economic Analysis Branch: integrating policy, social, economic, and natural science
Schuster, Rudy; Walters, Katie D.
2015-01-01
The Fort Collins Science Center's Social and Economic Analysis Branch provides unique capabilities in the U.S. Geological Survey by leading projects that integrate social, behavioral, economic, and natural science in the context of human–natural resource interactions. Our research provides scientific understanding and support for the management and conservation of our natural resources in support of multiple agency missions. We focus on meeting the scientific needs of the Department of the Interior natural resource management bureaus in addition to fostering partnerships with other Federal and State managers to protect, restore, and enhance our environment. The Social and Economic Analysis Branch has an interdisciplinary group of scientists whose primary functions are to conduct both theoretical and applied social science research, provide technical assistance, and offer training to support the development of skills in natural resource management activities. Management and research issues associated with human-resource interactions typically occur in a unique context and require knowledge of both natural and social sciences, along with the skill to integrate multiple science disciplines. In response to these challenging contexts, Social and Economic Analysis Branch researchers apply a wide variety of social science concepts and methods which complement our rangeland/agricultural, wildlife, ecology, and biology capabilities. The goal of the Social and Economic Analysis Branch's research is to enhance natural-resource management, agency functions, policies, and decisionmaking.
Universal Cosmic Absolute and Modern Science
NASA Astrophysics Data System (ADS)
Kostro, Ludwik
The official Sciences, especially all natural sciences, respect in their researches the principle of methodic naturalism i.e. they consider all phenomena as entirely natural and therefore in their scientific explanations they do never adduce or cite supernatural entities and forces. The purpose of this paper is to show that Modern Science has its own self-existent, self-acting, and self-sufficient Natural All-in Being or Omni-Being i.e. the entire Nature as a Whole that justifies the scientific methodic naturalism. Since this Natural All-in Being is one and only It should be considered as the own scientifically justified Natural Absolute of Science and should be called, in my opinion, the Universal Cosmic Absolute of Modern Science. It will be also shown that the Universal Cosmic Absolute is ontologically enormously stratified and is in its ultimate i.e. in its most fundamental stratum trans-reistic and trans-personal. It means that in its basic stratum. It is neither a Thing or a Person although It contains in Itself all things and persons with all other sentient and conscious individuals as well, On the turn of the 20th century the Science has begun to look for a theory of everything, for a final theory, for a master theory. In my opinion the natural Universal Cosmic Absolute will constitute in such a theory the radical all penetrating Ultimate Basic Reality and will substitute step by step the traditional supernatural personal Absolute.
Owens, Elizabeth Oesterling; Patel, Molini M; Kirrane, Ellen; Long, Thomas C; Brown, James; Cote, Ila; Ross, Mary A; Dutton, Steven J
2017-08-01
To inform regulatory decisions on the risk due to exposure to ambient air pollution, consistent and transparent communication of the scientific evidence is essential. The United States Environmental Protection Agency (U.S. EPA) develops the Integrated Science Assessment (ISA), which contains evaluations of the policy-relevant science on the effects of criteria air pollutants and conveys critical science judgments to inform decisions on the National Ambient Air Quality Standards. This article discusses the approach and causal framework used in the ISAs to evaluate and integrate various lines of scientific evidence and draw conclusions about the causal nature of air pollution-induced health effects. The framework has been applied to diverse pollutants and cancer and noncancer effects. To demonstrate its flexibility, we provide examples of causality judgments on relationships between health effects and pollutant exposures, drawing from recent ISAs for ozone, lead, carbon monoxide, and oxides of nitrogen. U.S. EPA's causal framework has increased transparency by establishing a structured process for evaluating and integrating various lines of evidence and uniform approach for determining causality. The framework brings consistency and specificity to the conclusions in the ISA, and the flexibility of the framework makes it relevant for evaluations of evidence across media and health effects. Published by Elsevier Inc.
Does Science Presuppose Naturalism (or Anything at All)?
ERIC Educational Resources Information Center
Fishman, Yonatan I.; Boudry, Maarten
2013-01-01
Several scientists, scientific institutions, and philosophers have argued that science is committed to Methodological Naturalism (MN), the view that science, by virtue of its methods, is limited to studying "natural" phenomena and cannot consider or evaluate hypotheses that refer to supernatural entities. While they may in fact exist, gods,…
NASA Astrophysics Data System (ADS)
Jin, Tong-xing; Yang, Jun-yi; Fang, Yu; Han, Yan-bing; Song, Ying-lin
2018-05-01
Not Available Project supported by the National Natural Science Foundation of China (Grant Nos. U1630103 and 11704273), Natural Science Foundation of Jiangsu Province, China (Grant No. BK20170375), and Natural Science Foundation of the Higher Education Institutions of Jiangsu Province, China (Grant No. 17KJB140021).
Epistemology & the Nature of Science: A Classroom Strategy
ERIC Educational Resources Information Center
Viney, Mike
2007-01-01
Efforts to enact balanced treatment laws represent an attempt to wedge the supernatural into scientific explanations. Current attempts to displace methodological naturalism from science indicate a need to make the nature of science a central theme in our instruction. This article utilizes constructivist listening to introduce students to five…
Teaching the "Nature of Science": Modest Adaptations or Radical Reconceptions?
ERIC Educational Resources Information Center
Hipkins, Rosemary; Barker, Miles; Bolstad, Rachel
2005-01-01
This article explores the nature of a continuing mismatch between curriculum reform rhetoric in science education and actual classroom practice. Lack of philosophical consensus about the nature of science (NOS); lack of appropriate curriculum guidance, classroom materials and pedagogical content knowledge for NOS teaching; teachers' personal…
Engelhardt, D V
1994-01-01
The philosophical interpretation of nature around 1800 exercised a deep influence on the natural sciences and medical disciplines, especially in regard to organisms, diseases and the relationship between nature and culture. Natural scientists and speculative philosophers in the Romantic era, a special phase between the 18th and 19th century, criticized the science of their time, but they in no way challenged the value and justification of an empirical approach to nature, though they rejected the absolutizing aspect of its positivistic perspective and pleaded for the unity of natural phenomena, the responsibility of man for nature, the concept of medicine as science and art.
NASA Astrophysics Data System (ADS)
Lieu, Sang-Chong
In the National Science Education Standards both STS/Constructivist teaching strategies and student understanding of the nature of science are stressed. If certain teaching practices can achieve both goals at one time, many problems will be solved. Such relationships were investigated in this study. Teacher subjects were selected based on two extremes of scores on the Testing on Understanding Science. The Secondary Teacher Analysis Matrix - Science Version was used to categorize teachers into their use of STS/Constructivist or more traditional strategies based on their teaching behaviors observed from video tapes. After the teacher subjects were selected, a non-equivalent control group design was adapted for the administration of items from the Views on Science-Technology-Society (VOSTS) to the students of these teachers. Pre- and post-test data were collected using 20 VOSTS items. VOSTS options were categorized into a Congruent/Partially Congruent/Naive format by a panel of six science educators. A special scoring procedure was devised for the VOSTS items to allow the use of inferential statistics. When performance on 17 VOSTS items were studied, more understanding of the nature of science by teachers, the presence of an STS/Constructivist learning environment in the classroom, or a combination of both factors was not found to help students learn more about the nature of science. Explanations for such results are offered. A McNemar test was performed to take a closer look at the 17 VOSTS items individually. The results indicated that students who were taught by STS/Constructivist teachers with high TOUS scores moved toward "congruent" views concerning the nature of science on a number of VOSTS items. Also, students who were taught by more traditional teachers with low TOUS scores moved toward "naive" views on other VOSTS items. The findings support the fact that teachers who know more about the nature of science and who practice many of the STS/Constructivist teaching strategies assist students in learning more about the nature of science.
The Science of Science Communication and Protecting the Science Communication Environment
NASA Astrophysics Data System (ADS)
Kahan, D.
2012-12-01
Promoting public comprehension of science is only one aim of the science of science communication and is likely not the most important one for the well-being of a democratic society. Ordinary citizens form quadrillions of correct beliefs on matters that turn on complicated scientific principles they cannot even identify much less understand. The reason they fail to converge on beliefs consistent with scientific evidence on certain other consequential matters—from climate change to genetically modified foods to compusory adolescent HPV vaccination—is not the failure of scientists or science communicators to speak clearly or the inability of ordinary citizens to understand what they are saying. Rather, the source of such conflict is the proliferation of antagonistic cultural meanings. When they become attached to particular facts that admit of scientific investigation, these meanings are a kind of pollution of the science communication environment that disables the faculties ordinary citizens use to reliably absorb collective knowledge from their everyday interactions. The quality of the science communication environment is thus just as critical for enlightened self-government as the quality of the natural environment is for the physical health and well-being of a society's members. Understanding how this science communication environment works, fashioning procedures to prevent it from becoming contaminated with antagonistic meanings, and formulating effective interventions to detoxify it when protective strategies fail—those are the most critical functions science communication can perform in a democratic society.
DOE Office of Scientific and Technical Information (OSTI.GOV)
Wolfe, Amy K; Dale, Virginia H; Arthur, Taryn A
This chapter approaches participatory modeling in environmental decision making from an atypical perspective. It broadly addresses the question of how to assure that science conducted to assist practitioners improves resource management. More specifically, it describes a case involving environmental science and natural resource management at Fort Benning, a U.S. Army installation in the southeastern United States where disparate environmental research projects were funded by a single federal agency to enhance the ability of Fort Benning resource managers to achieve their resource management goals. The role of our effort was to integrate the scientific studies in a manner that would bemore » meaningful and useful for resource managers. Hence we assembled a team consisting of an anthropologist, ecologist, microbiologist, statistician, and geographic information systems specialist who developed a common framework that served as the basis for this integration. The team first used a Delphi expert elicitation, which evolved into an approach more akin to facilitated negotiation. This second approach arose organically, particularly when our team took advantage of an opportunity for face-to-face interaction. Although the shift in our approach was unplanned, it proved to be highly productive. We discuss the potential utility of our approach for other situations and suggest that it would be useful to initiate at the beginning of research where the aim is to produce scientific results that meet practitioners needs, specifically in the realm of environmental science and resource management.« less
The Need for More Scientific Approaches to Science Communication
NASA Astrophysics Data System (ADS)
Sadri, S.
2015-12-01
Two possible goals for public science communication are: a) improving the public's in-depth understanding of the scientific subject; and b) fostering the public's belief that scientific efforts make a better world. Although (a) is often a natural target when scientists try to communicate their subject, the importance of (b) is underscored by the NSF, who investigated the "cultural authority of science" to understand science's role in policymaking. Surveys consistently find that there is a huge divergence between "knowledge" and "admiration" of science in society because science literacy has very little to do with public perception of science. However, even if both goals could be achieved, it doesn't necessarily mean that the general public will act on scientific advice. Different parts of society have different criteria for reaching judgments about how to act in their best interests. This makes the study of science communication important when controversies arise requiring public engagement. Climate change, sustainability, and water crises are only a few examples of such controversial subjects. Science communication can be designed carefully to sponsor dialogue and participation, to overcome perceptual obstacles, and to engage with stakeholders and the wider public. This study reviews work in social science that tries to answer: When is science communication necessary? What is involved in science communication? What is the role of media in effective science communication? It also reviews common recommendations for improved public engagement by scientists and science organizations. As part of this effort, I will present some portions of my science films. I will conclude with suggestions on what scientific institutions can focus on to build trust, relationships, and participation across segments of the public. Keywords: informal learning, popular science, climate change, water crisis, science communication, science films, science policy.
ERIC Educational Resources Information Center
Hansson, Lena; Leden, Lotta
2016-01-01
In the science education research field there is a large body of literature on the "nature of science" (NOS). NOS captures issues about what characterizes the research process as well as the scientific knowledge. Here we, in line with a broad body of literature, use a wide definition of NOS including also e.g. socio-cultural aspects. It…
ERIC Educational Resources Information Center
Hacioglu, Yasemin; Yamak, Havva; Kavak, Nusret
2016-01-01
The aim of this study is to reveal pre-service science teachers' cognitive structures regarding Science, Technology, Engineering, Mathematics (STEM) and science education. The study group of the study consisted of 192 pre-service science teachers. A Free Word Association Test (WAT) consisting of science, technology, engineering, mathematics and…
ERIC Educational Resources Information Center
Leung, Jessica Shuk Ching; Wong, Alice Siu Ling; Yung, Benny Hin Wai
2015-01-01
Understandings of nature of science (NOS) are a core component of scientific literacy, and a scientifically literate populace is expected to be able to critically evaluate science in the media. While evidence has remained inconclusive on whether better NOS understandings will lead to critical evaluation of science in the media, this study aimed at…
ERIC Educational Resources Information Center
Zorlu, Yusuf
2017-01-01
This study aims to investigate the relationship between preservice science teachers' epistemological beliefs about the nature of science (NOS) and their science learning self-efficacy perceptions by adapting a science learning self-efficacy scale for use in Turkey. This study is model as "Relational Survey". A total of 125 preservice…
ERIC Educational Resources Information Center
Akcay, Behiye; Akcay, Hakan
2015-01-01
The study reports on an investigation about the impact of science-technology-society (STS) instruction on middle school student understanding of the nature of science (NOS) and attitudes toward science compared to students taught by the same teacher using traditional textbook-oriented instruction. Eight lead teachers used STS instruction an…
Thai Pre-Service Science Teachers' Conceptions of the Nature of Science
ERIC Educational Resources Information Center
Buaraphan, Khajornsak; Sung-ong, Sunun
2009-01-01
The conceptions of the nature of science (NOS), particularly scientific knowledge, scientific method, scientists' work, and scientific enterprise, of 113 Thai pre-service science teachers were was captured by the Myths of Science Questionnaire (MOSQ) in the first semester of the 2008 academic year. The data was quantitatively and qualitatively…
Thai In-Service Science Teachers' Conceptions of the Nature of Science
ERIC Educational Resources Information Center
Buaraphan, Khajornsak
2009-01-01
Understanding of the Nature of Science (NOS) serves as one of the desirable characteristics of science teachers. The current study attempted to explore 101 Thai in-service science teachers' conceptions of the NOS, particularly scientific knowledge, the scientific method, scientists' work, and scientific enterprise, by using the Myths of Science…
Evaluating Instrument Quality in Science Education: Rasch-Based Analyses of a Nature of Science Test
ERIC Educational Resources Information Center
Neumann, Irene; Neumann, Knut; Nehm, Ross
2011-01-01
Given the central importance of the Nature of Science (NOS) and Scientific Inquiry (SI) in national and international science standards and science learning, empirical support for the theoretical delineation of these constructs is of considerable significance. Furthermore, tests of the effects of varying magnitudes of NOS knowledge on…
Instructional Strategy for Promoting Understanding of Nature of Science
ERIC Educational Resources Information Center
Chimphali, Kamonrat; Nuangchalerm, Prasart; Ladachart, Luecha
2013-01-01
The Nature of science (NOS) has been thought of as an important component of "Science literacy" that the goal of standards-based science education. The aim of this paper try to present NOS for science education. Hereby, we may compile and notice where we promote students' understanding NOS. We find the highlight by using…
ERIC Educational Resources Information Center
Bell, Randy L.; Mulvey, Bridget K.; Maeng, Jennifer L.
2016-01-01
This investigation examined outcomes associated with nature of science (NOS) instruction along a science-content context continuum on the development of secondary preservice science teachers' conceptions of and plans to teach NOS, moving beyond the common dichotomy of contextualized versus noncontextualized instruction. Participants comprised six…
Teaching and Assessing the Nature of Science
ERIC Educational Resources Information Center
Clough, Michael P.
2011-01-01
Understanding the nature of science (NOS)--what science is and how it works, the assumptions that underlie scientific knowledge, how scientists function as a social group, and how society impacts and reacts to science--is prominent in science education reform documents (Rutherford and Ahlgren 1990; AAAS 1993; McComas and Olson 1998; NRC 1996; AAAS…
The Pedagogy of Science Teachers from Non-Natural Science Backgrounds
ERIC Educational Resources Information Center
Woods, Shaneka
2017-01-01
This is a descriptive, exploratory, qualitative, collective case study that explores the pedagogical practices of science teachers who do not hold natural science degrees. The intent of this study is to support the creation of alternative pathways for recruiting and retaining high-quality secondary science teachers in K-12 education. The…
Integrating the Nature of Science
ERIC Educational Resources Information Center
Weiland, Ingrid; Blieden, Katherine; Akerson, Valarie
2014-01-01
The nature of science (NOS) describes what science is and how knowledge in science is developed (NSTA 2013). To develop elementary students' understandings of how scientists explore the world, the authors--an education professor and a third-grade teacher--endeavored to integrate NOS into a third-grade life science unit. Throughout the lesson,…
Explicit Reflective Nature of Science Instruction: Evolution, Intelligent Design, and Umbrellaology
ERIC Educational Resources Information Center
Scharmann, Lawrence C.; Smith, Mike U.; James, Mark C.; Jensen, Murray
2005-01-01
The investigators sought to design an instructional unit to enhance an understanding of the nature of science (NOS) by taking into account both instructional best practices and suggestions made by noted science philosopher Thomas Kuhn. Preservice secondary science teachers enrolled in a course, "Laboratory Techniques in the Teaching of Science,"…
Engaging Nature of Science to Preservice Teachers through Inquiry-Based Classroom
ERIC Educational Resources Information Center
Nuangchalerm, Prasart
2013-01-01
Inquiry-based classroom is widely distributed in the school science based on its useful and effective instruction. Science teachers are key elements allowing students to have scientific inquiry. If teachers understand and imply inquiry-based learning into science classroom, students will learn science as scientific inquiry and understand nature of…
ERIC Educational Resources Information Center
Wan, Zhi Hong; Wong, Siu Ling
2013-01-01
Teaching nature of science (NOS) is beginning to find its place in science education in China. This exploratory study interviewed twenty-four Chinese science teacher educators about their conceptions of teaching NOS to pre-service science teachers. Although five dimensions emerged, this paper mainly focuses on reporting the findings relevant to…
McKinley, Duncan C.; Miller-Rushing, Abe J.; Ballard, Heidi L.; Bonney, Rick; Brown, Hutch; Cook-Patton, Susan; Evans, Daniel M.; French, Rebecca A.; Parrish, Julia; Phillips, Tina B.; Ryan, Sean F.; Shanley, Lea A.; Shirk, Jennifer L.; Stepenuck, Kristine F.; Weltzin, Jake F.; Wiggins, Andrea; Boyle, Owen D.; Briggs, Russell D.; Chapin, Stuart F.; Hewitt, David A.; Preuss, Peter W.; Soukup, Michael A.
2017-01-01
Citizen science has advanced science for hundreds of years, contributed to many peer-reviewed articles, and informed land management decisions and policies across the United States. Over the last 10 years, citizen science has grown immensely in the United States and many other countries. Here, we show how citizen science is a powerful tool for tackling many of the challenges faced in the field of conservation biology. We describe the two interwoven paths by which citizen science can improve conservation efforts, natural resource management, and environmental protection. The first path includes building scientific knowledge, while the other path involves informing policy and encouraging public action. We explore how citizen science is currently used and describe the investments needed to create a citizen science program. We find that:Citizen science already contributes substantially to many domains of science, including conservation, natural resource, and environmental science. Citizen science informs natural resource management, environmental protection, and policymaking and fosters public input and engagement.Many types of projects can benefit from citizen science, but one must be careful to match the needs for science and public involvement with the right type of citizen science project and the right method of public participation.Citizen science is a rigorous process of scientific discovery, indistinguishable from conventional science apart from the participation of volunteers. When properly designed, carried out, and evaluated, citizen science can provide sound science, efficiently generate high-quality data, and help solve problems.
Consensus for second-order multi-agent systems with position sampled data
NASA Astrophysics Data System (ADS)
Wang, Rusheng; Gao, Lixin; Chen, Wenhai; Dai, Dameng
2016-10-01
In this paper, the consensus problem with position sampled data for second-order multi-agent systems is investigated. The interaction topology among the agents is depicted by a directed graph. The full-order and reduced-order observers with position sampled data are proposed, by which two kinds of sampled data-based consensus protocols are constructed. With the provided sampled protocols, the consensus convergence analysis of a continuous-time multi-agent system is equivalently transformed into that of a discrete-time system. Then, by using matrix theory and a sampled control analysis method, some sufficient and necessary consensus conditions based on the coupling parameters, spectrum of the Laplacian matrix and sampling period are obtained. While the sampling period tends to zero, our established necessary and sufficient conditions are degenerated to the continuous-time protocol case, which are consistent with the existing result for the continuous-time case. Finally, the effectiveness of our established results is illustrated by a simple simulation example. Project supported by the Natural Science Foundation of Zhejiang Province, China (Grant No. LY13F030005) and the National Natural Science Foundation of China (Grant No. 61501331).
ERIC Educational Resources Information Center
Chen, Sufen; Chang, Wen-Hua; Lieu, Sang-Chong; Kao, Huey-Lien; Huang, Mao-Tsai; Lin, Shu-Fen
2013-01-01
This study developed an empirically based questionnaire to monitor young learners' conceptions of nature of science (NOS). The questionnaire, entitled Students' Ideas about Nature of Science (SINOS), measured views on theory-ladenness, use of creativity and imagination, tentativeness of scientific knowledge, durability of scientific knowledge,…
Historically the natural sciences have played a major role in informing environmental management decisions. However, review of landmark cases like Love Canal, NY and Times Beach, MO have shown that the value of natural science information in decision making can be overwhelmed by ...
ERIC Educational Resources Information Center
Martin-Dunlop, Catherine S.
2013-01-01
This study investigated prospective elementary teachers' understandings of the nature of science and explored associations with their guided-inquiry science learning environment. Over 500 female students completed the Nature of Scientific Knowledge Survey (NSKS), although only four scales were analyzed-Creative, Testable, Amoral, and Unified. The…
On Teaching the Nature of Science: Perspectives and Resources
ERIC Educational Resources Information Center
Radloff, Jeffrey
2016-01-01
In this paper, I present a critical review of the recent book, "On Teaching the Nature of Science: Perspectives and Resources," written by Douglas Allchin (2013). This publication presents an in-depth examination of the nature of science construct, as well as instruction for educators about how to teach it effectively utilizing…
An overview of thermoelectric films: Fabrication techniques, classification, and regulation methods
NASA Astrophysics Data System (ADS)
Feng, Jing-jing; Zhu, Wei; Deng, Yuan
2018-04-01
Not Available Project supported by the Joint Funds of the National Natural Science Foundation of China (Grant No. U1601213), the National Natural Science Foundation of China (Grant Nos. 51601005 and 61704006), the Beijing Natural Science Foundation (Grant No. 2182032), and the Fundamental Research Funds for the Central Universities.
3D animation model with augmented reality for natural science learning in elementary school
NASA Astrophysics Data System (ADS)
Hendajani, F.; Hakim, A.; Lusita, M. D.; Saputra, G. E.; Ramadhana, A. P.
2018-05-01
Many opinions from primary school students' on Natural Science are a difficult lesson. Many subjects are not easily understood by students, especially on materials that teach some theories about natural processes. Such as rain process, condensation and many other processes. The difficulty that students experience in understanding it is that students cannot imagine the things that have been taught in the material. Although there is material to practice some theories but is actually quite limited. There is also a video or simulation material in the form of 2D animated images. Understanding concepts in natural science lessons are also poorly understood by students. Natural Science learning media uses 3-dimensional animation models (3D) with augmented reality technology, which offers some visualization of science lessons. This application was created to visualize a process in Natural Science subject matter. The hope of making this application is to improve student's concept. This app is made to run on a personal computer that comes with a webcam with augmented reality. The app will display a 3D animation if the camera can recognize the marker.
Solovey, Mark
2012-03-01
During the 1960s, a growing contingent of left-leaning voices claimed that the social sciences suffered mistreatment and undue constraints within the natural science-dominated federal science establishment. According to these critics, the entrenched scientific pecking order in Washington had an unreasonable commitment to the unity of the sciences, which reinforced unacceptable inequalities between the social and the natural sciences. The most important political figure who advanced this critique, together with a substantial legislative proposal for reform, was the Oklahoma Democratic Senator Fred Harris. Yet histories of science and social science have told us surprisingly little about Harris. Moreover, existing accounts of his effort to create a National Social Science Foundation have misunderstood crucial features of this story. This essay argues that Harris's NSSF proposal developed into a robust, historically unique, and increasingly critical liberal challenge to the post-World War II federal science establishment's treatment of the social sciences as "second-class citizens."
Investing in citizen science can improve natural resource management and environmental protection
McKinley, Duncan C.; Miller-Rushing, Abraham J.; Ballard, Heidi L.; Bonney, Rick; Brown, Hutch; Evans, Daniel M.; French, Rebecca A.; Parrish, Julia K.; Phillips, Tina B.; Ryan, Sean F.; Shanley, Lea A.; Shirk, Jennifer L.; Stepenuck, Kristine F.; Weltzin, Jake F.; Wiggins, Andrea; Boyle, Owen D.; Briggs, Russell D.; Chapin, Stuart F.; Hewitt, David A.; Preuss, Peter W.; Soukup, Michael A.
2015-01-01
Citizen science has made substantive contributions to science for hundreds of years. More recently, it has contributed to many articles in peer-reviewed scientific journals and has influenced natural resource management and environmental protection decisions and policies across the nation. Over the last 10 years, citizen science—participation by the public in a scientific project—has seen explosive growth in the United States, particularly in ecology, the environmental sciences, and related fields of inquiry. In this report, we explore the current use of citizen science in natural resource and environmental science and decision making in the United States and describe the investments organizations might make to benefit from citizen science.
ERIC Educational Resources Information Center
Research Corp., Tucson, AZ.
Data from nearly 3,000 faculty in the natural sciences at 133 predominantly undergraduate colleges and universities show significant discipline- and gender-based differences in peer-reviewed publications produced. This study was part of a larger examination of the role of research in the natural sciences at undergraduate institutions. Faculty in…
Two-Dimensional Borane with ‘Banana’ Bonds and Dirac-Like Ring
NASA Astrophysics Data System (ADS)
Wu, Hong; Wang, Yun-Hui; Yang, Zhi-Hong; Li, Feng
2018-03-01
Not Available Supported by the National Natural Science Foundation of China under Grant Nos 61605087 and 61704083, the International Postdoctoral Exchange Fellowship Program between JUELICH and OCPC under Grant No 20161001, the Natural Science Foundation of Jiangsu Province under Grant No BK20160881, the Jiangsu Provincial Natural Science Research Project under Grant No 16KJB140010, and the Science Foundation of Nanjing University of Posts and Telecommunications under Grant No NY215064.
The web of life: Natural science information on the Internet
Clement, Gail
2000-01-01
As society has come to equate economic prosperity with the health of our living resources, national science policy has called for the development of a comprehensive digital knowledge base to support informed decision making and wise resource management. The Internet and World Wide Web demonstrate the earliest stages of this evolving virtual library of the natural world, offering an increasing array of high-quality, innovative resources and services in the natural science arena. This article discusses the leading providers of natural science information on the Internet and highlights some of the exemplary resources they are delivering online. The discussion concludes with a brief discussion of the role of the librarian in developing the Web of natural science knowledge online and provides a short Webliography of starting points for further exploration of this subject area. PDF
Medicine as combining natural and human science.
Dreyfus, Hubert L
2011-08-01
Medicine is unique in being a combination of natural science and human science in which both are essential. Therefore, in order to make sense of medical practice, we need to begin by drawing a clear distinction between the natural and the human sciences. In this paper, I try to bring the old distinction between the Geistes and Naturwissenschaften up to date by defending the essential difference between a realist explanatory theoretical study of nature including the body in which the scientist discovers the causal properties of natural kinds and the interpretive understanding of human beings as embodied agents which, as Charles Taylor has convincingly argued, requires a hermeneutic account of self-interpreting human practices.
Science-based natural resource management decisions: what are they?
T.J. Mills; T.M. Quigley; F.J. Everest
2001-01-01
While many people interested in natural resources management propose science-based decisions, it is not clear what âscience-basedâ means. Science-based decisions are those that result from the full and complete consideration of the relevant science information. We offer five guidelines to focus the scientistâs contributions to science-based decisionmaking and use the...
ERIC Educational Resources Information Center
McComas, William F.
2017-01-01
The nature of science (NOS) is a phrase used to represent the rules of the game of science. Arguably, NOS is the most important content issue in science instruction because it helps students understand the way in which knowledge is generated and validated within the scientific enterprise. This article offers a proposal for the elements of NOS that…
NASA Astrophysics Data System (ADS)
Howe, Eric M.
Preservice elementary teachers enrolled in an elective biology course participated in an eight-class unit of instruction based on the history of research in understanding the disease sickle-cell anemia. Students were introduced to the disease as a "mystery" for them to solve, and subsequently developed an understanding of the disease from several disciplines in biology (e.g., genetics, ecology, evolution, molecular biology). The unit involved open-ended problems in which students examined evidence and developed explanations in a manner analogous to the reasoning used by Anthony C. Allison and his colleagues during the early to middle part of the twentieth century. Throughout the unit, students were challenged to explicitly and reflectively connect their work with the historical material to more general conclusions about aspects of the nature of science. These aspects included (a) the nature of scientific theories, (b) the tentative nature of science, (c) the difference between scientific theories and laws, (d) the validity of observational methods in science, and (e) the subjective (theory-laden) nature of science. The research measured students' pre- and post-instruction views by using both an open-ended survey (VNOS) and follow-up, semi-structured interviews. The results indicated that an appreciable number of students underwent a change or enrichment in their views for some of the nature of science aspects. Moreover, change or enrichment in students' views was directly attributable to their work in the sickle-cell unit as evidenced from the specific examples students articulated in their post-instruction responses in support of their more informed views. In general, the findings of this research lend empirical support to the value of having students actively recapitulate the history of science to improve their nature of science conceptions. This is facilitated when the lessons challenge students to explicitly and reflectively develop views of the nature of science in tandem with their examinations of the problems taken from the history of science.
NASA Astrophysics Data System (ADS)
Goodwin, M.; Pandya, R.; Udu-gama, N.; Wilkins, S.
2017-12-01
While one-size-fits all may work for most hats, it rarely does for communities. Research products, methods and knowledge may be usable at a local scale, but applying them often presents a challenge due to issues like availability, accessibility, awareness, lack of trust, and time. However, in an environment with diminishing federal investment in issues related climate change, natural hazards, and natural resource use and management, the ability of communities to access and leverage science has never been more urgent. Established, yet responsive frameworks and methods can help scientists and communities work together to identify and address specific challenges and leverage science to make a local impact. Through the launch of over 50 community science projects since 2013, the Thriving Earth Exchange (TEX) has created a living framework consisting of a set of milestones by which teams of scientists and community leaders navigate the challenges of working together. Central to the framework are context, trust, project planning and refinement, relationship management and community impact. We find that careful and respectful partnership management results in trust and an open exchange of information. Community science partnerships grounded in local priorities result in the development and exchange of stronger decision-relevant tools, resources and knowledge. This presentation will explore three methods TEX uses to apply its framework to community science partnerships: cohort-based collaboration, online dialogues, and one-on-one consultation. The choice of method should be responsive to a community's needs and working style. For example, a community may require customized support, desire the input and support of peers, or require consultation with multiple experts before deciding on a course of action. Knowing and applying the method of engagement best suited to achieve the community's objectives will ensure that the science is most effectively translated and applied.
Lyrical language and nursing discourse: can science be the tool of love?
Cody, William K
2002-04-01
Lyricism is a quality of discourse expressing intensely personal feeling or emotion. It is historically associated with romanticism, which involves the imagination and emotions, the use of autobiographical material, the exaltation of a common humanity, and an appreciation of nature. The language of a science conveys the meaning, significance, and utility of concepts among scholars, practitioners, and the general public. It is incumbent upon nurses to attempt to represent in our disciplinary language the realities lived by people, that is, to apprehend, describe, and explain the full breadth and diversity of human phenomena, guided by the discipline-wide focus on the wholeness of the human being. The language of objectivistic science cannot do this. Even in contemporary qualitative research there are limitations in achieving such a representation. This column therefore calls for greater attention to lyrical discourse in nursing science and outlines the potential benefits in nursing theory development, research, and practice. Encouragement of lyrical discourse in nursing science is consistent with the contemporary movement toward a dialogical rationality. It is posited that, if the ethos of nursing is rooted in love of humanity, lyrical discourse may be one way for nursing to pursue its mission to serve humankind.
NASA Astrophysics Data System (ADS)
Dhamala, Mukesh
2015-12-01
Understanding cause-and-effect (causal) relations from observations concerns all sciences including neuroscience. Appropriately defining causality and its nature, though, has been a topic of active discussion for philosophers and scientists for centuries. Although brain research, particularly functional neuroimaging research, is now moving rapidly beyond identification of brain regional activations towards uncovering causal relations between regions, the nature of causality has not be been thoroughly described and resolved. In the current review article [1], Mannino and Bressler take us on a beautiful journey into the history of the work on causality and make a well-reasoned argument that the causality in the brain is inherently probabilistic. This notion is consistent with brain anatomy and functions, and is also inclusive of deterministic cases of inputs leading to outputs in the brain.
Oser, H
1989-08-01
International cooperation in life sciences, as in any other of the space research fields, takes place at two distinct levels: scientist to scientist, or agency to agency. This article is more concerned with the agency to agency level, which involves the arrangements made between two partners for the flying of experiments and/or hardware on space missions. International cooperation is inherent to the European Space Agency (ESA), since it consists of 13 member states (Austria, Belgium, Denmark, France, Ireland, Italy, the Netherlands, Norway, Spain, Sweden, Switzerland, United Kingdom, and West Germany) and one associated member, Finland. ESA also has special cooperative arrangements with Canada. Life sciences research in ESA is carried out within the Microgravity Research Program, an optional program to which member states (in this case all but Austria and Ireland) contribute "a la carte," and receive their "share" accordingly. Therefore, many of the activities are naturally linked to international arrangements within the member states, and also to arrangements between the agencies, with life sciences being the dominant activity between NASA and ESA.
Defining a discovery: priority and methodological controversy in early nineteenth-century anatomy
Berkowitz, Carin
2014-01-01
In the early nineteenth century, Charles Bell and François Magendie engaged in a decades-long priority dispute over the discovery of the roots of motor and sensory nerves. The constantly recalibrated arguments of its participants illuminate changes in the life sciences during that period. When Bell first wrote about the nerves in 1811, surgeon-anatomists ran small schools out of their homes, natural theology was in vogue, exchanges between British and French medical practitioners were limited by the Napoleonic Wars, and British practitioners typically rejected experimental physiology and vivisection. By the end of Magendie's career, medical science was produced in the laboratory, taught through artfully produced performances of the sort at which Magendie excelled, and disseminated through journals. It is not entirely clear which historical character, Bell or Magendie, ‘won’ the dispute, nor that they even had clear and consistent positions in it, but what is clear is that one style of science had won out over the other, and over the course of the dispute, pedagogy lost pride of place in medical science. PMID:27494015
NASA Astrophysics Data System (ADS)
Jiang, Su-Rong; Liu, Zhong-Qiang; Amos Yinnon, Tamar; Kong, Xiang-Mu
2017-05-01
A new approach for exploring effects of interfaces on polar liquids is presented. Their impact on the polar liquid film motor (PLFM) - a novel micro-fluidic device - is studied. We account for the interface’s impact by modeling slip boundary effects on the PLFM’s electro-hydro-dynamical rotations. Our analytical results show as k={l}s/R increases (with {l}s denoting the slip length resulting from the interface’s impact on the film’s properties, k > -1 and R denoting the film’s radius): (a) PLFMs subsequently exhibit rotation characteristics under “negative-”, “no-”, “partial-” and “perfect-” slip boundary conditions; (b) The maximum value of the linear velocity of the steady rotating film increases linearly and its location approaches the film’s border; (c) The decay of the angular velocities’ dependency on the distance from the center of the film slows down, resulting in a macroscopic flow near the boundary. With our calculated rotation speed distributions consistent with the existing experimental ones, research aiming at fitting computed to measured distributions promises identifying the factors affecting {l}s, e.g., solid-fluid potential interactions and surface roughness. The consistency also is advantageous for optimizing PLFM’s applications as micro-washers, centrifuges, mixers in the lab-on-a-chip. Supported by National Natural Science Foundation of China under Grant Nos. 11302118, 11275112, and Natural Science Foundation of Shandong Province under Grant No. ZR2013AQ015
Spatial and temporal variations of the fine-structure constant in the Finslerian universe
NASA Astrophysics Data System (ADS)
Li, Xin; Lin, Hai-Nan
2017-06-01
Recent observations show that the electromagnetic fine-structure constant, α e , may vary with space and time. In the framework of Finsler spacetime, we propose here an anisotropic cosmological model, in which both spatial and temporal variations of α e are allowed. Our model naturally leads to the dipole structure of α e , and predicts that the dipole amplitude increases with time. We fit our model to the most up-to-date measurements of α e from the quasar absorption lines. It is found that the dipole direction points towards (l,b) = (330.2°±7.3°,-13.0°±5.6°) in galactic coordinates, and the anisotropic parameter is b 0 = (0.47±0.09) × 10-5, which corresponds to a dipole amplitude (7.2±1.4)×10-8 at redshift z = 0.015. This is consistent with the upper limit of the variation of α e measured in the Milky Way. We also fit our model to Union2.1 type Ia supernovae, and find that the preferred direction of Union2.1 is consistent with the dipole direction of α e . Supported by Fundamental Research Funds for Central Universities (106112016CDJCR301206), National Natural Science Fund of China (11305181, 11547035, 11603005), and Open Project Program of State Key Laboratory of Theoretical Physics, Institute of Theoretical Physics, Chinese Academy of Sciences, China (Y5KF181CJ1).
Nonlocal Symmetry and Interaction Solutions of a Generalized Kadomtsev—Petviashvili Equation
NASA Astrophysics Data System (ADS)
Huang, Li-Li; Chen, Yong; Ma, Zheng-Yi
2016-08-01
A generalized Kadomtsev—Petviashvili equation is studied by nonlocal symmetry method and consistent Riccati expansion (CRE) method in this paper. Applying the truncated Painlevé analysis to the generalized Kadomtsev—Petviashvili equation, some Bäcklund transformations (BTs) including auto-BT and non-auto-BT are obtained. The auto-BT leads to a nonlocal symmetry which corresponds to the residual of the truncated Painlevé expansion. Then the nonlocal symmetry is localized to the corresponding nonlocal group by introducing two new variables. Further, by applying the Lie point symmetry method to the prolonged system, a new type of finite symmetry transformation is derived. In addition, the generalized Kadomtsev—Petviashvili equation is proved consistent Riccati expansion (CRE) solvable. As a result, the soliton-cnoidal wave interaction solutions of the equation are explicitly given, which are difficult to be found by other traditional methods. Moreover, figures are given out to show the properties of the explicit analytic interaction solutions. Supported by the Global Change Research Program of China under Grant No. 2015CB953904, National Natural Science Foundation of under Grant Nos. 11275072 and 11435005, Doctoral Program of Higher Education of China under Grant No. 20120076110024, the Network Information Physics Calculation of Basic Research Innovation Research Group of China under Grant No. 61321064, and Shanghai Collaborative Innovation Center of Trustworthy Software for Internet of Things under Grant No. ZF1213, and Zhejiang Provincial Natural Science Foundation of China under Grant No. LY14A010005
Using History of Science to Teach Nature of Science to Elementary Students
ERIC Educational Resources Information Center
Fouad, Khadija E.; Masters, Heidi; Akerson, Valarie L.
2015-01-01
Science lessons using inquiry only or history of science with inquiry were used for explicit reflective nature of science (NOS) instruction for second-, third-, and fourth-grade students randomly assigned to receive one of the treatments. Students in both groups improved in their understanding of creative NOS, tentative NOS, empirical NOS, and…
ERIC Educational Resources Information Center
Buaraphan, Khajornsak; Abedin Forhad, Ziaul
2014-01-01
Understanding of nature of science (NOS) serves as one of the desirable characteristics of science teachers. The current study explored 55 Thai and 110 Bangladeshi in-service secondary science teachers' conceptions of NOS regarding scientific knowledge, scientific method, scientists' work, and scientific enterprise, by using the Myths of Science…
ERIC Educational Resources Information Center
Akarsu, Bayram
2007-01-01
This study investigates relationships between understanding of nature of science and four key factors elementary science teachers possess, which are: (1) Their specializations in different science areas (Physics, chemistry, and biology), (2) Gender issues, (3) How long they have been teaching in elementary school environments, (4) Their…
History of Science as an Instructional Context: Student Learning in Genetics and Nature of Science
ERIC Educational Resources Information Center
Kim, Sun Young; Irving, Karen E.
2010-01-01
This study (1) explores the effectiveness of the contextualized history of science on student learning of nature of science (NOS) and genetics content knowledge (GCK), especially interrelationships among various genetics concepts, in high school biology classrooms; (2) provides an exemplar for teachers on how to utilize history of science in…
ERIC Educational Resources Information Center
Atar, Hakan Yavuz; Gallard, Alejandro
2011-01-01
In addition to recommending inquiry as the primary approach to teaching science, developers of recent reform efforts in science education have also strongly suggested that teachers develop a sound understanding of the nature of science. Most studies on teachers' NOS conceptions and inquiry beliefs investigated these concepts of teachers' NOS…
Embedding Nature of Science in Teaching about Astronomy and Space
ERIC Educational Resources Information Center
Buaraphan, Khajornsak
2012-01-01
Science teachers need an adequate understanding of nature of science (NOS) and the ability to embed NOS in their teaching. This collective case study aims to explore in-service science teachers' conceptions of NOS and the embeddedness of NOS in their teaching about astronomy and space. Three science teachers participated in this study. All…
NASA Astrophysics Data System (ADS)
Hanuscin, Deborah L.
This research examined the development of practicing K--8 teachers' views of the nature of science (NOS) within a physical science content course. Reforms in science education have called for the teaching of science as inquiry. In order to achieve the vision of the reforms, teachers must understand science, both a body of knowledge and as a process, but also the very nature of science itself-or the values and assumptions inherent in the construction of scientific knowledge. NOS has been deemed a critical component of scientific literacy, with implications for making informed decisions about scientific claims. Research has indicated that despite the emphasis of reforms, teachers generally do not possess accurate views of NOS. Recent work in science education has led to the recommendation that efforts undertaken within teacher education programs to improve teachers' understanding of NOS can be enhanced through relevant coursework in other academic areas, including the sciences. The purpose of this dissertation was to provide an empirical basis for this recommendation, by examining the development of teachers' views of NOS within a physical science content course. To this end, the researcher employed qualitative methodology including participant observation, interview, document analysis, and questionnaire to assess teacher participants' views of the nature of science and the impact of their experience in the content course on these views. As a result of this research, implications for both the course design and science teacher education have been described. In addition, various aspects of the community of practice that characterizes the classroom that inhibit the development of understandings about the nature of science are identified. It is argued that instruction in NOS should be approached from the perspective that builds bridges between the communities of practice of learners and of scientists.
Nurturing the Nature of Science
ERIC Educational Resources Information Center
Reeves, Carolyn; Chessin, Debby; Chambless, Martha
2007-01-01
Historical stories of scientists provide an excellent opportunity to help students see that science is indeed a human endeavor and demonstrate the interrelationships among science, technology, and society. A number of engaging historical accounts illustrate characteristics of the nature of science. The story of Lise Meitner leads students through…
Special Education Teachers' Nature of Science Instructional Experiences
ERIC Educational Resources Information Center
Mulvey, Bridget K.; Chiu, Jennifer L.; Ghosh, Rajlakshmi; Bell, Randy L.
2016-01-01
Special education teachers provide critical science instruction to students. However, little research investigates special education teacher beliefs and practices around science in general or the nature of science and inquiry in particular. This investigation is a cross-case analysis of four elementary special education teachers' initial…
The Nature of Science in a Multicultural Context.
ERIC Educational Resources Information Center
Vira, Shashank
1997-01-01
Proposes an alternative view of the nature of science that strikes a balance between extremely relativist views that see no difference between science and pseudoscience and current views that are inappropriate in a multicultural society. Implications for science teaching in the British schools are discussed. (SLD)
NASA Astrophysics Data System (ADS)
Boyer, Elisebeth C.
This research investigates how three preservice elementary teachers were prepared to teach science using a Discursive Model of Meaning Making. The research is divided into two parts. The first consists of the nature of the participants’ learning experiences in a science methods course within a school-university Professional Development School partnership. This part of the investigation used Constant Comparative Analysis of field notes gathered through participant observation of the methods course. The analysis investigated how the methods instructors employed productive questioning, talk moves, and a coherent research based Teaching Science as Argument Framework. The second part of the study consisted of an investigation into how the participants applied what they experienced during the methods course in their initial science teaching experiences, as well as how the participants made sense of their initial science teaching. Data consisted of teaching videos of the participants during their initial science teaching experiences and self-analysis videos created by the participants. This part of the research used Discourse Analysis of the teaching and self-analysis videos. These inquiries provide insight into what aspects of the methods course were taken up by the participants and how they made sense of their practices. Findings are: 1) Throughout the methods course, instructors modeled how the Teaching Science as Argument Framework can be used to negotiate scientific understanding by employing a Discursive Model of Meaning Making. 2) During lesson plan conferences the Discursive Model was emphasized as participants planned classroom discussion and explored possible student responses enabling them to anticipate how they could attempt to increase student understanding. 3) Participants displayed three distinct patterns of adoption of the Teaching Science as Argument Framework (TSAF), involving different discursive practices. They were, • Detached Discursive Approach: Use of some discursive strategies without an apparent connection to the TSAF. • Connected Approach with a Focus on Student Thinking: Intentional use of the Discursive Model informed by aspects of the TSAF. • TSAF Approach: Priority is given to the TSAF supported by substantial application of the Discursive Model. 4) The evidence participants chose to highlight in their self-analysis videos is reflective of their patterns of adoption of the Teaching Science as Argument Framework and their differing discursive practices. Analysis led to the formation of the middle theory that when learning to teach science in the elementary school, teacher commitment to the discourse and practices of science is constructed through participation in a learning community where a discursive model of meaning making is the norm. Curricular and methodological implications, as well as implications for future research are presented.
ERIC Educational Resources Information Center
Kleinschmidt, Andy
2011-01-01
The importance of healthy soil and of conveying the importance of soils starts by conveying a few basic concepts of soil science cannot be overstated. This article provides three hands-on exercises Extension professionals can add to natural resources or Master Gardener education curricula. These natural sciences exercises are easy to prepare for…
Students' and Teachers' Understanding of the Nature of Science: A Reassessment.
ERIC Educational Resources Information Center
Lederman, Norman G.
1986-01-01
High school biology teachers (N=18), and one 10th-grade class of each teacher, were given the Nature of Scientific Knowledge Scale at the beginning and end of a school year to determine their conceptions of the nature of science. Results (such as students not possessing "adequate" conceptions of science) are reported and discussed. (JN)
ERIC Educational Resources Information Center
Sahin, Elif Adibelli; Deniz, Hasan
2016-01-01
This study explored how four elementary teachers assessed the developmental appropriateness and importance of nine nature of science (NOS) aspects after participating in a yearlong professional development program. A multiple-embedded case study design was employed. The primary data sources included (a) Views of Nature of Science Elementary School…
ERIC Educational Resources Information Center
Satilmis, Yilmaz; Yakup, Doganay; Selim, Guvercin; Aybarsha, Islam
2015-01-01
This study investigates three models of content-based instruction in teaching concepts and terms of natural sciences in order to increase the efficiency of teaching these kinds of concepts in realization and to prove that the content-based instruction is a teaching strategy that helps students understand concepts of natural sciences. Content-based…
ERIC Educational Resources Information Center
Kolokouri, Eleni; Theodoraki, Xarikleia; Plakitsi, Katerina
2012-01-01
This paper focuses on connecting natural sciences education with Cultural Historical Activity Theory (CHAT). In this sense, natural sciences education is considered as a lifelong learning procedure, not seen as an individual but as a collective activity. Moreover, learning becomes a human activity in which theory and praxis are strongly connected…
The Relationship in Biology between the Nature of Science and Scientific Inquiry
ERIC Educational Resources Information Center
Kremer, Kerstin; Specht, Christiane; Urhahne, Detlef; Mayer, Jürgen
2014-01-01
Informed understandings of nature of science and scientific inquiry are generally accepted goals of biology education. This article points out central features of scientific inquiry with relation to biology and the nature of science in general terms and focuses on the relationship of students' inquiry skills in biology and their beliefs on the…
Exploring Natural and Social Scientists' Views of Nature of Science
ERIC Educational Resources Information Center
Bayir, Eylem; Cakici, Yilmaz; Ertas, Ozge
2014-01-01
Science education researchers recently turned their attention to exploring views about nature of science (NOS). A large body of research indicates that both students and teachers have many naïve views about the NOS. Unfortunately, less attention has been directed at the issue of exploring the views of the scientists. Also, the little research in…
Dancing Flies: A Guided Discovery Illustration of the Nature of Science.
ERIC Educational Resources Information Center
Nissani, M.
1996-01-01
Presents a guided discovery activity that uses fruit flies and can be implemented in introductory biology and nature of science classes to flesh out abstract lectures about life cycles, insect morphology, patterns and causes of animal behavior, and the nature of science. Discusses strengths and drawbacks and results of student evaluations of the…
Astrosociological Implications of Astrobiology (Revisited)
NASA Astrophysics Data System (ADS)
Pass, Jim
2010-01-01
Supporters of astrobiology continue to organize the field around formalized associations and organizations under the guise of the so-called ``hard'' sciences (e.g., biology and the related physical/natural sciences). The so-called ``soft'' sciences-including sociology and the other social sciences, the behavioral sciences, and the humanities-remain largely separated from this dynamically growing field. However, as argued in this paper, space exploration involving the search for extraterrestrial life should be viewed as consisting of two interrelated parts (i.e., two sides of the same coin): astrobiology and astrosociology. Together, these two fields broadly combine the two major branches of science as they relate to the relationship between human life and alien life, as appropriate. Moreover, with a formalized system of collaboration, these two complimentary fields would also focus on the implications of their research to human beings as well as their cultures and social structures. By placing the astrosociological implications of astrobiology at a high enough priority, scientists interested in the search for alien life can augment their focus to include the social, cultural, and behavioral implications that were always associated with their work (yet previously overlooked or understated, and too often misunderstood). Recognition of the astrosociological implications expands our perception about alien life by creating a new emphasis on their ramifications to human life on Earth.
NASA Astrophysics Data System (ADS)
Piliouras, Panagiotis; Plakitsi, Katerina; Seroglou, Fanny; Papantoniou, Georgia
2017-06-01
The nature of science (NOS) has become a central goal of science education in many countries. This study refers to a developmental work research program, in which four fifth-grade elementary in-service teachers participated. It aimed to improve their understandings of NOS and their abilities to teach it effectively to their students. The 1-year-long, 2012-2013, program consisted of a series of activities to support teachers to develop their pedagogical content knowledge of NOS. In order to accomplish our goal, we enabled teacher-researchers to analyze their own discourse practices and to trace evidence of effective NOS teaching. Many studies indicate the importance of examining teachers' discussions about science in the classroom, since it is teachers' understanding of NOS reflected in these discussions that will have a vital impact on students' learning. Our proposal is based on the assumption that reflecting on the ways people form meanings enables us to examine and seek alternative ways to communicate aspects of NOS during science lessons. The analysis of discourse data, which has been carried out with the teacher-researchers' active participation, indicated that initially only a few aspects of NOS were implicitly incorporated in teacher-researchers' instruction. As the program evolved, all teacher-researchers presented more informed views on targeted NOS aspects. On the whole, our discourse-focused professional development program with its participatory, explicit, and reflective character indicated the importance of involving teacher-researchers in analyzing their own talk. It is this involvement that results in obtaining a valuable awareness of aspects concerning pedagogical content knowledge of NOS teaching.
The Role of Religious and Scientific Leaders in Bringing Awareness to the Urgency of Climate Change.
NASA Astrophysics Data System (ADS)
Ramanathan, V.
2015-12-01
The release of the Encyclical by Pope Francis has opened a powerful new venue to bring forth the urgency of climate change to the public. The background work that preceded the encyclical was several years in the making. The Church has its own Science Academy, known as the Pontifical Academy of Sciences, consisting of 80 members from around the world with more than a third Nobel Laureates. The members are chosen for their scientific excellence (like most science academies of the world) and not for their religious affiliations. This academy organized a series of scientific meetings for the last 5 years, culminating in a 2014 workshop entitled: Sustainable Humanity, Sustainable Nature , Our Responsibility, jointly organized with the Pontifical Academy of Social Sciences. This meeting of the world's thought leaders in natural and Social sciences, came to a remarkable set of conclusions: Climate Change has become a moral issue. A fundamental change in our attitude towards natue and towards each other is required to solve the problem. Religious leaders can have a transformational effect by mobilizing public opinion for actions to stabilize climate change and protect the people. Being a council member of the Pontifical Academy and watching from within the powerful moral voice of Pope Francis, I conclude that this partnership with religion is a powerful new venue for those researchers, reticent about publicly voicing their grave concerns to pursue. We are going to bring massive public support for urgent actions only when the impacts of climate change and its origins are taught in every church, every temple, every mosque, every synagogue, and other places of worship.
Teaching Scales in the Climate System: An example of interdisciplinary teaching and learning
NASA Astrophysics Data System (ADS)
Baehr, Johanna; Behrens, Jörn; Brüggemann, Michael; Frisius, Thomas; Glessmer, Mirjam S.; Hartmann, Jens; Hense, Inga; Kaleschke, Lars; Kutzbach, Lars; Rödder, Simone; Scheffran, Jürgen
2016-04-01
Climate change is commonly regarded as one of 21st century's grand challenges that needs to be addressed by conducting integrated research combining natural and social sciences. To meet this need, how to best train future climate researchers should be reconsidered. Here, we present our experience from a team-taught semester-long course with students of the international master program "Integrated Climate System Sciences" (ICSS) at the University of Hamburg, Germany. Ten lecturers with different backgrounds in physical, mathematical, biogeochemical and social sciences accompanied by a researcher trained in didactics prepared and regularly participated in a course which consisted of weekly classes. The foundation of the course was the use of the concept of 'scales' - climate varying on different temporal and spatial scales - by developing a joint definition of 'scales in the climate system' that is applicable in the natural sciences and in the social sciences. By applying this interdisciplinary definition of 'scales' to phenomena from all components of the climate system and the socio-economic dimensions, we aimed for an integrated description of the climate system. Following the concept of research-driven teaching and learning and using a variety of teaching techniques, the students designed their own scale diagram to illustrate climate-related phenomena in different disciplines. The highlight of the course was the presentation of individually developed scale diagrams by every student with all lecturers present. Based on the already conducted course, we currently re-design the course concept to be teachable by a similarly large group of lecturers but with alternating presence in class. With further refinement and also a currently ongoing documentation of the teaching material, we will continue to use the concept of 'scales' as a vehicle for teaching an integrated view of the climate system.
Strategic Planning for Interdisciplinary Science: a Geoscience Success Story
NASA Astrophysics Data System (ADS)
Harshvardhan, D.; Harbor, J. M.
2003-12-01
The Department of Earth and Atmospheric Sciences at Purdue University has engaged in a continuous strategic planning exercise for several years, including annual retreats since 1997 as an integral part of the process. The daylong Saturday retreat at the beginning of the fall semester has been used to flesh out the faculty hiring plan for the coming year based on the prior years' plans. The finalized strategic plan is built around the choice of three signature areas, two in disciplinary fields, (i) geodynamics and active tectonics, (ii) multi-scale atmospheric interactions and one interdisciplinary area, (iii) atmosphere/surface interactions. Our experience with strategic planning and the inherently interdisciplinary nature of geoscience helped us recently when our School of Science, which consists of seven departments, announced a competition for 60 new faculty positions that would be assigned based on the following criteria, listed in order of priority - (i) scientific merit and potential for societal impact, (ii) multidisciplinary nature of topic - level of participation and leveraging potential, (iii) alignment with Purdue's strategic plan - discovery, learning, engagement, (iv) existence of critical mass at Purdue and availability of faculty and student candidate pools, (v) corporate and federal sponsor interest. Some fifty white papers promoting diverse fields were submitted to the school and seven were chosen after a school-wide retreat. The department fared exceedingly well and we now have significant representation on three of the seven school areas of coalescence - (i) climate change, (ii) computational science and (iii) science education research. We are now in the process of drawing up hiring plans and developing strategies for allocation and reallocation of resources such as laboratory space and faculty startup to accommodate the 20% growth in faculty strength that is expected over the next five years.
NASA Astrophysics Data System (ADS)
Ibrahim, Ahmed; Aulls, Mark W.; Shore, Bruce M.
2016-11-01
Sociocognitive theory [Bandura, A. (1986). Social foundations of thought and action: A social cognitive theory. Englewood Cliffs, NJ: Prentice Hall; Bandura, A. (1989). Human agency in social cognitive theory. American Psychologist, 44, 1175-1184. doi:10.1037/0003-066x.44.9.1175; Bandura, A. (1991). Social cognitive theory of self-regulation. Organizational Behavior and Human Decision Processes, 50, 248-287. doi:10.1016/0749-5978(91)90022-L] accords high importance to the mechanisms of human agency and how they are exercised through self-efficacy. In this paper, we developed and validated the McGill Self-Efficacy For Inquiry Engagement (McSELFIE) instrument with undergraduate students in natural science disciplines. We defined inquiry engagement as carrying out the practices of science (POS) that are supported by students' personality characteristics (SPCs) and that result in achieving inquiry-learning outcomes (ILOs). Based on these theoretical perspectives, the McSELFIE is a 60-item, learner-focused survey that addresses three components that are theoretically important for engaging in scientific inquiry: (a) SPCs, (b) ILOs, and (c) POS. Evidence for construct and content validity were obtained by using experts' judgments and confirmatory factor analysis with a sample of 110 undergraduate students enrolled in science disciplines. Internal consistency of the factors and instrument was also examined. The McSELFIE instrument is a reliable and valid instrument for measuring science undergraduate students' self-efficacy for inquiry engagement. Matched pairs analyses were conducted among the instruments' factors. Students reported the highest self-efficacy for openness, applying knowledge, and carrying out investigations. Students reported the lowest self-efficacy for extraversion, understanding metacognitive knowledge, and planning investigations. Theoretical and practical implications are discussed.
ERIC Educational Resources Information Center
Chiappetta, Eugene L.; Fillman, David A.
2007-01-01
Five high school biology textbooks were examined to determine the inclusion of four aspects of the nature of science: (a) science as a body of knowledge, (b) science as a way of investigating, (c) science as a way of thinking, and (d) science and its interactions with technology and society. The textbooks analyzed were "BSCS Biology--A Human…
Scientific Communication and the Nature of Science
ERIC Educational Resources Information Center
Nielsen, Kristian H.
2013-01-01
Communication is an important part of scientific practice and, arguably, may be seen as constitutive to scientific knowledge. Yet, often scientific communication gets cursory treatment in science studies as well as in science education. In Nature of Science (NOS), for example, communication is rarely mentioned explicitly, even though, as will be…
The Nature of Information Science: Changing Models
ERIC Educational Resources Information Center
Robinson, Lyn; Karamuftuoglu, Murat
2010-01-01
Introduction: This paper considers the nature of information science as a discipline and profession. Method: It is based on conceptual analysis of the information science literature, and consideration of philosophical perspectives, particularly those of Kuhn and Peirce. Results: It is argued that information science may be understood as a field of…
The Philbrick Science Showcase
ERIC Educational Resources Information Center
Flynn, Erin
2007-01-01
The annual Philbrick Science Showcase is a family event that celebrates students' science learning and highlights an ongoing partnership with the Boston Nature Center, a Massachusetts Audubon Society sanctuary within walking distance of the Philbrick school. At least twice a year, students visit the Nature Center to extend the science curriculum,…
Demystifying Nature of Science
ERIC Educational Resources Information Center
Lederman, Judith; Bartels, Selina; Lederman, Norman; Gnanakkan, Dionysius
2014-01-01
With the emergence of the "Next Generation Science Standards" ("NGSS"; NGSS Lead States 2013), it is apparent that teaching and learning about nature of science (NOS) continues to be an important goal of science education for all K-12 students. With this emphasis on NOS, early childhood teachers are asking how to design…
Pre-Service Physics Teachers' Conceptions of Nature of Science
ERIC Educational Resources Information Center
Buaraphan, Khajornsak
2011-01-01
Understanding of NOS (nature of science) appears as a prerequisite of a scientifically literate person. Promoting adequate understanding of NOS in pre-service physics teachers is, therefore, an important task of science educators. Before doing that, science educators must have information concerning their pre-service teachers' conceptions of NOS.…
Teaching "With" and "About" Nature of Science, and Science Teacher Knowledge Domains
ERIC Educational Resources Information Center
Abd-El-Khalick, Fouad
2013-01-01
The ubiquitous goals of helping precollege students develop informed conceptions of nature of science (NOS) and experience inquiry learning environments that progressively approximate authentic scientific practice have been long-standing and central aims of science education reforms around the globe. However, the realization of these goals…
Exploring Prospective Teachers' Worldviews and Conceptions of Nature of Science
ERIC Educational Resources Information Center
Liu, Shiang-Yao; Lederman, Norman G.
2007-01-01
This study explores the relationship, if any, between an individual's culturally based worldviews and conceptions of nature of science. In addition, the implications of this relationship (or lack of relationship) for science teaching and learning are discussed. Participants were 54 Taiwanese prospective science teachers. Their conceptions of…
Science supervisors' conceptions of biology and the field of science: A qualitative study
NASA Astrophysics Data System (ADS)
Young, Jean Radcliff
1999-12-01
This study examined the nature, source and formation of science supervisors' cognitive frameworks for biology and for the field of science and the impact of these frameworks on their work in school divisions. The design for this qualitative study was an emergent case study using ethnographic methods. The purposeful sample consisted of five science supervisors selected from different school divisions in three geographic regions of a middle-Atlantic state. Each participant had a background in biology, classroom teaching and full-time supervisory experience. To collect data for this study, an open-ended questionnaire was used to gain an understanding of the nature of the supervisors' conceptions of biology and for the field of science. Two semi-structured interviews, each lasting 1--2 hours in length, were designed to explore the source and formation of the supervisors' conceptual frameworks, and the impact of these frameworks on their work in school divisions. Data were inductively analyzed using a constant comparative approach. The major findings of this study were: (1) All of the supervisors in this study were remarkably cognizant of possessing a framework for biology and for the field of science. (2) The supervisors' frameworks were well-formed, relatively highly complex and showed a variety of organizational patterns. (3) All of the supervisors' diagrams showed evidence of coherent, integrated themes with emphasis on the importance of connections and interrelationships. (4) The supervisors were able to readily articulate sound rationales for construction of their diagrams. (5) Instead of seeing biology as an isolated discipline, the supervisors view biology in the context of science. Overall, the supervisors no longer see their frameworks as biology-content related, but as science-related. (6) Major influences on the source and formation of the supervisors' conceptual frameworks were a result of selected work-related experiences. (7) The supervisors' conceptual frameworks, in the context of implementation of state Standards of Learning, have had a major impact on their work in their school divisions with teachers and indirectly with students, parents and the public. Results are discussed in comparison with prior studies of non-supervisors using a similar methodology. Implications for educational practice and further research are included.
NASA Astrophysics Data System (ADS)
Fowler, Samantha R.
The purpose of this study was to explore the evolution science content used during college students' negotiation of biology-based socioscientific issues (SSI) and examine how it related to students' conceptual understanding and acceptance of biological evolution. Specific research questions were, (1a) what specific evolutionary science content do college students evoke during SSI negotiation, (1b) what is the depth of the evolutionary science content reflected in college students. SSI negotiation, and (2) what is the nature of the interaction between evolution understanding and evolution acceptance as they relate to depth of use of evolution content during SSI negotiation? The Socioscientific Issues Questionnaire (SSI-Q) was developed using inductive data analysis to examine science content use and to develop a rubric for measuring depth of evolutionary science content use during SSI negotiation. Sixty upper level undergraduate biology and non-biology majors completed the SSI-Q and also the Conceptual Inventory of Natural Selection (CINS: Anderson, Fisher, & Norman, 2002) to measure evolution understanding and the Measure of Acceptance of the Theory of Evolution (MATE: Rutledge & Warden, 1999) to measure evolution acceptance. A multiple regression analysis tested for interaction effects between the predictor variables, evolution understanding and evolution acceptance. Results indicate that college students primarily use science concepts related to evolution to negotiate biology-based SSI: variation in a population, inheritance of traits, differential success, and change through time. The hypothesis that the extent of one's acceptance of evolution is a mitigating factor in how evolution content is evoked during SSI negotiation was supported by the data. This was seen in that evolution was the predominant science content used by participants for each of the three SSI scenarios used in this study and used consistently throughout the three SSI scenarios. In addition to its potential to assess aspects of argumentation, a modification of the SSI-Q could be used for further study about students' misconceptions about evolution or scientific literacy, if it is defined as one's tendency to utilize science content during a decision-making process within an SSI context.
Representing Nature of Science in a Science Textbook: Exploring Author-Editor-Publisher Interactions
ERIC Educational Resources Information Center
DiGiuseppe, Maurice
2014-01-01
Current reforms in elementary and secondary science education call for students and teachers to develop more informed views of the nature of science (NOS)--a process in which science textbooks play a significant role. This paper reports on a case study of the development of representations of the NOS in a senior high school chemistry textbook by…
ERIC Educational Resources Information Center
Herman, Benjamin C.; Clough, Michael P.; Olson, Joanne K.
2013-01-01
Few, if any, studies have examined the impact of nature of science (NOS) instruction on science teachers' practices 2 or more years after completing a science teacher education program. Extant studies on preservice and first-year teachers' NOS teaching practices have had disappointing results, with few teachers valuing NOS as a cognitive objective…
Developing the Inner Scientist: Book Club Participation and the Nature of Science
ERIC Educational Resources Information Center
Griffard, Phyllis Baudoin; Mosleh, Tayseer; Kubba, Saad
2013-01-01
The leap from science student to scientist involves recognizing that science is a tentative, evolving body of knowledge that is socially constructed and culturally influenced; this is known as The Nature of Science (NOS). The aim of this study was to document NOS growth in first-year premedical students who participated in a science book club as a…
ERIC Educational Resources Information Center
Berkovitz, Joseph
2017-01-01
Hodson and Wong (2017, this issue) argue that, though the nature of science (NOS) is now an established focus of school science education and a key element in defining scientific literacy, "the consensus view" of NOS misrepresents contemporary scientific practice. They then propose a number of alternative approaches to science curriculum…
ERIC Educational Resources Information Center
Price, Matthew; Rogers, Michael
2016-01-01
In the nonmajor science classroom, case studies--when used as learning tools--should help students build the necessary framework to understand the nature of science. For most students, the nonmajor science course (in this case, Astronomy 101) may be the last time that they interact with science in a formal learning setting. A National Science…
2011-01-01
Embracing comparative biology, natural history encompasses those sciences that discover, decipher and classify unique (idiographic) details of landscapes, and extinct and extant biodiversity. Intrinsic to these multifarious roles in expanding and consolidating research and knowledge, natural history endows keystone support to the veracity of law-like (nomothetic) generalizations in science. What science knows about the natural world is governed by an inherent function of idiographic discovery; characteristic of natural history, this relationship is exemplified wherever an idiographic discovery overturns established wisdom. This nature of natural history explicates why inventories are of such epistemological importance. Unfortunately, a Denigration of Natural History weakens contemporary science from within. It expresses in the prevalent, pervasive failure to appreciate this pivotal role of idiographic research: a widespread disrespect for how natural history undergirds scientific knowledge. Symptoms of this Denigration of Natural History present in negative impacts on scientific research and knowledge. One symptom is the failure to appreciate and support the inventory and monitoring of biodiversity. Another resides in failures of scientiometrics to quantify how taxonomic publications sustain and improve knowledge. Their relevance in contemporary science characteristically persists and grows; so the temporal eminence of these idiographic publications extends over decades. This is because they propagate a succession of derived scientific statements, findings and/or conclusions - inherently shorter-lived, nomothetic publications. Widespread neglect of natural science collections is equally pernicious, allied with disregard for epistemological functions of specimens, whose preservation maintains the veracity of knowledge. Last, but not least, the decline in taxonomic expertise weakens research capacity; there are insufficient skills to study organismal diversity in all of its intricacies. Beyond weakening research capacities and outputs across comparative biology, this Denigration of Natural History impacts on the integrity of knowledge itself, undermining progress and pedagogy throughout science. Unprecedented advances in knowledge are set to follow on consummate inventories of biodiversity, including the protists. These opportunities challenge us to survey biodiversity representatively—detailing the natural history of species. Research strategies cannot continue to ignore arguments for such an unprecedented investment in idiographic natural history. Idiographic shortcuts to general (nomothetic) insights simply do not exist. The biodiversity sciences face a stark choice. No matter how charismatic its portrayed species, an incomplete ‘Brochure of Life’ cannot match the scientific integrity of the ‘Encyclopedia of Life’. PMID:21472034
NASA Astrophysics Data System (ADS)
Taber, Keith S.
2017-03-01
Lisa Borgerding's work highlights how students can understand evolution without necessarily committing to it, and how learners may come to see it as one available way of thinking amongst others. This is presented as something that should be considered a successful outcome when teaching about material that many students may find incompatible with their personal worldviews. These findings derive from work exploring a cause célèbre of the science education community—the teaching of natural selection in cultural contexts where learners feel they have strong reasons for rejecting evolutionary ideas. Accepting that students may understand but not commit to scientific ideas that are (from some cultural perspectives) controversial may easily be considered as a form of compromise position when teaching canonical science prescribed in curriculum but resisted by learners. Yet if we take scholarship on the nature of science seriously, and wish to reflect the nature of scientific knowledge in science teaching, then the aim of science education should always be to facilitate understanding of, yet to avoid belief in, the ideas taught in science lessons. The philosophy of science suggests that scientific knowledge needs to be understood as theoretical in nature, as conjectural and provisional; and the history of science warns of the risks of strongly committing to any particular conceptualisation as a final account of some feature of nature. Research into student thinking and learning in science suggests that learning science is often a matter of coming to understand a new viable way of thinking about a topic to complement established ways of thinking. Science teaching should then seek to have students appreciate scientific ideas as viable ways of making sense of the currently available empirical evidence, but should not be about persuading students of the truth of any particular scientific account.
Ultra-broadband asymmetric acoustic transmission with single transmitted beam
NASA Astrophysics Data System (ADS)
Jia, Ding; Sun, Hong-xiang; Yuan, Shou-qi; Ge, Yong
2017-02-01
Not Available Project supported by the Major Program of the National Natural Science Foundation of China (Grant No. 51239005), the National Natural Science Foundation of China (Grant No. 11404147), the Natural Science Foundation of Jiangsu Province of China (Grant No. BK20140519), China Postdoctoral Science Foundation (Grant No. 2015M571672), the Scientific Research Project for Graduate Students of Universities in Jiangsu Province, China (Grant No. CXZZ13 06), and the Training Project of Young Backbone Teachers of Jiangsu University.
Performance of thermoelectric generator with graphene nanofluid cooling
NASA Astrophysics Data System (ADS)
Xing, Jiao-jiao; Wu, Zi-hua; Xie, Hua-qing; Wang, Yuan-yuan; Li, Yi-huai; Mao, Jian-hui
2017-09-01
Not Available Project supported by the Major Program of the National Natural Science Foundation of China (Grant No. 51590902), the National Natural Science Foundation of China (Grant N. 51476095), and the Program for Professor of Special Appointment (Young Eastern Scholar, QD2015052) at Shanghai Institutions of Higher Learning, and the Natural Science Foundation of Shanghai (Grant No. 14ZR1417000).
ERIC Educational Resources Information Center
Adedoyin, A. O.; Bello, G.
2017-01-01
This study investigated the conceptions of the nature of science held by pre-service undergraduate biology teachers in South-West, Nigeria. Specifically, the study examined the influence of their gender on their conceptions of the nature of science. The study was a descriptive research of the survey method. The population for the study comprised…
ERIC Educational Resources Information Center
Yacoubian, Hagop A.
2015-01-01
In this article, I introduce a framework for guiding future citizens to think critically about nature of science (NOS) and "with" NOS as they engage in socioscientific decision making. The framework, referred to as the critical thinking--nature of science (CT-NOS) framework, explicates and targets both NOS as a learning objective and NOS…
What Do Scientists Know about the Nature of Science? A Case Study of Novice Scientists' Views of NOS
ERIC Educational Resources Information Center
Aydeniz, Mehmet; Bilican, Kader
2014-01-01
The purpose of this study was to explore 15 graduate research assistants' understanding of the nature of science. Data were collected through administration of a modified version of the Views of Nature of Science Questionnaire (VNOS-C). The findings suggest that graduate research assistants held underdeveloped views related to several nature…
Getting Alice through the door: social science research and natural resource management
Alan W. Ewert
1995-01-01
A number of trends are altering the role of science in natural resource management. These trends include the growing political power of science, the recognition that most natural resource problems are extremely complex and not prone to uni-dimensional solutions, and the increasing need to integrate an understanding of the human component into the planning and decision-...
Bias in Research Grant Evaluation Has Dire Consequences for Small Universities.
Murray, Dennis L; Morris, Douglas; Lavoie, Claude; Leavitt, Peter R; MacIsaac, Hugh; Masson, Michael E J; Villard, Marc-Andre
2016-01-01
Federal funding for basic scientific research is the cornerstone of societal progress, economy, health and well-being. There is a direct relationship between financial investment in science and a nation's scientific discoveries, making it a priority for governments to distribute public funding appropriately in support of the best science. However, research grant proposal success rate and funding level can be skewed toward certain groups of applicants, and such skew may be driven by systemic bias arising during grant proposal evaluation and scoring. Policies to best redress this problem are not well established. Here, we show that funding success and grant amounts for applications to Canada's Natural Sciences and Engineering Research Council (NSERC) Discovery Grant program (2011-2014) are consistently lower for applicants from small institutions. This pattern persists across applicant experience levels, is consistent among three criteria used to score grant proposals, and therefore is interpreted as representing systemic bias targeting applicants from small institutions. When current funding success rates are projected forward, forecasts reveal that future science funding at small schools in Canada will decline precipitously in the next decade, if skews are left uncorrected. We show that a recently-adopted pilot program to bolster success by lowering standards for select applicants from small institutions will not erase funding skew, nor will several other post-evaluation corrective measures. Rather, to support objective and robust review of grant applications, it is necessary for research councils to address evaluation skew directly, by adopting procedures such as blind review of research proposals and bibliometric assessment of performance. Such measures will be important in restoring confidence in the objectivity and fairness of science funding decisions. Likewise, small institutions can improve their research success by more strongly supporting productive researchers and developing competitive graduate programming opportunities.
Bias in Research Grant Evaluation Has Dire Consequences for Small Universities
Murray, Dennis L.; Morris, Douglas; Lavoie, Claude; Leavitt, Peter R.; MacIsaac, Hugh; Masson, Michael E. J.; Villard, Marc-Andre
2016-01-01
Federal funding for basic scientific research is the cornerstone of societal progress, economy, health and well-being. There is a direct relationship between financial investment in science and a nation’s scientific discoveries, making it a priority for governments to distribute public funding appropriately in support of the best science. However, research grant proposal success rate and funding level can be skewed toward certain groups of applicants, and such skew may be driven by systemic bias arising during grant proposal evaluation and scoring. Policies to best redress this problem are not well established. Here, we show that funding success and grant amounts for applications to Canada’s Natural Sciences and Engineering Research Council (NSERC) Discovery Grant program (2011–2014) are consistently lower for applicants from small institutions. This pattern persists across applicant experience levels, is consistent among three criteria used to score grant proposals, and therefore is interpreted as representing systemic bias targeting applicants from small institutions. When current funding success rates are projected forward, forecasts reveal that future science funding at small schools in Canada will decline precipitously in the next decade, if skews are left uncorrected. We show that a recently-adopted pilot program to bolster success by lowering standards for select applicants from small institutions will not erase funding skew, nor will several other post-evaluation corrective measures. Rather, to support objective and robust review of grant applications, it is necessary for research councils to address evaluation skew directly, by adopting procedures such as blind review of research proposals and bibliometric assessment of performance. Such measures will be important in restoring confidence in the objectivity and fairness of science funding decisions. Likewise, small institutions can improve their research success by more strongly supporting productive researchers and developing competitive graduate programming opportunities. PMID:27258385
National Institute of Environmental Health Sciences Kids' Pages
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Leaving behind our preparadigmatic past: Professional psychology as a unified clinical science.
Melchert, Timothy P
2016-09-01
The behavioral and neurosciences have made remarkable progress recently in advancing the scientific understanding of human psychology. Though research in many areas is still in its early stages, knowledge of many psychological processes is now firmly grounded in experimental tests of falsifiable theories and supports a unified, paradigmatic understanding of human psychology that is thoroughly consistent with the rest of the natural sciences. This new body of knowledge poses critical questions for professional psychology, which still often relies on the traditional theoretical orientations and other preparadigmatic practices for guiding important aspects of clinical education and practice. This article argues that professional psychology needs to systematically transition to theoretical frameworks and a curriculum that are based on an integrated scientific understanding of human psychology. Doing so would be of historic importance for the field and would result in major changes to professional psychology education and practice. It would also allow the field to emerge as a true clinical science. (PsycINFO Database Record (c) 2016 APA, all rights reserved).
Utah Science Activities, Update 2010
,
2010-01-01
The U.S. Geological Survey (USGS), a bureau of the U.S. Department of the Interior, serves the Nation by providing reliable scientific information to describe and understand the Earth; minimize loss of life and property from natural disasters; manage water, biological, energy, and mineral resources; and enhance and protect our quality of life. The USGS has become a world leader in the natural sciences thanks to our scientific excellence and responsiveness to society's needs. This newsletter describes some of the current and recently completed USGS earth-science activities in Utah. As an unbiased, multi-disciplinary science organization that focuses on biology, geography, geology, and water, we are dedicated to the timely, relevant, and impartial study of the landscape, our natural resources, and the natural hazards that threaten us. Learn more about our goals and priorities for the coming decade in the USGS Science Strategy at http://www.usgs.gov/science_strategy/ .
Inaugural AGU Science Policy Conference
NASA Astrophysics Data System (ADS)
Uhlenbrock, Kristan
2012-01-01
AGU will present its inaugural Science Policy Conference, 30 April to 3 May 2012, at the Ronald Reagan Building and International Trade Center, located in downtown Washington, D. C. This conference will bring together leading scientists, policy makers, industry professionals, press, and other stakeholders to discuss natural hazards, natural resources, oceans, and Arctic science and the role these sciences play in serving communities. To bridge the science and policy fields, AGU plans to host this conference every 2 years and focus on the applications of Earth and space sciences to serve local and national communities. "Our nation faces a myriad of challenges such as the sustainability of our natural resources, current and future energy needs, and the ability to mitigate and adapt to natural and manmade hazards," said Michael McPhaden, president of AGU. "It is essential that policies to address these challenges be built on a solid foundation of credible scientific knowledge."
NASA Astrophysics Data System (ADS)
Kim, Sun Young; Nehm, Ross H.
2011-01-01
Despite a few international comparisons of the evolutionary beliefs of the general public, comparatively less research has focused on science teachers. Cross-cultural studies offer profitable opportunities for exploring the interactions among knowledge and belief variables in regard to evolution in different socio-cultural contexts. We investigated the evolutionary worldviews of pre-service science teachers from Asia (specifically South Korea), a region often excluded from international comparisons. We compared Korean and American science teachers': (1) understandings of evolution and the nature of science, and (2) acceptance of evolution in order to elucidate how knowledge and belief relationships are manifested in different cultural contexts. We found that Korean science teachers exhibited 'moderate' evolutionary acceptance levels comparable to or lower than American science teacher samples. Gender was significantly related to Korean teachers' evolution content knowledge and acceptance of evolution, with female Christian biology teachers displaying the lowest values on all measures. Korean science teachers' understandings of nature of science were significantly related to their acceptance and understanding of evolution; this relationship appears to transcend cultural boundaries. Our new data on Korean teachers, combined with studies from more than 20 other nations, expose the global nature of science teacher ambivalence or antipathy toward evolutionary knowledge.
Grady, Julie R; Dolan, Erin L; Glasson, George E
2010-01-01
Students' experiences with science integrated into agriscience courses contribute to their developing epistemologies of science. The purpose of this case study was to gain insight into the implementation of scientific inquiry in an agriscience classroom. Also of interest was how the tenets of the nature of science were reflected in the students' experiments. Participants included an agriscience teacher and her fifteen students who were conducting plant experiments to gain insight into the role of a gene disabled by scientists. Data sources included classroom observations, conversations with students, face-to-face interviews with the teacher, and students' work. Analysis of the data indicated that the teacher viewed scientific inquiry as a mechanical process with little emphasis on the reasoning that typifies scientific inquiry. Students' participation in their experiments also centered on the procedural aspects of inquiry with little attention to scientific reasoning. There was no explicit attention to the nature of science during the experiments, but the practice implied correct, incorrect, and underdeveloped conceptions of the nature of science. Evidence from the study suggests a need for collaboration between agriscience and science teacher educators to design and conduct professional development focused on scientific inquiry and nature of science for preservice and practicing teachers.
Grady, Julie R.; Dolan, Erin L.; Glasson, George E.
2013-01-01
Students’ experiences with science integrated into agriscience courses contribute to their developing epistemologies of science. The purpose of this case study was to gain insight into the implementation of scientific inquiry in an agriscience classroom. Also of interest was how the tenets of the nature of science were reflected in the students’ experiments. Participants included an agriscience teacher and her fifteen students who were conducting plant experiments to gain insight into the role of a gene disabled by scientists. Data sources included classroom observations, conversations with students, face–to–face interviews with the teacher, and students’ work. Analysis of the data indicated that the teacher viewed scientific inquiry as a mechanical process with little emphasis on the reasoning that typifies scientific inquiry. Students’ participation in their experiments also centered on the procedural aspects of inquiry with little attention to scientific reasoning. There was no explicit attention to the nature of science during the experiments, but the practice implied correct, incorrect, and underdeveloped conceptions of the nature of science. Evidence from the study suggests a need for collaboration between agriscience and science teacher educators to design and conduct professional development focused on scientific inquiry and nature of science for preservice and practicing teachers. PMID:23935256
Social sciences research in neglected tropical diseases 2: A bibliographic analysis
2011-01-01
Background There are strong arguments for social science and interdisciplinary research in the neglected tropical diseases. These diseases represent a rich and dynamic interplay between vector, host, and pathogen which occurs within social, physical and biological contexts. The overwhelming sense, however, is that neglected tropical diseases research is a biomedical endeavour largely excluding the social sciences. The purpose of this review is to provide a baseline for discussing the quantum and nature of the science that is being conducted, and the extent to which the social sciences are a part of that. Methods A bibliographic analysis was conducted of neglected tropical diseases related research papers published over the past 10 years in biomedical and social sciences. The analysis had textual and bibliometric facets, and focussed on chikungunya, dengue, visceral leishmaniasis, and onchocerciasis. Results There is substantial variation in the number of publications associated with each disease. The proportion of the research that is social science based appears remarkably consistent (<4%). A textual analysis, however, reveals a degree of misclassification by the abstracting service where a surprising proportion of the "social sciences" research was pure clinical research. Much of the social sciences research also tends to be "hand maiden" research focused on the implementation of biomedical solutions. Conclusion There is little evidence that scientists pay any attention to the complex social, cultural, biological, and environmental dynamic involved in human pathogenesis. There is little investigator driven social science and a poor presence of interdisciplinary science. The research needs more sophisticated funders and priority setters who are not beguiled by uncritical biomedical promises. PMID:21210997
NASA Astrophysics Data System (ADS)
Kapetanis, Ana Cristina
The use of high stakes testing to improve educational outcomes falls short in many settings. Proposals for improvement include providing more opportunities for students to extend their thinking, gaining experience in the social nature of science, and learning how to interpret, explain, and justify results. This phenomenological qualitative project study took place in a small independent school in the southeastern United States that lacked a cohesive elementary science program and was looking to create a vertically aligned science curriculum based on constructivism. The research question asked what skills and concepts teachers believed should be included in an elementary science program in order for students to learn scientific inquiry to be better prepared for middle and upper school science subjects. Using focus groups, observations, and interviews of a small sample of 4 teachers, data were collected, transcribed, and categorized through open coding. Inductive analysis was employed to look for patterns and emerging themes that painted a picture of how teachers viewed the current science program and what attributes they felt were important in the creation of a new curriculum. The findings revealed that teachers felt there was lack of a vertically aligned science curriculum, availability of resources throughout the school, and consistent support to provide an effective science program. The recommendations called for developing an elementary science program that includes all strands proposed by the National Science Education Standards and would provide students with opportunities to engage in scientific inquiry, conduct detailed observations, and learn to support conclusions using data. The implications for positive social change include development of programs that result in integrated science learning.
The Contribution of Environmental Studies Curricula to Environmental Decision Making
NASA Astrophysics Data System (ADS)
Lord, Jean
Current studies indicate that college environmental-science curriculums are often inadequate and not meaningful to college students. Yet climate change, depletion of natural resources, and loss of habitat due to human activities are among critical environmental issues. It is important that college students are prepared to address these issues after graduation. This case study attempted to discover the ways that college students perceived how participation in environmental science courses contributed to their environmental decision making and ecological intelligence. The population consisted of 15 sophomore, junior, and senior students randomly selected from a list of science students provided by the registrar. The conceptual framework that guided this study includes 5 components of ecological intelligence: biodiversity, ecological literacy, decision making skills, understanding sustainability, and systems thinking. The data collected over a period of 3 months from focus groups, individual interviews, and student discussions were transcribed and coded using typological analysis to identify students' perspectives on environmental science courses. Findings showed that college science curriculums need to incorporate students' prior environmental experiences into science courses. They should also focus on providing hands on experiences that promote application of knowledge to address environmental problems. This study may promote the implementation of integrated college science curriculums that encourage environmental, interdisciplinary, and personalized learning experiences. Implications for positive social change include college environmental studies and curricula that motivate students and engage their interest in participating in environmental activities.
NASA Astrophysics Data System (ADS)
Kim, Sun Young; Yi, Sang Wook; Cho, Eun Hee
2014-05-01
In this study, we produced a documentary which portrays scientists at work and critically evaluated the use of this film as a teaching tool to help students develop an understanding of the nature of science. The documentary, "Life as a Scientist: People in Love with Caenorhabditis elegans, a Soil Nematode" encompasses the entire process of a scientific investigation by exploring the everyday life of a particular group of scientists. We explored the effectiveness of this documentary in teaching the nature of science by examining the epistemological views of college students toward science before and after viewing. In addition, we collected written responses from the students where they described which aspect of the nature of science they learned from the documentary. The scores of epistemological views toward science increased between the pretest and the posttest ( p < 0.01) with the most significant increase being in their views of the role of social negotiation. In the written responses, approximately half of the students suggested that they had learned more about the role which cooperation and collaboration play in the development of scientific knowledge by watching the documentary. The documentary overall provides a valuable instructional context so that students are able to discuss and reflect on various aspects of nature of science within authentic scientific research.
Relevant Features of Science: Values in Conservation Biology
ERIC Educational Resources Information Center
van Dijk, Esther M.
2013-01-01
The development of an understanding of the nature of science is generally assumed to be an important aspect of science communication with respect to the enhancement of scientific literacy. At present, a general characterization of the nature of science is still lacking and probably such a characterization will not be achievable. The overall aim of…
A Structural Model of Prospective Science Teachers' Nature of Science Views
ERIC Educational Resources Information Center
Mugaloglu, Ebru Z.; Bayram, Hale
2010-01-01
This study aims to establish a viable structural model of prospective science teachers' nature of science (NOS) views, which could be used as an analytical tool for understanding the complex relationships between prospective teachers' conceptions of NOS and factors possibly affecting their conceptions. In order to construct such a model, likely…
Science Professionals: Master's Education for a Competitive World
ERIC Educational Resources Information Center
National Academies Press, 2008
2008-01-01
What are employer needs for staff trained in the natural sciences at the master's degree level? How do master's level professionals in the natural sciences contribute in the workplace? How do master's programs meet or support educational and career goals? "Science Professionals: Master's Education for a Competitive World" examines the answers to…
77 FR 60717 - Establishment of the Advisory Committee on Climate Change and Natural Resource Science
Federal Register 2010, 2011, 2012, 2013, 2014
2012-10-04
... seeking nominations for the Advisory Committee on Climate Change and Natural Resource Science (Committee... of the U.S. Geological Survey National Climate Change and Wildlife Science Center and the DOI Climate... Partnership Coordinator, National Climate Change and Wildlife Science Center, U.S. Geological Survey, 12201...
How Contextualized Learning Settings Enhance Meaningful Nature of Science Understanding
ERIC Educational Resources Information Center
Bilican, K.; Cakiroglu, J.; Oztekin, C.
2015-01-01
Exploring different contexts to facilitate in-depth nature of science (NOS) views were seen as critical for better professional development of pre-service science teachers, which ultimately would assure better students' NOS understanding and achieve an ultimate goal of current science education reforms. This study aimed to reduce the lack of…
Turkish Grade 10 Students' and Science Teachers' Conceptions of Nature of Science: A National Study
ERIC Educational Resources Information Center
Dogan, Nihal; Abd-El-Khalick, Fouad
2008-01-01
This study aimed to assess grade 10 Turkish students' and science teachers' conceptions of nature of science (NOS) and whether these conceptions were related to selected variables. These variables included participants' gender, geographical region, and the socioeconomic status (SES) of their city and region; teacher disciplinary background, years…
ERIC Educational Resources Information Center
Örnek, Funda; Turkey, Kocaeli
2014-01-01
Current approaches in Science Education attempt to enable students to develop an understanding of the nature of science, develop fundamental scientific concepts, and develop the ability to structure, analyze, reason, and communicate effectively. Students pose, solve, and interpret scientific problems, and eventually set goals and regulate their…
ERIC Educational Resources Information Center
Zinyeka, Gracious; Onwu, Gilbert O.M.; Braun, Max
2016-01-01
Integrating indigenous knowledge (IK) into school science teaching is one way of maximising the socio-cultural relevance of science education for enhanced learners' performance. The epistemological differences however between the nature of science (NOS) and nature of indigenous knowledge (NOIK) constitute a major challenge for an inclusive…
The Nature of Science: Integrating Historical, Philosophical, and Sociological Perspectives
ERIC Educational Resources Information Center
Espinoza, Fernando
2011-01-01
The role of science in society, along with its nature and development, are commonly misunderstood by students in the social sciences and humanities, and even those studying in the field. Fernando Espinoza shines light on these misconceptions to give readers a deeper understanding of science and its effect and influence upon society, through…
Theories of the Earth and the Nature of Science.
ERIC Educational Resources Information Center
Williams, James
1991-01-01
Describes the history of the science of geology. The author expounds upon the discovery of deep time and plate tectonics, explaining how the theory of deep time influenced the development of Darwin and Wallace's theory of evolution. Describes how the history of earth science helps students understand the nature of science. (PR)
Teaching about Nature of Science in Secondary Education: A View from Multicultural Classrooms
ERIC Educational Resources Information Center
Gandolfi, Haira Emanuela
2017-01-01
Teaching about nature of science (NOS) within a science curriculum that is primarily concerned with developing scientific content continues to provide a challenge for teachers. This study of science lessons focuses on whether NOS is being incorporated implicitly or explicitly, and whether epistemic aspects (e.g. models, theories) and social…
Consciousness and Science: A Non-Dual Perspective on the Theology-Science Dialogue
ERIC Educational Resources Information Center
Sriraman, Bharath; Benesch, Walter
2013-01-01
In modern science, the synthesis of "nature/mind" in observation, experiment, and explanation, especially in physics and biology increasingly reveal a non-linear totality in which subject, object, and situation have become inseparable. This raises the interesting ontological question of the true nature of reality? Western science as seen in its…
Toward an epistemology of clinical psychoanalysis.
Ahumada, J L
1997-01-01
Epistemology emerges from the study of the ways knowledge is gained in the different fields of scientific endeavor. Current polemics on the nature of psychoanalytic knowledge involve counterposed misconceptions of the nature of mind. On one side clinical psychoanalysis is under siege from philosophical "hard science" stalwarts who, upholding as the unitary model of scientific knowledge of Galilean model of science built around the "well-behaved" variables of mechanics and cosmology, argue clinical psychoanalysis does not meet empirical criteria for the validation of its claims. On the other side, its empirical character is renounced by hermeneuticists who, agreeing with "hard science" advocates on what science is, dismiss the animal nature of human beings and hold that clinical psychoanalysis is not an empirical science but a "human" interpretive one. Taking Adolf Grünbaum's critique as its referent, this paper examines how, by ignoring the differences between "exact" and observational science, the "hard science" demand for well-behaved variables misconstrues the nature of events in the realm of mind. Criteria for an epistemology fit for the facts of clinical psychoanalysis as an empirical, observational science of mind are then proposed.
The Role of Metaphysical Naturalism in Science
NASA Astrophysics Data System (ADS)
Mahner, Martin
2012-10-01
This paper defends the view that metaphysical naturalism is a constitutive ontological principle of science in that the general empirical methods of science, such as observation, measurement and experiment, and thus the very production of empirical evidence, presuppose a no-supernature principle. It examines the consequences of metaphysical naturalism for the testability of supernatural claims, and it argues that explanations involving supernatural entities are pseudo-explanatory due to the many semantic and ontological problems of supernatural concepts. The paper also addresses the controversy about metaphysical versus methodological naturalism.
The concept of nature in Islamic science teaching
NASA Astrophysics Data System (ADS)
Zarman, Wendi
2016-02-01
Science teaching is basically value laden activities. One of the values tells that science is not related to any religion. This secular value is reflected to science teaching in many places, including religious country like Indonesia. However, we argue that in Indonesia science teaching should not be secular as in the Western country since one of the basic aim of National Education according to the Indonesian constitution Undang-Undang Dasar 1945, is to inculcate faith and god-fearing to One God Almighty. As we know, Indonesia is a Moslem country and has many Islamic schools in it too. Thus, it is important to design a science teaching framework base on Islamic teaching to fulfill the basic aim of National Education This paper discusses concept of nature, the key term in science, based on Islamic view that may used as a framework to develop Islamic science teaching. In Islam, science has a strong relation to religion since nature reflects the existence of the Creator. This concept is derived from the analysis of several verses from Qur'an as the main source of Islamic teaching. There are several principle can be derived from this analysis. Firstly, visible world is not the only world, but there is also the unseen world. Secondly, the nature is not merely matter that doesn't have any sacred value, but it is the indication or symbol of God existence and His Nature. Thirdly, The Qur'an and the nature are both Books of Allah that contain messages of Him, so they are complementary to each other
ERIC Educational Resources Information Center
Fraser, William J.
2017-01-01
This article focuses on the dilemmas science educators face when having to introduce Pedagogical Content Knowledge (PCK) to science student teachers in a predominantly paper-based distance learning environment. It draws on the premise that science education is bound by the Nature of Science (NOS), and by the Nature of Scientific Inquiry (NOSI).…
Exploring the Conceptions of a Science Teacher from Karachi about the Nature of Science
ERIC Educational Resources Information Center
Shah, Mir Zaman
2009-01-01
The main purpose of this study is to investigate a science teacher's beliefs and understanding of the nature of science (NOS) in order to be able to relate these beliefs about the NOS to classroom practice and therefore student experience. Teachers' beliefs about the NOS are embedded in their experiences of learning and teaching science and hence,…
ERIC Educational Resources Information Center
Wan, Zhi Hong; Wong, Siu Ling; Wei, Bing; Zhan, Ying
2013-01-01
Drawing from the phenomenographic perspective, an exploratory study investigated Chinese teacher educators' conceptions of teaching Nature of Science (NOS) to pre-service science teachers through semi-structured interviews. Five key dimensions emerged from the data. This paper focuses on the dimension, "NOS content to be taught to pre-service…
Exploring the Roles and Nature of Science: A Case Study of Severe Acute Respiratory Syndrome
ERIC Educational Resources Information Center
Lee, Yeung Chung
2008-01-01
The roles of science in society and the nature of science are the focus of many science curricula. Current views about these two aspects of science have largely been informed by the history of scientific development. This article uses the outbreak of severe acute respiratory syndrome--a recent health scare--as a case study to explore the roles of…
NASA Astrophysics Data System (ADS)
Si-Yu, Wu; Ya-Bo, Wu; Yue-Yue, Zhao; Xue, Zhang; Cheng-Yuan, Zhang; Bo-Hai, Chen
2016-03-01
Not Available Supported by the National Natural Science Foundation of China under Grant Nos 11175077, 11575075 and 11547156, the Joint Specialized Research Fund for the Doctoral Program of Higher Education of Ministry of Education of China under Grant No 20122136110002, the Open Project Program of State Key Laboratory of Theoretical Physics of Institute of Theoretical Physics under Grant No Y4KF101CJ1, and the Project of Key Discipline of Theoretical Physics of Department of Education in Liaoning Province under Grant Nos 905035 and 905061.
Power Laws in Stochastic Processes for Social Phenomena: An Introductory Review
NASA Astrophysics Data System (ADS)
Kumamoto, Shin-Ichiro; Kamihigashi, Takashi
2018-03-01
Many phenomena with power laws have been observed in various fields of the natural and social sciences, and these power laws are often interpreted as the macro behaviors of systems that consist of micro units. In this paper, we review some basic mathematical mechanisms that are known to generate power laws. In particular, we focus on stochastic processes including the Yule process and the Simon process as well as some recent models. The main purpose of this paper is to explain the mathematical details of their mechanisms in a self-contained manner.
Retrofit Gloveport Cover and Security Device
Hinckley, Jon E.
2015-01-01
The world of glovebox work in the areas of science and manufacturing is in a consistent state of flux due to the inherent nature of changing missions. These rapidly changing work environments result in almost continuous regulatory changes within the codes and standards in order to maintain worker and environmental safety. Gloveboxes designed and manufactured prior to these regulations are not easy to update or retrofit to accommodate new requirements. In order to meet the challenge of retrofitting gloveboxes to the meet the requirements, the following solutions have been developed.
ERIC Educational Resources Information Center
Love, Alan C.
2010-01-01
An overlooked feature of Darwin's work is his use of "imaginary illustrations" to show that natural selection is competent to produce adaptive, evolutionary change. When set in the context of Darwin's methodology, these thought experiments provide a novel way to teach natural selection and the nature of science.
Introducing Taiwanese undergraduate students to the nature of science through Nobel Prize stories
NASA Astrophysics Data System (ADS)
Eshach, Haim; Hwang, Fu-Kwun; Wu, Hsin-Kai; Hsu, Ying-Shao
2013-06-01
Although there is a broad agreement among scientists and science educators that students should not only learn science, but also acquire some sense of its nature, it has been reported that undergraduate students possess an inadequate grasp of the nature of science (NOS). The study presented here examined the potential and effectiveness of Nobel Prize stories as a vehicle for teaching NOS. For this purpose, a 36-hour course, “Albert Einstein’s Nobel Prize and the Nature of Science,” was developed and conducted in Taiwan Normal University. Ten undergraduate physics students participated in the course. Analysis of the Views of Nature of Science questionnaires completed by the students before and after the course, as well as the students’ own presentations of Nobel Prize stories (with an emphasis on how NOS characteristics are reflected in the story), showed that the students who participated in the course enriched their views concerning all aspects of NOS. The paper concludes with some suggestions for applying the novel idea of using Nobel Prize stories in physics classrooms.
ERIC Educational Resources Information Center
Kruse, Jerrid W.; Easter, Jaclyn M.; Edgerly, Hallie S.; Seebach, Colin; Patel, Neal
2017-01-01
This study explored changes in preservice teachers' (PSTs) nature of science pedagogical (NOSP) views and nature of science (NOS) rationales using pre- and post-course written responses as well as interview data. Through systematic analysis, themes were generated and compared to the NOS literature. Comparisons between pre- and post-course data…
Hong, Felix T
2013-09-01
Rosen classified sciences into two categories: formalizable and unformalizable. Whereas formalizable sciences expressed in terms of mathematical theories were highly valued by Rutherford, Hutchins pointed out that unformalizable parts of soft sciences are of genuine interest and importance. Attempts to build mathematical theories for biology in the past century was met with modest and sporadic successes, and only in simple systems. In this article, a qualitative model of humans' high creativity is presented as a starting point to consider whether the gap between soft and hard sciences is bridgeable. Simonton's chance-configuration theory, which mimics the process of evolution, was modified and improved. By treating problem solving as a process of pattern recognition, the known dichotomy of visual thinking vs. verbal thinking can be recast in terms of analog pattern recognition (non-algorithmic process) and digital pattern recognition (algorithmic process), respectively. Additional concepts commonly encountered in computer science, operations research and artificial intelligence were also invoked: heuristic searching, parallel and sequential processing. The refurbished chance-configuration model is now capable of explaining several long-standing puzzles in human cognition: a) why novel discoveries often came without prior warning, b) why some creators had no ideas about the source of inspiration even after the fact, c) why some creators were consistently luckier than others, and, last but not least, d) why it was so difficult to explain what intuition, inspiration, insight, hunch, serendipity, etc. are all about. The predictive power of the present model was tested by means of resolving Zeno's paradox of Achilles and the Tortoise after one deliberately invoked visual thinking. Additional evidence of its predictive power must await future large-scale field studies. The analysis was further generalized to constructions of scientific theories in general. This approach is in line with Campbell's evolutionary epistemology. Instead of treating science as immutable Natural Laws, which already existed and which were just waiting to be discovered, scientific theories are regarded as humans' mental constructs, which must be invented to reconcile with observed natural phenomena. In this way, the pursuit of science is shifted from diligent and systematic (or random) searching for existing Natural Laws to firing up humans' imagination to comprehend Nature's behavioral pattern. The insights gained in understanding human creativity indicated that new mathematics that is capable of handling effectively parallel processing and human subjectivity is sorely needed. The past classification of formalizability vs. non-formalizability was made in reference to contemporary mathematics. Rosen's conclusion did not preclude future inventions of new biology-friendly mathematics. Copyright © 2013 Elsevier Ltd. All rights reserved.
Azariah, Jayapaul
2009-01-01
Both western and eastern civilizations have linked moral teaching with theology followed by philosophy. New-knowledge-seekers about natural world, were called ‘natural philosophers’. There was a paradigm shift during industrial revolution in western world which culminated in modern science. The word “scientist” was coined during the 19th century. The paper examines whether natural philosophers could be called ‘scientists’? A short history of philosophical paradigm shift is given. Although written moral and “ethical principles” were in vogue from the time of Hammurabi (1750–1795 BC), the phenomenon of bioethics is very recent. Bioethics is a bridge among different sciences and a bridge to the future. The question is: Is bioethics, by itself, science? The present paper is concerned with the quality of bioethics and about the nature of science during the next 30–50 years. Science is value-free but bioethics is value-loaded. Science does not proclaim any value whereas bioethics underlines the moral life and its value to survive. The paper examines two issues: Can science be bioethics-friendly? and (ii) Can bioethics be science-friendly? It appears that both science and bioethics are incompatible. We need to develop a new system of knowledge to include/infuse the bioethical-notion of values in (into) science. Such a move may necessitate the development of an alternate but new model. Bioethics is not a science-discipline. A new term to replace science is needed. Elevating bioethics as an academic science may create job openings in India. PMID:23908732
Does the nature of science influence college students' learning of biological evolution?
NASA Astrophysics Data System (ADS)
Butler, Wilbert, Jr.
This quasi-experimental, mixed-methods study assessed the influence of the nature of science (NOS) instruction on college students' learning of biological evolution. In this research, conducted in two introductory biology courses, in each course the same instruction was employed, with one important exception: in the experimental section students were involved in an explicit, reflective treatment of the nature of science (Explicit, reflective NOS), in the traditional treatment section, NOS was implicitly addressed (traditional treatment). In both sections, NOS aspects of science addressed included is tentative, empirically based, subjective, inferential, and based on relationship between scientific theories and laws. Students understanding of evolution, acceptance of evolution, and understanding of the nature of science were assessed before, during and after instruction. Data collection entailed qualitative and quantitative methods including Concept Inventory for Natural Selection (CINS), Measure of Acceptance of the Theory of Evolution (MATE) survey, Views of nature of Science (VNOS-B survey), as well as interviews, classroom observations, and journal writing to address understand students' views of science and understanding and acceptance of evolution. The quantitative data were analyzed via inferential statistics and the qualitative data were analyzed using grounded theory. The data analysis allowed for the construction and support for four assertions: Assertion 1: Students engaged in explicit and reflective NOS specific instruction significantly improved their understanding of the nature of science concepts. Alternatively, students engaged in instruction using an implicit approach to the nature of science did not improve their understanding of the nature of science to the same degree. The VNOS-B results indicated that students in the explicit, reflective NOS class showed the better understanding of the NOS after the course than students in the implicit NOS class. The increased understanding of NOS demonstrated by students in the explicit, reflective NOS class compared to students in the implicit NOS class can be attributed to the students' engagement in explicit and reflective NOS instruction that was absent in the implicit NOS class. Post VNOS results from students in the explicit, reflective NOS class showed marked improvement in the targeted aspects of NOS (empirical nature of scientific knowledge, inferential nature of scientific knowledge, subjective nature of scientific knowledge, the distinction between scientific law and theory, and the tentative nature of scientific knowledge) compared to the result of the pretest while the scores of students in the implicit NOS class demonstrated little change. Assertion 2: Students in the explicit, reflective NOS class section made greater gains in their understanding of evolution than students in the traditional class. The explicit, reflective NOS class demonstrated a statistically significant improvement in their understanding of biological evolution after the course, while the changes observed in the implicit NOS group were not found to be statistically significant---this despite that the manner in which evolution was taught was held constant across the two sections. Thus, the explicit, reflective NOS approach to the teaching of biological evolution seems to be more effective than many discussed in the literature in supporting student learning about evolution. Assertion 3: The conceptual gains by students in the explicit, reflective NOS course section were allowed by the affective "room" that a sophisticated understanding of the nature of the nature of science provides in a classroom. The data collected from this study collectively indicate that a sophisticated understanding of NOS allows students to recognize the boundaries of science. We argue that an explicit and reflective engagement of the NOS aspects helps the students understand the defining aspects of science better. Assertion 4: A change in students' understanding of evolution does not necessitate a change in students' acceptance of evolution. The results showed that students engaged in explicit and reflective NOS specific instruction significantly improved their understanding of NOS concepts and the understanding of evolution. However, there was not a significant change in acceptance of evolution related to the change in understanding. These results demonstrate that the nature of science instruction plays an important role in the teaching and learning of biological evolution. Nevertheless, this NOS instruction must be explicit and reflective in nature. Students that engage explicitly and reflectively on specific tenets of NOS not only developed a better understanding of the NOS aspects but also a better understanding of biological evolution. Therefore, science teachers in elementary, middle, secondary and post-secondary education should consider implementing an explicit, reflective approach to the nature of science into their science curriculum not only for teaching evolution but for other controversial topics as well. (Abstract shortened by UMI.)
DOE Office of Scientific and Technical Information (OSTI.GOV)
Johansen, Stein E., E-mail: stein.johansen@svt.ntnu.no
2014-12-10
The paper recapitulates some key elements in previously published results concerning exact and complete reconstitution of the field of natural numbers, both as ordinal and as cardinal numbers, from systematic unfoldment of the Fibonacci algorithm. By this natural numbers emerge as Fibonacci 'atoms' and 'molecules' consistent with the notion of Zeckendorf sums. Here, the sub-set of prime numbers appears not as the primary numbers, but as an epistructure from a deeper Fibonacci constitution, and is thus targeted from a 'positive approach'. In the Fibonacci reconstitution of number theory natural numbers show a double geometrical aspect: partly as extension in spacemore » and partly as position in a successive structuring of space. More specifically, the natural numbers are shown to be distributed by a concise 5:3 code structured from the Fibonacci algorithm via Pascal's triangle. The paper discusses possible implications for the more general relation between number theory and geometry, as well as more specifically in relation to hadronic mathematics, initiated by R.M. Santilli, and also briefly to some other recent science linking number theory more directly to geometry and natural systems.« less
The fire ant wars. Nature and science in the pesticide controversies of the late twentieth century.
Buhs, Joshua Blu
2002-09-01
This essay uses an approach borrowed from environmental history to investigate the interaction of science and nature in a late twentieth-century controversy. This debate, over the proper response to fire ants that had been imported into the American South accidentally and then spread across the region, pitted Rachel Carson and loosely federated groups of conservationists, scientists, and citizens against the U.S. Department of Agriculture. The analysis falls into three sections: an examination of the natural history of the ants; an examination of the views of the competing factions; and an examination of how those views, transformed into action, affected the natural world. Both sides saw the ants in terms of a constellation of beliefs about the relationship between nature, science, and democracy. As various ideas were put into play, they interacted with the natural history of the insects in unexpected ways--and with consequences for the cultural authority of the antagonists. Combining insights from the history of science and environmental history helps explain how scientists gain and lose cultural authority and, more fundamentally, allows for an examination of how nature can be integrated into the history of science.
Cyber physical system based on resilient ICT
NASA Astrophysics Data System (ADS)
Iwatsuki, Katsumi
2016-02-01
While development of science and technology has built up the sophisticated civilized society, it has also resulted in quite a few disadvantages in global environment and human society. The common recognition has been increasingly shared worldwide on sustainable development society attaching greater importance to the symbiotic relationship with nature and social ethics. After the East Japan Great Earthquake, it is indispensable for sustainable social development to enhance capacity of resistance and restoration of society against natural disaster, so called "resilient society". Our society consists of various Cyber Physical Systems (CPSs) that make up the physical systems by fusing with an Information Communication Technology (ICT). We describe the proposed structure of CPS in order to realize resilient society. The configuration of resilient CPS consisting of ICT and physical system is discussed to introduce "autonomous, distributed, and cooperative" structure, where subsystems of ICT and physical system are simultaneously coordinated and cooperated with Business Continuity Planning (BCP) engine, respectively. We show the disaster response information system and energy network as examples of BCP engine and resilient CPS, respectively. We also propose the structure and key technology of resilient ICT.
Nabi, Robin L; Prestin, Abby
2016-09-01
In light of the inherent conflict between the nature of science (slow, subject to correction) and the nature of news (immediate, dramatic, novel), this study examines the effect of emotional health news coverage on intentions to engage in protective health behaviors. One hundred seventy-seven students read news stories designed to evoke either fear or hope about human papillomavirus (HPV) followed by different levels of response efficacy information regarding an impending HPV vaccine. Results indicated no main effects for emotion frame or response efficacy, but a significant interaction suggested that emotionally-consistent presentations (fear/low efficacy; hope/high efficacy) boosted intentions to engage in protective actions relative to emotionally-inconsistent, sensationalized presentations (fear/high efficacy, hope/low efficacy). Consistent with the emotion-as-frame perspective, this effect was moderated by perceived knowledge about HPV prevention. Effects of the sensationalized story constructions on trust in health news were also evidenced. Implications for the role of emotional health news coverage in priming prior knowledge about preventative health behaviors, along with future research directions, are discussed.
A guide to understanding social science research for natural scientists.
Moon, Katie; Blackman, Deborah
2014-10-01
Natural scientists are increasingly interested in social research because they recognize that conservation problems are commonly social problems. Interpreting social research, however, requires at least a basic understanding of the philosophical principles and theoretical assumptions of the discipline, which are embedded in the design of social research. Natural scientists who engage in social science but are unfamiliar with these principles and assumptions can misinterpret their results. We developed a guide to assist natural scientists in understanding the philosophical basis of social science to support the meaningful interpretation of social research outcomes. The 3 fundamental elements of research are ontology, what exists in the human world that researchers can acquire knowledge about; epistemology, how knowledge is created; and philosophical perspective, the philosophical orientation of the researcher that guides her or his action. Many elements of the guide also apply to the natural sciences. Natural scientists can use the guide to assist them in interpreting social science research to determine how the ontological position of the researcher can influence the nature of the research; how the epistemological position can be used to support the legitimacy of different types of knowledge; and how philosophical perspective can shape the researcher's choice of methods and affect interpretation, communication, and application of results. The use of this guide can also support and promote the effective integration of the natural and social sciences to generate more insightful and relevant conservation research outcomes. © 2014 Society for Conservation Biology.
The one and the many: the search for unity in nature.
Gleiser, Marcelo
2015-12-01
The essence of physical reality-what the world consists of-has been a heated focus of contention for millennia. First with philosophers and then with physicists, the debate has been polarized since the beginning: while those loosely known as Platonists search for an underlying unity in nature, others caution that such unity is unachievable in practice and in principle. In this essay, we review both positions, arguing strongly for the latter in anticipation of experimental results from the Large Hadron Collider, the particle accelerator from the European Center for Nuclear Research. We further argue that, for the first time in history, the material essence of reality could be determined from an empirical standpoint as opposed to a purely dialectic one, settling the age-old debate. © 2015 New York Academy of Sciences.
Science teachers' worldviews and values regarding nature and the environment
NASA Astrophysics Data System (ADS)
Roberts, Wendy P.
According to the National Science Education Standards (1996), science educators are challenged with the goal of educating future citizens and policy makers to make informed decisions concerning socio-scientific issues. Previous science education research has not explored the influence of science teachers' personal worldviews and values in achieving this educational goal. The purpose of this study was to investigate secondary science teachers' worldviews and values as they relate to nature and environmental education in their science classrooms. The participants' descriptions of their environmental personae and their perception of its influence in their classrooms were also examined. The participants represented a purposeful sample of twelve certified secondary school science teachers who teach in a suburban Atlanta, Georgia school. The study employed an interpretive, qualitative methodology using a constant comparative, inductive analysis design to develop grounded theory. Each participant's worldview, values, and environmental personae regarding the natural world and the environment were explored using William Cobern's (2000) Nature Card Sort instrument, responses to five environmental scenarios and individual interviews that addressed each participant's interpretation of the effect that personal worldviews and values have in their science classrooms. The participants' worldviews and values were disproportionately reflective of both science and society with far more weight given to the contextual values of society rather than the constitutive values of science. Most of these teachers had strong spiritual worldviews of nature; however, these views were of a Puritanical nature rather than Aboriginal. The participants felt conflicted about the appropriate course of action in many environmental issues. Contrary to other studies conducted in this field, there were few philosophical differences between teachers in the different disciplines of science, with the exception of many of the physical science teachers' belief that their worldviews and values were not revealed in their classroom activities. All of the teachers considered heterogeneous philosophies and value systems to be important components of science education. Describing these teachers' worldviews and value systems is an essential first step in developing a better understanding of teachers' influence in socio-scientific decision making.
Unconventional forms of popularization of science - festivals 'Science on Stage" in Poland.
NASA Astrophysics Data System (ADS)
Mika, Aneta
2010-05-01
Are natural sciences popular these days? There is no obvious and straight answer to this question. On the one hand, students discouraged with the effort which they must put into learning science, avoid choosing such subjects for matriculation exams and also are reluctant to choose courses related to these areas. On the other hand, a well-chosen activating method can infect plenty of students with enthusiasm for studying natural science. One of such method is the festival "Science on Stage", which has been periodically held at the Adam Mickiewicz University in Poznań, Department of Physics. By 2008 six such festivals were held. The first three of them were run under the name "Physics on Stage", and the other three as "Science on Stage". Every year the festivals were attended by over 200 teachers and students of all school types (from kindergartens to universities), until 2008, when the event attracted over 400 participants from all over the country. This shows an increasing popularity of such projects. Participants in the festival could present their ideas "on stage" in three basic categories which included: • Experiments such as "Water - a cycle of experiments", " Two elements - Smoke on the Water", Diffraction and fractals" ,"Light Amplification by Stimulated Emission of Radiation", " Wind-propelled vehicles moving against the wind". • Performances such as "The musical physics or the sounds around us", "The laws of physics and the human body", "The Piglet and the shadow or on the violation of the laws of physics in children stories" and "In the stream of light". • Multimedia presentations such as "Thermonuclear fusion - the energy of the future", "The phenomena on the Sky and Earth which the philosophers have not dreamed of", "Galvanic batteries - small electric power plants", "System PSR B1257 12", "Physics and Chemistry in the kitchen". The festivals were accompanied by photo and painting exhibitions covering the topic of natural sciences. The visitors could enter the show rooms and had an opportunity to try their hand at carrying out experiments prepared for them beforehand. All presentations were evaluated by a jury consisting of research workers of Adam Mickiewicz University in Poznań, Warsaw University, University of Silesia and members of the Polish Physical Society. Within each category three best presentations were selected, and their authors then represented Poland at the international festival. From many years the chairman of the National Organizing Committee of the festival has been professor Wojciech Nawrocik, the winner of the prestigious competition "Propagator of Science", organized by Polish Press Agency and the Ministry of Science and Higher Education. Each festival was inaugurated with a performance prepared by the youngest participants of the festival - kindergarten children, who are outside of the competition. The theme of the last one was: "Preschoolers also are waiting for the Higgs particle!". Next edition of "Science on Stage 4" festival will be held on 24-25 September 2010, also at the Department of Physics at the University of Poznań. Its aim is to show the contribution of physics, other natural and technical sciences in solving energy problems of the world and Poland, and also finding new solutions in power engineering, which will meet a rapidly rising demand for clean and cheap energy.
ERIC Educational Resources Information Center
Ozturk, Elif; Ucus, Sukran
2015-01-01
Argumentation is highlighted as one of the most important activities of science education by many researchers. The main aim of this research is to examine primary school students' nature of science classes and argumentation skills in terms of their academic success in primary science classes. Thus, the main interest of the study is centered on the…
ERIC Educational Resources Information Center
Ozturk, Elif; Ucus, Sukran
2015-01-01
Argumentation is highlighted as one of the most important activities of science education by many researchers. The main aim of this research is to examine primary school students' nature of science classes and argumentation skills in terms of their academic success in primary science classes. Thus, the main interest of the study is centered on the…
Changes in the Perceptions of the Nature of Science and Religious Belief
ERIC Educational Resources Information Center
Aflalo, Ester
2018-01-01
Understanding the nature of science (NOS) is one of the challenging objectives in science education due, in part, to the complex relationship between religion and science. This study examines how NOS teaching affects the perception of the NOS amongst religious, as compared to secular, students. The participants included 205 religious and secular…
The Science of Human Nature and the Human Nature of Science
ERIC Educational Resources Information Center
Menhand, Lois
2005-01-01
In 1889, German biologist August Weissmann showed that mice whose tails are cut off do not produce short-tailed offspring. It was a step forward for science, but a step backward for civilization. Weissmann's discovery was good for science because, contrary to what many scientists had believed, acquired characteristics are not, of course,…
ERIC Educational Resources Information Center
Tira, Praweena
2009-01-01
The purpose of this study was to understand how Thai scientists from four disciplines viewed nature of science (NOS). The sixteen participating scientists were chosen from the areas of chemistry, physics, biology/life sciences, and geology/earth sciences and were separated into novice and expert groups. The scientists' understandings about NOS…
Advanced Science Students' Understanding on Nature of Science in Turkey
ERIC Educational Resources Information Center
Köksal, Mustafa Serdar; Sormunen, Kari
2014-01-01
Nature of science (NOS), as an aspect of informed decision making about science related issues in daily life, is frequently emphasised when reform and the curriculum are in question. When reflecting on studies done on the subject, it comes apparent that the majority of them comprise of determination or assessment studies conducted with traditional…
Errors in Science and Their Treatment in Teaching Science
ERIC Educational Resources Information Center
Kipnis, Nahum
2011-01-01
This paper analyses the real origin and nature of scientific errors against claims of science critics, by examining a number of examples from the history of electricity and optics. This analysis leads to a conclusion that errors are a natural and unavoidable part of scientific process. If made available to students, through their science teachers,…
Science Teachers' Use of Mass Media to Address Socio-Scientific and Sustainability Issues
ERIC Educational Resources Information Center
Klosterman, Michelle L.; Sadler, Troy D.; Brown, Julie
2012-01-01
The currency, relevancy and changing nature of science makes it a natural topic of focus for mass media outlets. Science teachers and students can capitalize on this wealth of scientific information to explore socio-scientific and sustainability issues; however, without a lens on how those media are created and how representations of science are…
Suggesting a NOS Map for Nature of Science for Science Education Instruction
ERIC Educational Resources Information Center
Oh, Jun-Young
2017-01-01
The aims of this research are 1) to explore the inter-relationships within the individual elements or tenets of Nature of Science (NOS), based on the dimensions of scientific knowledge in science learning, and 2) to consider Kuhn's concept of how scientific revolution takes place. This study suggests that instruction according to our NOS Flowchart…
ERIC Educational Resources Information Center
Buxner, Sanlyn R.
2014-01-01
The nature of science is a prevalent theme across United States national science education standards and frameworks as well as other documents that guide formal and informal science education reform. To support teachers in engaging their students in authentic scientific practices and reformed teaching strategies, research experiences for teachers…
Dilemmas in Examining Understanding of Nature of Science in Vietnam
ERIC Educational Resources Information Center
Thao-Do, Thi Phuong; Yuenyong, Chokchai
2017-01-01
Scholars proved nature of science (NOS) has made certain contributions to science teaching and learning. Nonetheless, what, how and how much NOS should be integrated in the science curriculum of each country cannot be a benchmark, due to the influence of culture and society. Before employing NOS in a new context, it should be carefully studied. In…
Beyond the limits of traditional science: bioregional assessments and natural resource management.
Sally Duncan
2000-01-01
Bioregional assessments to deal with critical, even crisis, natural resource issues have emerged as important meeting grounds of science, management, and policy across the United States. They are placing heavy demands on science, scientists, and science organizations to compile, synthesize, and produce data, for policy decisions. There is no blueprint for their conduct...
ERIC Educational Resources Information Center
Matkins, Juanita Jo; Bell, Randy L.
2007-01-01
This investigation assessed the impact of situating explicit nature of science (NOS) instruction within the issues surrounding global climate change and global warming (GCC/GW). Participants in the study were 15 preservice elementary teachers enrolled in a science methods course. The instructional intervention included explicit NOS instruction…
ERIC Educational Resources Information Center
Yenice, Nilgün
2015-01-01
This study has been carried out to identify the relationship between the epistemological beliefs of student teachers and their metacognitive perceptions about the nature of science. The participants of the study totaled 336 student teachers enrolled in the elementary science education division of the department of elementary education at the…
ERIC Educational Resources Information Center
Koksal, Mustafa Serdar; Cakiroglu, Jale; Geban, Omer
2013-01-01
The purpose of this study is to investigate the effectiveness of explicit-embedded-reflective (EER) instruction in nature of science (NOS) understandings of ninth-grade advanced science students. This study was conducted with 71 students, who were divided into three groups, by using non-equivalent quasi-experimental design. In the treatment…
The Influence of Argumentation on Understanding Nature of Science
ERIC Educational Resources Information Center
Boran, Gül Hanim; Bag, Hüseyin
2016-01-01
The aim in conducting this study is to explore the effects of argumentation on pre-service science teachers' views of the nature of science. This study used a qualitative case study and conducted with 20 pre-service science teachers. Data sources include an open-ended questionnaire and audio-taped interviews. According to pretest and posttest…
ERIC Educational Resources Information Center
Çil, Emine; Çepni, Salih
2016-01-01
Background: One of the most important goals of science education is to enable students to understand the nature of science (NOS). However, generally regular science teaching in classrooms does not help students improve informed NOS views. Purpose: This study investigated the influence of an explicit reflective conceptual change approach compared…
Inquiry-Based Instruction and Teaching about Nature of Science: Are They Happening?
ERIC Educational Resources Information Center
Capps, Daniel K.; Crawford, Barbara A.
2013-01-01
Anecdotal accounts from science educators suggest that few teachers are teaching science as inquiry. However, there is little empirical evidence to support this claim. This study aimed to provide evidence-based documentation of the state-of-use of inquiry-based instruction and explicit instruction about nature of science (NOS). We examined the…
Graph and Table Use in Special Education: A Review and Analysis of the Communication of Data
ERIC Educational Resources Information Center
Kubina, Richard M.; Kostewicz, Douglas E.; Datchuk, Shawn M.
2010-01-01
An emerging line of research demonstrates a distinction between social and natural sciences; natural sciences devote more page space in journals to data graphics than social sciences. The present survey asked how the subdiscipline of Education, Special Education, compares to other disciplines of science. Also, how do the Individuals with…
Scientometrics: Nature Index and Brazilian science.
Silva, Valter
2016-09-01
A recent published newspaper article commented on the (lack of) quality of Brazilian science and its (in) efficiency. The newspaper article was based on a special issue of Nature and on a new resource for scientometrics called Nature Index. I show here arguments and sources of bias that, under the light of the principle in dubio pro reo, it is questionable to dispute the quality and efficiency of the Brazilian science on these grounds, as it was commented on the referred article. A brief overview of Brazilian science is provided for readers to make their own judgment.
NASA Astrophysics Data System (ADS)
Martín-Díaz, M. J.
2006-08-01
The aim of this research is to ascertain teachers’ opinions on what elements of nature of science (NOS) and science technology society relationships (STS) should be taught in school science. To this end an adapted version of the questionnaire developed by Osborne et al. is used. Our results show that experts consulted by Osborne et al. and Spanish teachers confer similar importance on the provisional, experimental, and predictive nature of scientific knowledge based on some of the procedures used such as the drawing up of hypotheses and the analysis and interpretation of data. We also look into the relationship between the teachers’ views and their educational background.1 Results suggest that philosophy teachers are more concerned with the inclusion of NOS and STS topics in science curricula than science teachers, although further studies will be necessary. Some suggestions concerning the university training of science teachers are also discussed.
NASA Astrophysics Data System (ADS)
Garcia Arriola, Alfonso
In the last twenty years in US science education, professional development has emphasized the need to change science instruction from a direct instruction model to a more participatory and constructivist learning model. The result of these reform efforts has seen an increase in science education professional development that is focused on providing teaching strategies that promote inquiry learning to learn science content. Given these reform efforts and teacher responses to professional development, research seems to indicate that whether teachers actually change their practice may depend on the teachers' basic epistemological beliefs about the nature of science. The person who builds the bridge between teacher beliefs and teacher practice is the designer and facilitator of science teacher professional development. Even though these designers and facilitators of professional development are critical to science teacher change, few have studied how these professionals approach their work and what influence their beliefs have on their professional development activities. Eight developers and designers of science education professional development participated in this study through interviews and the completion of an online questionnaire. To examine the relationship between professional development providers' science beliefs and their design, development, and implementation of professional development experiences for science teachers, this study used the Views on Science Education Questionnaire (VOSE), and interview transcripts as well as analysis of the documents from teacher professional development experiences. Through a basic interpretive qualitative analysis, the predominant themes that emerged from this study suggest that the nature of science is often equated with the practice of science, personal beliefs about the nature of science have a minimal impact on the design of professional development experiences, current reform efforts in science education have a strong influence on the design of professional development, and those providing science education professional development have diverse views about epistemology and the nature of science. The results and conclusions from this study lead to a discussion of implications and recommendations for the planning and design of professional development for science teachers, including the need to making equity and social justice issues an integral part of inquiry and scientific practice.
NASA Astrophysics Data System (ADS)
Shaner, A. J.; Allen, J. S.; Shipp, S. S.; Kramer, G. Y.; Nahm, A.; Balazs, L.; Fuller, J.; Newland, J.; Snyder, R. D.; Kring, D. A.
2014-12-01
The National Research Council (2012) has expressed a need for participatory science experiences for students. Opportunities are needed for students which 1) allow them to understand how scientific knowledge develops and 2) can heighten their curiosity, capture their interest, and motivate their continued study of science. Studies (e.g., Aydeniz et al., 2011) have also recommend educators provide students with opportunities to do science through extracurricular work with scientists. In addition to being given the opportunity to fully participate in the scientific enterprise, students must also be explicitly guided in their attempts to develop a more appropriate understanding of the nature of the scientific enterprise (McDonald, 2010; Rudge & Howe, 2010; Yacoubian & BouJaoude, 2010). Exploration of the Moon and Asteroids by Secondary Students, or ExMASS, provides such an opportunity for students. The ExMASS program is an education effort managed by the LPI/NASA JSC-led Center for Lunar Science and Exploration (CLSE), one of nine teams comprising NASA's Solar System Exploration Research Virtual Institute (SSERVI). Over the course of one academic year, teams of high school students conduct their own scientific investigations of either Earth's Moon or asteroids, with guidance from a scientist mentor. The program includes two elements: 1) a guided inquiry introductory research activity that builds student knowledge of current lunar/asteroid science and lunar/asteroid data, and 2) an open inquiry research project in which the students apply their knowledge to a self-defined project. Evaluation data collected during the predecessor program to ExMASS revealed many successes, but also room for improvement. In response, an Advisory Group consisting of past teachers and mentors was formed to address the gaps revealed in the evaluation data. The ExMASS program will continue to collect similar evaluation data including assessment of changes in students' lunar/asteroid content knowledge, student attitudes toward science and science careers, and views of the nature of science and scientific inquiry. Exit surveys for teachers, students, and mentors will also be used to gather general feedback about the program and its impact.
Science exploration opportunities for manned missions to the Moon, Mars, Phobos, and an asteroid
NASA Technical Reports Server (NTRS)
Nash, Douglas B.; Plescia, Jeffrey; Cintala, Mark; Levine, Joel; Lowman, Paul; Mancinelli, Rocco; Mendell, Wendell; Stoker, Carol; Suess, Steven
1989-01-01
Scientific exploration opportunities for human missions to the Moon, Phobos, Mars, and an asteroid are addressed. These planetary objects are of prime interest to scientists because they are the accessible, terresterial-like bodies most likely to be the next destinations for human missions beyond Earth orbit. Three categories of science opportunities are defined and discussed: target science, platform science, and cruise science. Target science is the study of the planetary object and its surroundings (including geological, biological, atmospheric, and fields and particle sciences) to determine the object's natural physical characteristics, planetological history, mode of origin, relation to possible extant or extinct like forms, surface environmental properties, resource potential, and suitability for human bases or outposts. Platform science takes advantage of the target body using it as a site for establishing laboratory facilities and observatories; and cruise science consists of studies conducted by the crew during the voyage to and from a target body. Generic and specific science opportunities for each target are summarized along with listings of strawman payloads, desired or required precursor information, priorities for initial scientific objectives, and candidate landing sites. An appendix details the potential use of the Moon for astronomical observatories and specialized observatories, and a bibliography compiles recent work on topics relating to human scientific exploration of the Moon, Phobos, Mars, and asteroids. It is concluded that there are a wide variety of scientific exploration opportunities that can be pursued during human missions to planetary targets but that more detailed studies and precursor unmanned missions should be carried out first.
Designing an educative curriculum unit for teaching molecular geometry in high school chemistry
NASA Astrophysics Data System (ADS)
Makarious, Nader N.
Chemistry is a highly abstract discipline that is taught and learned with the aid of various models. Among the most challenging, yet a fundamental topic in general chemistry at the high school level, is molecular geometry. This study focused on developing exemplary educative curriculum materials pertaining to the topic of molecular geometry. The methodology used in this study consisted of several steps. First, a diverse set of models were analyzed to determine to what extent each model serves its purpose in teaching molecular geometry. Second, a number of high school teachers and college chemistry professors were asked to share their experiences on using models in teaching molecular geometry through an online questionnaire. Third, findings from the comparative analysis of models, teachers’ experiences, literature review on models and students’ misconceptions, the curriculum expectations of the Next Generation Science Standards and their emphasis on three-dimensional learning and nature of science (NOS) contributed to the development of the molecular geometry unit. Fourth, the developed unit was reviewed by fellow teachers and doctoral-level science education experts and was revised to further improve its coherence and clarity in support of teaching and learning of the molecular geometry concepts. The produced educative curriculum materials focus on the scientific practice of developing and using models as promoted in the Next Generations Science Standards (NGSS) while also addressing nature of science (NOS) goals. The educative features of the newly developed unit support teachers’ pedagogical knowledge (PK) and pedagogical content knowledge (PCK). The unit includes an overview, teacher’s guide, and eight detailed lesson plans with inquiry oriented modeling activities replete with models and suggestions for teachers, as well as formative and summative assessment tasks. The unit design process serves as a model for redesigning other instructional units in science disciplines in general and chemistry courses in particular.
NASA Astrophysics Data System (ADS)
Grcevich, Jana; Pagnotta, Ashley; Mac Low, Mordecai-Mark; Shara, Michael; Flores, Kennet; Nadeau, Patricia A.; Sessa, Jocelyn; Ustunisik, Gokce; Zirakparvar, Nasser; Ebel, Denton; Harlow, George; Webster, James D.; Kinzler, Rosamond; MacDonald, Maritza B.; Contino, Julie; Cooke-Nieves, Natasha; Howes, Elaine; Zachowski, Marion
2015-01-01
The Master of Arts in Teaching (MAT) Program at the American Museum of Natural History is a innovative program designed to prepare participants to be world-class Earth Science teachers. New York State is experiencing a lack of qualified Earth Science teachers, leading in the short term to a reduction in students who successfully complete the Earth Science Regents examination, and in the long term potential reductions in the number of students who go on to pursue college degrees in Earth Science related disciplines. The MAT program addresses this problem via a collaboration between practicing research scientists and education faculty. The faculty consists of curators and postdoctoral researchers from the Departments of Astrophysics, Earth and Planetary Sciences, and the Division of Paleontology, as well as doctoral-level education experts. During the 15-month, full-time program, students participate in a residency program at local urban classrooms as well as taking courses and completing field work in astrophysics, geology, earth science, and paleontology. The program targets high-needs schools with diverse populations. We seek to encourage, stimulate interest, and inform the students impacted by our program, most of whom are from traditionally underrepresented backgrounds, about the rich possibilities for careers in Earth Science related disciplines and the intrinsic value of the subject. We report on the experience of the first and second cohorts, all of whom are now employed in full time teaching positions, and the majority in high needs schools in New York State.
Reliability of a science admission test (HAM-Nat) at Hamburg medical school.
Hissbach, Johanna; Klusmann, Dietrich; Hampe, Wolfgang
2011-01-01
The University Hospital in Hamburg (UKE) started to develop a test of knowledge in natural sciences for admission to medical school in 2005 (Hamburger Auswahlverfahren für Medizinische Studiengänge, Naturwissenschaftsteil, HAM-Nat). This study is a step towards establishing the HAM-Nat. We are investigating parallel forms reliability, the effect of a crash course in chemistry on test results, and correlations of HAM-Nat test results with a test of scientific reasoning (similar to a subtest of the "Test for Medical Studies", TMS). 316 first-year students participated in the study in 2007. They completed different versions of the HAM-Nat test which consisted of items that had already been used (HN2006) and new items (HN2007). Four weeks later half of the participants were tested on the HN2007 version of the HAM-Nat again, while the other half completed the test of scientific reasoning. Within this four week interval students were offered a five day chemistry course. Parallel forms reliability for four different test versions ranged from r(tt)=.53 to r(tt)=.67. The retest reliabilities of the HN2007 halves were r(tt)=.54 and r(tt )=.61. Correlations of the two HAM-Nat versions with the test of scientific reasoning were r=.34 und r=.21. The crash course in chemistry had no effect on HAM-Nat scores. The results suggest that further versions of the test of natural sciences will not easily conform to the standards of internal consistency, parallel-forms reliability and retest reliability. Much care has to be taken in order to assemble items which could be used interchangeably for the construction of new test versions. The test of scientific reasoning and the HAM-Nat are tapping different constructs. Participation in a chemistry course did not improve students' achievement, probably because the content of the course was not coordinated with the test and many students lacked of motivation to do well in the second test.
Reliability of a science admission test (HAM-Nat) at Hamburg medical school
Hissbach, Johanna; Klusmann, Dietrich; Hampe, Wolfgang
2011-01-01
Objective: The University Hospital in Hamburg (UKE) started to develop a test of knowledge in natural sciences for admission to medical school in 2005 (Hamburger Auswahlverfahren für Medizinische Studiengänge, Naturwissenschaftsteil, HAM-Nat). This study is a step towards establishing the HAM-Nat. We are investigating parallel forms reliability, the effect of a crash course in chemistry on test results, and correlations of HAM-Nat test results with a test of scientific reasoning (similar to a subtest of the "Test for Medical Studies", TMS). Methods: 316 first-year students participated in the study in 2007. They completed different versions of the HAM-Nat test which consisted of items that had already been used (HN2006) and new items (HN2007). Four weeks later half of the participants were tested on the HN2007 version of the HAM-Nat again, while the other half completed the test of scientific reasoning. Within this four week interval students were offered a five day chemistry course. Results: Parallel forms reliability for four different test versions ranged from rtt=.53 to rtt=.67. The retest reliabilities of the HN2007 halves were rtt=.54 and rtt =.61. Correlations of the two HAM-Nat versions with the test of scientific reasoning were r=.34 und r=.21. The crash course in chemistry had no effect on HAM-Nat scores. Conclusions: The results suggest that further versions of the test of natural sciences will not easily conform to the standards of internal consistency, parallel-forms reliability and retest reliability. Much care has to be taken in order to assemble items which could be used interchangeably for the construction of new test versions. The test of scientific reasoning and the HAM-Nat are tapping different constructs. Participation in a chemistry course did not improve students’ achievement, probably because the content of the course was not coordinated with the test and many students lacked of motivation to do well in the second test. PMID:21866246
On the substance of a sophisticated epistemology
NASA Astrophysics Data System (ADS)
Elby, Andrew; Hammer, David
2001-09-01
Among researchers who study students' epistemologies, a consensus has emerged about what constitutes a sophisticated stance toward scientific knowledge. According to this community consensus, students should understand scientific knowledge as tentative and evolving, rather than certain and unchanging; subjectively tied to scientists' perspectives, rather than objectively inherent in nature; and individually or socially constructed, rather than discovered. Surveys, interview protocols, and other methods used to probe students' beliefs about scientific knowledge broadly reflect this outlook. This article questions the community consensus about epistemological sophistication. We do not suggest that scientific knowledge is objective and fixed; if forced to choose whether knowledge is certain or tentative, with no opportunity to elaborate, we would choose tentative. Instead, our critique consists of two lines of argument. First, the literature fails to distinguish between the correctness and productivity of an epistemological belief. For instance, elementary school students who believe that science is about discovering objective truths to questions, such as whether the earth is round or flat, or whether an asteroid led to the extinction of the dinosaurs, may be more likely to succeed in science than students who believe science is about telling stories that vary with one's perspective. Naïve realism, although incorrect (according to a broad consensus of philosophers and social scientists), may nonetheless be productive for helping those students learn. Second, according to the consensus view as reflected in commonly used surveys, epistemological sophistication consists of believing certain blanket generalizations about the nature of knowledge and learning, generalizations that do not attend to context. These generalizations are neither correct nor productive. For example, it would be unsophisticated for students to view as tentative the idea that the earth is round rather than flat. By contrast, they should take a more tentative stance toward theories of mass extinction. Nonetheless, many surveys and interview protocols tally students as sophisticated not for attending to these contextual nuances, but for subscribing broadly to the view that knowledge is tentative.
Modulation and control of DNA charge inversion
NASA Astrophysics Data System (ADS)
Wang, Yan-Wei; Yang, Guang-Can
2017-12-01
Not Available Project supported by the National Natural Science Foundation of China (Grant Nos. 11274245, 10974146, and 11304232), the Natural Science Foundation of Zhejiang Provice, China (Grant No. LY17A040006), and the Wenzhou Science and Technology Project, China (Grant No. S20160011).
Optical properties of wavelength-tunable green-emitting color conversion glass ceramics
NASA Astrophysics Data System (ADS)
Li, Yang; Hu, Li-Li; Yang, Bo-Bo; Shi, Ming-Ming; Zou, Jun
2017-12-01
Not Available Project supported by the National Natural Science Foundation of China (Grant No. 51302171), the Science and Technology Commission of Shanghai Municipality, China (Grant No. 14500503300), and the Natural Science Foundation of Shanghai, China (Grant No. 12ZR1430900).
Modeling the Dynamics of Task Allocation and Specialization in Honeybee Societies
NASA Astrophysics Data System (ADS)
Hoogendoorn, Mark; Schut, Martijn C.; Treur, Jan
The concept of organization has been studied in sciences such as social science and economics, but recently also in artificial intelligence [Furtado 2005, Giorgini 2004, and McCallum 2005]. With the desire to analyze and design more complex systems consisting of larger numbers of agents (e.g., in nature, society, or software), the need arises for a concept of higher abstraction than the concept agent. To this end, organizational modeling is becoming a practiced stage in the analysis and design of multi-agent systems, hereby taking into consideration the environment of the organization. An environment can have a high degree of variability which might require organizations to adapt to the environment's dynamics, to ensure a continuous proper functioning of the organization. Hence, such change processes are a crucial function of the organization and should be part of the organizational model.
Evaluating the best available social science for natural resource management decision-making
Susan Charnley; Courtney Carothers; Terre Satterfield; Arielle Levine; Melissa R. Poe; Karma Norman; Jamie Donatuto; Sara Jo Breslow; Michael B. Mascia; Phillip S. Levin; Xavier Basurto; Christina C. Hicks; Carlos García-Quijano; Kevin St. Martin
2017-01-01
Increasing recognition of the human dimensions of natural resource management issues, and of social and ecological sustainability and resilience as being inter-related, highlights the importance of applying social science to natural resource management decision-making. Moreover, a number of laws and regulations require natural resource management agencies to consider...
ERIC Educational Resources Information Center
Hansen, Pal J. Kirkeby
2009-01-01
"Knowledge Promotion" is the recent curriculum for the Norwegian 10-year compulsory school. "Technology and Design" (ToD) is a new main subject area in Natural Science. ToD should be taught across the curriculum between Natural Science, Art and Crafts, and Mathematics. The main goal is that pupils should be able to plan,…
ERIC Educational Resources Information Center
Chou, Chin-Cheng
2017-01-01
Elementary school remedial teaching has been promoted for many years in Taiwan but it has primarily been aimed at Chinese and mathematics with little attention being paid to natural sciences. Due to the current shortage of natural science teachers, along with limitations in school budget and manpower, it is difficult to put natural science…
ERIC Educational Resources Information Center
Cahyono, Adi; Haryanto, Samsi; Sudarsono
2016-01-01
Science can be a tool for studying the human and the natural surroundings, both directly and indirectly. The learning process can directly develop the competence to be able to study nature scientifically. Science education is hoped to be more inquiry that helps students gain experience and understand the natural surroundings. This study aims to…
Interdisciplinary Science in the Classroom
NASA Astrophysics Data System (ADS)
French, L. M.; Lopresti, V. C.; Papali, P.
1993-05-01
The practice of science is by its very nature interdisciplinary. Most school curricula, however, present science as a "layer cake" with one year each of biology, chemistry, earth science, and physics. Students are too often left with a fragmented, disjointed view of the sciences as separate and distinct bodies of information. The continuity of scientific thought and the importance of major ideas such as energy, rates of change, and the nature of matter are not seen. We describe two efforts to integrate the sciences in a middle school curriculum and in an introductory science course for prospective elementary teachers. Introductory physical science for eighth graders at the Park School has three major units: "Observing the Sky", "The Nature of Matter", and "The Nature of Light". The course moves from simple naked-eye observations of the Sun and Moon to an understanding of the apparent motions of the Sun and of the Earth's seasons. In "The Nature of Matter", students construct operational definitions of characteristic properties of matter such as density, boiling point, solubility, and flame color. They design and perform many experiments and conclude by separating a mixture of liquids and solids by techniques such as distillation and fractional crystallization. In studying flame tests, students learn that different materials have different color "signatures" and that the differences can be quantified with a spectroscope. They then observe solar absorption lines with their spectroscopes and discover which elements are present in the Sun. Teachers of young children are potentially some of the most powerful allies in increasing our country's scientific literacy, yet most remain at best uneasy about science. At Wheelock College we are designing a course to be called "Introduction to Natural Science" for elementary education majors. We will address special needs of many in this population, including science anxiety and poor preparation in mathematics. A broad conceptual understanding of a few key concepts will take precedence over rote memorization of facts.
Some Ethical Considerations in Astronomy Research and Practice
NASA Astrophysics Data System (ADS)
Koepsell, David
2012-08-01
Research ethics as an applied field has evolved due to a number of contentious and public lapses in ethical judgment over the past hundred years. But the main principles underlying good, ethical behavior in all of the sciences are rooted in what Robert Merton calls the ethos of science. Values and virtues, including the universal nature of its underlying objects, communal nature of scientific research, the necessity for individual disinterestedness on the part of researchers, and science's nature as organized skepticism, provide a foundation for conducting ethical research. Scientific integrity, the relation between basic science and the general public, and the social role of science all argue for adopting virtues, guiding behavior, and pursing science in ways we can now characterize as ethical in themselves. Being a good scientist and doing good science overlaps significantly with being a good person.
Representation of scientific methodology in secondary science textbooks
NASA Astrophysics Data System (ADS)
Binns, Ian C.
The purpose of this investigation was to assess the representation of scientific methodology in secondary science textbooks. More specifically, this study looked at how textbooks introduced scientific methodology and to what degree the examples from the rest of the textbook, the investigations, and the images were consistent with the text's description of scientific methodology, if at all. The sample included eight secondary science textbooks from two publishers, McGraw-Hill/Glencoe and Harcourt/Holt, Rinehart & Winston. Data consisted of all student text and teacher text that referred to scientific methodology. Second, all investigations in the textbooks were analyzed. Finally, any images that depicted scientists working were also collected and analyzed. The text analysis and activity analysis used the ethnographic content analysis approach developed by Altheide (1996). The rubrics used for the text analysis and activity analysis were initially guided by the Benchmarks (AAAS, 1993), the NSES (NRC, 1996), and the nature of science literature. Preliminary analyses helped to refine each of the rubrics and grounded them in the data. Image analysis used stereotypes identified in the DAST literature. Findings indicated that all eight textbooks presented mixed views of scientific methodology in their initial descriptions. Five textbooks placed more emphasis on the traditional view and three placed more emphasis on the broad view. Results also revealed that the initial descriptions, examples, investigations, and images all emphasized the broad view for Glencoe Biology and the traditional view for Chemistry: Matter and Change. The initial descriptions, examples, investigations, and images in the other six textbooks were not consistent. Overall, the textbook with the most appropriate depiction of scientific methodology was Glencoe Biology and the textbook with the least appropriate depiction of scientific methodology was Physics: Principles and Problems. These findings suggest that compared to earlier investigations, textbooks have begun to improve in how they represent scientific methodology. However, there is still much room for improvement. Future research needs to consider how textbooks impact teachers' and students' understandings of scientific methodology.
Aune, Jeanine Elise; Evans, Lynn Lundy; Boury, Nancy
2018-01-01
The nature of science (NOS) is a foundational framework for understanding scientific ideas and concepts. This framework includes scientific methodology, the process of revising and interpreting data, and the ways in which science is a social endeavor. Nature of science literature treats science as a way of knowing that is based on observable phenomenon. While discipline-specific coursework teaches the factual information of science, it may fall short on teaching scientific literacy, a key component of which is understanding NOS. We have designed an English course that features nonfiction narratives describing the early days of epidemiology, hygiene awareness, and the current controversy surrounding vaccination. Using a validated assessment of student understanding of NOS, the Student Understanding of Science and Scientific Inquiry (SUSSI), we have determined that this science-themed English composition course was effective in teaching NOS. Student understanding of NOS increased between the beginning and the end of the course in eight of the nine parameters of NOS measured, with the greatest gains in understanding the role of revision and of creativity in science. Our data imply that the course helped students develop a slightly less naïve understanding of the nature of science and its importance in the development and dissemination of scientific ideas and concepts. PMID:29904539
NASA Astrophysics Data System (ADS)
Walls, Leon
Nature of Science is one of the most fundamental aspects of understanding science. How different cultures, races and ethnicities see and interpret science differently is critical. However, the NOS views specific to African American teachers and learners have gone largely unresearched. The views of a purposeful sample of African American third grade children reported in this study contribute to efforts to make science equitable for all students. Conducted in two Midwest urban settings, within the students' regular classrooms, three instruments were employed: Views of Nature of Science Elementary (an interview protocol), Elementary Draw a Scientist Test (a drawing activity supplemented by an explicating narrative), and Identify a Scientist (a simple select-a-photo technique supported by Likert-measured sureness). The responses provided by twenty-three students were coded using qualitative content analysis. The findings are represented in three main categories: Science - is governed by experimentation, invention and discovery teach us about the natural world, school is not the only setting for learning science; Scientists - intelligent, happy, studious men and women playing multiple roles, with distinct physical traits working in laboratories; Students - capable users and producers of science and who view science as fun. This study advocates for: use of such instruments for constant monitoring of student views, using the knowledge of these views to construct inquiry based science lessons, and increased research about students of color.
ERIC Educational Resources Information Center
Ma, Xin; Yuan, Jing; Luo, Xingkai
2016-01-01
Using data from the 2011 (Chinese) Student Academic Achievement Evaluation, we examined whether within-school socioeconomic gaps in science achievement exist across science subjects, how consistent they are, and whether there are relationships between school average science achievement and within-school socioeconomic gaps in science achievement.…
Homeostasis and Gauss statistics: barriers to understanding natural variability.
West, Bruce J
2010-06-01
In this paper, the concept of knowledge is argued to be the top of a three-tiered system of science. The first tier is that of measurement and data, followed by information consisting of the patterns within the data, and ending with theory that interprets the patterns and yields knowledge. Thus, when a scientific theory ceases to be consistent with the database the knowledge based on that theory must be re-examined and potentially modified. Consequently, all knowledge, like glory, is transient. Herein we focus on the non-normal statistics of physiologic time series and conclude that the empirical inverse power-law statistics and long-time correlations are inconsistent with the theoretical notion of homeostasis. We suggest replacing the notion of homeostasis with that of Fractal Physiology.
Does Science Presuppose Naturalism (or Anything at All)?
NASA Astrophysics Data System (ADS)
Fishman, Yonatan I.; Boudry, Maarten
2013-05-01
Several scientists, scientific institutions, and philosophers have argued that science is committed to Methodological Naturalism (MN), the view that science, by virtue of its methods, is limited to studying `natural' phenomena and cannot consider or evaluate hypotheses that refer to supernatural entities. While they may in fact exist, gods, ghosts, spirits, and extrasensory or psi phenomena are inherently outside the domain of scientific investigation. Recently, Mahner (Sci Educ 3:357-371, 2012) has taken this position one step further, proposing the more radical view that science presupposes an a priori commitment not just to MN, but also to ontological naturalism (ON), the metaphysical thesis that supernatural entities and phenomena do not exist. Here, we argue that science presupposes neither MN nor ON and that science can indeed investigate supernatural hypotheses via standard methodological approaches used to evaluate any `non-supernatural' claim. Science, at least ideally, is committed to the pursuit of truth about the nature of reality, whatever it may be, and hence cannot exclude the existence of the supernatural a priori, be it on methodological or metaphysical grounds, without artificially limiting its scope and power. Hypotheses referring to the supernatural or paranormal should be rejected not because they violate alleged a priori methodological or metaphysical presuppositions of the scientific enterprise, but rather because they fail to satisfy basic explanatory criteria, such as explanatory power and parsimony, which are routinely considered when evaluating claims in science and everyday life. Implications of our view for science education are discussed.
Charlton, Bruce G
2008-01-01
In 2007 James D. Watson, perhaps the most famous living scientist, was forced to retire from his position and retreat from public life in the face of international mass media condemnation following remarks concerning genetically-caused racial differences in intelligence. Watson was punished for stating forthright views on topics that elite opinion has determined should be discussed only with elaborate caution, frequent disclaimers, and solemn deference to the currently-prevailing pieties. James Watson has always struck many people as brash; however this blunt, truth-telling quality was intrinsic to his role in one of the greatest scientific discoveries. Much more importantly than 'good manners', Watson has consistently exemplified the cardinal scientific virtue: he speaks what he understands to be the truth without regard for the opinion of others. The most chilling aspect of the Watson Affair was the way in which so many influential members of the scientific research community joined the media condemnation directed against Watson. Perhaps the most egregious betrayal of science was an article by editorialists of the premier UK scientific journal Nature. Instead of defending the freedom of discourse in pursuit of scientific truth, Nature instead blamed Watson for being 'crass' and lacking 'sensitivity' in discussing human genetic differences. But if asked to choose between the 'sensitive' editors of Nature or the 'crass' genius of James D. Watson, all serious scientists must take the side of Watson. Because when a premier researcher such as Watson is hounded from office by a vicious, arbitrary and untruthful mob; all lesser scientists are made vulnerable to analogous treatment at the whim of the media. A zealous and coercive brand of 'political correctness' is now making the biological truth of human genetic differences intolerably difficult to discover and discuss in US and UK. This needs to change. My hope is that truth will prevail over political correctness and James Watson will not just be exonerated but vindicated as an exemplar of the true morality of science: that scientific communication needs to be allowed to be clear, direct - even crass - in the pursuit of truth. James Watson has been a hero of science for the achievements of his career, and also a martyr for science at the end of his career.
How Multidisciplinary Are the Multidisciplinary Journals Science and Nature?
Solomon, Gregg E. A.; Carley, Stephen; Porter, Alan L.
2016-01-01
Interest in cross-disciplinary research knowledge interchange runs high. Review processes at funding agencies, such as the U.S. National Science Foundation, consider plans to disseminate research across disciplinary bounds. Publication in the leading multidisciplinary journals, Nature and Science, may signify the epitome of successful interdisciplinary integration of research knowledge and cross-disciplinary dissemination of findings. But how interdisciplinary are they? The journals are multidisciplinary, but do the individual articles themselves draw upon multiple fields of knowledge and does their influence span disciplines? This research compares articles in three fields (Cell Biology, Physical Chemistry, and Cognitive Science) published in a leading disciplinary journal in each field to those published in Nature and Science. We find comparable degrees of interdisciplinary integration and only modest differences in cross-disciplinary diffusion. That said, though the rate of out-of-field diffusion might be comparable, the sheer reach of Nature and Science, indicated by their potent Journal Impact Factors, means that the diffusion of knowledge therein can far exceed that of leading disciplinary journals in some fields (such as Physical Chemistry and Cognitive Science in our samples). PMID:27043924
How Multidisciplinary Are the Multidisciplinary Journals Science and Nature?
Solomon, Gregg E A; Carley, Stephen; Porter, Alan L
2016-01-01
Interest in cross-disciplinary research knowledge interchange runs high. Review processes at funding agencies, such as the U.S. National Science Foundation, consider plans to disseminate research across disciplinary bounds. Publication in the leading multidisciplinary journals, Nature and Science, may signify the epitome of successful interdisciplinary integration of research knowledge and cross-disciplinary dissemination of findings. But how interdisciplinary are they? The journals are multidisciplinary, but do the individual articles themselves draw upon multiple fields of knowledge and does their influence span disciplines? This research compares articles in three fields (Cell Biology, Physical Chemistry, and Cognitive Science) published in a leading disciplinary journal in each field to those published in Nature and Science. We find comparable degrees of interdisciplinary integration and only modest differences in cross-disciplinary diffusion. That said, though the rate of out-of-field diffusion might be comparable, the sheer reach of Nature and Science, indicated by their potent Journal Impact Factors, means that the diffusion of knowledge therein can far exceed that of leading disciplinary journals in some fields (such as Physical Chemistry and Cognitive Science in our samples).
Wetland management reduces sediment and nutrient loading to the upper Mississippi river.
Kreiling, Rebecca M; Schubauer-Berigan, Joseph P; Richardson, William B; Bartsch, Lynn A; Hughes, Peter E; Cavanaugh, Jennifer C; Strauss, Eric A
2013-01-01
Restored riparian wetlands in the Upper Mississippi River basin have potential to remove sediment and nutrients from tributaries before they flow into the Mississippi River. For 3 yr we calculated retention efficiencies of a marsh complex, which consisted of a restored marsh and an adjacent natural marsh that were connected to Halfway Creek, a small tributary of the Mississippi. We measured sediment, N, and P removal through a mass balance budget approach, N removal through denitrification, and N and P removal through mechanical soil excavation. The marsh complex had average retention rates of approximately 30 Mg sediment ha yr, 26 kg total N ha yr, and 20 kg total P ha yr. Water flowed into the restored marsh only during high-discharge events. Although the majority of retention occurred in the natural marsh, portions of the natural marsh were hydrologically disconnected at low discharge due to historical over-bank sedimentation. The natural marsh removed >60% of sediment, >10% of P, and >5% of N loads (except the first year, when it was a N source). The marsh complex was a source of NH and soluble reactive P. The average denitrification rate for the marsh complex was 2.88 mg N m h. Soil excavation removed 3600 Mg of sediment, 5.6 Mg of N, and 2.7 Mg of P from the restored marsh. The marsh complex was effective in removing sediment and nutrients from storm flows; however, retention could be increased if more water was diverted into both restored and natural marshes before entering the river. Copyright © by the American Society of Agronomy, Crop Science Society of America, and Soil Science Society of America, Inc.
The Work of Popper and Kuhn on the Nature of Science.
ERIC Educational Resources Information Center
Donnelly, James
1979-01-01
Discusses the work of T. S. Kuhn and Sir Karl Popper. Current views on the nature of science and some current ideology of scientific education are also analyzed with regard to the views of science due to Kuhn and Popper. (HM)
ERIC Educational Resources Information Center
Lawrence, Layle D.
This competency-based prevocational exploration curriculum in agribusiness and natural resources is divided into the following eight areas: agricultural business (sales); animal science (health and grooming); horticulture (grafting and budding); agricultural products (grading eggs); plant science (germination); soil science (soil acidity and…
Structural, magnetic properties, and electronic structure of hexagonal FeCoSn compound
NASA Astrophysics Data System (ADS)
Li, Yong; Dai, Xue-Fang; Liu, Guo-Dong; Wei, Zhi-Yang; Liu, En-Ke; Han, Xiao-Lei; Du, Zhi-Wei; Xi, Xue-Kui; Wang, Wen-Hong; Wu, Guang-Heng
2018-02-01
Not Available Project supported by the National Natural Science Foundation of China (Grant Nos. 51431009 and 51271038), the Joint NSFC-ISF Research Program, Jointly Funded by the National Natural Science Foundation of China and the Israel Science Foundation (Grant No. 51561145003).
[Significance of sex and gender studies for anthropology].
Kirchengast, Sylvia
2004-09-01
The formation of a special working group for gender studies within the German Anthropological Society (GfA) makes necessary a description of history as well as topics of gender studies within science and biological anthropology. In German speaking countries, gender studies are predominantly associated with social and cultural sciences, although very successful working groups belonging to natural sciences already exist. Unfortunately, up to now gender studies within natural sciences are often interpreted negatively and the existence of sex is denied. This may be due to the long and difficult history of gender studies in natural sciences. For a long time, pseudoscientific misinterpretations of results of gender studies were used to manifest the inferior social position of women. However, since more than thirty years respectable gender studies are integrated in social as well as natural sciences. Gender studies are integrative parts of nearly all subdisciplines of biological anthropology. The formation of a working group for gender studies within the GfA seems therefore to be useful.
NASA Astrophysics Data System (ADS)
Herrington, John B.
In response to the Obama Administration's launch of the "Educate to Innovate" campaign in 2010, the National Aeronautics and Space Administration (NASA) developed the NASA Summer of Innovation (SOI) program, designed to bring NASA educational materials to students and teachers in underserved and underrepresented communities. This study consisted of a mixed methods analysis to determine if the students on the Duck Valley Indian Reservation in southern Idaho experienced a positive change in attitude toward math and science due to their participation in the 2010 NASA SOI, both in the short-term and over a three-year period. Specifically, the quantitative analyses consisted of single-subject visual analysis, a paired-samples t-test, and a factorial ANOVA to analyze baseline and follow-up surveys conducted before and immediately after the summer program. Also, a qualitative case study was conducted to determine if the NASA SOI had a lasting impact on the students' positive attitude toward math and science, three years after the completion of the program. The results of the quantitative analyses did not indicate a statistically significant effect of the summer program on the attitudes of the students with respect to science and mathematics over the course of the program (time), between genders, or a combination of both time and gender. However, the narratives derived from the case study indicated the students' attitudes toward science were increased following their participation in the summer program. The qualitative data supported previous research on the importance of family, culture, hands-on experiential and collaborative learning as essential components in Native American students' motivation and engagement with respect to education and science. Additionally, the study found an absence of curriculum that presented historical examples of Native Americans as natural scientists and engineers.
Teaching Nature of Science to K-2 Students: What Understandings Can They Attain?
ERIC Educational Resources Information Center
Akerson, Valarie; Donnelly, Lisa A.
2010-01-01
This study explored the influence of a Saturday Science program that used explicit reflective instruction through contextualized and decontextualized guided and authentic inquiry on K-2 students' views of nature of science (NOS). The six-week program ran for 2.5 hours weekly and emphasized NOS in a variety of science content areas, culminating in…
Teachers' Ways of Talking about Nature of Science and Its Teaching
ERIC Educational Resources Information Center
Leden, Lotta; Hansson, Lena; Redfors, Andreas; Ideland, Malin
2015-01-01
Nature of science (NOS) has for a long time been regarded as a key component in science teaching. Much research has focused on students' and teachers' views of NOS, while less attention has been paid to teachers' perspectives on NOS teaching. This article focuses on in-service science teachers' ways of talking about NOS and NOS teaching, e.g. what…
ERIC Educational Resources Information Center
O'Hern, Darren M.
2010-01-01
In Kenya, indigenous knowledges related to the natural sciences are not considered in the formal science education of secondary students. Despite the prevalence of studies that examine indigenous knowledges in Kenyan school and community contexts, the perspectives of students and teachers concerning indigenous natural science knowledges and their…
Cooperative Learning about Nature of Science with a Case from the History of Science
ERIC Educational Resources Information Center
Wolfensberger, Balz; Canella, Claudia
2015-01-01
This paper reports a predominantly qualitative classroom study on cooperative learning about nature of science (NOS) using a case from the history of science. The purpose of the research was to gain insight into how students worked with the historical case study during cooperative group work, how students and teachers assessed the teaching unit,…
ERIC Educational Resources Information Center
Jiang, Feng
2012-01-01
This study was conducted to examine the inclusion of nature of science (NOS) in popular science writing to determine whether it could serve supplementary resource for teaching NOS. Four groups of documents published from 2001 to 2010 were included in the analysis: "Scientific American," "Discover" magazine, winners of the…
Analysis of Nature of Science Included in Recent Popular Writing Using Text Mining Techniques
ERIC Educational Resources Information Center
Jiang, Feng; McComas, William F.
2014-01-01
This study examined the inclusion of nature of science (NOS) in popular science writing to determine whether it could serve supplementary resource for teaching NOS and to evaluate the accuracy of text mining and classification as a viable research tool in science education research. Four groups of documents published from 2001 to 2010 were…
ERIC Educational Resources Information Center
Forato, Thais Cyrino de Mello; Martins, Roberto de Andrade; Pietrocola, Mauricio
2012-01-01
This article presents the main results of a research examining the didactic transposition of history and philosophy of science in high school level. The adaptation of history of science to this particular level, addressing some aspects of the nature of science aiming at the students' critical engagement, was analyzed by examining both the…
Henry David Thoreau, Forest Succession & The Nature of Science: A Method for Curriculum Development
ERIC Educational Resources Information Center
Howe, Eric M.
2009-01-01
A main reason for using the history of science in classroom instruction is its utility in promoting students' understanding of the nature of science (NOS). As indicated in such documents as the "National Science Education Standards," it is important to help students develop their understanding of NOS so that they will become more critical…
Brian J. Burke; Nik Heynen
2014-01-01
Citizen science and sustainability science promise the more just and democratic production of environmental knowledge and politics. In this review, we evaluate these participatory traditions within the context of (a) our theorization of how the valuation and devaluation of nature, knowledge, and people help to produce socio-ecological hierarchies, the uneven...
Pre-Service and In-Service Science Teachers' Conceptions of the Nature of Science
ERIC Educational Resources Information Center
Buaraphan, Khajornsak
2010-01-01
The author explores the history of nature of science beliefs among pre-service and in-service teachers primarily in the United States and Thailand and compares this history to findings in a current study being conducted in Thailand. Two research questions were used to guide this current study: What are pre-service and in-service science teachers'…
ERIC Educational Resources Information Center
Aduriz-Bravo, Agustin; Izquierdo-Aymerich, Merce
2009-01-01
In this paper we discuss the foundations and process of design of a research-informed instructional unit aimed for pre-service science teacher education. The unit covers some key ideas on the nature of science (around methodology, theory change, scientific inference and explanation, values, gender issues) anchoring them in a well-known episode…
ERIC Educational Resources Information Center
Hypolite, Karen L.
2012-01-01
Much of the nature of science research has been focused on high school students. High school students are primarily the target of such research to aid and to guide them in making informed decisions about possible career choices in the sciences (Bell, Blair, Crawford, & Lederman, 2002). Moreover, during review of the literature, little to no…
China Report, Science and Technology.
1987-05-08
RECTANGULAR TANK UNDER LOW-GRAVITY CONDITIONS Beijing QINGHUA DAXUE XUEBAO (ZIRAN KEXUE BAN) [JOURNAL OF TSINGHUA UNIVERSITY (NATURAL SCIENCE)] in...1077 48 APPLIED SCIENCES of NEW WEIGHTED TECHNIQUE IN HEURISTIC SEARCH Beijing QINGHUA DAXUE XUEBAO (ZIRAN KEXUE BAN) [JOURNAL OF TSINGHUA...WITH ECCENTRIC CRACK Beijing QINGHUA DAXUE XUEBAO (ZIRAN KEXUE BAN) [JOURNAL OF TSINGHUA UNIVERSITY (NATURAL SCIENCE)] in Chinese Vol 26 No 3, Jun