Sample records for state science educators

  1. An Evaluation of the Science Education Component of the Cross River State Science and Technical Education Project

    ERIC Educational Resources Information Center

    Ekuri, Emmanuel Etta

    2012-01-01

    The Cross River State Science and Technical Education Project was introduced in 1992 by edict number 9 of 20 December 1991, "Cross River State Science and Technical Education Board Edit, 20 December, 1991", with the aim of improving the quality of science teaching and learning in the state. As the success of the project depends…

  2. Status of science education in state departments of education: An initial report

    NASA Astrophysics Data System (ADS)

    Dowling, Kenneth W.; Yager, Robert E.

    The past five years have been characterized as times of assessment in science education. One aspect of the profession where little information has been reported is the service and leadership provided by the various Departments of Education that exist as a part of the 50 state governments. Information was collected from the 50 states concerning the professional preparation of state science consultants, the nature of the positions, number of workers employed in such units, changes in support staff, facilities, and budget for each five year interval between 1960-1980. Science consultants are 46 years of age, have completed more than 10 years of classroom teaching, have been supervisors at the last level, have been in state positions for one-eight years, and have a Master's degree (half have the Ph.D.). Science consultants in the state department of education work in local schools, write proposals, assist with other administrative duties, work as members of evaluation teams. They spend two-thirds of their time in science education per se. The duties have become more general with less time spent exclusively on science education duties. The positions have become more involved with regulations, evaluations; the consultants enjoying less flexibility in their jobs. There has been a decline in terms of numbers of consultants, budget for science education; and general support for science education projects in state departments of education during the 20-year period surveyed.

  3. Science Education in Arab States: Bright Future or Status Quo?

    ERIC Educational Resources Information Center

    Dagher, Zoubeida R.; BouJaoude, Saouma

    2011-01-01

    This paper describes the current state of science education in Arab states and anticipates some of the challenges faced by those states as they reform their science education. After discussing problems of illiteracy, access and quality we provide contextual information about the structure of the educational systems and describe recent efforts to…

  4. Revolutionizing Earth System Science Education for the 21st Century: Report and Recommendations from a 50-State Analysis of Earth Science Education Standards

    ERIC Educational Resources Information Center

    Hoffman, Martos; Barstow, Daniel

    2007-01-01

    The National Oceanic and Atmospheric Administration (NOAA) commissioned TERC to complete a review of science education standards for all 50 states. The study analyzed K-12 Earth science standards to determine how well each state addresses key Earth-science content, concepts and skills. This report reveals that few states have thoroughly integrated…

  5. Analyses and Comparisons of Science Curricula in Japan and the United States.

    ERIC Educational Resources Information Center

    Jacobson, Willard J.; And Others

    An analysis and comparison of science education in Japan and the United States is presented. Studies in comparative science education, including the first and second International Association for the Evaluation of Educational Achievement (IEA) and the Japan and United States Cooperative Science Project, provide an empirical base for some of the…

  6. Science Education in the United States.

    ERIC Educational Resources Information Center

    Champagne, Audrey B.

    1997-01-01

    Discusses science education in the United States, which is in the midst of an unprecedented reform movement driven by national standards developed with support from the federal government. These standards are redefining the character of science education from kindergarten to the post-graduate education of scientists and science teachers. The new…

  7. Improving Science Achievement through Changes in Education Policy

    ERIC Educational Resources Information Center

    Owens, Tara M.

    2009-01-01

    Concerns over science education in the United States continue to grow due to the increasing global demands and competitiveness for careers in science and technology. This author contends that educators in the United States must look for ways to increase science proficiency and overall science literacy. Research about how students learn science…

  8. Investigation of science faculty with education specialties within the largest university system in the United States.

    PubMed

    Bush, Seth D; Pelaez, Nancy J; Rudd, James A; Stevens, Michael T; Tanner, Kimberly D; Williams, Kathy S

    2011-01-01

    Efforts to improve science education include university science departments hiring Science Faculty with Education Specialties (SFES), scientists who take on specialized roles in science education within their discipline. Although these positions have existed for decades and may be growing more common, few reports have investigated the SFES approach to improving science education. We present comprehensive data on the SFES in the California State University (CSU) system, the largest university system in the United States. We found that CSU SFES were engaged in three key arenas including K-12 science education, undergraduate science education, and discipline-based science education research. As such, CSU SFES appeared to be well-positioned to have an impact on science education from within science departments. However, there appeared to be a lack of clarity and agreement about the purpose of these SFES positions. In addition, formal training in science education among CSU SFES was limited. Although over 75% of CSU SFES were fulfilled by their teaching, scholarship, and service, our results revealed that almost 40% of CSU SFES were seriously considering leaving their positions. Our data suggest that science departments would likely benefit from explicit discussions about the role of SFES and strategies for supporting their professional activities.

  9. Investigation of Science Faculty with Education Specialties within the Largest University System in the United States

    PubMed Central

    Bush, Seth D.; Pelaez, Nancy J.; Rudd, James A.; Stevens, Michael T.; Tanner, Kimberly D.; Williams, Kathy S.

    2011-01-01

    Efforts to improve science education include university science departments hiring Science Faculty with Education Specialties (SFES), scientists who take on specialized roles in science education within their discipline. Although these positions have existed for decades and may be growing more common, few reports have investigated the SFES approach to improving science education. We present comprehensive data on the SFES in the California State University (CSU) system, the largest university system in the United States. We found that CSU SFES were engaged in three key arenas including K–12 science education, undergraduate science education, and discipline-based science education research. As such, CSU SFES appeared to be well-positioned to have an impact on science education from within science departments. However, there appeared to be a lack of clarity and agreement about the purpose of these SFES positions. In addition, formal training in science education among CSU SFES was limited. Although over 75% of CSU SFES were fulfilled by their teaching, scholarship, and service, our results revealed that almost 40% of CSU SFES were seriously considering leaving their positions. Our data suggest that science departments would likely benefit from explicit discussions about the role of SFES and strategies for supporting their professional activities. PMID:21364098

  10. Creating State-based Alliances to Support Earth and Space Science Education Reform

    NASA Astrophysics Data System (ADS)

    Geary, E. E.; Manduca, C. A.; Barstow, D.

    2002-05-01

    Seven years after the publication of the National Science Education Standards and adoption of new state science education standards, Earth and space science remains outside the mainstream K-12 curriculum. Currently, less than ten percent of high school students in the United States of America take an Earth or space science course before graduation. This state of affairs is simply unacceptable. "All of us who live on this planet have the right and the obligation to understand Earth's unique history, its dynamic processes, its abundant resources, and its intriguing mysteries. As citizens of Earth, with the power to modify our climate and ecosystems, we also have a personal and collective responsibility to understand Earth so that we can make wise decisions about its and our future". As one step toward addressing this situation, we support the establishment of state-based alliances to promote Earth and space science education reform. "In many ways, states are the most vital locus of change in our nation's schools. State departments of education define curriculum frameworks, establish testing policies, support professional development and, in some cases, approve textbooks and materials for adoption". State alliance partners should include a broad spectrum of K-16 educators, scientists, policy makers, parents, and community leaders from academic institutions, businesses, museums, technology centers, and not-for profit organizations. The focus of these alliances should be on systemic and sustainable reform of K-16 Earth and space science education. Each state-based alliance should focus on specific educational needs within their state, but work together to share ideas, resources, and models for success. As we build these alliances we need to take a truly collaborative approach working with the other sciences, geography, and mathematics so that collectively we can improve the caliber and scope of science and mathematics education for all students.

  11. Progress and Setbacks in K-12 Earth and Space Science Education During the Past Decade

    NASA Astrophysics Data System (ADS)

    Geary, E.; Hoffman, M.; Stevermer, A.; Barstow, D.

    2005-12-01

    Since publication of the National Science Education Standards in 1996, key Earth and space science concepts have been incorporated into the science education standards in virtually every state. However, the degree to which Earth and space science standards have been implemented in actual classroom curriculum and state science assessments varies greatly from state to state. In a similar vein, the No Child Left Behind legislation calls for a highly qualified teacher in every classroom: in Idaho over 96 percent of high school teachers are certified to teach Earth science, while in Illinois, less than 42 percent of teachers are certified. Furthermore, in some states, like New York, approximately 20 percent of high school students will take introductory Earth science each year, while in other states, like Texas, less than 1 percent of high school students will take introductory Earth science each year. Why do we have this high degree of variability with respect to the teaching and learning of Earth science across the United States? The answer is complex, as there are many institutional, attitudinal, budgetary, and policy factors affecting the teaching of Earth and space sciences. This presentation will summarize data on the current status of Earth and space science education in the United States, discuss where progress has been made and where setbacks have occurred during the past decade, and provide some suggestions and ideas for improving access to high quality Earth and space science education courses, curricula, assessments, and teachers at the state and local level.

  12. A Case of Fragmented High School Earth and Space Science Education in the Great Plains: Tracing Teacher Certification Policy to Students' Access

    ERIC Educational Resources Information Center

    Lewis, Elizabeth; Lu, Jia

    2017-01-01

    Although U.S. high school students' access to Earth and space science (ESS) varies widely from state to state, nationally, ESS content is the most neglected area of science education and scientific literacy. States have been considering whether they will formally adopt, or less formally adapt, the new national science education standards, the Next…

  13. Sputnik and United States K-12 science education

    NASA Astrophysics Data System (ADS)

    Hare, Donna Leigh

    The intention of this study was to examine the relationships of the United States space program, education (especially science education), politics, and the National Science Foundation (NSF) to each other and the effects set in motion by the Russian's launch of Sputnik I upon those entities and their relationships. It provides a preliminary assessment of developments in United States rocket science as well as science education to the early 1950s. The scope of this investigation was confined to the historical development of four distinct yet related entities; (1) U.S. science education, (2) space exploration, (3) government and politics, and (4) the National Science Foundation. Its focus was on the years 1957 to 1966. The launch of Sputnik I in 1957, the passage of the National Defense Education Act (NDEA) in 1958, the Secondary Education Act in 1965 and the end of the Gemini program in 1966 represent the defining benchmarks for this study. 169 The most significant and durable outcomes of the Sputnik crisis in relation to science education were: (1) a formalized linkage between science education and national defense; (2) federal funding to education; (3) the passage of the NDEA with its entitlements; (4) the alignment of the NSF with precollege science education issues; (5) NSF Summer Institutes for Science Teachers and NSF Science Course Improvement Projects; and (6) the establishment of response to perceived threat to national defense as a legislative and funding support mechanism for science education.

  14. Next Generation Science Standards: Adoption and Implementation Workbook

    ERIC Educational Resources Information Center

    Peltzman, Alissa; Rodriguez, Nick

    2013-01-01

    The Next Generation Science Standards (NGSS) represent the culmination of years of collaboration and effort by states, science educators and experts from across the United States. Based on the National Research Council's "A Framework for K-12 Science Education" and developed in partnership with 26 lead states, the NGSS, when…

  15. THE IMPACT OF CHANGING SCIENTIFIC KNOWLEDGE ON SCIENCE EDUCATION IN THE UNITED STATES SINCE 1850.

    ERIC Educational Resources Information Center

    DEL GIORNO, BETTE JOYCE

    ANALYZED WAS THE IMPACT OF CHANGING SCIENTIFIC KNOWLEDGE ON SCIENCE EDUCATION IN THE UNITED STATES FROM 1850 THROUGH 1954. THE OBJECTIVES WERE TO IDENTIFY (1) MAJOR DEVELOPMENTS IN SCIENCE, (2) IMPORTANT EVENTS IN EDUCATION, (3) THE PHILOSOPHICAL AND PSYCHOLOGICAL CLIMATE, (4) THE SCIENCE CURRICULUM AND SUBJECT MATTER, AND (5) THE APPROACH TO…

  16. Three-Dimensional Instruction: Using a New Type of Teaching in the Science Classroom

    ERIC Educational Resources Information Center

    Krajcik, Joe

    2015-01-01

    Science teaching and learning in the United States are at a pivotal point. "A Framework for K-12 Science Education" (NRC 2012b) and the "Next Generation Science Standards" ("NGSS"; NGSS Lead States 2013) shift science educators' focus from simply teaching science ideas to helping students figure out phenomena and…

  17. Rising Above the Storm: DIG TEXAS

    NASA Astrophysics Data System (ADS)

    Ellins, K. K.; Miller, K. C.; Bednarz, S. W.; Mosher, S.

    2011-12-01

    For a decade Texas educators, scientists and citizens have shown a commitment to earth science education through planning at the national and state levels, involvement in earth science curriculum and teacher professional development projects, and the creation of a model senior level capstone Earth and Space Science course first offered in 2010 - 2011. The Texas state standards for Earth and Space Science demonstrate a shift to rigorous content, career relevant skills and use of 21st century technology. Earth and Space Science standards also align with the Earth Science, Climate and Ocean Literacy framework documents. In spite of a decade of progress K-12 earth science education in Texas is in crisis. Many school districts do not offer Earth and Space Science, or are using the course as a contingency for students who fail core science subjects. The State Board for Educator Certification eliminated Texas' secondary earth science teacher certification in 2009, following the adoption of the new Earth and Space Science standards. This makes teachers with a composite teacher certification (biology, physics and chemistry) eligible to teach Earth and Space Science, as well other earth science courses (e.g., Aquatic Science, Environmental Systems/Science) even if they lack earth science content knowledge. Teaching materials recently adopted by the State Board of Education do not include Earth and Space Science resources. In July 2011 following significant budget cuts at the 20 Education Service Centers across Texas, the Texas Education Agency eliminated key staff positions in its curriculum division, including science. This "perfect storm" has created a unique opportunity for a university-based approach to confront the crisis in earth science education in Texas which the Diversity and Innovation in the Geosciences (DIG) TEXAS alliance aims to fulfill. Led by the Texas A&M University College of Geosciences and The University of Texas Jackson School of Geosciences, with initial assistance of the American Geophysical Union, the alliance comprises earth scientists and educators at higher education institutions across the state, and science teachers, united to improve earth science literacy (geoscience-earth, ocean, atmospheric, planetary, and geography) among Texas science teachers in order to attract individuals from groups underrepresented in STEM fields to pursue earth science as a career. Members of the alliance are affiliated with one of eight regional DIG TEXAS hub institutions. With an NSF planning grant, DIG TEXAS leaders created the DIG TEXAS brand, developed a project website, organized and held the first community meeting in March, 2011 at Exxon Mobil's Training Center in Houston. DIG TEXAS members have also delivered testimony to the State Board for Educator Certification in support of a new earth science teacher certification and collaborated on proposals that seek funding to support recommendations formulated at the community meeting.

  18. Science Education in the Rural United States. Implications for the Twenty-First Century. A Yearbook of the Association for the Education of Teachers in Science.

    ERIC Educational Resources Information Center

    Otto, Paul B., Ed.

    This yearbook of the Association for the Education of Teachers in Science (AETS) is designed to give a perspective on rural science education. It is presented in a sequence which leads from the definition and philosophy of rural science education, to the status of rural science education, research implications, the integration of science within…

  19. In Brief: Improving science education

    NASA Astrophysics Data System (ADS)

    Showstack, Randy

    2010-09-01

    Over the course of the next decade, 100,000 science, technology, engineering, and math (STEM) teachers should be recruited in the United States, and 1000 new STEM-focused schools should be created, according to a 16 September report, “Prepare and inspire: K-12 education in science, technology, engineering, and math (STEM) for America's future.” Noting that the United States lags behind other nations in STEM education at the elementary and secondary levels, the report, prepared by the President's Council of Advisors on Science and Technology, also recommends improving federal coordination and leadership on STEM education and supporting a state-led movement for shared standards in math and science. The release of the report coincides with President Barack Obama's announcement of the launch of Change the Equation, an organization that aims to help with math and science education. More information is available at http://www.whitehouse.gov/administration/eop/ostp and http://www.changetheequation.org/.

  20. Building a Networked Improvement Community to Promote Equitable, Coherent Systems of Science Education: How a State-Level Team Can Support District-Level Change Efforts

    ERIC Educational Resources Information Center

    Penuel, William R.; Shaw, Sam; Bell, Philip; Hopkins, Megan; Neill, Tiffany; Farrell, Caitlin C.

    2018-01-01

    This paper describes a Networked Improvement Community comprised of a network of 13 states focused on improving coherence and equity in state systems of science education. Grounded in principles of improvement science adapted from healthcare, we are developing and testing resources for formative assessment in science, with the aim of developing…

  1. Hanford`s innovations for science education

    DOE Office of Scientific and Technical Information (OSTI.GOV)

    Carter, D.

    1996-12-31

    In recognition of declining science literacy in the United States and a projected shortfall of scientists, engineers and technologists to address environmental problems nationally and internationally during the 21st century, Westinghouse Hanford Company has launched several innovative science education projects at the US Department of Energy Hanford Site. The Hanford Site is very rich in resources that can be brought to bear on the problem: world-class technical experts, state of the art facilities and equipment, and the largest environmental laboratory in the world. During the past two years, several innovative science education initiatives have been conceived and pursued at themore » secondary education level including the International Academy for the Environment (residential high school with an environmental theme), Environmental BATTmobile Program (mobile middle school science education program), and Multicultural Experiences in Math and Science (education program based on cultural contributions to math and science). Hanford scientists, engineers and administrators have worked with the education community (K-12 and college-university) to develop innovative approaches to science education.« less

  2. 77 FR 1472 - Submission of Data by State Educational Agencies; Submission Dates for State Revenue and...

    Federal Register 2010, 2011, 2012, 2013, 2014

    2012-01-10

    ..., Washington, DC 20233-6800. SEAs may submit data via the World Wide Web (``Web'') using the interactive survey... Education Sciences, Department of Education. ACTION: Notice. SUMMARY: The Secretary announces dates for the... Statistics, Institute of Education Sciences, U.S. Department of Education, Washington, DC 20208-5651...

  3. Science and Mathematics Education in the United States: Eight Innovations: Proceedings of the OECD International Conference on Science, Mathematics and Technology Education (Paris, France, November 5-7, 1991).

    ERIC Educational Resources Information Center

    Organisation for Economic Cooperation and Development, Paris (France).

    This volume is the first in a series emanating from the Center for Educational Research and Innovation's project on science, mathematics, and technology education in countries of the Organisation for Economic Cooperation and Development (OECD). It contains eight case studies from the United States presented to an international conference. Four…

  4. A comparative analysis of Science-Technology-Society standards in elementary, middle and high school state science curriculum frameworks

    NASA Astrophysics Data System (ADS)

    Tobias, Karen Marie

    An analysis of curriculum frameworks from the fifty states to ascertain the compliance with the National Science Education Standards for integrating Science-Technology-Society (STS) themes is reported within this dissertation. Science standards for all fifty states were analyzed to determine if the STS criteria were integrated at the elementary, middle, and high school levels of education. The analysis determined the compliance level for each state, then compared each educational level to see if the compliance was similar across the levels. Compliance is important because research shows that using STS themes in the science classroom increases the student's understanding of the concepts, increases the student's problem solving skills, increases the student's self-efficacy with respect to science, and students instructed using STS themes score well on science high stakes tests. The two hypotheses for this study are: (1) There is no significant difference in the degree of compliance to Science-Technology-Society themes (derived from National Science Education Standards) between the elementary, middle, and high school levels. (2) There is no significant difference in the degree of compliance to Science-Technology-Society themes (derived from National Science Education Standards) between the elementary, middle, and high school level when examined individually. The Analysis of Variance F ratio was used to determine the variance between and within the three educational levels. This analysis addressed hypothesis one. The Analysis of Variance results refused to reject the null hypothesis, meaning there is significant difference in the compliance to STS themes between the elementary, middle and high school educational levels. The Chi-Square test was the statistical analysis used to compare the educational levels for each individual criterion. This analysis addressed hypothesis two. The Chi-Squared results showed that none of the states were equally compliant with each individual criterion across the elementary, middle, and high school levels. The National Science Education Standards were created with the input of thousands of people and over twenty scientific and educational societies. The standards were tested in numerous classrooms and showed an increase in science literacy for the students. With the No Child Left Behind legislation and Project 2061, the attainment of a science literate society will be helped by the adoption of the NSES standards and the STS themes into the American classrooms.

  5. Rising against a gathering storm: a biopolitical analysis of citizenship in STEM policy

    NASA Astrophysics Data System (ADS)

    Hoeg, Darren; Bencze, Larry

    2017-12-01

    Science, technology, engineering and mathematics (STEM) is a form of education seen by many governments and educators as a preparation of the types of students needed for the future. STEM education is being developed in many countries without the support of official policy, such as is the case in Canada. In the United States, the National Science Foundation (NSF), and a private non-profit organisation, Achieve Inc.™, have been enlisted to develop policy to guide the development on STEM nationally. Due to its influence in global politics and economy, many countries, including Canada, are interested in how the United States is preparing its citizens for the future through STEM education. In this paper we present a critical discourse analysis on STEM policy from the United States as a basis to discuss: biopolitics in science education; notions of citizenship in contemporary school education and science education; and citizenship and STEM education.

  6. Teacher training

    NASA Image and Video Library

    2012-06-14

    Mississippi educators participated in a variety of hands-on activities, including rocketry, robotics, and NASA's BEST (Beginning Engineering, Science, and Technology) during a pair of during a pair of professional development workshops conducted by Stennis Space Center educators in June. On June 14, Stennis educators presented workshops to 96 kindergarten-through-12th-grade science teachers and eight Jackson State University faculty, as part of JSU's Project MAST (Mississippi Academy for Science Teaching) Project. On June 21, educators presented workshops in Starkville to 43 fourth-through-eighth-grade science teachers as part of Mississippi State University's Advancing Teachers of Middle School Science initiative.

  7. Driving forces of biomedical science education and research in state-of-the arts academic medical centres: the United States as example.

    PubMed

    John, T A

    2011-06-01

    Basic science departments in academic medical centres are influenced by changes that are commonly directed at medical education and financial gain. Some of such changes may have been detrimental to or may have enhanced basic science education. They may have determined basic science research focus or basic science research methods. However, there is lack of research on the educational process in the basic sciences including training of PhD's while there is ample research on medical education pertaining to training of medical doctors. The author here identifies, from university websites and available literature, some forces that have driven teaching and research focus and methods in state-of-the-arts academic medical centres in recent times with a view of seeing through their possible influences on basic science education and research, using the United States of America as an example. The "forces" are: Changes in medical schools; Medical educational philosophies: problem based learning, evidence based medicine, cyberlearning and self-directed learning; Shifting impressions of the value of basic sciences in medical schools; Research trends in Basic Sciences: role of antivivisectionists, alternative experimentations, explosion of molecular and cell biology; Technological advancements; Commercialization of research; and Funding agencies. The author encourages African leaders in academia to pay attention to such forces as the leadership seeks to raise African Universities as centres of knowledge that have a major role in acquiring, preserving, imparting, and utilizing knowledge.

  8. Impact of National Assessment of Educational Progress (NAEP) use and score interpretation on states' inquiry-based science education policies and practices: A descriptive study

    NASA Astrophysics Data System (ADS)

    Conley, David M.

    This study examined the influence of use and interpretation of National Assessment of Educational Progress (NAEP) science results on science education policies and practices in the United States, in the context of teaching and learning through inquiry and the assessment of student inquiry achievement. State assessment directors, NAEP coordinators, and science education specialists nationwide were invited to participate in the study by responding to a Web-based self-administered survey instrument. Sixty-seven percent of the population responded, providing both quantitative and qualitative data through selected-response and open-ended survey items, respectively. The findings of this study revealed that: (a) not all states interpret NAEP science results as an indicator of students' abilities to undertake inquiry investigations or understand the nature of inquiry---in fact, states view their own science assessments as more indicative of expectations regarding inquiry achievement; (b) most states have made changes to science curricular frameworks and assessments since the last NAEP science administration in 2000, so that more emphasis is placed on inquiry-based instruction and assessment of inquiry achievement---however, NAEP results have had a minor influence on these changes; (c) fewer states have made changes in legislation, policies, and professional development that reflect greater emphasis on inquiry, and those that did felt that NAEP results had no significant impact; (d) NAEP's influence has changed since the No Child Left Behind (NCLB) Act of 2001, but it remains minor since NAEP is still perceived as a "low stakes" test; (e) state officials believe NAEP's influence will increase significantly after the results of NAEP science 2005 are released and interpreted and as NCLB accountability provisions in science take hold in 2007--2008. The implications of the study's findings are discussed in reference to the theoretical and practical knowledge-bases concerning the consequences of assessment; the interpretation and use of future NAEP results to inform state science education systems; and NAEP validity studies and revisions to the NAEP assessment framework that may ensue. Limitations of the study's findings and directions for future research are also addressed.

  9. Interdisciplinary Science Courses for College General Education Requirements: Perspectives of Faculty at a State University.

    ERIC Educational Resources Information Center

    Dass, Pradeep Maxwell

    Science educators have been advocating a broader role for science education--that of helping all students see the relevance of science to their own lives. Yet the only experience with post-secondary science that non-science majors get is through a couple of science courses which are part of the general education requirements (GERs) for a liberal…

  10. A case study: The original intentions of the designers of the science content standards

    NASA Astrophysics Data System (ADS)

    Eucker, Penelope Hudson

    This case study research examined the original intentions of the designers of the science content standards in the historical context of educational reforms and legislation. The content standards are the keystone of standards-based education. Originally, national science content standards were part of a cohesive program to increase the occurrence of quality science K--12. Through assessment policies set into motion by state and federal legislation, science curriculum is increasingly fixed and standardized. Scripting teachers is becoming more common. Unintended outcomes of standards-based education are prevalent in all classrooms. Recording the original intentions of the designers of the science content standards in a historical context is significant to document their beliefs and purposes. The shared beliefs of the six scholars included: (a) science had become overstuffed curriculum with students learning very few concepts; (b) science teachers required assistance to decide which concepts are most important for students to learn; (c) standards-based education will most likely endure for a very long time; (d) science is a specific way of knowing and inquiry must be part of science instruction; (e) few teachers teach to the science content standards. The scholars disagreed about whether the power to decide what to teach had moved from the classroom to the legislators and if standards-based education has preferentially helped some groups of students while diminishing the science education of others. Implications from the findings reveal the tension between a defined science content and the resultant assessment template that further trims the instructional range offered. Foreshadowing of increasing trend toward profits made from testing companies as state and federal legislation increase mandated assessments. Significantly, the educational research that clearly demonstrate many pathways lead to educated students such as the Eight-Year Study were suppressed in favor of the bi-partisan supported standards-based education. One of the stated goals of standards-based education was equity. With documented corrupted curriculum sometimes devoid of all science, equity remains an elusive goal. This research documents the original intentions of the designers of the science content standards. The story continues to unfold with new state and federal legislation as teachers attempt to teach the mandated content standards.

  11. Measuring Science Instructional Practice: A Survey Tool for the Age of NGSS

    ERIC Educational Resources Information Center

    Hayes, Kathryn N.; Lee, Christine S.; DiStefano, Rachelle; O'Connor, Dawn; Seitz, Jeffery C.

    2016-01-01

    Ambitious efforts are taking place to implement a new vision for science education in the United States, in both Next Generation Science Standards (NGSS)-adopted states and those states creating their own, often related, standards. In-service and pre-service teacher educators are involved in supporting teacher shifts in practice toward the new…

  12. Anticipating Change: An Exploratory Analysis of Teachers' Conceptions of Engineering in an Era of Science Education Reform

    ERIC Educational Resources Information Center

    Sengupta-Irving, Tesha; Mercado, Janet

    2017-01-01

    While integrating engineering into science education is not new in the United States, technology and engineering have not been well emphasized in the preparation and professional development of science teachers. Recent science education reforms integrate science and engineering throughout K-12 education, making it imperative to explore the…

  13. Generating a desired state for master's degree programs in science education through grounded theory research

    NASA Astrophysics Data System (ADS)

    Spector, Barbara S.

    This is the report of a two-year study using qualitative research methods to assess the training needs of science teachers in southern Florida. The respondents included individuals and groups comprising the educational enterprise and those outside the enterprise with the ability to influence policy in science education and implementation of that policy in Florida. The study resulted in recommendations describing the desired state for graduate training leading to a master's degree in science education and has implications for noncredit inservice activities.

  14. 7 CFR 3405.11 - Content of a proposal.

    Code of Federal Regulations, 2013 CFR

    2013-01-01

    ... and agricultural sciences in the United States; and the plans for disseminating project results. The... the quality of higher education in the food and agricultural sciences. (iv) Products and results... agricultural sciences higher education in the United States. (2) Overall approach and cooperative linkages—(i...

  15. 7 CFR 3405.11 - Content of a proposal.

    Code of Federal Regulations, 2014 CFR

    2014-01-01

    ... and agricultural sciences in the United States; and the plans for disseminating project results. The... the quality of higher education in the food and agricultural sciences. (iv) Products and results... agricultural sciences higher education in the United States. (2) Overall approach and cooperative linkages—(i...

  16. 7 CFR 3405.11 - Content of a proposal.

    Code of Federal Regulations, 2012 CFR

    2012-01-01

    ... and agricultural sciences in the United States; and the plans for disseminating project results. The... the quality of higher education in the food and agricultural sciences. (iv) Products and results... agricultural sciences higher education in the United States. (2) Overall approach and cooperative linkages—(i...

  17. Okhee Lee, Cory A. Buxton, James A. Banks (ed.), Diversity and equity in science education: research, policy, and practice

    NASA Astrophysics Data System (ADS)

    Bannier, Betsy J.

    2015-06-01

    Highly relevant for academic study among K-12 educators and the higher education faculty who train pre-service teachers, Diversity and equity in science education highlights three interrelated issues impacting science education in the United States. First, complicated dynamics related to the large and increasing population of English language learning (ELL) students are discussed. Second, the realities of standardized test scores are comparatively explored, both within and beyond the United States. Third, the politics of accountability in education are vigorously discussed. Okhee Lee and Cory A. Buxton weave through the contexts of politics, education, science, and culture to expand existing discourse about how to best educate our nation's children.

  18. Science and Mathematics in the Schools: Report of a Convocation.

    ERIC Educational Resources Information Center

    National Academy of Sciences - National Research Council, Washington, DC. Assembly of Engineering.

    In May 1982 the National Academies of Sciences and Engineering held a national convocation to consider the state of precollege education in mathematics and science in the United States. More than 40 speakers presented their views on how to reverse the current decline in science and mathematics education. The President, members of Congress, and…

  19. Questioning the Fidelity of the "Next Generation Science Standards" for Astronomy and Space Sciences Education

    ERIC Educational Resources Information Center

    Slater, Stephanie J.; Slater, Timothy F.

    2015-01-01

    Although the Next Generation Science Standards (NGSS) are not federally mandated national standards or performance expectations for K-12 schools in the United States, they stand poised to become a de facto national science and education policy, as state governments, publishers of curriculum materials, and assessment providers across the country…

  20. The 1978 Macmillan Education Lecture

    ERIC Educational Resources Information Center

    Williams, Shirley

    1978-01-01

    This is the text of the lecture of the British Secretary of State for Education and Science given at the 1978 Meeting of the Association for Science Education (ASE). Three themes are presented; (1) British innovative science curricula; (2) relationship between science and technology; and (3) science for non-scientist. (HM)

  1. Forensic Science Education and Educational Requirements for Forensic Scientists.

    ERIC Educational Resources Information Center

    Gaensslen, Robert E.

    2002-01-01

    Focuses on criminalistics, which can be understood to mean the activities and specialty areas characteristic of most municipal, county, or state forensic science laboratories in the United States. (DDR)

  2. Science Education in Egypt and Other Arab Countries in Africa and West Asia.

    ERIC Educational Resources Information Center

    Hassan, Farkhonda

    1997-01-01

    Examines science education in Egypt and the Arab states, focusing on the status of science and technology at the pre-university level and higher education, the science and technology structural component in the higher education system, student enrollment at the B.S. level, distribution of B.S degrees by sex, science and technology graduates, M.S.…

  3. Beliefs of Science Educators Who Teach Pesticide Risk to Farmworkers

    ERIC Educational Resources Information Center

    LePrevost, Catherine E.; Blanchard, Margaret R.; Cope, W. Gregory

    2013-01-01

    Informal science educators play a key role in promoting science literacy, safety, and health by teaching pesticide toxicology to the large, at-risk Latino farmworker population in the United States (US). To understand the experiences of informal science educators and the nature of farmworker education, we must have knowledge of farmworker…

  4. Diversity and Equity in Science Education: Research, Policy, and Practice. Multicultural Education Series

    ERIC Educational Resources Information Center

    Lee, Okhee; Buxton, Cory A.

    2010-01-01

    Two leading science educators provide a comprehensive, state-of-the-field analysis of current trends in the research, policy, and practice of science education. This book offers valuable insights into why gaps in science achievement among racial, ethnic, cultural, linguistic, and socioeconomic groups persist, and points toward practical means of…

  5. National Board for Education Sciences 2009 Annual Report, August 2008 through June 2009. NBES 2009-6020

    ERIC Educational Resources Information Center

    National Board for Education Sciences, 2009

    2009-01-01

    On November 5, 2002, Congress passed the Education Sciences Reform Act of 2002 (ESRA), establishing the Institute of Education Sciences (IES, or the Institute) and its board of directors, the National Board for Education Sciences (NBES, or the Board). The Institute reports to Congress yearly on the condition of education in the United States. The…

  6. Key Facts about Higher Education in Washington

    ERIC Educational Resources Information Center

    Washington Higher Education Coordinating Board, 2011

    2011-01-01

    Since its establishment in the 1860s, Washington's higher education system has evolved rapidly to meet a myriad of state needs in fields as diverse as agriculture, bioscience, chemistry, environmental sciences, engineering, medicine, law, business, computer science, and architecture. Today, higher education, like other vital state functions, faces…

  7. Urban School Leadership for Elementary Science Education: Meeting the Needs of English Language Learners

    ERIC Educational Resources Information Center

    Alarcon, Maricela H.

    2012-01-01

    Science education reform and state testing accountability call upon principals to become instructional leaders in science. Specifically, elementary school principals must take an active role in science instruction to effectively improve science education for all students including English Language Learners. As such, the research questioned posed…

  8. A Needs Assessment for the Adoption of Next Generation Science Standards (NGSS) in K-12 Education in the United States

    ERIC Educational Resources Information Center

    Harris, Karleah; Sithole, Alec; Kibirige, Joachim

    2017-01-01

    Since its inception, the Next Generation Science Standards (NGSS) blue print has attracted interest from more than 40 states in the United States. The overall objective of these proposed changes is to align K-12 science education with current trends in technology and career needs. However, the assessment of teacher preparedness and classroom…

  9. Environmental Science Conference for State Supervisors of Science (Portland State University, Portland, Oregon, May 1-5, 1970).

    ERIC Educational Resources Information Center

    Portland State Univ., OR.

    The Conference report reviewed the status of man's environment and drafted guidelines for state education agencies to use for developing state programs related to environmental education. The six featured speakers and topics were: Kessler Cannon--"Report of the Governor's Committee on Natural Resources;" Dr. Harry…

  10. Analyses of science education reform in Florida: Emerging from the eclipse or trapped in the darkness?

    NASA Astrophysics Data System (ADS)

    Muire, Willis Christian, Jr.

    This research is focused on the changes that have occurred across the complex web of systems and subsystems of education in Florida and to examine the relative impact these changes have exacted upon science education. The primary purpose of this research is to describe and interpret the practices of reform efforts in Florida as a way to inform educational stakeholders such that new visions of school improvement can be discussed and planned for improving the teaching and learning of science. This study begins with the questions of "what is happening in science education in an extremely large and diverse state and why is it happening?" The solutions to these questions required a blend of investigatory techniques to answer. The needs of elementary school teachers for improving science education were initially used to provide the organizational foci of this research. As trends emerged from analyzing these needs, a wide variety of qualitative and quantitative data sources were acquired and analyzed in a longitudinal, multi-level design to obtain rich insights into the factors associated with achievement and equity in the teaching and learning of science in Florida. Relevant statistical indicators obtained from state, district and school data in combination with interviews of teachers, principals, parents, state and district level leaders were used for interpreting qualitative evidence. As credible data were acquired, I also examined the evidence in terms of educational policy formulation and the "filter down process" associated with the impact of national, state, and district policies on schools. Moreover, I investigated issues of policy and governance and their interrelations with student achievement science. I am interested in identifying the most robust indicators of science education reform in authentic ways with the goal of ascertaining if and where reform is occurring, and in terms of grounded theory, why these changes are occurring. Though the focus of this study began as an inquiry of elementary science education in one state, the findings have far-reaching implications that should concern not only teachers, but all citizens who value education.

  11. Science Education Futures: "Great Potential. Could Do Better. Needs to Try Harder"

    ERIC Educational Resources Information Center

    Aubusson, Peter; Panizzon, Debra; Corrigan, Deborah

    2016-01-01

    Reviews of science education consistently suggest that there is (another) crisis. They express concern with the status quo and suggest directions that science education might take. In this context, science educators need to consider the current state of play, the needs of generations in a world to come and the characteristics of future science…

  12. Maryland State Department of Education: Analysis of the Voluntary State Curriculum (VSC) in Science Grades Pre-K-8

    ERIC Educational Resources Information Center

    Achieve, Inc., 2005

    2005-01-01

    In response to a proposal request from the state, Achieve reviewed the draft of Maryland's Pre-K-8 Voluntary State Curriculum (VSC) in Science (dated May 2004). This preliminary report summarizes their findings and also reflects the discussion that followed their presentation to representatives of the Maryland State Department of Education on…

  13. Experimental Comparison of Inquiry and Direct Instruction in Science

    ERIC Educational Resources Information Center

    Cobern, William W.; Schuster, David; Adams, Betty; Applegate, Brooks; Skjold, Brandy; Undreiu, Adriana; Loving, Cathleen C.; Gobert, Janice D.

    2010-01-01

    There are continuing educational and political debates about "inquiry" versus "direct" teaching of science. Traditional science instruction has been largely direct but in the US, recent national and state science education standards advocate inquiry throughout K-12 education. While inquiry-based instruction has the advantage of modelling aspects…

  14. Science Education in the Republic of Ireland and the "Celtic Tiger."

    ERIC Educational Resources Information Center

    Childs, Peter E.

    2001-01-01

    Surveys the state of science education in Ireland from primary to third level and describes new initiatives in this area aimed at correcting the swing away from science at a time when the economy is becoming more science based. Focuses on the crucial role of science teachers in their preservice and inservice education in improving science…

  15. Institute of Education Science Findings from Interviews with Education Policymakers.

    ERIC Educational Resources Information Center

    Huang, Gary; Reiser, Mindy; Parker, Albert; Muniec, Judith; Salvucci, Sameena

    This reports presents interview findings with education policymakers on various aspects of educational research. The sampling contained the following groups: superintendents and other local education officials; chief state school officers; state higher education executive officers; state legislators; governors' educational policy advisors;…

  16. Secondary Education Systemic Issues: Addressing Possible Contributors to a Leak in the Science Education Pipeline and Potential Solutions

    ERIC Educational Resources Information Center

    Young, Hollie

    2005-01-01

    To maintain the legacy of cutting edge scientific innovation in the United States our country must address the many pressing issues facing science education today. One of the most important issues relating to science education is the under-representation of African Americans and Hispanics in the science, technology, and engineering workforce.…

  17. Quebec Science Education: Which Directions? Proceedings of a Symposium Sponsored by the Science Council of Canada and the Association des Professeurs de Sciences du Quebec (March 1982). P82/2.

    ERIC Educational Resources Information Center

    Souque, Jean-Pascal, Ed.; Dufour, Paul, Ed.

    Proceedings are presented of a symposium on science education in Quebec, which was sponsored by the Science Council of Canada and the Association des Professeurs de Sciences du Quebec. Papers and authors addressing the background and present state of Quebec science education are as follows: "Science Teaching at the Secondary Level: An…

  18. Educating for the 21st-Century Health Care System: An Interdependent Framework of Basic, Clinical, and Systems Sciences.

    PubMed

    Gonzalo, Jed D; Haidet, Paul; Papp, Klara K; Wolpaw, Daniel R; Moser, Eileen; Wittenstein, Robin D; Wolpaw, Terry

    2017-01-01

    In the face of a fragmented and poorly performing health care delivery system, medical education in the United States is poised for disruption. Despite broad-based recommendations to better align physician training with societal needs, adaptive change has been slow. Traditionally, medical education has focused on the basic and clinical sciences, largely removed from the newer systems sciences such as population health, policy, financing, health care delivery, and teamwork. In this article, authors examine the current state of medical education with respect to systems sciences and propose a new framework for educating physicians in adapting to and practicing in systems-based environments. Specifically, the authors propose an educational shift from a two-pillar framework to a three-pillar framework where basic, clinical, and systems sciences are interdependent. In this new three-pillar framework, students not only learn the interconnectivity in the basic, clinical, and systems sciences but also uncover relevance and meaning in their education through authentic, value-added, and patient-centered roles as navigators within the health care system. Authors describe the Systems Navigation Curriculum, currently implemented for all students at the Penn State College of Medicine, as an example of this three-pillar educational model. Simple adjustments, such as including occasional systems topics in medical curriculum, will not foster graduates prepared to practice in the 21st-century health care system. Adequate preparation requires an explicit focus on the systems sciences as a vital and equal component of physician education.

  19. Institutional Research Productivity in Science Education for the 1990s: Top 30 Rankings

    NASA Astrophysics Data System (ADS)

    Barrow, Lloyd H.; Settlage, John; Germann, Paul J.

    2008-08-01

    The purpose of this study was to identify the major science education programs in the United States, where the science education researchers published their research. This research is the first study of the scholarly productivity of science education programs at domestic institutions of higher education. Each issue of the eight research journals ( Journal of Research in Science Teaching, Science Education, International Journal of Science Education, Journal of Science Teacher Education, School Science and Mathematics, Journal of Computers in Math and Science Teaching, Journal of Science Education and Technology, and Journal of Elementary Science Education) published in the 1990s provided the author(s) and their institutional affiliation. The resultant ranking of raw and weighted counts for the top 30 science educations programs shows variation in journals where research was published. Overall, regardless whether the total number of publications (raw) or weighted rating there was 90% agreement among top 10 and 70% agreement among the bottom 10. Potential explanations for variations and uses for rankings are discussed.

  20. Social Sciences, Grades 3, 6, 8, 10, 12. State Goals for Learning and Sample Learning Objectives.

    ERIC Educational Resources Information Center

    Illinois State Board of Education, Springfield. Dept. of School Improvement Services.

    This document, developed by the Illinois State Board of Education, identifies five goals for learning in the social sciences, and provides sample learning objectives for grades 3, 6, 8, 10, 12, which are consistent with these goals. The state goals for learning are broadly stated expressions of what the Illinois State Board of Education wants and…

  1. The Effect of a State Department of Education Teacher Mentor Initiative on Science Achievement

    ERIC Educational Resources Information Center

    Pruitt, Stephen L.

    2010-01-01

    This study analyzed a state department of education's ability to have actual influence over the improvement of science achievement and proficiency by having direct relationships with science teachers in Georgia's lowest performing schools. The study employed a mixed ANOVA analysis of the mean scale scores and proficiency rates of the science…

  2. World-Class Ambitions, Weak Standards: An Excerpt from "The State of State Science Standards 2012"

    ERIC Educational Resources Information Center

    American Educator, 2012

    2012-01-01

    A solid science education program begins by clearly establishing what well-educated youngsters need to learn about this multifaceted domain of human knowledge. The first crucial step is setting clear academic standards for the schools--standards that not only articulate the critical science content students need to learn, but that also properly…

  3. Exploring the New Standards

    ERIC Educational Resources Information Center

    Willard, Ted; Pratt, Harold; Workosky, Cindy

    2012-01-01

    This is an exciting time to be in science education. New science standards are being developed by a group of science educators from across the country, working with 26 states in a process managed by Achieve, Inc., a non-profit education reform organization. The development of the "Next Generation Science Standards" (NGSS) promises to be the most…

  4. Making and Defending Scientific Arguments

    ERIC Educational Resources Information Center

    Llewellyn, Douglas

    2013-01-01

    Since 1996, science education has been guided by the National Science Education Standards (NRC 1996). But now there's a "new sheriff in town" as the "Common Core State Standards" and "A Framework for K-12 Science Education" together become the 21st century's torch bearer for curricula reform in science and…

  5. Mathematics and Science Education in the States. StateNotes

    ERIC Educational Resources Information Center

    Zinth, Kyle; Dounay, Jennifer

    2006-01-01

    The early part of the 21st century sees the United States competing in an increasingly globalized, high-tech economy that highly prizes those individuals with quality mathematics and science educations, and bestows economic and other benefits on the nations and regions in which they live and work. Nations around the world--recognizing the…

  6. 76 FR 784 - Submission of Data by State Educational Agencies

    Federal Register 2010, 2011, 2012, 2013, 2014

    2011-01-06

    .... SEAs may submit data via the World Wide Web (``Web'') using the interactive survey form at: http... for Education Statistics, Institute of Education Sciences, Department of Education. ACTION: Notice of..., National Center for Education Statistics, Institute of Education Sciences, U.S. Department of Education...

  7. Goddard Space Flight Center: 1994 Maryland/GSFC Earth and Environmental Science Teacher Ambassador Program

    NASA Technical Reports Server (NTRS)

    Latham, James

    1995-01-01

    The Maryland/Goddard Space Flight Center (GSFC) Earth and Environmental Science Teacher Ambassador Program was designed to enhance classroom instruction in the Earth and environmental science programs in the secondary schools of the state of Maryland. In October 1992, more than 100 school system administrators from the 24 local Maryland school systems, the Maryland State Department of Education, and the University of Maryland met with NASA GSFC scientists and education officers to propose a cooperative state-wide secondary school science teaching enhancement initiative.

  8. How the Pacific Islands Climate Education Partnership (PCEP) Has Collaboratively Increased Regional Collective Impacts on Climate Literacy Via Networks of Diverse Stakeholders Engaging in Multiple Reinforcing Activities

    NASA Astrophysics Data System (ADS)

    Sussman, A.

    2016-12-01

    The Pacific Islands Climate Education Partnership (PCEP) serves the U.S. Affiliated Pacific Island (USAPI) Region. The international entities served by PCEP are the state of Hawai`i (USA); three Freely Associated States (the Federated States of Micronesia, the Republic of the Marshall Islands, and the Republic of Palau), and three Territories (Guam, Commonwealth of Northern Mariana Islands, and American Samoa). Funded by NSF, the PCEP aims to educate the region's students and citizens in ways that exemplify modern science and indigenous environmental knowledge, address the urgency of climate change impacts, and focus on adaptation strategies that can increase resiliency with respect to climate change impacts. PCEP partners include universities, education nonprofits, state or country offices/ministries of education, local ecological nonprofits, and a variety of community organizations. Partners contribute and share expertise in climate science, local ecological knowledge, K-12 education in the Pacific island region, science and environmental education, community college education, learning science, indigenous navigation, and oceanography. Over the past six years, PCEP has engaged with regional school systems and communities in a wide variety of ways that complement and reinforce each other. Highlighted activities include improving country and state climate science education standards; focusing on place-based local ecological knowledge and skills in working with schools and communities; developing and disseminating formal education resources such as books and web resources that focus on local contexts and skills rather than contextually inappropriate mainland the textbooks; developing and implementing professional development for teachers; and supporting local ways of knowing by gathering and sharing local stories of climate change; and promoting an emphasis on climate adaptation strategies that increase resilience of natural environments and community systems.

  9. Outer Space Place: Exploring Space at the Maryland Science Center

    NASA Astrophysics Data System (ADS)

    Jan, M. W.; Mendez, F.

    1999-05-01

    The Maryland Science Center has been the state's premier vehicle for informal science education for over 20 years. Every day thousands of school children, families, and out-of-state visitors come for fun and come away with ideas, exciting experiences, and an appetite for more information about science. Opened on April 15, 1999, Outer Space Place (OSP) consolidates the Science Center's space exhibits and activities, both new and refurbished. In this paper, we describe OSP, which features SpaceLink, the Crosby Ramsey Memorial Observatory, the Davis Planetarium, Earth Orbit Gallery, and the Hubble Space Telescope National Visitor Center and provides hands-on educational experiences for kids of all ages. We illustrate how astronomers contribute to and educators benefit from OSP. We conclude with concrete suggestions for astronomers and educators who wish to enhance astronomy education in their local areas.

  10. Augmenting Primary and Secondary Education with Polymer Science and Engineering

    ERIC Educational Resources Information Center

    Cersonsky, Rose K.; Foster, Leanna L.; Ahn, Taeyong; Hall, Ryan J.; van der Laan, Harry L.; Scott, Timothy F.

    2017-01-01

    Despite the prevalence of polymers in modern everyday life, there is little introduction to the topic in science education throughout primary or secondary schooling in the United States. Of the few states that do include polymer education, this is only found at the high school level, primarily in biology or chemistry. Over the past year, we have…

  11. Increasing Diversity in the Earth Sciences (IDES) - An Oregon Effort

    NASA Astrophysics Data System (ADS)

    de Silva, S. L.; Duncan, R. A.; Wright, D. J.; de Silva, L.; Guerrero, E. F.

    2011-12-01

    The IDES (Increasing Diversity in Earth Sciences) Program is the first partnership of its kind in the state of Oregon targeted at broadening participation in the Earth Science enterprise. Funded by the National Science Foundation Opportunities to Enhance Diversity in the Geosciences program (NSF-OEDG), this partnership involves community colleges, a research university with major strengths in Earth Science research and education and an institutionalized commitment to enhancing diversity, state and federal agencies, centers of informal education, and the Oregon Space Grant Consortium, IDES has two integrated goals: 1) to increase the number of students from under-represented groups who pursue careers in Earth Science research and education, and 2) to strengthen the understanding of Earth Sciences and their relevance to society among broad and diverse segments of the population. Built around the best practices of tiered mentoring, interactive student cohort, research and education internships, and financial support, this 4-year program recruits 10 to 12 students (mainly rising juniors) each year from science majors at Oregon State University and five Oregon community colleges. The program is reaching its goals by: a) training participants in the application of geospatial to Earth Science problems of personal relevance b) immersing participants in a two-year mentored research project that involves summer internships with academic units, state and federal agencies, and centers for informal education in Oregon. c) exposing, educating, and involving participants in the breadth of Earth Science careers through contact with Earth Science professionals through mentors, a professional internship, and a learning community that includes a speaker series. d) instilling an understanding of context and relevance of the Earth Science Enterprise to the participants, their families, their communities, and the general public. We report on the first two years of this program during which 20 participants have been involved and significant feedback has been received.

  12. Preparation for Practice: Elementary Preservice Teachers Learning and Using Scientific Classroom Discourse Community Instructional Strategies

    ERIC Educational Resources Information Center

    Lewis, Elizabeth; Dema, Oxana; Harshbarger, Dena

    2014-01-01

    Despite historical national efforts to improve elementary science education, science instruction continues to be marginalized, varying by state. This study was designed to address the ongoing challenge of educating elementary preservice teachers (PSTs) to teach science. Elementary PSTs are one of the science education community's major links…

  13. A Blend of Romanism and Germanism: Experimental Science Instruction in Belgian State Secondary Education, 1880-1914

    ERIC Educational Resources Information Center

    Onghena, Sofie

    2013-01-01

    A case study of secondary experimental science instruction in Belgium demonstrates the importance of cross-national communication in the study of science education. Belgian secondary science education in the years 1880-1914 had a clear internationalist dimension. French and German influences turn out to have been essential, stimulated by the fact…

  14. Activities for Teaching K-6 Math/Science Concepts. Classroom Activities Series - Number 2.

    ERIC Educational Resources Information Center

    Farmer, Walter A.; Farrell, Margaret A.

    This book is a revised edition of one of the products of a project, "Teaching Mathematics and Science Concepts, K-6, funded by the New York State Education Department. The project was a collaborative effort by mathematics and science education faculty at the State University of New York at Albany and representatives of eight school districts in…

  15. Mechanisms for Enhancing Teachers' Effectiveness in the Implementation of Agricultural Science Programme in Secondary Schools in Afikpo Education Zone of Ebonyi State

    ERIC Educational Resources Information Center

    Ndem, Joseph Ukah

    2016-01-01

    Poor performance of students in agricultural science at the internal and external examinations has been attributed to ineffectiveness of the agricultural science teachers at the secondary schools in Afikpo education zone of Ebonyi State, therefore, this research determined the mechanisms for enhancing the teachers' effectiveness in the…

  16. Using the World Wide WEB to promote science education in nuclear energy and RWM

    DOE Office of Scientific and Technical Information (OSTI.GOV)

    Robinson, M.

    1996-12-31

    A priority of government and business in the United States and other first tier industrial countries continues to be the improvement of science, mathematics and technology (SMT) instruction in pre university level education. The U.S. federal government has made SMT instruction an educational priority and set goals for improving it in the belief that science, math and technology education are tied to our economic well being and standard of living. The new national standards in mathematics education, science education and the proposed standards in technology education are all aimed at improving knowledge and skills in the essential areas that themore » federal government considers important for protecting our technological advantage in the world economy. This paper will discuss a pilot project for establishing graphical Web capability in a limited number of rural Nevada schools (six) with support from the US Department of Energy (DOE) and the state of Nevada. The general goals of the pilot project are as follows: (1) to give rural teachers and students access to up to date science information on the Web; (2) to determine whether Web access can improve science teaching and student attitudes toward science in rural Nevada schools; and (3) to identify science content on the Web that supports the National Science Standards and Benchmarks. A specific objective that this paper will address is stated as the following question: What potential do nuclear energy information office web sites offer for changing student attitudes about nuclear energy and creating greater nuclear literacy.« less

  17. A validation study of an alternate state science assessment: Alignment of the Pennsylvania Alternate System of Assessment (PASA) science assessment

    NASA Astrophysics Data System (ADS)

    Heh, Peter

    The current study examined the validation and alignment of the PASA-Science by determining whether the alternate science assessment anchors linked to the regular education science anchors; whether the PASA-Science assessment items are science; whether the PASA-Science assessment items linked to the alternate science eligible content, and what PASA-Science assessment content was considered important by parents and teachers. Special education and science education university faculty determined all but one alternate science assessment anchor linked to the regular science assessment anchors. Special education and science education teachers determined that the PASA-Science assessment items are indeed science and linked to the alternate science eligible content. Finally, parents and teachers indicated the most important science content assessed in the PASA-Science involved safety and independence.

  18. Fostering Change from Within: Influencing Teaching Practices of Departmental Colleagues by Science Faculty with Education Specialties.

    PubMed

    Bush, Seth D; Rudd, James A; Stevens, Michael T; Tanner, Kimberly D; Williams, Kathy S

    2016-01-01

    Globally, calls for the improvement of science education are frequent and fervent. In parallel, the phenomenon of having Science Faculty with Education Specialties (SFES) within science departments appears to have grown in recent decades. In the context of an interview study of a randomized, stratified sample of SFES from across the United States, we discovered that most SFES interviewed (82%) perceived having professional impacts in the realm of improving undergraduate science education, more so than in research in science education or K-12 science education. While SFES reported a rich variety of efforts towards improving undergraduate science education, the most prevalent reported impact by far was influencing the teaching practices of their departmental colleagues. Since college and university science faculty continue to be hired with little to no training in effective science teaching, the seeding of science departments with science education specialists holds promise for fostering change in science education from within biology, chemistry, geoscience, and physics departments.

  19. Fostering Change from Within: Influencing Teaching Practices of Departmental Colleagues by Science Faculty with Education Specialties

    PubMed Central

    2016-01-01

    Globally, calls for the improvement of science education are frequent and fervent. In parallel, the phenomenon of having Science Faculty with Education Specialties (SFES) within science departments appears to have grown in recent decades. In the context of an interview study of a randomized, stratified sample of SFES from across the United States, we discovered that most SFES interviewed (82%) perceived having professional impacts in the realm of improving undergraduate science education, more so than in research in science education or K-12 science education. While SFES reported a rich variety of efforts towards improving undergraduate science education, the most prevalent reported impact by far was influencing the teaching practices of their departmental colleagues. Since college and university science faculty continue to be hired with little to no training in effective science teaching, the seeding of science departments with science education specialists holds promise for fostering change in science education from within biology, chemistry, geoscience, and physics departments. PMID:26954776

  20. Science & Engineering Indicators - 1991. Tenth Edition.

    ERIC Educational Resources Information Center

    National Science Foundation, Washington, DC. National Science Board.

    This report is designed to provide public and private policymakers with a broad base of quantitative information about United States science and engineering research and education and about United States technology in a global context. This document begins with a synopsis of United States science and technology. Chapter 1, "Precollege Science and…

  1. 78 FR 7765 - Submission of Data by State Educational Agencies; Submission Dates for State Revenue and...

    Federal Register 2010, 2011, 2012, 2013, 2014

    2013-02-04

    ... DEPARTMENT OF EDUCATION Submission of Data by State Educational Agencies; Submission Dates for... Revisions to Prior Fiscal Year Reports AGENCY: National Center for Education Statistics, Institute of Education Sciences, Department of Education. ACTION: Notice. SUMMARY: The Secretary announces dates for the...

  2. Guided Science Inquiry Instruction with Students with Special Education Needs. R2Ed Working Paper 2015-1

    ERIC Educational Resources Information Center

    White, Andrew S.; Kunz, Gina M.; Whitham, Rebekah; Houston, Jim; Nugent, Gwen

    2015-01-01

    National and state educational mandates require students achieve proficiency in not only science content, but also "science inquiry", or those process skills associated with science (National Research Council, 2011; Next Generation Science Standards, 2013). Science inquiry instruction has been shown to improve student achievement and…

  3. Science as an Ideal: Teachers' Orientations to Science and Science Education Reform

    ERIC Educational Resources Information Center

    Witz, Klaus G.; Lee, Hyunju

    2009-01-01

    Two policy trends have characterized US science education in the last two decades: a strong movement to examine issues of science in society, and widespread adoption of state standards mandating curriculum courses related to science, technology and society, scientific literacy, and socio-scientific issues. However, these changes have not found an…

  4. Recent Developments in Arab Science Education

    ERIC Educational Resources Information Center

    Selim, M. Saber

    1978-01-01

    Reports major changes, trends, and dynamics in the development of science education in the Arab states. Emphasis is given to the activities of the Arab League Educational, Cultural, and Scientific Organization (ALESCO). (SL)

  5. A science confidence gap: Education, trust in scientific methods, and trust in scientific institutions in the United States, 2014.

    PubMed

    Achterberg, Peter; de Koster, Willem; van der Waal, Jeroen

    2017-08-01

    Following up on suggestions that attitudes toward science are multi-dimensional, we analyze nationally representative survey data collected in the United States in 2014 ( N = 2006), and demonstrate the existence of a science confidence gap: some people place great trust in scientific methods and principles, but simultaneously distrust scientific institutions. This science confidence gap is strongly associated with level of education: it is larger among the less educated than among the more educated. We investigate explanations for these educational differences. Whereas hypotheses deduced from reflexive-modernization theory do not pass the test, those derived from theorizing on the role of anomie are corroborated. The less educated are more anomic (they have more modernity-induced cultural discontents), which not only underlies their distrust in scientific institutions, but also fuels their trust in scientific methods and principles. This explains why this science confidence gap is most pronounced among the less educated.

  6. States Move toward Computer Science Standards. Policy Update. Vol. 23, No. 17

    ERIC Educational Resources Information Center

    Tilley-Coulson, Eve

    2016-01-01

    While educators and parents recognize computer science as a key skill for career readiness, only five states have adopted learning standards in this area. Tides are changing, however, as the Every Student Succeeds Act (ESSA) recognizes with its call on states to provide a "well-rounded education" for students, to include computer science…

  7. Science Education at Arts-Focused Colleges

    ERIC Educational Resources Information Center

    Oswald, W. Wyatt; Ritchie, Aarika; Murray, Amy Vashlishan; Honea, Jon

    2016-01-01

    Many arts-focused colleges and universities in the United States offer their undergraduate students coursework in science. To better understand the delivery of science education at this type of institution, this article surveys the science programs of forty-one arts-oriented schools. The findings suggest that most science programs are located in…

  8. Deweyan Darwinism for the Twenty-First Century: Toward an Educational Method for Critical Democratic Engagement in the Era of the Institute of Education Sciences

    ERIC Educational Resources Information Center

    Seltzer-Kelly, Deborah

    2008-01-01

    Our society's preoccupation with making educational policy and practice "scientific" is attested to by the stated mission of the Institute of Education Sciences: "to provide rigorous evidence on which to ground education practice and policy." Early in the twentieth century, John Dewey also advocated for a vision of education guided by science, and…

  9. Science and Women in the History of Education: Expanding the Archive.

    ERIC Educational Resources Information Center

    Watts, Ruth

    2003-01-01

    Investigates the field of science to examine the neglect of its interrelationship with gender and how this weakness can be resolved. States it is vital to understand the methods and sources used in educational history when examining science and gender as an intellectual part of educational history. (KDR)

  10. Levels of Possession of Science Process Skills by Final Year Students of Colleges of Education in South-Eastern States of Nigeria

    ERIC Educational Resources Information Center

    Akani, Omiko

    2015-01-01

    This study investigated the levels of possession of science process skills by final year Nigerian Certificate in Education (NCE) Students in colleges of Education in South-Eastern States of Nigeria. The skills that were assessed were observation, experimentation, measurement, communication, and inference. The research was guided by five research…

  11. Liberal Arts and Sciences Graduates' Reflections on Their Cooperative Education Experiences and Career Self-Efficacy

    ERIC Educational Resources Information Center

    Brantley, Jennifer

    2012-01-01

    The purpose of this phenomenological study was to provide insight into Liberal Arts and Sciences (LAS) graduates' reflections on their cooperative education (co-op) experiences and resulting career self-efficacy. Wichita State University houses a cooperative education program, the only one of its kind in the state of Kansas. This program…

  12. Next Generation Science Standards: For States, by States

    ERIC Educational Resources Information Center

    National Academies Press, 2013

    2013-01-01

    "Next Generation Science Standards" identifies the science all K-12 students should know. These new standards are based on the National Research Council's "A Framework for K-12 Science Education." The National Research Council, the National Science Teachers Association, the American Association for the Advancement of Science,…

  13. Social justice pedagogies and scientific knowledge: Remaking citizenship in the non-science classroom

    NASA Astrophysics Data System (ADS)

    Lehr, Jane L.

    This dissertation contributes to efforts to rethink the meanings of democracy, scientific literacy, and non-scientist citizenship in the United States. Beginning with questions that emerged from action research and exploring the socio-political forces that shape educational practices, it shows why non-science educators who teach for social justice must first recognize formal science education as a primary site of training for (future) non-scientist citizens and then prepare to intervene in the dominant model of scientifically literate citizenship offered by formal science education. This model of citizenship defines (and limits) appropriate behavior for non-scientist citizens as acquiescing to the authority of science and the state by actively demarcating science from non-science, experts from non-experts, and the rational from the irrational. To question scientific authority is to be scientifically illiterate. This vision of 'acquiescent democracy' seeks to end challenges to the authority of science and the state by ensuring that scientific knowledge is privileged in all personal and public decision-making practices, producing a situation in which it becomes natural for non-scientist citizens to enroll scientific knowledge to naturalize oppression within our schools and society. It suggests that feminist and equity-oriented science educators, by themselves, are unable or unwilling to challenge certain assumptions in the dominant model of scientifically literate citizenship. Therefore, it is the responsibility of non-science educators who teach for social justice to articulate oppositional models of non-scientist citizenship and democracy in their classrooms and to challenge the naturalized authority of scientific knowledge in all aspects of our lives. It demonstrates how research in the field of Science & Technology Studies can serve as one resource in our efforts to intervene in the dominant model of scientifically literate citizenship and to support a model of democracy that encourages the critical engagement of and opposition to scientific knowledge and the state.

  14. Science Education and the Emergence of the Specialized Scientist in Nineteenth Century Greece

    ERIC Educational Resources Information Center

    Tampakis, Konstantinos

    2013-01-01

    In this paper, I describe the strong and reciprocal relations between the emergence of the specialized expert in the natural sciences and the establishment of science education, in early Modern Greece. Accordingly, I show how science and public education interacted within the Greek state from its inception in the early 1830, to the first decade of…

  15. Primary Science Curriculum Development in Africa--Strategies, Problems and Prospects with Particular Reference to the African Primary Science Programme.

    ERIC Educational Resources Information Center

    Bajah, Sam Tunde

    1981-01-01

    The African Primary Science Programme (APSP) was one of the three major projects in Africa sponsored by Educational Services Incorporated (ESI), later the Educational Development Center (EDC), Newton, Massachusetts. The problems of introducing this programme in the anglophone African States and its implications for science education are discussed.…

  16. Project ALERT: Forging New Partnerships to Improve Earth System Science Education for Pre-Service and In-Service Teachers

    NASA Astrophysics Data System (ADS)

    Metzger, E. P.; Ambos, E. L.; Ng, E. W.; Skiles, J.; Simila, G.; Garfield, N.

    2002-05-01

    Project ALERT (Augmented Learning Environment and Renewable Teaching) was founded in 1998, with funding from NASA and the California State University (CSU), to improve earth system science education for pre-service teachers. Project ALERT has formed linkages between ten campuses of the CSU, which prepares about 60 percent of California's teachers, and two NASA centers, Ames Research Center and the Jet Propulsion Laboratory. ALERT has also fostered alliances between earth science and science education faculty. The combined expertise of Project ALERT's diverse partners has led to a wide array of activities and products, including: 1) incorporation in university classrooms of NASA-developed imagery, data, and educational resources; 2) creation and/or enhancement of several courses that bring earth systems science to pre-service teachers; 3) fellowships for CSU faculty to participate in collaborative research and education projects at the NASA Centers; 4) development of teaching modules on such varied topics as volcanoes, landslides, and paleoclimate; and 5) a central web site that highlights resources for teaching introductory Earth system science. An outgrowth of Project ALERT is the increased interest on the part of CSU earth scientists in education issues. This has catalyzed their participation in other projects, including NASA's Project NOVA, Earth System Science Education Alliance, and Sun-Earth Connection Education Forum, the Digital Library for Earth System Science Education, and the California Science Project. Project ALERT has also expanded to provide professional development opportunities for in-service teachers, as exemplified by its support of the Bay Area Earth Science Institute (BAESI) at San Jose State University. Each year, BAESI offers 10-15 full-day workshops that supply teachers and teachers-to-be with a blend of science concepts and classroom activities, free instructional materials, and the opportunity to earn inexpensive university credit. These workshops have been enriched by the incorporation of earth and space science information and curricular materials from NASA. In addition, visits to Ames Research Center have given BAESI participants an opportunity to explore the Educator Resource Center, learn about NASA's programs for teachers and students, and experience presentations by NASA scientists engaged in cutting edge research about the earth system. Project ALERT demonstrates the power of a state-based partnership that unites scientists and educators with diverse perspectives and strengths in a synergistic effort to improve science education.

  17. Information Science Education in the United States: Characteristics and Curricula.

    ERIC Educational Resources Information Center

    Tenopir, Carol

    1985-01-01

    Defines information science; reviews currently available literature pertaining to information science education (directories, analytical articles, opinion papers); and discusses a study which surveys course offerings in information science to establish what currently constitutes a specialization in the field. Course descriptions in school catalogs…

  18. Teaching Science through Inquiry

    ERIC Educational Resources Information Center

    Wilcox, Jesse; Kruse, Jerrid W.; Clough, Michael P.

    2015-01-01

    Science education efforts have long emphasized inquiry, and inquiry and scientific practices are prominent in contemporary science education reform documents (NRC 1996; NGSS Lead States 2013). However, inquiry has not become commonplace in science teaching, in part because of misunderstandings regarding what it means and entails (Demir and Abell…

  19. Conceptions of systemic reform: California science education as an investigative example

    NASA Astrophysics Data System (ADS)

    Sachse, Thomas Paul

    This study explored three perspectives of systemic reform in the context of the California state strategies for improving science education. The three perspectives are those of conceptualizers, implementers, and government administrators. The California case study is examined during the ten-year period from 1983 to 1993. This study is of particular significance, because it examines science education reforms during the ten-year period of Bill Honig's state superintendency in the largest and most diverse state. By examining the facets of state science reforms from three rather different perspectives, the study contrasts how systemic reform definitions vary with role. This qualitative study employs document analysis, archival reviews, and participant interviews as the primary data collection methods. Document analysis included key curriculum frameworks, project proposals and reports, relevant legislation, and professional correspondence. Archival reviews included databases (such as the California Basic Educational Data System), assessment reports (such as the California Assessment Program---Rationale and Content), and policy analyses (such as the Policy Analysis for California Education---Conditions of Education). Interviews were conducted for each of the three perspectives across five segments of the reform strategy for a total of fifteen interviews. Data analysis consisted of combining detailed reviews of documents, archives, and interview information with an examination of perspectives, by role group. The study concludes with an analysis of how each role group perceived the facets of systemic reform in the context of the California case study of science education reform. In addition, the research points to "lessons learned", the strengths and weaknesses of systemic reform strategies at the state level. The study offers recommendations to other large-scale (state level) policy reformers interested in creating, sustaining, and maintaining lasting change.

  20. Visual Representations on High School Biology, Chemistry, Earth Science, and Physics Assessments

    ERIC Educational Resources Information Center

    LaDue, Nicole D.; Libarkin, Julie C.; Thomas, Stephen R.

    2015-01-01

    The pervasive use of visual representations in textbooks, curricula, and assessments underscores their importance in K-12 science education. For example, visual representations figure prominently in the recent publication of the Next Generation Science Standards (NGSS Lead States in Next generation science standards: for states, by states.…

  1. The 50th Anniversary of Brown v. Board of Education: Continued Impacts on Minority Life Science Education

    ERIC Educational Resources Information Center

    Ricks, Irelene

    2004-01-01

    This article provides a brief history of affirmative action in the United States. The author describes the impact of the "Brown v. Board of Education" on minority life science education. She also discusses how The American Society for Cell Biology (ASCB) Minorities Affairs Committee (MAC) can improve the minority science pipeline.…

  2. State Directories in Environmental Education, Volume III, U.S. Office of Education Regions IV and V.

    ERIC Educational Resources Information Center

    Disinger, John F.; Lee, Beverly M.

    This compilation is one of a series produced through the combined efforts of the United States Office of Education/Environmental Education, coordinators for environmental education in the various states, and the ERIC Center for Science, Mathematics, and Environmental Education, in an attempt to collect and detail environmental education efforts…

  3. Making Science Accessible to Students with Significant Cognitive Disabilities

    ERIC Educational Resources Information Center

    Andersen, Lori; Nash, Brooke

    2016-01-01

    The publication of A Framework for K-12 Science Education (National Research Council, 2012) and the Next Generation Science Standards (NGSS Lead States, 2013) have created a need for new alternate content standards and alternate assessments in science that are linked to the new general education science standards. This article describes how a…

  4. Inquiry-Based Science Education: A Scenario on Zambia's High School Science Curriculum

    ERIC Educational Resources Information Center

    Chabalengula, Vivien M.; Mumba, Frackson

    2012-01-01

    This paper is aimed at elucidating the current state of inquiry-based science education (IBSE) in Zambia's high school science curriculum. Therefore, we investigated Zambian teachers' conceptions of inquiry; determined inquiry levels in the national high school science curriculum materials, which include syllabi, textbooks and practical exams; and…

  5. Teaching the "Geo" in Geography with the Next Generation Science Standards

    ERIC Educational Resources Information Center

    Wysession, Michael E.

    2016-01-01

    The Next Generation Science Standards (NGSS; Achieve 2014, 532; Figure 1A) represent a new approach to K-12 science education that involves the interweaving of three educational dimensions: Science and Engineering Practices (SEPs), Disciplinary Core Ideas (DCIs), and Crosscutting Concepts (CCCs). Unlike most preexisting state science standards for…

  6. The Next Generation Science Standards: A potential revolution for geoscience education

    NASA Astrophysics Data System (ADS)

    Wysession, Michael E.

    2014-05-01

    The first and only set of U.S.-nationally distributed K-12 science education standards have been adopted by many states across America, with the potential to be adopted by many more. Earth and space science plays a prominent role in the new standards, with particular emphasis on critical Earth issues such as climate change, sustainability, and human impacts on Earth systems. In the states that choose to adopt the Next Generation Science Standards (NGSS), American youth will have a rigorous practice-based formal education in these important areas. Much work needs to be done to insure the adoption and adequate implementation of the NGSS by a majority of American states, however, and there are many things that Earth and space scientists can do to help facilitate the process.

  7. Emotional Climate and High Quality Learning Experiences in Science Teacher Education

    ERIC Educational Resources Information Center

    Bellocchi, Alberto; Ritchie, Stephen M.; Tobin, Kenneth; King, Donna; Sandhu, Maryam; Henderson, Senka

    2014-01-01

    The role of emotion during learning encounters in science teacher education is under-researched and under-theorized. In this case study, we explore the emotional climates (ECs), that is, the collective states of emotional arousal, of a preservice secondary science education class to illuminate practice for producing and reproducing high quality…

  8. Dialogue on Early Childhood Science, Mathematics, and Technology Education.

    ERIC Educational Resources Information Center

    American Association for the Advancement of Science, Washington, DC.

    Educators, scholars, and researchers in the United States convened at the Forum on Early Childhood Science, Mathematics, and Technology Education to discuss how, when, and even if science, mathematics, and technology should be taught to pre-kindergarten children. The product of that forum, this book summarizes some of the latest thinking about…

  9. Test Item Construction and Validation: Developing a Statewide Assessment for Agricultural Science Education

    ERIC Educational Resources Information Center

    Rivera, Jennifer E.

    2011-01-01

    The State of New York Agriculture Science Education secondary program is required to have a certification exam for students to assess their agriculture science education experience as a Regent's requirement towards graduation. This paper focuses on the procedure used to develop and validate two content sub-test questions within a…

  10. Science Education: An Emerging Crisis. Instructional Development Report.

    ERIC Educational Resources Information Center

    Shubert, L. Elliot

    This report is a compilation of presentations made at a symposium which focused on various topics and issues related to the current status of science and mathematics education at the national, state, and local levels. These presentations are: (1) "Growing Recognition of a Serious National Problem in Science Education" by M. Joan Parent…

  11. A program to enhance k-12 science education in ten rural New York school districts.

    PubMed

    Goodell, E; Visco, R; Pollock, P

    1999-04-01

    The Rural Partnership for Science Education, designed by educators and scientists in 1991 with funding from the National Institutes of Health, works in two rural New York State counties with students and their teachers from kindergarten through grade 12 to improve pre-college science education. The Partnership is an alliance among ten rural New York school districts and several New York State institutions (e.g., a regional academic medical center; the New York Academy of Sciences; and others), and has activities that involve around 4,800 students and 240 teachers each year. The authors describe the program's activities (e.g., summer workshops for teachers; science exploration camps for elementary and middle-school students; enrichment activities for high school students). A certified science education specialist directs classroom demonstrations throughout the academic year to support teachers' efforts to integrate hands-on activities into the science curriculum. A variety of evaluations over the years provides strong evidence of the program's effectiveness in promoting students' and teachers' interest in science. The long-term goal of the Partnership is to inspire more rural students to work hard, learn science, and enter the medical professions.

  12. Mobile STEMship Discovery Center: K-12 Aerospace-Based Science, Technology, Engineering, and Mathematics (STEM) Mobile Teaching Vehicle

    DTIC Science & Technology

    2015-08-03

    in the fields of science and engineering. Certified by the Space Foundation educational program, FOGE has afterschool programs, summer camps and... educators enjoyed the science center learning extremely well and 20% stated they enjoyed the science centers quite well. 90% of the participants felt...extremely satisfied about the science inspiration presented within the STEMShip. 10% felt quite satisfied and inspired. 70% of the educators felt the

  13. New Science Standards: A Readiness Assessment for State Boards of Education

    ERIC Educational Resources Information Center

    Center on Great Teachers and Leaders, 2015

    2015-01-01

    State implementation of new standards (revising, adapting, and adopting new standards) is a significant undertaking. Such an effort at the state level requires extensive support, planning, and resources. Implementing new state standards also requires the support of multiple education leaders--governors, legislators, state departments of education,…

  14. MSaTERs: Mathematics, Science, and Technology Educators & Researchers of The Ohio State University. Proceedings of the Annual Spring Conference (3rd, Columbus, OH, May 15, 1999).

    ERIC Educational Resources Information Center

    Costner, Kelly M., Ed.; Reed, Michelle K., Ed.

    The Mathematics, Science, and Technology Educators and Researchers of The Ohio State University (MSaTERs-OSU) is a student organization that grew out of the former OSU Council of Teachers of Mathematics (OSU-CTM). Papers from the third annual conference include: (1) "Gender, Ethnicity, and Science" (Terry Arambula-Greenfield); (2)…

  15. Science Technology Engineering and Math (STEM) Education MUST Begin in Early Childhood Education: A Systematic Analysis of Washington State Guidelines Used to Gauge the Development and Learning of Young Learners

    NASA Astrophysics Data System (ADS)

    Briseno, Luis Miguel

    This paper reflects future direction for early Science Technology Engineering and Mathematics (STEM) education, science in particular. Washington State stakeholders use guidelines including: standards, curriculums and assessments to gauge young children's development and learning, in early childhood education (ECE). Next Generation Science Standards (NGSS), and the Framework for K-12 programs (National Research Council, 2011) emphasizes the need for reconfiguration of standards: "Too often standards are a long list of detailed and disconnected facts... this approach alienates young people, it also leaves them with fragments of knowledge and little sense of the inherent logic and consistency of science and of its universality." NGSS' position elevates the concern and need for learners to experience teaching and learning from intentionally designed cohesive curriculum units, rather than as a series of unrelated and isolated lessons. To introduce the argument the present study seeks to examine Washington State early learning standards. To evaluate this need, I examined balance and coverage/depth. Analysis measures the level of continuum in high-quality guidelines from which Washington State operates to serve its youngest citizens and their families.

  16. A Blend of Romanism and Germanism: Experimental Science Instruction in Belgian State Secondary Education, 1880-1914

    NASA Astrophysics Data System (ADS)

    Onghena, Sofie

    2013-04-01

    A case study of secondary experimental science instruction in Belgium demonstrates the importance of cross-national communication in the study of science education. Belgian secondary science education in the years 1880-1914 had a clear internationalist dimension. French and German influences turn out to have been essential, stimulated by the fact that Belgium, as a result of its geographical position, considered itself as the centre of scientific relations between France and Germany, and as actually strengthened by its linguistic and cultural dualism in this regard. This pursuit of internationalist nationalism also affected the configuration of chemistry and physics as experimental courses at Belgian Royal State Schools, although the years preceding WWI are usually characterized as a period of rising nationalism in science, with countries such as Germany and France as prominent actors. To what extent did France and Germany influence Belgian debates on science education, science teachers' training, the use of textbooks, and the instalment of school laboratories and teaching collections?

  17. Diffusion of Knowledge in Britain and America: Some Historical Comparisons in Science Education between 1800 and 1920

    ERIC Educational Resources Information Center

    Palmer, Bill

    2007-01-01

    The aim of this paper is to consider some issues in the historical international development of science education making comparisons between the educational systems of Britain and the United States of America. The author's particular interest relates to the role of the textbook in science education, so this is area on which this study will…

  18. Impact of Texas high school science teacher credentials on student performance in high school science

    NASA Astrophysics Data System (ADS)

    George, Anna Ray Bayless

    A study was conducted to determine the relationship between the credentials held by science teachers who taught at a school that administered the Science Texas Assessment on Knowledge and Skills (Science TAKS), the state standardized exam in science, at grade 11 and student performance on a state standardized exam in science administered in grade 11. Years of teaching experience, teacher certification type(s), highest degree level held, teacher and school demographic information, and the percentage of students who met the passing standard on the Science TAKS were obtained through a public records request to the Texas Education Agency (TEA) and the State Board for Educator Certification (SBEC). Analysis was performed through the use of canonical correlation analysis and multiple linear regression analysis. The results of the multiple linear regression analysis indicate that a larger percentage of students met the passing standard on the Science TAKS state attended schools in which a large portion of the high school science teachers held post baccalaureate degrees, elementary and physical science certifications, and had 11-20 years of teaching experience.

  19. Participation in a Multi-Institutional Curriculum Development Project Changed Science Faculty Knowledge and Beliefs about Teaching Science

    ERIC Educational Resources Information Center

    Donovan, Deborah A.; Borda, Emily J.; Hanley, Daniel M.; Landel, Carolyn C.

    2015-01-01

    Despite significant pressure to reform science teaching and learning in K12 schools, and a concurrent call to reform undergraduate courses, higher education science content courses have remained relatively static. Higher education science faculty have few opportunities to explore research on how people learn, examine state or national science…

  20. Education science and biological anthropology.

    PubMed

    Krebs, Uwe

    2014-01-01

    This contribution states deficits and makes proposals in order to overcome them. First there is the question as to why the Biological Anthropology--despite all its diversifications--hardly ever deals with educational aspects of its subject. Second it is the question as to why Educational Science neglects or even ignores data of Biological Anthropology which are recognizably important for its subject. It is postulated that the stated deficits are caused by several adverse influences such as, the individual identity of each of the involved single sciences; aspects of the recent history of the German Anthropology; a lack of conceptual understanding of each other; methodological differences and, last but not least, the structure of the universities. The necessity to remedy this situation was deduced from two groups of facts. First, more recent data of the Biological Anthropology (e.g. brain functions and learning, sex specificity and education) are of substantial relevance for the Educational Science. Second, the epistemological requirements of complex subjects like education need interdisciplinary approaches. Finally, a few suggestions of concrete topics are given which are related to both, Educational Science and Biological Anthropology.

  1. ESSEA On-Line Courses and the WestEd Eisenhower Regional Consortium (WERC)

    NASA Astrophysics Data System (ADS)

    Rognier, E.

    2001-12-01

    The WestEd Eisenhower Regional Consortium (WERC) is in its second year of offering two Earth Systems Science On-line Graduate courses from IGES - one for High School teachers, and one for Middle School teachers. These high-quality courses support WERC's commitment to "supporting increased scientific and mathematical literacy among our nation's youth through services and other support aimed at enhancing the efforts of those who provide K-12 science and mathematics education." WERC has been able to use its EdGateway online community network to offer these courses to environmental education and science teachers nationwide. Through partnerships with the North American Association for Environmental Education (NAAEE), the National Environmental Education Advancement Project (NEEAP), and other regional, state and local science and environmental education organizations, WERC has a broad reach in connecting with science educators nationwide. WERC manages several state and national listservs, which enable us to reach thousands of educators with information about the courses. EdGateway also provides a private online community in which we offer the courses. WERC partners with two Master Teachers from Utah, who facilitate the courses, and with the Center for Science and Mathematics Education at Weber State University, who provides low-cost graduate credit for the courses. Our students have included classroom teachers from upper elementary through high school, community college science teachers, and environmental science center staff who provide inservice for teachers. Educators from Hawaii to New Jersey have provided diverse personal experiences of Earth Systems Science events, and add richness to the online discussions. Two Earth Science Experts, Dr. Rick Ford from Weber State University, and Dr. Art Sussman from WestEd also contribute to the high caliber of learning the students experience in the courses. (Dr. Sussman's book, Dr. Art's Guide to Planet Earth, is used as one of the texts for our courses.) This is our first effort in offering online courses, and we are learning valuable lessons about recruitment, retention, team-building, and facilitating discussions for classes with no "face to face" component. This format is both rich and challenging, with teammates from diverse geographic regions and timezones, with a variety of connectivity and accessibility issues. In this second year of offering the courses, we are pleased to have students referred by former participants, anxious to take this "highly recommended" course!

  2. Tracing the flow: Climate change actor-networks in Oklahoma secondary science education

    NASA Astrophysics Data System (ADS)

    Colston, Nicole Marie

    This dissertation reports research about the translation of climate change in science education. Public controversies about climate change education raises questions about the lived experiences of teachers in Oklahoma and the role of science education in increasing public understanding. A mixed methods research design included rhetorical analysis of climate change denial media, key informant interviews with science education stakeholders, and a survey questionnaire of secondary science teachers. Final analysis was further informed by archival research and supplemented by participant observation in state-wide meetings and science teacher workshops. The results are organized into three distinct manuscripts intended for publication across the fields of communication, science education, and climate science. As a whole the dissertation answers the research question, how does manufactured scientific controversy about climate change present specific challenges and characterize negotiations in secondary science education in Oklahoma? Taken together, the findings suggest that manufactured controversy about climate change introduces a logic of non-problematicity, challenges science education policy making, and undermines scientific consensus about global warming.

  3. THE JUNIOR COLLEGE AND EDUCATION IN THE SCIENCES. THIRD REPORT IN A SERIES PREPARED FOR THE SUBCOMMITTEE ON SCIENCE, RESEARCH, AND DEVELOPMENT OF THE COMMITTEE ON SCIENCE AND ASTRONAUTICS OF THE U.S. HOUSE OF REPRESENTATIVES. (TITLE SUPPLIED).

    ERIC Educational Resources Information Center

    HAWORTH, LELAND J.

    THIS THIRD REPORT ON SCIENCE EDUCATION IN THE U.S. RAISES THREE ISSUES FOR THE JUNIOR COLLEGE--(1) IS IT A DISCRETE RESOURCE IN THE ADVANCEMENT OF SCIENCE EDUCATION, (2) DOES IT REQUIRE A UNIQUE SCIENCE CURRICULUM, AND (3) HOW SHOULD ITS SCIENCE INSTRUCTORS BE PREPARED. UNDER THE COUNCIL OF STATE GOVERNMENTS'"MODEL LAW" (1965), THE COMPREHENSIVE,…

  4. Women and girls in science education: Female teachers' and students' perspectives on gender and science

    NASA Astrophysics Data System (ADS)

    Crotty, Ann

    Science is a part of all students' education, PreK-12. Preparing students for a more scientifically and technologically complex world requires the best possible education including the deliberate inclusion and full contributions of all students, especially an underrepresented group: females in science. In the United States, as elsewhere in the world, the participation of girls and women in science education and professional careers in science is limited, particularly in the physical sciences (National Academy of Sciences [NAS], 2006). The goal of this research study is to gain a better understanding of the perspectives and perceptions of girls and women, both science educators and students, related to gender and participation in science at the time of an important course: high school chemistry. There is a rich body of research literature in science education that addresses gender studies post---high school, but less research that recognizes the affective voices of practicing female science teachers and students at the high school level (Bianchini, Cavazos, & Helms, 2000; Brown & Gilligan, 1992; Gilligan, 1982). Similarly, little is known with regard to how female students and teachers navigate their educational, personal, and professional experiences in science, or how they overcome impediments that pose limits on their participation in science, particularly the physical sciences. This exploratory study focuses on capturing voices (Brown & Gilligan, 1992; Gilligan, 1982) of high school chemistry students and teachers from selected urban and suburban learning communities in public schools in the Capital Region of New York State. Through surveys, interviews, and focus groups, this qualitative study explores the intersection of the students' and teachers' experiences with regard to the following questions: (1) How do female chemistry teachers view the role gender has played in their professional and personal lives as they have pursued education, degree status, and professional careers in science? (2) How do female chemistry students perceive their educational experiences in science? Implications of the study serve to inform and raise the awareness of science educators and other stakeholders about improving and enhancing the participation of females in science (National Science Foundation [NSF], 2002; National Research Council [NRC], 2006).

  5. Teacher Perceptions of Inquiry and STEM Education in Bangladesh

    NASA Astrophysics Data System (ADS)

    Shahidullah, Kazi K.

    This dissertation reports lower secondary science teachers perceptions of current practice in Dhaka, Bangladesh concerning inquiry and STEM Education in order to establish a baseline of data for reform of science education in Bangladesh. Bangladesh has been trying to incorporate inquiry-based science curricula since the 1970s. Over time, the science curricula also aligned with different international science education movements such as Science for All, Scientific Literacy, Science, Technology, and Society. Science, Technology, Engineering, and Mathematics (STEM) is the most recent science education movement in international science education. This study explored current practices and perceptions of lower secondary science teachers in order to establish a baseline of current practice so that future reform recommendations may be pursued and recommendations made for Bangladesh to overcome the inquiry-based challenges and to incorporate new STEM-based science education trends happening in the US and throughout the world. The study explored science teachers perceptions and readiness to transform their science classrooms based on self-reported survey. The survey utilized Likert-type scale with range 1 (very strongly disagree) to 6 (very strongly agree) among four hundred lower secondary science teachers, teacher training college faculty, and university faculty. The data is presented in four different categories: curriculum, instruction, assessment, and professional development. Results indicated that the participants understand and practice a certain level of inquiry in their science classrooms, though they do not have adequate professional development. Participants also stated that they do not have sufficient instructional materials and the curriculum is not articulated enough to support inquiry. On the other hand, the participants reported that they understand and practice a certain degree of inquiry and STEM-based science education, but they also state that the current curriculum and instructional materials are not sufficient to practice inquiry nor to integrate more than one or two disciplines with science as is required in STEM integrated teaching. Finally, this study recommends a framework for science education reform for Bangladesh based upon a combination of successful international science education reformation practices.

  6. Creating a Library of Climate Change Education Resources for Audiences in the Southeast United States

    NASA Astrophysics Data System (ADS)

    Carroll, J.; McNeal, K. S.; Williams, C. C.; Paz, J. O.; Cho, H. "; Nair, U. S.; Geroux, J.; Guthrie, C.; Wright, K.; Hill, J.

    2011-12-01

    The Climate Literacy Partnership in the Southeast (CLiPSE) is a part of the Climate Change Education Program supported by the National Science Foundation (http://CLiPSE-project.org). The established CLiPSE partnership is dedicated to improving climate literacy in the southeast and promoting scientifically accurate, formal educational resources for the K-12 classroom audience, as well as informal educational resources for audiences such as agriculture, education, leisure, and religious organizations, to name a few. The CLiPSE project has been successful in creating partnerships with the National Geographic Alliances, Departments of Education, and Mississippi Environmental Education Alliance, among others, to determine an effective strategic plan for reaching K-12 audiences. One goal in the strategic plan is to create a catalog of climate change education resources that are aligned to state standards in the SE. Eighty-seven resources from the Climate Literacy and Energy Awareness Network (http://cleanet.org) have been aligned with the state education standards for grades six through twelve in the southeast, beginning with science in Mississippi and expanding to include science and math in the remaining SE states. The criteria for aligning the existing resources includes: matching key terms, topics, and lesson activities with the content strands and essential skills included in the state science framework. By developing a searchable database containing climate resources already aligned with state standards, CLiPSE will have made these resources more appealing to educators in the SE, increasing the likelihood of resources being implemented in the classroom. The CLiPSE Climate Science Team has also created an inventory of scientifically sound, informal resources, which will be available for dispersion to appropriate audiences and communities. Cataloged resources, both formal and informal, grouped by a variety of means, to include audience, grade level, and resource origin (e.g. government agency, organization, museum, climate-related websites, etc.), will be made available to the public through the CLiPSE website, promoting accessibility of these resources to the various CLiPSE publics. The process of alignment and vetting will be discussed in this paper, along with the information and education "gaps" that exist for the specific CLiPSE audiences in the SE US.

  7. The who, what, and how of evaluation within online nursing education: state of the science.

    PubMed

    Russell, Bedelia H

    2015-01-01

    The resource capacity in nursing programs has a direct impact on student admissions and number of graduates who enter the nursing workforce. Online delivery of nursing education is identified as a solution to expand nursing program capacity. As nursing programs continue to address capacity with online course delivery, it is essential that nurse educators maintain consistent evaluation practices to ensure successful and positive outcomes, compared with traditional models. Evaluation is a central component to determine program quality and mastery of learning outcomes. This article examines the state of the science around the current evaluation of educational practices, instructional strategies, and outcomes within the context of online nursing education. Thirty-six articles met the inclusion criteria. Despite substantive contributions to the state of the science, the findings reflect evaluation practices that are diffuse and superficial and serve as the basis for future recommendations and research opportunities. Copyright 2015, SLACK Incorporated.

  8. 77 FR 58110 - Notice of Submission for OMB Review; Institute of Education Sciences; NPEFS 2011-2014: Common...

    Federal Register 2010, 2011, 2012, 2013, 2014

    2012-09-19

    ... DEPARTMENT OF EDUCATION Notice of Submission for OMB Review; Institute of Education Sciences; NPEFS 2011-2014: Common Core of Data (CCD) National Public Education Financial Survey SUMMARY: The National Public Education Financial Survey (NPEFS) is an annual collection of state-level finance data that...

  9. Science and Mathematics Education. Education Policy White Paper

    ERIC Educational Resources Information Center

    Kilpatrick, Jeremy, Ed.; Quinn, Helen, Ed.

    2009-01-01

    Not since the launch of the Soviet Sputnik satellite spurred the federal government to begin investing in science and mathematics education through the National Defense Education Act have these two areas of the school curriculum been so high on state and federal policy agendas. Policy makers, business leaders, educators, and the media again worry…

  10. A Science Educator's and a Psychologists' Perspective on Research about Science Anxiety.

    ERIC Educational Resources Information Center

    Westerback, Mary E.; Primavera, Louis H.

    This document reviews the research related to students' and teachers' anxiety related to science and the teaching of science in order to better understand the relationships between the variables that can predict this phenomenon. The research reports reviewed used either the Science State Trait Anxiety Inventory or the Science Teaching State Trait…

  11. Inspiring the Next Generation of Innovators: Students, Parents and Educators Speak up about Science Education

    ERIC Educational Resources Information Center

    Farris-Berg, Kim

    2008-01-01

    This report presents the findings from Project Tomorrow's 2007 Speak Up Survey, informing international discussions about how to improve science learning in the 21st century through an exploration of student, teacher, parent, and school leader attitudes about science education. Project Tomorrow administered its survey in all 50 United States, the…

  12. Impact of an Engineering Design-Based Curriculum Compared to an Inquiry-Based Curriculum on Fifth Graders' Content Learning of Simple Machines

    ERIC Educational Resources Information Center

    Marulcu, Ismail; Barnett, Michael

    2016-01-01

    Background: Elementary Science Education is struggling with multiple challenges. National and State test results confirm the need for deeper understanding in elementary science education. Moreover, national policy statements and researchers call for increased exposure to engineering and technology in elementary science education. The basic…

  13. Determining Paths to Success: Preparing Students for Experimental Design Questions on Standardized Tests

    ERIC Educational Resources Information Center

    Turner, Matthew J.; Rios, Jose M.

    2008-01-01

    Recent education reform efforts are at the forefront of educators' minds across the nation, science teachers notwithstanding. At least 48 states have developed a mandated standardized test, the majority of which also publish an individual school proficiency report. Washington State's new standardized science test is an example of such reforms…

  14. STEM Education and Leadership: A Mathematics and Science Partnership Approach

    ERIC Educational Resources Information Center

    Merrill, Chris; Daugherty, Jenny

    2010-01-01

    The issue of attracting more young people to choose careers in science, technology, engineering, and mathematics (STEM) has become critical for the United States. Recent studies by businesses, associations, and education have all agreed that the United States' performance in the STEM disciplines have placed the nation in grave risk of…

  15. Student Perceptions of a Summer Ventures in Science and Mathematics Camp Experience

    ERIC Educational Resources Information Center

    Binns, Ian C.; Polly, Drew; Conrad, James; Algozzine, Bob

    2016-01-01

    "As the world becomes increasingly technological, the value of (the ideas and skills of its population) will be determined in no small measure by the effectiveness of science, technology, engineering, and mathematics (STEM) education in the United States" and "STEM education will determine whether the United States will remain a…

  16. An Update on the Status of Anatomical Sciences Education in United States Medical Schools

    ERIC Educational Resources Information Center

    Drake, Richard L.; McBride, Jennifer M.; Pawlina, Wojciech

    2014-01-01

    Curricular changes continue at United States medical schools and directors of gross anatomy, microscopic anatomy, neuroscience/neuroanatomy, and embryology courses continue to adjust and modify their offerings. Developing and supplying data related to current trends in anatomical sciences education is important if informed decisions are going to…

  17. Is the Crisis in Science Education Continuing? Current Senior Secondary Science Enrolment and Tertiary Entrance Trends in Western Australia

    ERIC Educational Resources Information Center

    Venville, Grady

    2008-01-01

    In May 2007 an issue of the "Australian Education Review" was released reporting on the state of science education in Australia. The report argued that we are in the advanced stages of a crisis in school science that threatens the future of Australia as a technologically advanced nation, and we need to change the way we think about the…

  18. Between training and popularization: Regulating science textbooks in secondary education.

    PubMed

    Shapiro, Adam R

    2012-03-01

    Recruitment into the scientific community is one oft-stated goal of science education--in the post-Sputnik United States, for example--but this obscures the fact that science textbooks are often read by people who will never be scientists. It cannot be presupposed that science textbooks for younger audiences, students in primary and secondary schools, function in this way. For this reason, precollegiate-level science textbooks are sometimes discussed as a subset of literature popularizing science. The high school science classroom and the textbook are forums for exposing the public to science. The role of governments and educational institutions in regulating the consumption of these texts not only determines which books are used; it influences how they are written, read, and deemed authoritative. Therefore such science textbooks should not be seen as (at best) the disjunction of texts-for-training and books-for-popularization. A changing sense of what "textbooks" are compels a different understanding of their use in the history of science.

  19. The State of State Science Standards, 2012

    ERIC Educational Resources Information Center

    Lerner, Lawrence S.; Goodenough, Ursula; Lynch, John; Schwartz, Martha; Schwartz, Richard

    2012-01-01

    This report examines K-12 science standards for fifty states and the District of Columbia, as well as the science assessment framework of the National Assessment of Educational Progress (NAEP). The reviewers' aim is to evaluate them for their intrinsic clarity, completeness, and scientific correctness. Their earlier evaluations, as well as those…

  20. Bioinformatics in High School Biology Curricula: A Study of State Science Standards

    ERIC Educational Resources Information Center

    Wefer, Stephen H.; Sheppard, Keith

    2008-01-01

    The proliferation of bioinformatics in modern biology marks a modern revolution in science that promises to influence science education at all levels. This study analyzed secondary school science standards of 49 U.S. states (Iowa has no science framework) and the District of Columbia for content related to bioinformatics. The bioinformatics…

  1. Scientists and K-12: Experience from The Science House

    NASA Astrophysics Data System (ADS)

    Haase, David G.

    2003-03-01

    In working with K-12 science and mathematics education, scientists may take on many different roles - from presenter to full-time partner. These roles are illustrated in the activities of The Science House, a K-12 education program of North Carolina State University, (www.science-house.org) which partners with teachers and students across the state to promote inquiry-based learning in mathematics and science. While it is important to involve scientists in K-12, most universities do not have effective means to make the connections. In our efforts to do so, which began with a few teacher workshops and now encompasses six offices across NC, we have sought to join the interests of the university (research, teaching, student recruiting) to the needs of K-12. Our programs now include teacher training workshops, student science camps and curriculum projects in several states. We are reminded that K-12 science education is interdisciplinary; local and political; and a process, not a problem to be solved and forgotten. Partially supported by NSF (CHE-9876674 and DBI-0115462), the Howard Hughes Medical Institute and the Burroughs Wellcome Fund.

  2. Developing Learning Progressions in Support of the New Science Standards: A RAPID Workshop Series

    ERIC Educational Resources Information Center

    Rogat, Aaron

    2011-01-01

    The hypothetical learning progressions presented here are the products of the deliberations of two working groups of science education researchers, each group also including a state science curriculum supervisor, organized by the Consortium for Policy Research in Education (CPRE), with support from the National Science Foundation. Their charge was…

  3. Student Interest in Engineering Design-Based Science

    ERIC Educational Resources Information Center

    Selcen Guzey, S.; Moore, Tamara J.; Morse, Gillian

    2016-01-01

    Current reform efforts in science education around the world call on teachers to use integrated approaches to teach science. As a part of such reform efforts in the United States, engineering practices and engineering design have been identified in K-12 science education standards. However, there is relatively little is known about effective ways…

  4. Learning to Teach Elementary Science in an Experiential, Informal Context: Culture, Learning, and Identity

    ERIC Educational Resources Information Center

    Wallace, Carolyn S.; Brooks, Lori

    2015-01-01

    Lack of time for teaching science in traditional classroom placements in the United States has led some science teacher educators to provide practice teaching time for elementary education students in informal science settings. The purposes of this study were to describe the culture of one science methods course taught in conjunction with a K-7…

  5. Understanding Standards and Assessment Policy in Science Education: Relating and Exploring Variations in Policy Implementation by Districts and Teachers in Wisconsin

    NASA Astrophysics Data System (ADS)

    Anderson, Kevin John Boyett

    Current literature shows that many science teachers view policies of standards-based and test-based accountability as conflicting with research-based instruction in science education. With societal goals of improving scientific literacy and using science to spur economic growth, improving science education policy becomes especially important. To understand perceived influences of science education policy, this study looked at three questions: 1) How do teachers perceive state science standards and assessment and their influence on curriculum and instruction? 2) How do these policy perspectives vary by district and teacher level demographic and contextual differences? 3) How do district leaders' interpretations of and efforts within these policy realms relate to teachers' perceptions of the policies? To answer these questions, this study used a stratified sample of 53 districts across Wisconsin, with 343 middle school science teachers responding to an online survey; science instructional leaders from each district were also interviewed. Survey results were analyzed using multiple regression modeling, with models generally predicting 8-14% of variance in teacher perceptions. Open-ended survey and interview responses were analyzed using a constant comparative approach. Results suggested that many teachers saw state testing as limiting use of hands-on pedagogy, while standards were seen more positively. Teachers generally held similar views of the degree of influence of standards and testing regardless of their experience, background in science, credentials, or grade level taught. District SES, size and past WKCE scores had some limited correlations to teachers' views of policy, but teachers' perceptions of district policies and leadership consistently had the largest correlation to their views. District leadership views of these state policies correlated with teachers' views. Implications and future research directions are provided. Keywords: science education, policy, accountability, standards, assessment, district leadership

  6. A Leadership Model for University Geology Department Teacher Inservice Programs.

    ERIC Educational Resources Information Center

    Sheldon, Daniel S.; And Others

    1983-01-01

    Provides geology departments and science educators with a leadership model for developing earth science inservice programs. Model emphasizes cooperation/coordination among departments, science educators, and curriculum specialists at local/intermediate/state levels. Includes rationale for inservice programs and geology department involvement in…

  7. Science Education and the Emergence of the Specialized Scientist in Nineteenth Century Greece

    NASA Astrophysics Data System (ADS)

    Tampakis, Konstantinos

    2013-04-01

    In this paper, I describe the strong and reciprocal relations between the emergence of the specialized expert in the natural sciences and the establishment of science education, in early Modern Greece. Accordingly, I show how science and public education interacted within the Greek state from its inception in the early 1830, to the first decade of the twentieth century, when the University of Athens established an autonomous Mathematics and Physics School. Several factors are taken into account, such as the negotiations of Western educational theories and practices within a local context, the discourses of the science savants of the University of Athens, the role of the influential Greek pedagogues of the era, the state as an agent which imposed restrictions or facilitated certain developments and finally the intellectual and cultural aspirations of the nation itself. Science education is shown to be of fundamental importance for Greek scientists. The inclusion of science within the school system preceded and promoted the appearance of a scientific community and the institution of science courses was instrumental for the emergence of the first trained Greek scientists. Thus, the conventional narrative that would have science appearing in the classrooms as an aftermath of the emergence of a scientific community is problematized.

  8. The Illinois Articulation Initiative Major Fields Panels' Recommendations for Business, Clinical Laboratory Science, Education--Early Childhood, Education--Elementary, Education--Secondary, Music, Nursing, Psychology.

    ERIC Educational Resources Information Center

    Illinois Community Coll. Board, Springfield.

    Developed by the Illinois Articulation Initiative (IAI), this report provides recommendations for improving articulation through state high schools, community colleges, and institutions of higher education. The recommendations are presented by field of study for business, clinical laboratory science, early childhood education, elementary…

  9. ICT Use in Preschool Science Education: A Case Study of Some Private Nursery Schools in Ekiti State

    ERIC Educational Resources Information Center

    Oluwadare, Feyisetan Adijatu

    2015-01-01

    This research reveals ICT uses in Ekiti preschool education and explores this use of ICT for science education. This case study is part of a wider research project concerning the use of Information and Communication Technologies (ICT) for teaching main natural science's concepts and mathematics in early year's classroom. The study was conducted…

  10. Examining the Extent to Which Select Teacher Preparation Experiences Inform Technology and Engineering Educators' Teaching of Science Content and Practices

    ERIC Educational Resources Information Center

    Love, Tyler S.

    2015-01-01

    With the recent release of the "Next Generation Science Standards" (NGSS) (NGSS Lead States, 2014b) science educators were expected to teach engineering content and practices within their curricula. However, technology and engineering (T&E) educators have been expected to teach content and practices from engineering and other…

  11. Shaping the Future: New Expectations for Undergraduate Education in Science, Mathematics, Engineering, and Technology.

    ERIC Educational Resources Information Center

    National Science Foundation, Washington, DC. Directorate for Education and Human Resources.

    This is the final report of an intensive review of the state of undergraduate education in science, mathematics, engineering and technology (SME&T) in America. It was conducted by a committee of the Advisory Committee to the Education and Human Resources Directorate of the National Science Foundation (NSF). The year-long review has revealed…

  12. Hannah's Prior Knowledge about Chemicals: A Case Study of One Fourth-Grade Child

    ERIC Educational Resources Information Center

    Bretz, Stacey Lowery; Emenike, Mary Elizabeth

    2012-01-01

    Chemical principles are taught in elementary education across much of the United States because the "National Science Education Standards" include concepts about the nature of matter, states of matter, and changes in matter among other science concepts within the first to fifth grade levels. "Chemicals" is a word related to the nature of matter…

  13. Gaming as a Platform for the Development of Innovative Problem-Based Learning Opportunities

    ERIC Educational Resources Information Center

    Echeverri, J. Felipe; Sadler, Troy D.

    2011-01-01

    The state of education in the United States, particularly in the areas of science, mathematics and technology, has been a consistent source of concern since at least the early 1980s when student performance on the 1986 National Assessment of Educational Progress (NAEP) revealed that science proficiency was lower than comparable measures from the…

  14. University and Elementary School Perspectives of Ideal Elementary Science Teacher Knowledge, Skills, and Dispositions

    NASA Astrophysics Data System (ADS)

    Sewart, Bethany Bianca

    Teacher education knowledge, skills, and dispositions have recently become a well-discussed topic among education scholars around the nation, mainly due to its attention by the National Council for Accreditation of Teacher Education (NCATE) over the past few years. Accrediting agencies, such as NCATE and the Interstate New Teacher and Assessment and Support Consortium (INTASC), have sought to improve the quality of teacher education programs by examining knowledge, skills, and dispositions as factors in preparing highly-qualified teachers. There is a paucity of research examining these factors for elementary science teachers. Because these factors influence instruction, and students are behind in scientific and mathematical knowledge, elementary science teachers should be studied. Teacher knowledge, skills, and dispositions should be further researched in order to ultimately increase the quality of teachers and teacher education programs. In this particular case, by determining what schools of education and public schools deem important knowledge, skills, and dispositions needed to teach science, higher education institutions and schools can collaborate to further educate these students and foster the necessary qualities needed to teach effectively. The study of knowledge, skills, and dispositions is crucial to nurturing effective teaching within the classroom. Results from this study demonstrated that there were prominent knowledge, skills, and dispositions identified by teachers, administrators, and science teacher educators as important for effective teaching of elementary science. These characteristics included: a willingness to learn, or open-mindedness; content knowledge; planning, organization, and preparation; significance of teaching science; and science-related assessment strategies. Interestingly, administrators in the study responded differently than their counterparts in the following areas: their self-evaluation of teacher effectiveness; how the teaching of science is valued; the best approach to science teaching; and planning for science instruction. When asked of their teaching effectiveness while teaching science, principals referred to enjoying science teaching and improving their practice, while teachers and science teacher educators discussed content knowledge. Administrators valued conducting experiments and hands-on science while teaching science, while their educational counterparts valued creating student connections and providing real-life applications to science for students. In their professional opinions, administrators preferred a hands-on approach to science teaching. Teachers and science teacher educators stated that they view scientific inquiry, exploration, and discovery as effective approaches to teaching within their classrooms. Administrators predicted that teachers would state that lack of resources affects their lesson planning in science. However, teachers and science teacher educators asserted that taking time to plan for science instruction was most important.

  15. Seeing Students Learn Science: Integrating Assessment and Instruction in the Classroom

    ERIC Educational Resources Information Center

    Beatty, Alexandra; Schweingruber, Heidi

    2017-01-01

    Science educators in the United States are adapting to a new vision of how students learn science. Children are natural explorers and their observations and intuitions about the world around them are the foundation for science learning. Unfortunately, the way science has been taught in the United States has not always taken advantage of those…

  16. From Prescribed Curriculum to Classroom Practice: An Examination of the Implementation of the New York State Earth Science Standards

    ERIC Educational Resources Information Center

    Contino, Julie; Anderson, O. Roger

    2013-01-01

    In New York State (NYS), Earth science teachers use the "National Science Education Standards" (NSES), the NYS "Learning Standards for Mathematics, Science and Technology" (NYS Standards), and the "Physical Setting/Earth Science Core Curriculum" (Core Curriculum) to create local curricula and daily lessons. In this…

  17. 7 CFR 3406.13 - Content of a teaching proposal.

    Code of Federal Regulations, 2012 CFR

    2012-01-01

    ... project will strengthen higher education in the food and agricultural sciences in the United States; a... higher education in the food and agricultural sciences. (iv) Products and results. Explain the kinds of results and products expected and their impact on strengthening food and agricultural sciences higher...

  18. 7 CFR 3406.13 - Content of a teaching proposal.

    Code of Federal Regulations, 2011 CFR

    2011-01-01

    ... project will strengthen higher education in the food and agricultural sciences in the United States; a... higher education in the food and agricultural sciences. (iv) Products and results. Explain the kinds of results and products expected and their impact on strengthening food and agricultural sciences higher...

  19. 7 CFR 3406.13 - Content of a teaching proposal.

    Code of Federal Regulations, 2013 CFR

    2013-01-01

    ... project will strengthen higher education in the food and agricultural sciences in the United States; a... higher education in the food and agricultural sciences. (iv) Products and results. Explain the kinds of results and products expected and their impact on strengthening food and agricultural sciences higher...

  20. 7 CFR 3406.13 - Content of a teaching proposal.

    Code of Federal Regulations, 2014 CFR

    2014-01-01

    ... project will strengthen higher education in the food and agricultural sciences in the United States; a... higher education in the food and agricultural sciences. (iv) Products and results. Explain the kinds of results and products expected and their impact on strengthening food and agricultural sciences higher...

  1. Developing Science Education Policies: How Far Is It Evidence-Based?

    ERIC Educational Resources Information Center

    Oversby, John; McGregor, Deb

    2012-01-01

    Construction of science education policy is, for most practising educators, somewhat shrouded in mist. Policies are currently conveyed by the present Secretary of State with responsibility for education through presentations of governmental papers and curricular documents. While it may seem strange that a politician can be elected one day, and…

  2. Trained in Science-Base Field: Change of Specialization among Educated Women in Malaysia

    ERIC Educational Resources Information Center

    Amin, Suhaida Mohd; Satar, Nurulhuda Mohd; Yap, Su Fei

    2015-01-01

    The theoretical model for economic development states that development in science and technology is the key to increased productivity. Upon realizing this, the Malaysian government has targeted 60 to 40 per cent of students for Science to Arts field at the tertiary level of education. However the rate of participation in science-based programs…

  3. Exploring How Research Experiences for Teachers Changes Their Understandings of the Nature of Science and Scientific Inquiry

    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…

  4. Enhancing Use of Learning Sciences Research in Planning for and Supporting Educational Change: Leveraging and Building Social Networks

    ERIC Educational Resources Information Center

    Penuel, William R.; Bell, Philip; Bevan, Bronwyn; Buffington, Pam; Falk, Joni

    2016-01-01

    This paper explores practical ways to engage two areas of educational scholarship--research on science learning and research on social networks--to inform efforts to plan and support implementation of new standards. The standards, the "Next Generation Science Standards" (NGSS; NGSS Lead States in Next generation science standards: For…

  5. Computer Science in High School Graduation Requirements. ECS Education Trends (Updated)

    ERIC Educational Resources Information Center

    Zinth, Jennifer

    2016-01-01

    Allowing high school students to fulfill a math or science high school graduation requirement via a computer science credit may encourage more student to pursue computer science coursework. This Education Trends report is an update to the original report released in April 2015 and explores state policies that allow or require districts to apply…

  6. Using Food Science Demonstrations to Engage Students of All Ages in Science, Technology, Engineering, and Mathematics (STEM)

    ERIC Educational Resources Information Center

    Schmidt, Shelly J.; Bohn, Dawn M.; Rasmussen, Aaron J.; Sutherland, Elizabeth A.

    2012-01-01

    The overarching goal of the Science, Technology, Engineering, and Mathematics (STEM) Education Initiative is to foster effective STEM teaching and learning throughout the educational system at the local, state, and national levels, thereby producing science literate citizens and a capable STEM workforce. To contribute to achieving this goal, we…

  7. Editorial: Boxed In or Coming Out? On the Treatment of Science, Technology, and Gender in Educational Research.

    ERIC Educational Resources Information Center

    Henwood, Flis; Miller, Katrina

    2001-01-01

    This theme issue examines the treatment of science, technology, and gender in educational research, presenting perspectives from mainland Europe, the United States, New Zealand, and the United Kingdom. Articles focus on mainstreaming gender equality in science, interrogating the masculinist and heteronormative nature of elementary school science,…

  8. Environmental Education, K-12.

    ERIC Educational Resources Information Center

    Thomson, Janet

    The Environmental Education program of Great Falls Public Schools, which was Montana's state winner in the National Science Teacher Association 1986 Search for Excellence in Science Education, is described in this report. An overview is presented of the district's policies, administrative procedures, staff development plans, and curriculum and…

  9. Training of physicians for the twenty-first century: role of the basic sciences.

    PubMed

    Grande, Joseph P

    2009-09-01

    Rapid changes in the healthcare environment and public dissatisfaction with the cost and quality of medical care have prompted a critical analysis of how physicians are trained in the United States. Accrediting agencies have catalyzed a transformation from a process based to a competency-based curriculum, both at the undergraduate and the graduate levels. The objective of this overview is to determine how these changes are likely to alter the role of basic science in medical education. Policy statements related to basic science education from the National Board of Medical Examiners (NBME), the Accreditation Council for Graduate Medical Education (ACGME), American Board of Medical Specialties (ABMS), and the Federation of State Medical Boards (FSMB) were reviewed and assessed for common themes. Three primary roles for the basic sciences in medical education are proposed: (1) basic science to support the development of clinical reasoning skills; (2) basic science to support a critical analysis of medical and surgical interventions ("evidence-based medicine"); and (3) basic and translational science to support analysis of processes to improve healthcare ("science of healthcare delivery"). With these roles in mind, several methods to incorporate basic sciences into the curriculum are suggested.

  10. MSaTERs: Mathematics, Science, and Technology Educators & Researchers of The Ohio State University. Proceedings of the Annual Spring Conference (5th, Columbus, Ohio, May 5, 2001).

    ERIC Educational Resources Information Center

    Herman, Marlena F., Ed.

    The Mathematics, Science, and Technology Educators and Researchers of The Ohio State University (MSaTERs-OSU) is a student organization that grew out of the former Ohio State University Council of Teachers of Mathematics (OSU-CTM). Papers from the fifth annual conference include: (1) "Models of the Structure of Matter: Why Should We Care…

  11. STEM: Science Technology Engineering Mathematics. State-Level Analysis

    ERIC Educational Resources Information Center

    Carnevale, Anthony P.; Smith, Nicole; Melton, Michelle

    2011-01-01

    The science, technology, engineering, and mathematics (STEM) state-level analysis provides policymakers, educators, state government officials, and others with details on the projections of STEM jobs through 2018. This report delivers a state-by-state snapshot of the demand for STEM jobs, including: (1) The number of forecast net new and…

  12. Instructional Models for the Acquisition of English as Bridges into School Science: Effects on the Science Achievement of U.S. Hispanic English Language Learners

    ERIC Educational Resources Information Center

    McEneaney, Elizabeth H.; López, Francesca; Nieswandt, Martina

    2014-01-01

    Science educators have suggested that, for minority and low-income students, gaps between home and school science cultures necessitate "border crossing" for successful learning in science. Our analysis used National Assessment of Educational Progress 2000 and 2005 data to assess the impact of U.S. state-level policy regarding…

  13. Evaluation of Online Teacher and Student Materials for the Framework for K-12 Science Education Science and Engineering Crosscutting Concepts

    ERIC Educational Resources Information Center

    Schwab, Patrick

    2013-01-01

    The National Research Council developed and published the "Framework for K-12 Science Education," a new set of concepts that many states were planning on adopting. Part of this new endeavor included a set of science and engineering crosscutting concepts to be incorporated into science materials and activities, a first in science…

  14. Making connections: Exploring student agency in a science classroom in India

    NASA Astrophysics Data System (ADS)

    Sharma, Ajay

    India has been a free country for more than half a century now. In this time, the state has succeeded to a large extent in providing universal access to at least elementary education to all the citizens. However, the quality of education provided in state-run schools remains far removed from the ideals endorsed in policy documents. The vast majority of Indian poor, especially in rural areas, depend upon state-run schools for access to education. However, the low quality of education provided in these schools militates against their hopes and efforts for securing a better future through education. Undergirded by concerns over the raw deal students of government run schools get in rural India, this study is an ethnographic exploration of science learning in a rural middle school classroom in India. The study was conducted in the government middle school at the village Rajkheda, in the Hoshangabad district of the state of Madhya Pradesh, India. The study focused on the nature and scope of student participation in a middle school science classroom of rural school in India. Taking a socio-cultural perspective, it explored student participation in science classroom as engagement in a socioculturally mediated dialogue with the natural and the social world. Thus, two parallel yet intersecting themes run through the narrative this study presents. On one hand, it focuses on students' efforts to both learn and survive science as taught in that school. While on the other, it details the nature of their engagement with and knowledge of their immediate material world. The study shows that through active engagement with their local material and social world, students of the 8th grade had acquired an extensive, useful and situated funds of experiential knowledge that enabled them to enact their agency in the material world around them. This knowledge revealed itself differently in different contexts. Their knowledge representations about school science and the material world were situated improvised responses to ongoing dialogues that enabled them to survive, negotiate and maneuver their way through their immediate social world. Inside the science classroom, students negotiated their roles as students in a varied, improvised, and contingent manner. Further, whenever the constraints and affordances of the local situation and the resources at their disposal made it feasible, students exercised their social agency to selectively appropriate school science discourse for their own out-of-school purposes. The science teacher did much to encourage this contingent and situated emergence of students' social agency. However, the extant teacher professional and school science discourses allowed him to achieve only limited success in making science more meaningful and relevant to the students. The study reveals that though much has been accomplished to provide universal access to elementary education in India, the science instruction still persists along traditional lines. Thus, the state is still far from providing access to the type of science education it advocates in its national policy documents. The study urges the state to fulfill its constitutional obligations by providing a science education that enables students to not only build a better future for themselves, but also work for peaceful and progressive social change. The study recommends informed bricolage as a goal for teacher education and professional development.

  15. Physics and Education

    NASA Astrophysics Data System (ADS)

    Quinn, Helen

    2016-03-01

    I make a distinction between science outreach work and science education work, and my stress in this talk will be on the latter, though I have done both. Using my own career in physics and education as an example, as well as some examples of the contributions of other physicists, I will discuss the variety of ways in which scientists can contribute to science education at the pre-college level. I will argue for the need for more scientists to undertake this work as a serious professional commitment. In order to do so effectively a scientist must take the time to learn about science education and research on learning, and about how the education systems and policies that one is trying to impact function and are controlled. While working with individual teachers and/or their students provides a valuable service to those individuals, working at the State and National policy level, or with those developing curriculum materials, professional development for teachers and assessment strategies aligned to the broadly adopted Next Generation Science Standards can have much broader impacts. These standards have been adopted by over 14 states and have strongly influenced the science standards of a number of others. I will talk about my role in developing the vision of ``three-dimensional'' science education embodied in those standards, explain the fundamental components of that vision, and discuss the work that still needs to be done to realize that vision over the coming years.

  16. Adult-Rated Oceanography Part 1: A Project Integrating Ocean Sciences into Adult Basic Education Programs.

    NASA Astrophysics Data System (ADS)

    Cowles, S.; Collier, R.; Torres, M. K.

    2004-12-01

    Busy scientists seek opportunities to implement education and outreach efforts, but often don't know where to start. One easy and tested method is to form collaborations with federally-funded adult education and adult literacy programs. These programs exist in every U.S. state and territory and serve underrepresented populations through such major initiatives as adult basic education, adult secondary education (and GED preparation), and English language acquisition. These students are workers, consumers, voters, parents, grandparents, and members of every community. They have specific needs that are often overlooked in outreach activities. This presentation will describe the steps by which the Oregon Ocean Science and Math Collaborative program was developed. It is based on a partnership between the Oregon Department of Community Colleges and Workforce Development, Oregon State University College of Oceanic and Atmospheric Sciences, Oregon Sea Grant, and the OSU Hatfield Marine Science Center. It includes professional development through instructor institutes; teachers at sea and informal education opportunities; curriculum and web site development. Through the partnership described here, instructors in adult basic education programs participate in a yearlong experience in which they develop, test, and adapt innovative instructional strategies to meet the specific needs of adult learners. This, in turn, leads to new prospects for study in the areas of ocean science and math and introduces non-academic careers in marine science to a new community. Working directly with instructors, we have identified expertise level, instructional environment, instructor background and current teaching strategies used to address science literacy and numeracy goals of the adult learners in the State of Oregon. Preliminary evaluation of our ongoing project in meeting these goals will be discussed. These efforts contribute to national goals of science literacy for all, by providing learning activities that link ocean sciences with real-life issues relevant to employment, environment and economic concerns.

  17. Approaches for Improving Earth System Science Education in Middle Schools and High Schools in the United States (Invited)

    NASA Astrophysics Data System (ADS)

    Adams, P. E.

    2009-12-01

    Earth system science is an often neglected subject in the US science curriculum. The state of Kansas State Department of Education, for example, has provided teachers with a curriculum guide for incorporating earth system science as an ancillary topic within the subjects of physics, chemistry, and the biological sciences. While this does provide a means to have earth system science within the curriculum, it relegates earth system science topics to a secondary status. In practice, earth system science topics are considered optional or only taught if there is time within an already an overly crowded curriculum. Given the importance of developing an educated citizenry that is capable of understanding, coping, and deciding how to live in a world where climate change is a reality requires a deeper understanding of earth system science. The de-emphasis of earth system science in favor of other science disciplines makes it imperative to seek opportunities to provide teachers, whose primary subject is not earth system science, with professional development opportunities to develop content knowledge understanding of earth system science, and pedagogical content knowledge (i.e. effective strategies for teaching earth system science). This is a noble goal, but there is no single method. At Fort Hays State University we have developed multiple strategies from face-to-face workshops, on-line coursework, and academic year virtual and face-to-face consultations with in-service and pre-service teachers. A review of the techniques and measures of effectiveness (based on teacher and student performance), and strengths and limitations of each method will be presented as an aid to other institutions and programs seeking to improve the teaching and learning of earth system science in their region.

  18. Hidden Treasures for Science Teaching: United States Patents.

    ERIC Educational Resources Information Center

    Anderson, Norman D.

    United States patents are a source of historical information with many implications for science teaching. Using patents as science teaching devices has been largely ignored by science educators. Some of these devices can be easily modified for use in today's classrooms; in addition, patents serve as great examples of how our knowledge of science…

  19. A Statewide Partnership for Implementing Inquiry Science

    NASA Astrophysics Data System (ADS)

    Lytle, Charles

    The North Carolina Infrastructure for Science Education (NC-ISE) is a statewide partnership for implementing standards-based inquiry science using exemplary curriculum materials in the public schools of North Carolina. North Carolina is the 11th most populous state in the USA with 8,000,000 residents, 117 school districts and a geographic area of 48,718 miles. NC-ISE partners include the state education agency, local school systems, three branches of the University of North Carolina, the state mathematics and science education network, businesses, and business groups. The partnership, based upon the Science for All Children model developed by the National Science Resources Centre, was initiated in 1997 for improvement in teaching and learning of science and mathematics. This research-based model has been successfully implemented in several American states during the past decade. Where effectively implemented, the model has led to significant improvements in student interest and student learning. It has also helped reduce the achievement gap between minority and non-minority students and among students from different economic levels. A key program element of the program is an annual Leadership Institute that helps teams of administrators and teachers develop a five-year strategic plan for their local systems. Currently 33 of the117 local school systems have joined the NC-ISE Program and are in various stages of implementation of inquiry science in grades K-8.

  20. Hearts and minds in the science classroom: The education of a confirmed evolutionist

    NASA Astrophysics Data System (ADS)

    Jackson, David F.; Doster, Elizabeth C.; Meadows, Lee; Wood, Teresa

    This study traces a heuristic inquiry process from the point of view of a science educator, from a secular-humanist background in the northern United States, attempting to better understand and appreciate a major aspect of religious-influenced culture in the southern United States which has a major bearing on science education in the region. The intellectual and emotional viewpoints of selected scientists, science educators, science teachers, and prospective science teachers are examined regarding the relationship between their orthodox Christian religious beliefs and biological evolutionary theory. We view the prospect of teaching evolution to students with such a religious commitment as a prime example of the severe limitations of cognitively-oriented conceptual change theory. We also view conflicts between religion and science regarding evolution as a bona fide example of a multicultural issue in education. These theoretical perspectives are inconsistent with the common tendency among science professionals to view or treat orthodox Christian students in a manner unconscionable with others - to disrespect their intellect or belittle their motivations, to offer judgments based on stereotypes and prejudices, to ignore threats to personal selfesteem, or to deny the de facto connection of some scientific conceptions to the morals, attitudes, and values of individuals with such religious commitments.Received: 14 June 1994; Revised: 7 November 1994;

  1. Constructing School Science: Physics, Biology, and Chemistry Education in Ontario High Schools, 1880--1940

    NASA Astrophysics Data System (ADS)

    Hoffman, Michelle Diane

    This thesis is a history of science education reform in Ontario, from 1880 to 1940. It examines successive eras of science education reform in secondary (pre-university) schools, including the rise of laboratory science; the spread of general science programs; and efforts to teach science "humanistically." This research considers the rhetorical strategies employed by scientists and educators to persuade educational policymakers and the public about the value and purpose of science education. Their efforts hinged in large part on building a moral framework for school science, which they promoted an essential stimulus to students' mental development and a check on the emotive influence of literature and the arts. These developments are placed in international context by examining how educational movements conceived in other places, especially the United States and Britain, were filtered and transformed in the distinct educational context of Ontario. Finally, the sometimes-blurry boundaries between "academic" science education and technical education are explored, most notably in Ontario in the late nineteenth century, when science education was undergoing a rapid, driven expansion in the province's high schools. This research contributes to a relatively recent body of literature that promotes a greater appreciation of pre-college science education -- an area that has often been overlooked in favour of higher education and the training of specialists -- as an important window onto the public perception of science.

  2. Assessment for Preschool Science Learning and Learning Environments

    ERIC Educational Resources Information Center

    Brenneman, Kimberly

    2011-01-01

    Although interest in preschool science is not new in the United States, this area of learning is enjoying renewed attention among those concerned with prekindergarten education and with improving scientific literacy and achievement among the nation's citizens. Despite the increased interest and funding investment in early science education and the…

  3. A Review of Models for Teacher Preparation Programs for Precollege Computer Science Education.

    ERIC Educational Resources Information Center

    Deek, Fadi P.; Kimmel, Howard

    2002-01-01

    Discusses the need for adequate precollege computer science education and focuses on the issues of teacher preparation programs and requirements needed to teach high school computer science. Presents models of teacher preparation programs and compares state requirements with Association for Computing Machinery (ACM) recommendations. (Author/LRW)

  4. Science in the Bilingual Classroom

    NASA Astrophysics Data System (ADS)

    Gutierrez, Patricia A.

    1996-07-01

    One in seven children in the United States speaks a language other than English at home. Their difficulties with English may seem like a barrier to science education. But science education can be the impetus they need to overcome their difficulties with English. With sidebars by Isabel Hawkins and George Musser.

  5. Engineering Design Skills Coverage in K-12 Engineering Program Curriculum Materials in the USA

    ERIC Educational Resources Information Center

    Chabalengula, Vivien M.; Mumba, Frackson

    2017-01-01

    The current "K-12 Science Education framework" and "Next Generation Science Standards" (NGSS) in the United States emphasise the integration of engineering design in science instruction to promote scientific literacy and engineering design skills among students. As such, many engineering education programmes have developed…

  6. The perspectives and experiences of African American students in an informal science program

    NASA Astrophysics Data System (ADS)

    Bulls, Domonique L.

    Science, technology, engineering, and mathematics (STEM) fields are the fastest growing sectors of the economy, nationally and globally. In order for the United States (U.S.) to maintain its competitiveness, it is important to address STEM experiences at the precollege level. In early years, science education serves as a foundation and pipeline for students to pursue STEM in college and beyond. Alternative approaches to instruction in formal classrooms have been introduced to engage more students in science. One alternative is informal science education. Informal science education is an avenue used to promote science education literacy. Because it is less regulated than science teaching in formal classroom settings, it allows for the incorporation of culture into science instruction. Culturally relevant science teaching is one way to relate science to African American students, a population that continually underperforms in K-12 science education. This study explores the science perspectives and experiences of African American middle school students participating in an informal science program. The research is framed by the tenets of culturally relevant pedagogy and shaped by the following questions: (1) What specific aspects of the Carver Program make it unique to African American students? (2) How is culturally relevant pedagogy incorporated into the informal science program? (3) How does the incorporation of culturally relevant pedagogy into the informal science program influence African American students' perceptions about science? The findings to the previously stated questions add to the limited research on African American students in informal science learning environments and contribute to the growing research on culturally relevant science. This study is unique in that it explores the cultural components of an informal science program.

  7. Excellence in Mathematics, Science, and Engineering Education Act of 1990. Report To Accompany S. 2114. 101st Congress, 2d Session.

    ERIC Educational Resources Information Center

    Congress of the U.S., Washington, DC. Senate Committee on Labor and Human Resources.

    This document contains the transcript of a Senate hearing on the crisis in science and math education. The document includes mathematics, science, and engineering education; enhance the scientific and technical literacy of the U.S. public; stimulate the professional from the state of Oregon; Carl Sagan, Cornell women and minorities in careers in…

  8. National Science Resources Center Project for Improving Science Teaching in Elementary Schools. Appendix A. School Systems With Exemplary Elementary Science Programs. Appendix B. Elementary Science Network

    DTIC Science & Technology

    1988-12-01

    Department Campbell, Judy S., Principal Seedling Mile Elementary School Campbell, Kelly, Vice President International Services, Inc. Campbell, Larry...Agency #5 Coverdale, Miles , Principal Baxter Coveyou, Tony, Cowan, Ann, Education Specialist Hanford Science Center Cowan, Margaret, Cowan, Peggy...Science State Department of Education Ezell, James, No. 92 Elementary School Ezzell , Effie, No. 45 Elementary School 09/03/88 NSRC Elementary Science

  9. On the Consideration of Adoption and Implementation of The Next Generation Science Standards in a Local-Control Context: Supporting the Epistemology of Science through Education Policy

    NASA Astrophysics Data System (ADS)

    Lazzaro, Christopher C.

    On the Consideration of Adoption and Implementation of The Next Generation Science Standards in a Local-Control Context: Supporting the Epistemology of Science through Education Policy. Christopher C Lazzaro. The primary purpose of this research is to understand how and why members at each of the three levels of the education system within a local-control state made the decisions they did in supporting or hindering the adoption and implementation of the Next Generation Science Standards. This research concentrates on three levels of the education system in a local-control state; 1) the state level, 2) the district level, and 3) the school/teacher level, while investigating the following questions: 1. To what extent, and in what ways, do members in each of the three levels of the state education system advocate for adoption and implementation of the Next Generation Science Standards? 2. Are the members in each of the three levels motivated or compelled to consider adoption and implementation of the Next Generation Science Standards, why or why not? 3. To what extent, and in what ways, do the members in each of the three levels take into account science epistemology in their overall consideration of adoption/implementation of the NGSS? The data drew from a series of interviews from a prior study, "Challenges of Implementing the Next Generation Science Standards in Local-Control States in the U.S." (Sevian, Foster, & Scheff, 2012). After these data were coded and analyzed around the three research questions, this phenomenographic research study identified four key findings: Key Finding 1 - As the District Coordinators are uniquely situated within the state education system to be able to see both the on-the-ground practical implications and the high-level policy pressures of adopting and implementing the NGSS, they reflect the deepest level of awareness of how to best advocate for adoption and implementation of the NGSS. Key Finding 2 - Motivation to adopt and implement the NGSS is highly nuanced. The most significant factor influencing motivation to adopt or implement the NGSS at each level is related to assessment. The reasons assessment affects motivation is different at each level. Key Finding 3 - Each interviewee at each level demonstrated awareness that the NGSS are significantly different from prior standards in some way. While teachers and SSCs sometimes cited the science practices as the critical difference, they were not able to meaningfully elaborate on what "science practices" are. Conversely, the District Coordinators demonstrated a deeper level of awareness and were able to comment more specifically on the practices and how they would affect science education in their state. Key Finding 4 - Regardless of level, the better a participant reflected an awareness of epistemology, the more likely they were to advocate for adoption and implementation of the NGSS. Similarly, the better a participant reflected an awareness of epistemology, the more likely they were motivated to consider adoption and implementation of the NGSS. The implications of the findings in this current study can; inform the supplemental materials and dissemination of information by standards writers, help policy makers engage stakeholders appropriately at each level by illustrating how national reform efforts play out in local-control states, and aid school based employees by identifying how and where they can participate in state level policy discussion and where their input could be valuable.

  10. The Iowa Chautauqua Program: Advancing Reforms in K-12 Science Education.

    ERIC Educational Resources Information Center

    Dass, Pradeep M.; Yager, Robert E.

    1999-01-01

    Describes the dissemination and implementation of the Iowa Chautauqua Program model of professional development for advancing science education reforms within the United States and in several settings abroad. Contains 15 references. (WRM)

  11. Effects of Practical Activities and Manual on Science Students' Academic Performance on Solubility in Uruan Local Education Authority of Akwa Ibom State

    ERIC Educational Resources Information Center

    Etiubon, Rebecca Ufonabasi; Udoh, Nsimeneabasi Michael

    2017-01-01

    This study investigated the effects of practical activities and manual on science students' academic performance on solubility in Uruan Local Education Authority of Akwa Ibom State. The study adopted pretest, posttest non randomized quasi experimental design. Three research questions and three hypotheses were formulated to guide the study. One…

  12. Factors Related to under Achievement in Science, Technology and Mathematics Education (STME) in Secondary Schools in Rivers State, Nigeria

    ERIC Educational Resources Information Center

    Obomanu, B. J.; Adaramola, M. O.

    2011-01-01

    We report a research into factors related to underachievement in science, technology and mathematics (STM) education in schools in Rivers State, Nigeria. The study investigated 240 Nigerian secondary school students, 100 parents, 140 STM teachers and 20 government officials from Port Harcourt Metropolis. Five (5) research questions and one…

  13. The Development and Status of Earth Science Education: A Comparison of Three Case Studies: Israel, England and Wales and the United States of America. Part II.

    ERIC Educational Resources Information Center

    Orion, Nir; King, Chris; Krockover, Gerald H.; Adams, Paul E.

    1999-01-01

    Explores the development and status of earth-science education in the United States. Compares the U.S. case with those of Israel, England, and Wales. Discusses the need to share common concerns and visions between cultures and communities. Contains 45 references. (Author/WRM)

  14. A Historical Perspective on the Revolution of Science Education for Students Who Are Blind or Visually Impaired in the United States

    ERIC Educational Resources Information Center

    Supalo, Cary A.

    2013-01-01

    The article is an invited presentation given by Dr. Cary A. Supalo to the National Federation of the Blind of Illinois annual state convention that was held in Chicago, Illinois on Saturday, October 28, 2011. The remarks were slightly modified for the "Journal of Science Education for Students with Disabilities."

  15. The Mathematical and Science Skills of Students Who Are Deaf or Hard of Hearing Educated in Inclusive Settings

    ERIC Educational Resources Information Center

    Vosganoff, Diane; Paatsch, Louise E.; Toe, Dianne M.

    2011-01-01

    This study examined the science and mathematics achievements of 16 Year 9 students with hearing loss in an inclusive high-school setting in Western Australia. Results from the Monitoring Standards in Education (MSE) compulsory state tests were compared with state and class averages for students with normal hearing. Data were collected from three…

  16. A Comprehensive Review of Computer Science and Data Processing Education in Community Colleges and Area Vocational-Technical Centers.

    ERIC Educational Resources Information Center

    Florida State Community Coll. Coordinating Board, Tallahassee.

    In 1987-88, the Florida State Board of Community Colleges and the Division of Vocational, Adult, and Community Education jointly conducted a review of instructional programs in computer science and data processing in order to determine needs for state policy changes and funding priorities. The process involved a review of printed resources on…

  17. NGSS and the Next Generation of Science Teachers

    NASA Astrophysics Data System (ADS)

    Bybee, Rodger W.

    2014-03-01

    This article centers on the Next Generation Science Standards (NGSS) and their implications for teacher development, particularly at the undergraduate level. After an introduction to NGSS and the influence of standards in the educational system, the article addresses specific educational shifts—interconnecting science and engineering practices, disciplinary core ideas, crosscutting concepts; recognizing learning progressions; including engineering; addressing the nature of science, coordinating with Common Core State Standards. The article continues with a general discussion of reforming teacher education programs and a concluding discussion of basic competencies and personal qualities of effective science teachers.

  18. Getting to Know and Address Your State Science Standards to Connect Classroom Instruction and Field Trips During IYA

    NASA Astrophysics Data System (ADS)

    Bednarski, Marsha; Larsen, K.

    2008-05-01

    Astronomy activities often pose problems for in-service teachers, especially at the elementary level, as many do not have a solid content background. Often astronomy instruction revolves around reading and answering questions. This is not an effective way to work with abstract concepts or engage students, and also fails to meet the standards of inquiry-based instruction recommended by the National Science Teachers Association and national and state standards. Science museums and planetariums bring unique and exciting perspectives to astronomy education. However, bringing students to the museum can sometimes be perceived as only a "cool field trip.” With mounting pressure for teachers to teach to the new standardized tests demanded by No Child Left Behind, and shrinking school budgets, field trips are rapidly becoming an endangered species. Coordinating museum, science center, and planetarium offerings with national and state science standards can renew interest in (and perceived relevance of) field trips. Therefore, university faculty, in-service teachers, and museum/planetarium staff can form successful partnerships which can both improve student learning and increase attendance at informal education science events and facilities. This workshop will first briefly introduce participants to national and representative state standards as well as research on in-service teachers’ astronomy content knowledge and the educational value of field trips. For the majority of the workshop, participants will engage in the actual steps of coordinating, planning, and writing inquiry-based astronomy curriculum embedded performance tasks that collectively meet the learning needs of students in elementary, middle, or high school. Participants are encouraged to bring a copy of their own state standards (available on their state's Department of Education website) for their preferred target age group.

  19. Improving Student Achievement in Science... The NSRC Blueprint: Science Education Reform for School Districts and States...

    ERIC Educational Resources Information Center

    National Science Resources Center, 2006

    2006-01-01

    Systemic reform requires leaders with technical knowledge of the five essential components of science education reform, as well as access to products and services that can be used to move leaders through the various stages of reform. During the past two decades, the National Science Resources Center (NSRC) has developed differentiated products and…

  20. Collaborations in a Community of Practice Working to Integrate Engineering Design in Elementary Science Education

    ERIC Educational Resources Information Center

    Lehman, James D.; Kim, WooRi; Harris, Constance

    2014-01-01

    The new standards for K-12 science education in the United States call for science teachers to integrate engineering concepts and practices within their science teaching in order to improve student learning. To accomplish this, teachers need appropriate instructional materials as well as the knowledge and skills to effectively use them. This mixed…

  1. Early Childhood Educators' Self-Efficacy in Science, Math, and Literacy Instruction and Science Practice in the Classroom

    ERIC Educational Resources Information Center

    Gerde, Hope K.; Pierce, Steven J.; Lee, Kyungsook; Van Egeren, Laurie A.

    2018-01-01

    Research Findings: Quality early science education is important for addressing the low science achievement, compared to international peers, of elementary students in the United States. Teachers' beliefs about their skills in a content area, that is, their content self-efficacy is important because it has implications for teaching practice and…

  2. Middle School Science and Mathematics Teachers' Conceptions of the Nature of Science: A One-Year Study on the Effects of Explicit and Reflective Online Instruction

    ERIC Educational Resources Information Center

    Wong, Sissy S.; Firestone, Jonah B.; Ronduen, Lionnel G.; Bang, EunJin

    2016-01-01

    Science, Technology, Engineering, and Mathematics (STEM) education has become one of the main priorities in the United States. Science education communities and researchers advocate for integration of STEM disciplines throughout the teaching curriculum. This requires teacher knowledge in STEM disciplines, as well as competence in scientific…

  3. A Commitment To America's Future: Responding to the Crisis in Mathematics & Science Education

    ERIC Educational Resources Information Center

    Business-Higher Education Forum (NJ1), 2005

    2005-01-01

    This report warns that if current trends continue, the United States will lose is preeminence in science and technology and its leadership position in innovation. In this report, the Business-Higher Education Forum (BHEF) proposes a four-part action plan in which business, higher education, and policy leaders support P-12 education leaders in…

  4. Educational Turbulence: The Influence of Macro and Micro-Policy on Science Education Reform

    ERIC Educational Resources Information Center

    Johnson, Carla C.

    2013-01-01

    Enactment of federal educational policy has direct implications for states and local school districts across the nation, particularly in the areas of accountability and funding. This study utilized constructivist grounded theory to examine the impact of policy on science education reform in a large, urban school district over a 5-year period. The…

  5. Increasing Internal Stakeholder Consensus about a University Science Center's Outreach Policies and Procedures

    ERIC Educational Resources Information Center

    Fisher, Richard D.

    2013-01-01

    For decades the United States has tried to increase the number of students pursuing science, technology, engineering, and mathematics (STEM) education and careers. Educators and policy makers continue to seek strategies to increase the number of students in the STEM education pipeline. Public institutions of higher education are involved in this…

  6. Beauty and the beast: Aligning national curriculum standards with state (high school) graduation requirements

    DOE Office of Scientific and Technical Information (OSTI.GOV)

    Linder-Scholer, B.

    1994-12-31

    An overview of SCI/MATH/MN - Minnesota`s standards-based, systemic approach to the reform and improvement of the K-12 science and mathematics education delivery system - is offered as an illustration of the challenges of aligning state educational practices with the national curriculum standards, and as a model for business involvement in state educational policy issues that will enable fundamental, across-the-system reform. SCI/MATH/MN illustrates the major challenges involved in developing a statewide vision for math and science education reform, articulating frameworks aligned with the national standards, building capacity for system-oriented change at the local level, and involving business in systemic reform.

  7. Continuing Education of Health Sciences Librarians: A National Survey.

    ERIC Educational Resources Information Center

    Qureshi, Azra

    This study examines continuing education and professional development of 210 health sciences librarians affiliated with 70 academic medical libraries in the United States, which has the most advanced system of education in librarianship in the world. Of the 102 respondents, the largest categories were library directors/administrators and public…

  8. Siemens Foundation and the STEM Challenge

    ERIC Educational Resources Information Center

    Harper-Taylor, Jeniffer

    2010-01-01

    For more than 12 years, the Siemens Foundation has found unique ways to partner with organizations to support educational initiatives in science, technology, engineering and mathematics (STEM) in the United States. Its focus is clear--to educate the next generation of innovators by supporting math and science education from grade school to grad…

  9. Society of American Foresters - an advocacy for forest inventory

    Treesearch

    John W., Jr. Moser

    2007-01-01

    The Society of American Foresters (SAF) represents all segments of the forestry profession in the United States, including public and private practitioners, researchers, administrators, educators, and students. Its mission is to advance the science, education, technology, and practice of forestry. SAF's science and education program and its policy program have...

  10. Academic performance: A case study of mathematics and science educators from rural Washington high schools

    NASA Astrophysics Data System (ADS)

    Hancock, Tira K.

    A qualitative descriptive case study explored courses of action for educators and leaders of math and science educators to implement to help students achieve state assessment standard and postsecondary success. The problem focused on two demographically similar rural high schools in Southwest Washington that demonstrated inadequate rates of student achievement in mathematics and science. The research question investigated courses of action that may assist educators and leaders of secondary math and science educators to help students achieve WASL standards and postsecondary success in compliance with the No Child Left Behind (NCLB) Act of 2001. Senge's learning organization theory (1990, 2006) and Fullan's (2001) contributions to leading and learning in times of change provided the theoretical framework for the study. Twenty study participant responses analyzed with qualitative analysis software QSR NVivo 7 revealed six themes. Triangulation of responses with secondary data from WASL assessment scores and case study school assessment data identified 14 courses of action and three recommendations for educators and leaders of math and science educators to help students meet state standards and postsecondary success. Critical factors identified in the study as needed to assist educators to help students succeed included professional development, collaboration, teaching practices, funding, student accountability, and parental involvement.

  11. Next generation science standards available for comment

    NASA Astrophysics Data System (ADS)

    Asher, Pranoti

    2012-05-01

    The first public draft of the Next Generation Science Standards (NGSS) is now available for public comment. Feedback on the standards is sought from people who have a stake in science education, including individuals in the K-12, higher education, business, and research communities. Development of NGSS is a state-led effort to define the content and practices students need to learn from kindergarten through high school. NGSS will be based on the U.S. National Research Council's reportFramework for K-12 Science Education.

  12. In Brief: Revitalizing Earth science education

    NASA Astrophysics Data System (ADS)

    Showstack, Randy

    2008-12-01

    A 5-year, $3.9-million U.S. National Science Foundation Math Science Partnership grant to Michigan Technological University (MTU), in Houghton, aims to improve instruction in middle-school Earth and space science courses. The program will enable geoscience and education researchers to work with middle-school science teachers to test strategies designed to reform science, technology, engineering, and math (STEM) education. Project lead researcher Bill Rose said the project could be a template for improvement in STEM throughout the United States. Rose, one of seven MTU faculty members involved with the Michigan Institute for Teaching Excellence Program (MITEP), said the project is ``trying to do something constructive to attract more talented young people to advanced science, math, and technology.'' The project includes data collection and analysis overseen by an evaluation team from the Colorado School of Mines. Also participating in the project are scientists from Grand Valley State University, Allendale, Mich.; the Grand Rapids (Mich.) Area Pre-College Engineering Program; the American Geological Institute; and the U.S. National Park Service.

  13. Statements by Scientists in the California Textbook Dispute

    ERIC Educational Resources Information Center

    American Biology Teacher, 1972

    1972-01-01

    Contains statements by five biologists and science educators to the California State Department of Education committee considering the adoption standards for science textbooks with regard to the clause requiring inclusion of creationist viewpoints of species origins. (AL)

  14. Teacher talk about science: An examination of the constructed understanding of science held by four elementary school teachers

    NASA Astrophysics Data System (ADS)

    Price, Robert John

    The elementary school teacher's personal understanding of science has not been a primary focus of consideration in educational reform discussions. This study examines how four elementary school teachers have constructed their personal understanding of science. The purpose of this study is to explore core understandings about science held by these teachers, and to examine the origins of these ideas. This study assumes that a teacher's understanding of science is unique and constructed on personal experiences affected by influences. This study further explores the relationship of the teachers understanding to the school's stated curriculum. The theoretical framework of this research recognizes three guiding assumptions: science exists as a set of ideas that have developed over time through competing discourses; the teacher plays an important role in the implementation of the science curriculum; and the guiding influences of a teacher's understanding of science are associated with power that emerges from discourse. The methodology in this qualitative study is closely associated with narrative inquiry. Data collection methods include a questionnaire, focus group sessions, and individual interviews. Teachers' stories were collected through collaborative interview opportunities between the researcher and the participants. The findings are presented through the narratives of the four teachers, and are organized through the guiding influences, and talk related to the stated science curriculum. The teachers' talk can be categorized by three broad guiding influences: family, education, and an image of science. The talk related to the stated curriculum illustrates both conflicts, and a relationship between the teachers' understanding of science and the curriculum. The finding of this study provides evidence that each teacher's understanding of science is unique and developed over time. Additionally, this understanding plays a role in how the stated curriculum is discussed and understood. This investigation recommends that teachers' personal understanding of science, as revealed through narrative inquiry, becomes a focus in developing new educational opportunities for elementary school teachers. This study further recommends challenging a hegemony related to positivism that exists in science curricula, and the addition of the valued voice of elementary teachers to the discourse of science education.

  15. Monitoring Progress: How the 2012 National Survey of Science and Mathematics Education Can Inform a National K-12 STEM Education Indicator System

    ERIC Educational Resources Information Center

    Fulkerson, William O.; Banilower, Eric R.

    2014-01-01

    "Monitoring Progress Toward Successful K-12 STEM Education: A Nation Advancing?" (National Research Council, 2013) describes a set of 14 indicators for assessing and tracking the health of pre-college STEM education in the United States. This 2012 National Survey of Science and Mathematics Education (NSSME), is the fifth in a series of…

  16. Ethics, Identity, and Political Vision: Toward a Justice-Centered Approach to Equity in Computer Science Education

    ERIC Educational Resources Information Center

    Vakil, Sepehr

    2018-01-01

    In this essay, Sepehr Vakil argues that a more serious engagement with critical traditions in education research is necessary to achieve a justice-centered approach to equity in computer science (CS) education. With CS rapidly emerging as a distinct feature of K-12 public education in the United States, calls to expand CS education are often…

  17. California Diploma Project Technical Report II: Alignment Study--Alignment Study of the Health Sciences and Medical Technology Draft Standards and California's Exit Level Common Core State Standards

    ERIC Educational Resources Information Center

    McGaughy, Charis; de Gonzalez, Alicia

    2012-01-01

    The California Department of Education is in the process of revising the Career and Technical Education (CTE) Model Curriculum Standards. The Educational Policy Improvement Center (EPIC) conducted an investigation of the draft version of the Health Sciences and Medical Technology Standards (Health Science). The purpose of the study is to…

  18. Teaching and Learning about Complex Systems in K-12 Science Education: A Review of Empirical Studies 1995-2015

    ERIC Educational Resources Information Center

    Yoon, Susan A.; Goh, Sao-Ee; Park, Miyoung

    2018-01-01

    The study of complex systems has been highlighted in recent science education policy in the United States and has been the subject of important real-world scientific investigation. Because of this, research on complex systems in K-12 science education has shown a marked increase over the past two decades. In this systematic review, we analyzed 75…

  19. The Machinery Of Climate Anti-Science, Its Efforts Against Education, Top To Bottom

    NASA Astrophysics Data System (ADS)

    Mashey, J. R.

    2014-12-01

    "There's always one every year" a fine local science teacher said after once again being hassled by a vocal parent for teaching appropriate climate science in school. How does that happen? The machinery of climate anti-science starts from the top with funders working through a maze of money paths, think tanks and front groups, employing spokespeople who can be portrayed as experts. While much of the money flows are still dark, some have been exposed over the last few years, and the effects finally filter down to the state and local levels of education. Among others, the Heartland Institute has a long history of trying to inject anti-science into K-12 and college education, having sent books, DVDs or brochures to teachers or school boards, as well as monthly newsletters to state legislators. Such are aimed at the top of the state or local organizations that affect education. For a vocal subset of the citizenry, a constant flow of misinformation from books, blogs, newsletters and some newspapers and magazines stirs action such as writing letters to editors, complaining to schools, calling on pseudo-experts and demanding equal time for pseudoscience. As the teacher said, it only takes one person to cause trouble at the local level. After a brief review of the overall machinery, this focuses on examples of anti-education tactics seen already, with some brief advice for climate scientists and educators who need to understand the machinery that supports such tactics. Some earlier history is included in http://www.desmogblog.com/2012/10/23/fakery-2-more-funny-finances-free-tax, but other attempts have surfaced in last few years, including state-wide efforts to reject Common Core Educational standard to avoid teaching climate science. Fortunately, school boards sometimes respond quite well, including one just recently in Pennsylvania.

  20. Vision 2015: The West Virginia Science and Technology Strategic Plan. Progress Report

    ERIC Educational Resources Information Center

    West Virginia Higher Education Policy Commission, 2014

    2014-01-01

    In 2005, West Virginia science and education leaders developed a strategic plan entitled: "Vision 2015: The West Virginia Science and Technology Strategic Plan." The plan is comprised of five (5) target areas for infrastructure development, with 14 goals for action by designated leaders from higher education, state government, and…

  1. Science 101: An Integrated, Inquiry-Oriented Science Course for Education Majors

    ERIC Educational Resources Information Center

    Edgcomb, Michelle; Britner, Shari L.; McConnaughay, Kelly; Wolffe, Robert

    2008-01-01

    Science 101 was designed by a multidisciplinary, multi-institutional team, with leadership from the Departments of Biology and Teacher Education, and participation by faculty in the Departments of Chemistry, Physics, and Mathematics, the College of Engineering, and master teachers from school districts in the state of Illinois. Their goal was to…

  2. Oregon's Agricultural Progress | | Oregon State University

    Science.gov Websites

    Education All in a Day's (and Night's) Work Science in the Midst of Conflict The Future of Agriculture: a future of agriculture The Future of Agricultural Science Education The Future of Agricultural Science of Agriculture: a Panel Discussion The Future of Agriculture: a Panel Discussion Five views of the

  3. Educating Tomorrow's Science Teachers: STEM ACT Conference Report

    ERIC Educational Resources Information Center

    Sternheim, Morton M.; Feldman, Allan; Berger, Joseph B.; Zhao, Yijie

    2008-01-01

    This document reports on the findings of an NSF-funded conference (STEM ACT) on the alternative certification of science teachers. The conference explored the issues that have arisen in science education as a result of the proliferation of alternative certification programs in the United States, and to identify the research that needs to be done…

  4. Investigating the Role of Student Motivation in Computer Science Education through One-on-One Tutoring

    ERIC Educational Resources Information Center

    Boyer, Kristy Elizabeth; Phillips, Robert; Wallis, Michael D.; Vouk, Mladen A.; Lester, James C.

    2009-01-01

    The majority of computer science education research to date has focused on purely cognitive student outcomes. Understanding the "motivational" states experienced by students may enhance our understanding of the computer science learning process, and may reveal important instructional interventions that could benefit student engagement and…

  5. Pre-Schoolers' Verbal and Behavioral Responses as Indicators of Attitudes and Scientific Curiosity

    ERIC Educational Resources Information Center

    Baruch, Yael Kesner; Spektor-Levy, Ornit; Mashal, Nira

    2016-01-01

    Today, early science education is a well-accepted view. Enhancing children's curiosity about the natural world and fostering positive attitudes toward science are primary goals of science education. However, questions remain regarding the appropriate ways to identify, nurture, and study these emotional states in pre-schoolers. This study examines…

  6. Space Science Educational Media Resources, A Guide for Junior High School Teachers.

    ERIC Educational Resources Information Center

    McIntyre, Kenneth M.

    This guide, developed by a panel of teacher consultants, is a correlation of educational media resources with the "North Carolina Curricular Bulletin for Eighth Grade Earth and Space Science" and the state adopted textbook, pModern Earth Science." The three major divisions are (1) the Earth in Space (Astronomy), (2) Space…

  7. Negligence Liability of K-12 Chemistry Teachers: The Need for Legal Balance and Responsible Action

    ERIC Educational Resources Information Center

    Zirkel, Perry A.; Barnes, Marianne B.

    2011-01-01

    The science education community promotes inquiry teaching and learning enhanced by the school laboratory experience, and this emphasis is reflected in state and national science education standards. However, science teachers, especially those in chemistry settings, have been known to avoid laboratory activities because of fear of legal liability…

  8. Rural Science Education: Valuing Local Knowledge

    ERIC Educational Resources Information Center

    Avery, Leanne M.

    2013-01-01

    Whether playing outdoors or working on the farm, rural children acquire science and engineering skills throughout their daily lives. Although 11.4 million children in the United States grow up in rural areas, compared to 14.6 million in urban areas, relatively little attention is given to rural science education. This article demonstrates that…

  9. The Early Years: Pondering Strawberries

    ERIC Educational Resources Information Center

    Ashbrook, Peggy

    2013-01-01

    Understanding the needs of plants, the function of their structures, and plant reproduction, is part of the National Science Education Content Standard C: Life science (NRC 1996). "A Framework for K-12 Science Education" (NRC 2012) states that by the end of grade 2, students should understand that plants have external parts, used to help…

  10. Science Teacher Preparation in a North American Context

    ERIC Educational Resources Information Center

    Olson, Joanne K.; Tippett, Christine D.; Milford, Todd M.; Ohana, Chris; Clough, Michael P.

    2015-01-01

    This article provides a description of science teacher education policy in Canada and the USA. We focus on qualifications and procedures to obtain an initial teaching license, requirements for license renewal, and trends in our respective countries. In both countries, science teacher education is the responsibility of the province or state, rather…

  11. Recapturing the Lead in Math and Science. Focus 14.

    ERIC Educational Resources Information Center

    Benderson, Albert

    1984-01-01

    This document examines various topics and issues related to the quality of science and mathematics education in the United States. They include: (1) competition from Japan and the Soviet Union; (2) federal programs and legislation designed to improve the quality of science and mathematics education; (3) scientific literacy; (4) the basics in…

  12. Widespread distribution and unexpected variation among science faculty with education specialties (SFES) across the United States.

    PubMed

    Bush, Seth D; Pelaez, Nancy J; Rudd, James A; Stevens, Michael T; Tanner, Kimberly D; Williams, Kathy S

    2013-04-30

    College and university science departments are increasingly taking an active role in improving science education. Perhaps as a result, a new type of specialized science faculty position within science departments is emerging--referred to here as science faculty with education specialties (SFES)--where individual scientists focus their professional efforts on strengthening undergraduate science education, improving kindergarten-through-12th grade science education, and conducting discipline-based education research. Numerous assertions, assumptions, and questions about SFES exist, yet no national studies have been published. Here, we present findings from a large-scale study of US SFES, who are widespread and increasing in numbers. Contrary to many assumptions, SFES were indeed found across the nation, across science disciplines, and, most notably, across primarily undergraduate, master of science-granting, and PhD-granting institutions. Data also reveal unexpected variations among SFES by institution type. Among respondents, SFES at master of science-granting institutions were almost twice as likely to have formal training in science education compared with other SFES. In addition, SFES at PhD-granting institutions were much more likely to have obtained science education funding. Surprisingly, formal training in science education provided no advantage in obtaining science education funding. Our findings show that the SFES phenomenon is likely more complex and diverse than anticipated, with differences being more evident across institution types than across science disciplines. These findings raise questions about the origins of differences among SFES and are useful to science departments interested in hiring SFES, scientific trainees preparing for SFES careers, and agencies awarding science education funding.

  13. Widespread distribution and unexpected variation among science faculty with education specialties (SFES) across the United States

    PubMed Central

    Bush, Seth D.; Pelaez, Nancy J.; Rudd, James A.; Stevens, Michael T.; Tanner, Kimberly D.; Williams, Kathy S.

    2013-01-01

    College and university science departments are increasingly taking an active role in improving science education. Perhaps as a result, a new type of specialized science faculty position within science departments is emerging—referred to here as science faculty with education specialties (SFES)—where individual scientists focus their professional efforts on strengthening undergraduate science education, improving kindergarten-through-12th grade science education, and conducting discipline-based education research. Numerous assertions, assumptions, and questions about SFES exist, yet no national studies have been published. Here, we present findings from a large-scale study of US SFES, who are widespread and increasing in numbers. Contrary to many assumptions, SFES were indeed found across the nation, across science disciplines, and, most notably, across primarily undergraduate, master of science-granting, and PhD-granting institutions. Data also reveal unexpected variations among SFES by institution type. Among respondents, SFES at master of science-granting institutions were almost twice as likely to have formal training in science education compared with other SFES. In addition, SFES at PhD-granting institutions were much more likely to have obtained science education funding. Surprisingly, formal training in science education provided no advantage in obtaining science education funding. Our findings show that the SFES phenomenon is likely more complex and diverse than anticipated, with differences being more evident across institution types than across science disciplines. These findings raise questions about the origins of differences among SFES and are useful to science departments interested in hiring SFES, scientific trainees preparing for SFES careers, and agencies awarding science education funding. PMID:23589844

  14. Wisconsin Earth and Space Science Education

    NASA Technical Reports Server (NTRS)

    Bilbrough, Larry (Technical Monitor); French, George

    2003-01-01

    The Wisconsin Earth and Space Science Education project successfilly met its objectives of creating a comprehensive online portfolio of science education curricular resources and providing a professional development program to increase educator competency with Earth and Space science content and teaching pedagogy. Overall, 97% of participants stated that their experience was either good or excellent. The favorable response of participant reactions to the professional development opportunities highlights the high quality of the professional development opportunity. The enthusiasm generated for using the curricular material in classroom settings was overwhelmingly positive at 92%. This enthusiasm carried over into actual classroom implementation of resources from the curricular portfolio, with 90% using the resources between 1-6 times during the school year. The project has had a positive impact on student learning in Wisconsin. Although direct measurement of student performance is not possible in a project of this kind, nearly 75% of participating teachers stated that they saw an increase in student performance in math and science as a result of using project resources. Additionally, nearly 75% of participants saw an increase in the enthusiasm of students towards math and science. Finally, some evidence exists that the professional development academies and curricular portfolio have been effective in changing educator behavior. More than half of all participants indicated that they have used more hands-on activities as a result of the Wisconsin Earth and Space Science Education project.

  15. An instructional package integrating science and social studies instruction at the fifth-grade level

    NASA Astrophysics Data System (ADS)

    Hulley, Kathy Louise Sullivan

    Integrative education is being implemented by classroom teachers who want to immerse students in an environment rich in problem-solving skills, critical analysis skills, ethics, valuing of knowledge, and communication of learning. Several subject areas in the curriculum have been integrated, such as literature with social studies and mathematics with science. The focus of this dissertation is on the integration of science and social studies at the fifth grade level using the Mississippi State Department of Education Curriculum Guidelines and Objectives (MSDE, 1995) and the National Science Education Standards (National Research Council (NRC), 1996). An instructional package of lesson plans that teachers can use as ideas to create their own plans for an integrated curriculum of science and social studies was devised. The Mississippi State Department of Education Curriculum Guidelines and Objectives for Social Studies (MSDE, 1995) at the fifth grade level contain fifteen competencies. Three standards from the National Science Education Standards (NRC, 1996) were chosen. They include (a) science and technology, (b) science in personal and social perspectives, and (c) the history and nature of science. Each competency for social studies has three lesson plans written that integrate the three chosen standards from the National Science Education Standards. A total of forty-five lesson plans were written integrating science and social studies. Each lesson plan includes an objective, materials, procedures, and evaluation for teachers. Teachers are encouraged to use the lesson plans as a guide in creating their own lesson plans that would correspond to their school's particular curriculum guidelines. Consideration should be given to the learning levels and styles of their classroom. This qualitative study was done to create lesson plans that integrate science and social studies with the hope that teachers will expand upon them and implement them into their curricula.

  16. Space Sciences Education and Outreach Project of Moscow State University

    NASA Astrophysics Data System (ADS)

    Krasotkin, S.

    2006-11-01

    sergekras@mail.ru The space sciences education and outreach project was initiated at Moscow State University in order to incorporate modern space research into the curriculum popularize the basics of space physics, and enhance public interest in space exploration. On 20 January 2005 the first Russian University Satellite “Universitetskiy-Tatyana” was launched into circular polar orbit (inclination 83 deg., altitude 940-980 km). The onboard scientific complex “Tatyana“, as well as the mission control and information receiving centre, was designed and developed at Moscow State University. The scientific programme of the mission includes measurements of space radiation in different energy channels and Earth UV luminosity and lightning. The current education programme consists of basic multimedia lectures “Life of the Earth in the Solar Atmosphere” and computerized practice exercises “Space Practice” (based on the quasi-real-time data obtained from “Universitetskiy-Tatyana” satellite and other Internet resources). A multimedia lectures LIFE OF EARTH IN THE SOLAR ATMOSPHERE containing the basic information and demonstrations of heliophysics (including Sun structure and solar activity, heliosphere and geophysics, solar-terrestrial connections and solar influence on the Earth’s life) was created for upper high-school and junior university students. For the upper-university students there a dozen special computerized hands-on exercises were created based on the experimental quasi-real-time data obtained from our satellites. Students specializing in space physics from a few Russian universities are involved in scientific work. Educational materials focus on upper high school, middle university and special level for space physics students. Moscow State University is now extending its space science education programme by creating multimedia lectures on remote sensing, space factors and materials study, satellite design and development, etc. The space sciences educational activity of Moscow State University is a non-profit project and is open for all interested parties. “Space schools” for university teachers and students were held in the autumn of 2004 and 2005. The main objective of those schools was to attract interest in space research. Tutors and students who took part in these schools had never before been involved in the space sciences. The idea behind these schools was to join forces: Moscow State University scientists gave space science lectures, students from different universities (Ulianovsk, Samara, Kostroma and other Russian universities) performed the work (prepared educational material) and their university teachers managed the students. After participating in these schools, both students and teachers started to study space science related topics emphasizing the success of these schools. It is important for the educational community to understand what skills future space scientists and space industry employees must be equipped with. In the next years, emphasis is to be placed on space science education at all educational levels and better communication should be practiced between universities and industry.

  17. Enhancing behavioral science education at the Ohio State University College of Medicine.

    PubMed

    Post, Douglas M; Stone, Linda C; Knutson, Douglas J; Gutierrez, Tamara L; Sari, Firuzan; Hudson, William A

    2008-01-01

    The social and behavioral sciences play key roles in patient health outcomes. Given this reality, successful development of social and behavioral science curricula in medical education is critically important to the quality of patients' lives and the effectiveness of health care delivery systems. The Institute of Medicine, in a recent report, recommended that medical schools enhance their curricula in these areas and identified four institutions as "exemplars" of social and behavioral science education. The authors describe an ongoing curriculum development and improvement process that produced one such exemplary program at The Ohio State University College of Medicine. The authors provide a historical perspective on behavioral science education, discuss issues that led to curricular change, and describe the principles and processes used to implement reform. Critical factors underlying positive change are addressed: increase active learning, recruit a core group of small-group facilitators who are primary care physicians, diversify teaching methods, support student-directed educational initiatives, enhance student-teacher relationships, centralize course administration, obtain funding, implement a faculty development program, and apply curriculum quality improvement methods. Outcome data from evaluations completed by both students and small-group physician faculty are presented, and future directions regarding further revision are outlined. The authors believe that the strategies they describe can be applied at other institutions and assist behavioral science educators who may experience the challenges typically encountered in this important field of medical education.

  18. History, Philosophy and Sociology of Science in Science Education: Results from the Third International Mathematics and Science Study

    NASA Astrophysics Data System (ADS)

    Wang, Hsingchi A.; Sshmidt, William H.

    Throughout the history of enhancing the public scientific literacy, researchers have postulated that since every citizen is expected to have informal opinions on the relationships among government, education, and issues of scientific research and development, it is imperative that appreciation of the past complexities of science and society and the nature of scientific knowledge be a part of the education of both scientists and non-scientists. HPSS inclusion has been found to be an effective way to reach the goal of enhancing science literacy for all citizens. Although reports stated that HPSS inclusion is not a new educational practice in other part of the world, nevertheless, no large scale study has ever been attempted to report the HPSS educational conditions around the world. This study utilizes the rich data collected by TIMSS to unveil the current conditions of HPSS in the science education of about forty TIMSS countries. Based on the analysis results, recommendations to science educators of the world are provided.

  19. What Works: Building Natural Science Communities. Resources for Reform. Strengthening Undergraduate Science and Mathematics. A Report of Project Kaleidoscope. Volume Two.

    ERIC Educational Resources Information Center

    Narum, Jeanne L., Ed.

    The purpose of Project Kaleidoscope is to be a catalyst for action to encourage a national environment for reform in undergraduate education in science and mathematics in the United States. This report, the second of two volumes, presents ideas from Project Kaleidoscope that involve changing undergraduate science and mathematics education through…

  20. When discourses collide: creationism and evolution in the public sphere

    NASA Astrophysics Data System (ADS)

    Dávila, Denise

    2014-12-01

    This review essay focuses on Özgür Taşkın's discussion of the theory of evolution (TOE), intelligent design (ID) and the convictions of fundamentalist science educators and students in his paper entitled: An exploratory examination of Islamic values in science education: Islamization of science teaching and learning via constructivism. It examines the competing social discourses of evolution and creationism in the United States, which is partially maintained by national public opinion polls and states' legislation about the TOE in the science curricula. The examination of US social discourses presented here is framed by James Gee's (2008) theory that Discourses with a capital "D," are unconscious and uncritical socially accepted ways of speaking/listening and writing/reading that are merged with "distinctive ways of acting, interacting, valuing, feeling, dressing, thinking, [and] believing…so as to enact specific socially recognizable identities…" (p. 155). Such Discourses identify insiders of and outsiders to religious affiliations and other social or cultural groups. The context of this examination is unique in that is draws from the national conversation about the inclusion of ID alongside of the TOE in the public school science programs. Gee's (2011) concept that Discourses serve as tools of inquiry guides the analysis of video recorded public messages from Bill Nye and Lawrence Krauss as well as Creation Museum president Ken Ham. The analysis and discussion of the national conversation about creationism and public education suggests that the education community must consider the global landscape of science literacy both locally and internationally. It also indicates that preservice and practicing science educators may require special training and support. In order to provide unbiased, religious-resistant, evidence-based science instruction, science educators must understand how to separate church from state regardless of their personal beliefs. They must also know how to navigate conversations about the TOE among diverse communities of learners that include both religiously and non-religiously affiliated students.

  1. Connectionist Modelling and Education.

    ERIC Educational Resources Information Center

    Evers, Colin W.

    2000-01-01

    Provides a detailed, technical introduction to the state of cognitive science research, in particular the rise of the "new cognitive science," especially artificial neural net (ANN) models. Explains one influential ANN model and describes diverse applications and their implications for education. (EV)

  2. 7 CFR 3402.1 - Applicability of regulations.

    Code of Federal Regulations, 2010 CFR

    2010-01-01

    ... areas of food and agricultural sciences designated by CSREES through the Office of Higher Education... Agriculture Regulations of the Department of Agriculture (Continued) COOPERATIVE STATE RESEARCH, EDUCATION, AND EXTENSION SERVICE, DEPARTMENT OF AGRICULTURE FOOD AND AGRICULTURAL SCIENCES NATIONAL NEEDS...

  3. Linking Undergraduate Geoscience and Education Departments

    NASA Astrophysics Data System (ADS)

    Ireton, F. W.; McManus, D. A.

    2001-05-01

    In many colleges and universities students who have declared a major in one of the geosciences are often ineligible to take the education courses necessary for state certification. In order to enroll in education courses to meet the state's Department of Education course requirements for a teaching credential, these students must drop their geoscience major and declare an education major. Students in education programs in these universities may be limited in the science classes they take as part of their degree requirements. These students face the same problem as students who have declared a science major in that course work is not open to them. As a result, universities too often produce science majors with a weak pedagogy background or education majors with a weak Earth and space sciences background. The American Geophysical Union (AGU) formed a collaboration of four universities with strong, yet separate science and education departments, to provide the venue for a one week NSF sponsored retreat to allow the communication necessary for solutions to these problems to be worked out by faculty members. Each university was represented by a geoscience department faculty member, an education department faculty member, and a K-12 master teacher selected by the two faculty members. This retreat was followed by a second retreat that focused on community colleges in the Southwest United States. Change is never easy and Linkages has shown that success for a project of this nature requires the dedication of not only the faculty involved in the project, but colleagues in their respective schools as well as the administration when departmental cultural obstacles must be overcome. This paper will discuss some of the preliminary work accomplished by the schools involved in the project.

  4. Agricultural Research & Education: Serving the Nation. A University Science and Education Exhibit on Capitol Hill, March 2, 1999.

    ERIC Educational Resources Information Center

    National Association of State Universities and Land Grant Colleges, Washington, DC.

    The brochure describes an agricultural science and education exhibition presented by the National Association of State Universities and Land-Grant Colleges in a Cannon House office building in Washington, DC on March 2, 1999. It gives background information on: three areas in which scientific research and education in the agricultural sciences…

  5. Active Galaxies Educational Unit: An Educator's Guide with Activities in Science and Mathematics.

    ERIC Educational Resources Information Center

    National Aeronautics and Space Administration, Washington, DC.

    As a part of its educational effort, the National Aeronautics and Space Administration (NASA) Education and Public Outreach group at Sonoma State University (SSU) has put together a series of activities based on the science of one of NASA's exciting space missions, the Gamma-ray Large Area Space Telescope (GLAST). GLAST is a NASA satellite planned…

  6. Intelligent Design and educational policy: The case of Kansas

    NASA Astrophysics Data System (ADS)

    Jones, John Yoshito

    Advocates of an alternative explanation of life's origins, Intelligent Design, have lobbied hard since the 1987 Edwards v. Aguillard decision, which banned "creation science" from public schools, to effect educational policy change through local and state-level school boards. This study examines one such lobbying effort, the 2005 attempt to modify the Kansas Curricular Standards for Science so that biological evolution is actively challenged in the classroom, by analyzing the actions and motivations of several members of the Kansas Board of Education as well as non-Board participants through personal interviews and contemporary media reports. Board minutes from 1999 to 2007 and transcripts from the Board's May, 2005, public hearings on evolution are also analyzed. This study asks, "what strategies have creationists developed in the wake of the 1987 Edwards v. Aguillard Supreme Court decision striking down creation science and how have those strategies been employed?" The question's presumption, that Intelligent Design advocates have employed new strategies to advance a creationist agenda, is validated in the study through coding the language used by the interviewees, the Board minutes, and hearings transcripts, as well as a review of contemporary media coverage. Several themes emerged: the belief of participants on each side of the debate that their opponents were attempting to oppress their views, participants on each side claiming to have the best definition of "good science," the emergence of national-level organizations such as the Discovery Institute in coordinating science-related public advocacy at the state level, evolution's importance as a state-level public policy issue, and the importance of keeping the voting public informed of science-related educational policy. This case study should be useful to state and local-level educational policymakers grappling with debates over the place of evolution in public schools.

  7. How To Survive Your First Year. A Handbook for New Teachers in Health Science Technology Education.

    ERIC Educational Resources Information Center

    Texas Univ., Austin. Extension Instruction and Materials Center.

    This guide is designed to assist teachers who are beginning their first year of teaching Texas' Health Science Technology Education program. Discussed in the guide's seven sections are the following: the state's educational system, the teacher-student relationship, and teachers' internal struggles; planning/scheduling; classroom management…

  8. Eisenhower Links 1992. Conference Report (Washington, D.C., December 6-9, 1992).

    ERIC Educational Resources Information Center

    Triangle Coalition for Science and Technology Education, Washington, DC.

    The Dwight D. Eisenhower Program for Mathematics and Science Education of the U.S. Department of Education provided a forum in which state and federal representatives could develop strategies to support the implementation of recently developed mathematics and science education standards. This conference report describes the presentations and…

  9. Exploring Links between Pedagogical Knowledge Practices and Student Outcomes in STEM Education for Primary Schools

    ERIC Educational Resources Information Center

    Hudson, Peter; English, Lyn; Dawes, Les; King, Donna; Baker, Steve

    2015-01-01

    Science, technology, engineering, and mathematics (STEM) education is an emerging initiative in Australia, particularly in primary schools. This qualitative research aimed to understand Year 4 students' involvement in an integrated STEM education unit that focused on science concepts (e.g., states of matter, testing properties of materials) and…

  10. High-Stakes Testing in Education: Science and Practice in K-12 Settings

    ERIC Educational Resources Information Center

    Bovaird, James A., Ed.; Geisinger, Kurt F., Ed.; Buckendahl, Chad W., Ed.

    2011-01-01

    Educational assessment and, more broadly, educational research in the United States have entered into an era characterized by a dramatic increase in the prevalence and importance of test score use in accountability systems. This volume covers a selection of contemporary issues about testing science and practice that impact the nation's public…

  11. Building a Science, Technology, Engineering, and Math Education Agenda: An Update of State Actions

    ERIC Educational Resources Information Center

    Thomasian, John

    2011-01-01

    STEM--science, technology, engineering, and mathematics--is critical to and supportive of many education reforms being undertaken today, from adoption of common internationally benchmarked standards to better teacher preparation to enhanced coordination across the entire K-20 education system. In fact, STEM is not a separate reform movement at…

  12. Academic Performance: A Case Study of Mathematics and Science Educators from Rural Washington High Schools

    ERIC Educational Resources Information Center

    Hancock, Tira K.

    2009-01-01

    A qualitative descriptive case study explored courses of action for educators and leaders of math and science educators to implement to help students achieve state assessment standard and postsecondary success. The problem focused on two demographically similar rural high schools in Southwest Washington that demonstrated inadequate rates of…

  13. Biology Faculty at Large Research Institutions: The Nature of Their Pedagogical Content Knowledge

    ERIC Educational Resources Information Center

    Hill, Kathleen M.

    2013-01-01

    To address the need of scientists and engineers in the United States workforce and ensure that students in higher education become scientifically literate, research and policy has called for improvements in undergraduate education in the sciences. One particular pathway for improving undergraduate education in the science fields is to reform…

  14. Fermilab Friends for Science Education | Programs | Past Donors

    Science.gov Websites

    the U.S. Trust Company of New York AT&T Bell Laboratories Aurora Foundation, The Batavia Schools Teachers of Mathematics Illinois Department of Natural Resources Illinois State Board of Education Science Literacy Program Joyce Foundation, The Kane County Board of Education Kane County Riverboat Fund Marmon

  15. Distance Education in Library and Information Science Education: Trends and Issues.

    ERIC Educational Resources Information Center

    Zepp, Diana

    This study measured current trends in distance education in the United States within Library and Information Science programs. The study was conducted, for the period 1989 to 1998, through a content analysis of journal articles from the "Library Literature" database, and through a content analysis of graduate catalogs from American Library…

  16. The Uses of the National Information Infrastructure in Providing Services to Small Industry, State and Local Governments, and Education in Rural Areas. Hearing before the Subcommittee on Science, Technology, and Space of the Committee on Commerce, Science, and Transportation. United States Senate, One Hundred Fourth Congress, First Session (Billings, Montana).

    ERIC Educational Resources Information Center

    Congress of the U.S., Washington, DC. Senate Committee on Commerce, Science, and Transportation.

    The Senate Subcommittee on Science, Technology, and Space held a hearing in Billings, Montana, on rural America's access to the National Information Infrastructure (NII) and uses of NII in the provision of rural education and services. An Assistant Secretary of Commerce discussed the development of the Internet, problems in rural access to the…

  17. Obama Emphasizes Science and Innovation in State of the Union Address

    NASA Astrophysics Data System (ADS)

    Tretkoff, Ernie

    2011-02-01

    U.S. president Barack Obama emphasized innovation and competitiveness in his State of the Union address on 25 January. He also raised science and technology early in the hour-long speech, noting that nations like China and India are focusing on math and science education and investing in research and technology. To be competitive with those countries, “we need to out-innovate, out-educate, and out-build the rest of the world,” Obama said. “The first step in winning the future is encouraging American innovation.”

  18. The Development and Status of Earth Science Education: A Comparison of Three Case Studies: Israel, England and Wales and the United States of America. Part I.

    ERIC Educational Resources Information Center

    Orion, Nir; King, Chris; Krockover, Gerald H.; Adams, Paul E.

    1999-01-01

    Explores the development and status of Earth Science Education in Israel and England and Wales. Finds that, despite separate traditions for education in the Earth Sciences, there are a surprisingly large number of commonalities between current trends in each of the countries in the study, and each has had difficulty determining what constitutes an…

  19. K-12 science education reform will take a decade, and community partnerships hold best hope for success

    DOE Office of Scientific and Technical Information (OSTI.GOV)

    Keever, J.R.

    1994-12-31

    Fundamental change in K-12 science education in the United States, essential for full citizenship in an increasingly technological world, will take a decade or more to accomplish, and only the sustained, cooperative efforts of people in their own communities -- scientists, teachers, and concerned citizens -- will likely ensure success. These were among the themes at Sigma Xi`s national K-12 science education forum.

  20. A Comparative Study Teaching Chemistry Using the 5E Learning Cycle and Traditional Teaching with a Large English Language Population in a Middle-School Setting

    ERIC Educational Resources Information Center

    McWright, Cynthia Nicole Pendleton

    2017-01-01

    For decades science educators and educational institutions have been concerned with the status of science content being taught in K-12 schools and the delivery of the content. Thus, educational reformers in the United States continue to strive to solve the problem on how to best teach science for optimal success in learning. The constructivist…

  1. Early Legal Education in the United States: Natural Law Theory and Law as a Moral Science.

    ERIC Educational Resources Information Center

    Bailey, Mark Warren

    1998-01-01

    An examination of the history of legal education covers the long period of law-office apprenticeship as the principal method of legal education in the United States and reviews trends in the period of formal education, the relationship between formal education and professional practice, the philosophical context for legal education, instruction in…

  2. A Webcast of Bird Nesting as a State-of-the-Art Citizen Science.

    PubMed

    Zárybnická, Markéta; Sklenicka, Petr; Tryjanowski, Piotr

    2017-01-01

    The quality of people's knowledge of nature has always had a significant influence on their approach to wildlife and nature conservation. However, direct interactions of people with nature are greatly limited nowadays, especially because of urbanization and modern lifestyles. As a result, our isolation from the natural world has been growing. Here, we present an example of a state-of-the-art Citizen Science project with its educational, scientific, and popularizing benefits. We conclude that modern media and new forms of education offer an effective opportunity for inspiring children and others to have fun learning to act like scientists. This approach provides broad opportunities for developing the hitherto neglected educational potential of Citizen Science.

  3. HIGHER EDUCATION AND THE DEMAND FOR SCIENTIFIC MANPOWER IN THE UNITED STATES, OECD REVIEWS OF NATIONAL POLICIES FOR SCIENCE AND EDUCATION.

    ERIC Educational Resources Information Center

    COCKCROFT, JOHN; AND OTHERS

    PROBLEMS OF HIGHER EDUCATION IN THE UNITED STATES IN RELATION TO FUTURE DEMANDS FOR SCIENTIFIC AND TECHNICAL MANPOWER ARE CONSIDERED IN THIS 1963 REVIEW OF NATIONAL POLICIES CONDUCTED BY THE ORGANISATION FOR ECONOMIC COOPERATION AND DEVELOPMENT (OECD). A DESCRIPTION OF THE STRUCTURE OF THE UNITED STATES HIGHER EDUCATION SYSTEM EMPHASIZES (1)…

  4. Science Outcomes Assessment Plan (SOAP): Design phase

    NASA Astrophysics Data System (ADS)

    Webster, Zodiac T.; Gurkas, P.; Shaw, K.

    2009-01-01

    Columbus State University is under pressure to reduce the number of "unproductive grades” in its introductory science classes, to increase the number of STEM majors, and to assess the level of attainment of science outcomes in its general education courses for accreditation documentation. The authors designed a study to examine affective, cognitive, social, and classroom factors as predictors of success in science while also attempting to document the link between introductory "gateway to science major” course outcomes and the general education program. One of the factors probed is the match between students’ understanding of important learning outcomes of the course and the instructor's stated priorities. A very real risk in content focused courses (e.g., astronomy) is the mismatch between the university's stated outcomes for a general education science course (e.g., critical thinking) and the instructor's content related outcomes. This mismatch may become a barrier for students taking `required’ courses as they may not comprehend the rationale for the requirement, fail to engage in the course, and consequently receive a failing grade. Another possible factor affecting student success in science is the student reasoning level. Students who are concrete thinkers may not be as successful in introductory science classes that require advanced logical thinking about unfamiliar concepts. The authors hope to use the results of this study to help inform university practices such as placement into introductory science courses and for future faculty development.

  5. Negotiating Cultural Differences in Urban Science Education: An Overview of Teacher's First-Hand Experience Reflection of Cogen Journey

    ERIC Educational Resources Information Center

    Shady, Ashraf

    2014-01-01

    Classrooms across the United States increasingly find immigrant science teachers paired with urban minority students, but few of these teachers are prepared for the challenges such cultural assimilation presents. This is particularly true in secondary science education. Identifying potential prospects for culturally adaptive pedagogy in science…

  6. An Integrated Earth Science, Astronomy, and Physics Course for Elementary Education Majors

    ERIC Educational Resources Information Center

    Plotnick, Roy E.; Varelas, Maria; Fan, Qian

    2009-01-01

    Physical World is a one-semester course designed for elementary education majors, that integrates earth science, astronomy, and physics. The course is part of a four-course set that explores science concepts, processes, and skills, along with the nature of scientific practice, that are included in state and national standards for elementary school…

  7. The Status of Secondary Science Education in the United States: Factors That Predict Practice

    ERIC Educational Resources Information Center

    Smith, Adrienne A.; Banilower, Eric R.; Nelson, Michele M.; Smith, P. Sean

    2013-01-01

    New K-12 science education standards emphasize teaching and learning grounded in authentic scientific practices. A first step toward supporting teachers' adoption of scientific practice-based pedagogies is to develop a clear picture of how teachers are currently teaching science, and what factors predict their pedagogical choices. A recently…

  8. Andragogy: Implications for Secondary and Adult Education Programs.

    ERIC Educational Resources Information Center

    Daly, Norene F.

    The study of andragogy, a well developed science in Europe, is gaining greater acceptance in the United States. Malcolm Knowles introduced it to American adult educators in 1968 and has made it the central theme of his work since. The distinction between andragogy (the art and science of helping adults learn) and pedagogy (the art and science of…

  9. Differences Within: A Comparative Analysis of Women in the Physical Sciences--Motivation and--Background Factors

    ERIC Educational Resources Information Center

    Dabney, Katherine Patricia Traudel

    2012-01-01

    Science, technology, engineering, and mathematics (STEM) education has become a critical focus in the United States due to economic concerns and public policy (National Academy of Sciences, 2007; U.S. Department of Education, 2006). Part of this focus has been an emphasis on encouraging and evaluating career choice and persistence factors among…

  10. Science and Engineering Indicators: Digest 2012. NSB 12-02

    ERIC Educational Resources Information Center

    National Science Foundation, 2012

    2012-01-01

    The United States holds a preeminent position in science and engineering (S&E) in the world, derived in large part from its long history of public and private investment in S&E research and development (R&D) and education. Investment in R&D, science, technology, and education correlate strongly with economic growth, as well the development of a…

  11. Moving Forward: State Engagement with the Next Generation Science Standards. Special re:VISION Insert. Issue 5

    ERIC Educational Resources Information Center

    Hunt Institute, 2014

    2014-01-01

    A rigorous K-12 science education builds student knowledge in core scientific content and equips students to analyze problems, use evidence, and investigate solutions. The education requirements of careers across the economy are increasing and all students--regardless of whether they pursue science as a career--need greater proficiency in the…

  12. Responding to National Concerns: A University/Secondary School/Business Partnership in Mathematics and Science Education.

    ERIC Educational Resources Information Center

    Fitzgerald, Sallyanne H.

    1990-01-01

    Discussed are the growth of partnerships between universities and public schools in the United States, and the need for improvement in science and mathematics education. A five-week program which involved inner-city students in different science experiences in a university environment is described. The results of this program are presented. (CW)

  13. Considerations of Multicultural Science and Curriculum Reform: A Content Analysis of State-Adopted Biology Textbooks in Florida

    ERIC Educational Resources Information Center

    Delgato, Margaret H.

    2009-01-01

    The purpose of this investigation was to determine the extent to which multicultural science education, including indigenous knowledge representations, had been infused within the content of high school biology textbooks. The study evaluated the textbook as an instructional tool and framework for multicultural science education instruction by…

  14. Delaware Technical & Community College's response to the critical shortage of Delaware secondary science teachers

    NASA Astrophysics Data System (ADS)

    Campbell, Nancy S.

    This executive position paper examines the critical shortage of Delaware high school science teachers and Delaware Technical & Community College's possible role in addressing this shortage. A concise analysis of economic and political implications of the science teacher shortage is presented. The following topics were researched and evaluated: the specific science teacher needs for Delaware school districts; the science teacher education program offerings at Delaware universities and colleges; the Alternative Route to Teacher Certification (ARTC); and the state of Delaware's scholarship response to the need. Recommendations for Delaware Tech's role include the development and implementation of two new Associate of Arts of Teaching programs in physics secondary science education and chemistry secondary science education.

  15. The Effectiveness of Traditional and 21st Century Teaching Tools on Students' Science Learning

    ERIC Educational Resources Information Center

    Bellflower, Julie V.

    2012-01-01

    Any student seeking a high school diploma from the public school system in one U.S. state must pass the state's high school graduation test. In 2009, only 88% of students at one high school in the state met the basic proficiency requirements on the science portion of the test. Because improved science education has been identified as an explicit…

  16. Ignatius of Loyola on medical education. Or: Should today's Jesuits continue to run health sciences schools?

    PubMed

    Welie, Jos V M

    2003-01-01

    There are present 28 Jesuit colleges and universities in the United States, which together offer more than 50 health sciences degree programs. But as the Society's membership is shrinking and the financial risks involved in sponsoring health sciences education are rising, the question arises whether the Society should continue to sponsor health sciences degree programs. In fact, at least eight Jesuit health sciences schools have already closed their doors. This paper attempts to contribute to the resolution of this urgent question by reexamining Ignatius own views on health sciences education and, more specifically, his prohibition of the Society's sponsoring medical education. It concludes on the basis of an historical analysis of Ignatius' views that there is insufficient support for today's Jesuits to maintain their engagement in medical and health care education.

  17. Crisis in Science and Math Education. Hearing before the Committee on Governmental Affairs, United States Senate. One Hundred First Congress, First Session.

    ERIC Educational Resources Information Center

    Congress of the U.S., Washington, DC. Senate Committee on Environment and Public Works.

    This document contains the transcript of a senate hearing on the crisis in science and math education. The document includes the opening statements of Senators Glenn, Kohl, Bingaman, Lieberman, Heinz, and Sasser, and the testimony of seven witnesses including: Honorable Mark O. Hatfield, Senator from the State of Oregon; Carl Sagan, Ph.D. Cornell…

  18. A State-By-State Policy Analysis of STEM Education for K-12 Public Schools

    ERIC Educational Resources Information Center

    Carmichael, Courtney C.

    2017-01-01

    For practitioners and policy makers across the nation, STEM education has a vague definition. This study looks at how all 50 states define STEM education in policy, using four models: (a) Disciplinary STEM (Science, Technology, Engineering, Mathematics); (b) Integrated STEM focusing on combining two or more disciplines to produce critical…

  19. Homeschooling in the United States: 2012. NCES 2016-096

    ERIC Educational Resources Information Center

    Redford, Jeremy; Battle, Danielle; Bielick, Stacey

    2016-01-01

    Since 1999, the National Household Education Surveys Program (NHES), conducted by the U.S. Department of Education's National Center for Education Statistics (NCES) in the Institute of Education Sciences, has collected nationally representative data that can be used to estimate the number of homeschooled students in the United States. This report…

  20. Bilingual Education: Current Perspectives. Volume 3: Law.

    ERIC Educational Resources Information Center

    Teitelbaum, Herbert; And Others

    The Office of the Commonwealth of Puerto Rico and the Center for Applied Linguistics cooperated in a state-of-the-art study of the field of bilingual education. State-of-the-art papers were commisioned in four general areas concerning bilingual education: social science, languages and linguistics, law, and education. Each paper formed the central…

  1. Helping Teachers Teach Plasma Physics

    NASA Astrophysics Data System (ADS)

    Correll, Donald

    2008-11-01

    Lawrence Livermore National Laboratory's E/O program in Fusion Science and Plasma Physics now includes both `pre-service' as well as `in-service' high school science teacher professional development activities. Teachers are instructed and mentored by `master teachers' and LLNL plasma researchers working in concert. The Fusion/Plasma E/O program exploits a unique science education partnership that exists between LLNL's Science Education Program and the UC Davis Edward Teller Education Center. For `in-service' teachers, the Fusion & Astrophysics Teacher Research Academy (TRA) has four levels of workshops that are designed to give in-service high school science teachers experience in promoting and conducting research, most notably in the filed of plasma spectroscopy. Participating teachers in all four TRA levels may earn up to ten units of graduate credit from Cal-State University East Bay, and may apply these units toward a Masters of Science in Education. For `pre-service' teachers, the Science Teacher and Researcher (STAR) program, as a partnership with the California State University System, includes attracting undergraduate science majors to teaching careers by allowing them to pursue professional identities as both a research scientist as well as a science teacher. Participating `pre-service' STAR students are provided research internships at LLNL and work closely with the `in-service' TRA teachers. Results from the continuum `pre-service' to `in-service' science teacher professional development programs will be presented.

  2. Inquiry Science Learning and Teaching: a Comparison Between the Conceptions and Attitudes of Pre-service Elementary Teachers in Hong Kong and the United States

    NASA Astrophysics Data System (ADS)

    Lee, Yeung Chung; Lee, Carole Kwan-Ping; Lam, Irene Chung-Man; Kwok, Ping Wai; So, Winnie Wing-Mui

    2018-01-01

    International studies of science education, such as the Trends in Mathematics and Science Study (TIMSS), have revealed considerable national disparities in students' achievements in science education. The results have prompted many nations to compare their science education systems and practices to those of others, to gain insights for improvement. Teacher training and professional development are key educational components that have not attracted as much attention as they deserve in international comparative studies. This study compares the conceptions and attitudes of pre-service elementary teachers (PSETs) in Hong Kong and the United States with respect to inquiry science learning and teaching at the beginning of the semester before the start of the science methods course. PSETs' conceptions and attitudes in the two countries were compared by means of a questionnaire with both Likert-type and open-ended questions. Quantitative data were analyzed using exploratory factor analysis and inferential statistics, while qualitative data were analyzed through the systematic categorization of PSETs' responses into broad themes and subthemes to reflect patterns in their conceptions of and attitudes toward inquiry science learning and teaching. The results revealed a complex interplay between PSETs' conceptions of and attitudes toward inquiry science learning and teaching. The results shed light on the effects of sociocultural contexts and have important implications for the design of science methods courses.

  3. Women physicists in Russia in a period of new reforms in fundamental science and higher education

    NASA Astrophysics Data System (ADS)

    Didenko, N.; Domashevskaya, E.; Ermolaeva, E.; Kunitsyna, E.; Vitman, R.

    2015-12-01

    New holistic reforms in the system of higher education and the State Academy of Sciences have been carried out in Russia recently. New types of universities were founded, and funding of science is shifting to a grants model. The Russian Ministry of Higher Education and Science is also working to attract well-known foreign scientists, especially expatriate Russians, through megagrants of 3-5 million to establish modern laboratories. Women are participating to an adequate degree in all parts of the ongoing reforms.

  4. The Quality of Undergraduate Science Education. Hearing before the Subcommittee on Science of the Committee on Science, Space, and Technology. U.S. House of Representatives, One Hundred Second Congress, Second Session.

    ERIC Educational Resources Information Center

    Congress of the U.S., Washington, DC. House Committee on Science, Space and Technology.

    The hearing, opened by Rep. Ray Thorton of Arkansas, addressed the perceived imbalance between teaching and research among university professors and the concern that the quality of undergraduate science education within the United States has deteriorated. Witnesses were called to examine factors that contribute to establishing an appropriate…

  5. Societal Issues and Their Importance for Contemporary Science Education--A Pedagogical Justification and the State-of-the-Art in Israel, Germany, and the USA

    ERIC Educational Resources Information Center

    Hofstein, Avi; Eilks, Ingo; Bybee, Rodger

    2011-01-01

    One common theme underlying recent reports on science education is that the content of school science and its related pedagogical approaches are not aligned with the interests and needs of both society and the majority of the students. Most students do not find their science classes interesting and motivating. These claims are especially valid…

  6. Federal Efforts in Science and Mathematics Education. Hearing before a Subcommittee of the Committee on Appropriations, United States Senate, One Hundred Second Congress, First Session. Special Hearing.

    ERIC Educational Resources Information Center

    Congress of the U.S., Washington, DC. Senate.

    This report contains the transcript of a hearing that addressed federal efforts in school science and mathematics education. Included are prepared statements from the subcommittee members and spokespersons for the Office of Science and Technology Policy within the Executive Office of the President, the National Science Foundation, and the…

  7. Integrating technology education concepts into China's educational system

    NASA Astrophysics Data System (ADS)

    Yang, Faxian

    The problem of this study was to develop a strategy for integrating technology education concepts within the Chinese mathematics and science curricula. The researcher used a case study as the basic methodology. It included three methods for collecting data: literature review, field study in junior and senior secondary schools in America and China, and interviews with experienced educators who were familiar with the status of technology education programs in the selected countries. The data came from the following areas: Japan, Taiwan, the United Kingdom, China, and five states in the United States: Illinois, Iowa, Maryland, Massachusetts, and New York. The researcher summarized each state and country's educational data, identified the advantages and disadvantages of their current technology education program, and identified the major concepts within each program. The process determined that identified concepts would be readily acceptable into the current Chinese educational system. Modernization of, industry, agriculture, science and technology, and defense have been recent objectives of the Chinese government. Therefore, Chinese understanding of technology, or technology education, became important for the country. However, traditional thought and culture curb the implementation of technology education within China's current education system. The proposed solution was to integrate technology education concepts into China's mathematics and science curricula. The purpose of the integration was to put new thoughts and methods into the current educational structure. It was concluded that the proposed model and interventions would allow Chinese educators to carry out the integration into China's education system.

  8. 2002 Mississippi Curriculum Framework: Comprehensive Consumer & Homemaking Education (Program CIP: 20.0101 - Comprehensive Consumer & Homemaking Education). Family and Consumer Sciences (Program CIP: 20.0192 - Family and Consumer Sciences)

    ERIC Educational Resources Information Center

    Arthur, Jan; Blackwell, Michelle; Clemmer, Phyllis; Cocroft, Shunda; Everett, Laurelie; Green, Coretta; West, Brenda; Yarbrough, Ruthie

    2002-01-01

    Secondary vocational-technical education programs in Mississippi are faced with many challenges resulting from sweeping educational reforms at the national and state levels. Schools and teachers are increasingly being held accountable for providing true learning activities to every student in the classroom. This accountability is measured through…

  9. Knowledge, Attitudes, and Commitment Concerning Evidence-Based Prevention Programs: Differences between Family and Consumer Sciences and 4-H Youth Development Educators

    ERIC Educational Resources Information Center

    Perkins, Daniel F.; Chilenski, Sarah Meyer; Olson, Jonathan R.; Mincemoyer, Claudia C.

    2014-01-01

    We describe the results of a study designed to assess knowledge, perceptions, and attitudes towards evidence-based and other prevention programs among county Extension educators. We examined differences across educators from Family and Consumer Sciences (FCS) and 4-H Youth Development. Analyses based on a multi-state sample of educators revealed…

  10. Biennial Report of the New York State Science Service, 1977-1978.

    ERIC Educational Resources Information Center

    New York State Education Dept., Albany.

    Contained within this report are summaries of activities of the New York State Science Service for the years 1977-1978. Within the introduction, the specific goals for the Science Service are listed. Activities within the following categories are summarized: services and advisory activities, education in honorarium and volunteer programs, grant or…

  11. Beyond "My Opinion versus Yours"

    ERIC Educational Resources Information Center

    Chowning, Jeanne Ting; Griswold, Joan

    2014-01-01

    The "Next Generation Science Standards" (NGSS Lead States 20103) identify evidence-based argumentation as a key practice in science education. This argumentation comes in many forms, each providing a unique theoretical perspective and area of educational research. Argumentation can help model aspects of scientific culture and…

  12. UNESCO's activities in ethics.

    PubMed

    ten Have, Henk A M J

    2010-03-01

    UNESCO is an intergovernmental organization with 193 Member States. It is concerned with a broad range of issues regarding education, science and culture. It is the only UN organisation with a mandate in science. Since 1993 it is addressing ethics of science and technology, with special emphasis on bioethics. One major objective of the ethics programme is the development of international normative standards. This is particularly important since many Member States only have a limited infrastructure in bioethics, lacking expertise, educational programs, bioethics committees and legal frameworks. UNESCO has recently adopted the Universal Declaration on Bioethics and Human Rights. The focus of current activities is now on implementation of this Declaration. Three activities are discussed that aim at improving and reinforcing the ethics infrastructure in relation to science and technology: the Global Ethics Observatory, the Ethics Education Programme and the Assisting Bioethics Committees project.

  13. Agricultural Awareness Days: Integrating Agricultural Partnerships and STEM Education

    ERIC Educational Resources Information Center

    Campbell, Brian T.; Wilkinson, Carol A.; Shepherd, Pamela J.

    2014-01-01

    In the United States there is a need to educate young children in science, technology, and agriculture. Through collaboration with many agricultural groups, the Southern Piedmont Agricultural Research and Education Center has set up a program that works with 3rd grade students and teachers to reinforce the science that has been taught in the…

  14. Exploration of the Alignment of State Data and Infrastructure to Mathematics and Science Success Indicators

    ERIC Educational Resources Information Center

    Mandinach, Ellen B.; Hauk, Shandy

    2017-01-01

    A range of education initiatives in the U.S. are focusing on ways to improve curriculum, instruction, teacher development, and student assessment related to science, technology, engineering, and mathematics (STEM) education. Key indicators to monitor the quality of STEM education have been proposed by the National Research Council. This paper is…

  15. An Examination of Farmworker Pesticide Educators in a Southeastern State: Informal Science Educators and Risk Communication

    ERIC Educational Resources Information Center

    LePrevost, Catherine E.

    2011-01-01

    Because pesticide exposure is a significant hazard to farmworkers in their working and living environments, basic pesticide toxicology is a topic for farmworker science education that has implications beyond scientific literacy to encompass farmworkers' safety and health. Migrant and seasonal farmworkers have been identified as an at-risk…

  16. Education:=Coding+Aesthetics; Aesthetic Understanding, Computer Science Education, and Computational Thinking

    ERIC Educational Resources Information Center

    Good, Jonathon; Keenan, Sarah; Mishra, Punya

    2016-01-01

    The popular press is rife with examples of how students in the United States and around the globe are learning to program, make, and tinker. The Hour of Code, maker-education, and similar efforts are advocating that more students be exposed to principles found within computer science. We propose an expansion beyond simply teaching computational…

  17. Creating opportunities for science PhDs to pursue careers in high school education

    PubMed Central

    Doyle, Kari M. H.; Vale, Ronald D.

    2013-01-01

    The United States is confronting important challenges at both the early and late stages of science education. At the level of K–12 education, a recent National Research Council report (Successful K–12 STEM Education) proposed a bold restructuring of how science is taught, moving away from memorizing facts and emphasizing hands-on, inquiry-based learning and a deeper understanding of the process of science. At higher levels of training, limited funding for science is leading PhDs to seek training and careers in areas other than research. Might science PhDs play a bigger role in the future of K–12 education, particularly at the high school level? We explore this question by discussing the roles that PhDs can play in high school education and the current and rather extensive barriers to PhDs entering the teaching profession and finally suggest ways to ease the entrance of qualified PhDs into high school education. PMID:24174464

  18. Creating opportunities for science PhDs to pursue careers in high school education.

    PubMed

    Doyle, Kari M H; Vale, Ronald D

    2013-11-01

    The United States is confronting important challenges at both the early and late stages of science education. At the level of K-12 education, a recent National Research Council report (Successful K-12 STEM Education) proposed a bold restructuring of how science is taught, moving away from memorizing facts and emphasizing hands-on, inquiry-based learning and a deeper understanding of the process of science. At higher levels of training, limited funding for science is leading PhDs to seek training and careers in areas other than research. Might science PhDs play a bigger role in the future of K-12 education, particularly at the high school level? We explore this question by discussing the roles that PhDs can play in high school education and the current and rather extensive barriers to PhDs entering the teaching profession and finally suggest ways to ease the entrance of qualified PhDs into high school education.

  19. Standards for Certification/Preparation of Social Studies Teachers: A Fifty State Study.

    ERIC Educational Resources Information Center

    Dumas, Wayne; Weible, Tom

    A national survey determined minimum certification requirements for secondary social studies teachers in general education, professional education, and history/social science. Data were obtained through questionnaires completed by social studies education curriculum specialists and by officials in the certification divisions of state education…

  20. Measuring Science Instructional Practice: A Survey Tool for the Age of NGSS

    NASA Astrophysics Data System (ADS)

    Hayes, Kathryn N.; Lee, Christine S.; DiStefano, Rachelle; O'Connor, Dawn; Seitz, Jeffery C.

    2016-03-01

    Ambitious efforts are taking place to implement a new vision for science education in the United States, in both Next Generation Science Standards (NGSS)-adopted states and those states creating their own, often related, standards. In-service and pre-service teacher educators are involved in supporting teacher shifts in practice toward the new standards. With these efforts, it will be important to document shifts in science instruction toward the goals of NGSS and broader science education reform. Survey instruments are often used to capture instructional practices; however, existing surveys primarily measure inquiry based on previous definitions and standards and with a few exceptions, disregard key instructional practices considered outside the scope of inquiry. A comprehensive survey and a clearly defined set of items do not exist. Moreover, items specific to the NGSS Science and Engineering practices have not yet been tested. To address this need, we developed and validated a Science Instructional Practices survey instrument that is appropriate for NGSS and other related science standards. Survey construction was based on a literature review establishing key areas of science instruction, followed by a systematic process for identifying and creating items. Instrument validity and reliability were then tested through a procedure that included cognitive interviews, expert review, exploratory and confirmatory factor analysis (using independent samples), and analysis of criterion validity. Based on these analyses, final subscales include: Instigating an Investigation, Data Collection and Analysis, Critique, Explanation and Argumentation, Modeling, Traditional Instruction, Prior Knowledge, Science Communication, and Discourse.

  1. The Effectiveness of Traditional and 21st Century Teaching Tools on Students' Science Learning

    NASA Astrophysics Data System (ADS)

    Bellflower, Julie V.

    Any student seeking a high school diploma from the public school system in one U.S. state must pass the state's high school graduation test. In 2009, only 88% of students at one high school in the state met the basic proficiency requirements on the science portion of the test. Because improved science education has been identified as an explicit national goal, the purpose of this mixed methods study was to determine whether traditional teaching tools (notes, lecture, and textbook) or 21st century teaching tools (online tutorials, video games, YouTube, and virtual labs) lead to greater gains in students' science learning. Bruner's constructivist and Bandura's social cognitive theories served as the foundations for the study. Quantitative research questions were used to investigate the relationship between the type of teaching tools used and student learning gains. Quantitative data from students' pre and posttests were collected and analyzed using a dependent samples t-test. Qualitative data were collected through a focus group interview and participant journals. Analysis of the qualitative data included coding the data and writing a descriptive narrative to convey the findings. Results showed no statistically significant differences in students' science achievement: both types of teaching tools led to student learning gains. As a result, an action plan was developed to assist science educators in the implementation of traditional and 21st century teaching tools that can be used to improve students' science learning. Implications for positive social change included providing science educators with a specific plan of action that will enhance students' science learning, thereby increasing science scores on the state and other high stakes tests.

  2. The effects of calculator-based laboratories on standardized test scores

    NASA Astrophysics Data System (ADS)

    Stevens, Charlotte Bethany Rains

    Nationwide, the goal of providing a productive science and math education to our youth in today's educational institutions is centering itself around the technology being utilized in these classrooms. In this age of digital technology, educational software and calculator-based laboratories (CBL) have become significant devices in the teaching of science and math for many states across the United States. Among the technology, the Texas Instruments graphing calculator and Vernier Labpro interface, are among some of the calculator-based laboratories becoming increasingly popular among middle and high school science and math teachers in many school districts across this country. In Tennessee, however, it is reported that this type of technology is not regularly utilized at the student level in most high school science classrooms, especially in the area of Physical Science (Vernier, 2006). This research explored the effect of calculator based laboratory instruction on standardized test scores. The purpose of this study was to determine the effect of traditional teaching methods versus graphing calculator teaching methods on the state mandated End-of-Course (EOC) Physical Science exam based on ability, gender, and ethnicity. The sample included 187 total tenth and eleventh grade physical science students, 101 of which belonged to a control group and 87 of which belonged to the experimental group. Physical Science End-of-Course scores obtained from the Tennessee Department of Education during the spring of 2005 and the spring of 2006 were used to examine the hypotheses. The findings of this research study suggested the type of teaching method, traditional or calculator based, did not have an effect on standardized test scores. However, the students' ability level, as demonstrated on the End-of-Course test, had a significant effect on End-of-Course test scores. This study focused on a limited population of high school physical science students in the middle Tennessee Putnam County area. The study should be reproduced in various school districts in the state of Tennessee to compare the findings.

  3. Can Science Test Supernatural Worldviews?

    NASA Astrophysics Data System (ADS)

    Fishman, Yonatan I.

    2009-06-01

    Several prominent scientists, philosophers, and scientific institutions have argued that science cannot test supernatural worldviews on the grounds that (1) science presupposes a naturalistic worldview (Naturalism) or that (2) claims involving supernatural phenomena are inherently beyond the scope of scientific investigation. The present paper argues that these assumptions are questionable and that indeed science can test supernatural claims. While scientific evidence may ultimately support a naturalistic worldview, science does not presuppose Naturalism as an a priori commitment, and supernatural claims are amenable to scientific evaluation. This conclusion challenges the rationale behind a recent judicial ruling in the United States concerning the teaching of “Intelligent Design” in public schools as an alternative to evolution and the official statements of two major scientific institutions that exert a substantial influence on science educational policies in the United States. Given that science does have implications concerning the probable truth of supernatural worldviews, claims should not be excluded a priori from science education simply because they might be characterized as supernatural, paranormal, or religious. Rather, claims should be excluded from science education when the evidence does not support them, regardless of whether they are designated as ‘natural’ or ‘supernatural’.

  4. Leveraging Cognitive Science Underpinnings to Enhance NGSS Astronomy Concepts

    NASA Astrophysics Data System (ADS)

    Slater, Stephanie; Slater, Timothy F.

    2014-06-01

    National-scale science education reform efforts have been hampered by highly fragmented frameworks and standards that vary considerably from one state to the next. In an effort to improve the quality of science education across the nation’s K-12 schools, the 2013 Next Generation Science Standards (NGSS) have been designed to guide states in specifying the learning targets and performance expectations of all K-12 students. The NGSS is designed to reflect the 2011 Framework for K-12 Science Education developed by the National Research Council of the National Academy of Sciences. As teachers, curriculum developers, and assessment experts begin to implement the NGSS in specific geographical and socio-economic contexts, moving beyond an examination of common student misconceptions and reasoning difficulties to delineate the specific cognitive sources of those difficulties, and the specific interventions that can serve as countermeasures, should be a fruitful next step. While astronomy education researchers have already documented challenges in teaching system processes that operate with the space system, solar system, and interconnected Earth science systems, we are far from a thorough understanding of student thinking in astronomy. Many of these ideas can be better taught-and tested-by carefully examining the underlying cognitive science including learners’ difficulties with spatial thinking and the prescribed astronomy and space science concepts. The NGSS may prove to be useful as a framework for next steps in the cognitive science within astronomy, and this work may benefit from deliberate collaborations between education researchers, curriculum developers, and those who engage in teacher professional development.

  5. Developing a World View for Science Education: A Message from the NSTA President

    ERIC Educational Resources Information Center

    Padilla, Michael

    2005-01-01

    Substantial growth of Hispanic and Asian immigration in the United States during the past decade has begun to affect almost all school systems, not just those in urban or coastal areas. This realization has led the author to choose Developing a World View for Science Education as the theme for his National Science Teachers Association (NSTA)…

  6. Science Education in Three-Part Harmony: Balancing Conceptual, Epistemic, and Social Learning Goals

    ERIC Educational Resources Information Center

    Duschl, Richard

    2008-01-01

    Two major reform efforts in K-12 science education have taken place during the past 50 years. The first was the 1950-1970 curriculum reform efforts motivated by the launching of Sputnik and sponsored by the newly formed National Science Foundation (NSF) in the United States and by the Nuffield Foundation in the United Kingdom. The signature goal…

  7. State-Controlled Multimedia Education for All? Science Programs in Early German Radio

    ERIC Educational Resources Information Center

    Schirrmacher, Arne

    2012-01-01

    While science education and popularization by means of print media developed in quite similar forms in many nations, the advent of radio resulted in initiatives to bring science on the air that were rather heterogeneous from country to country. The German case stands out with respect to quantity, variety and ambition, and also for its special…

  8. An Empirical Study about China: Gender Equity in Science Education.

    ERIC Educational Resources Information Center

    Wang, Jianjun; Staver, John R.

    A data base representing a random sample of more than 10,000 grade 9 students in an SISS (Second IEA Science Study) Extended Study (SES), a key project supported by the China State Commission of Education in the late 1980s, was employed in this study to investigate gender equity in student science achievement in China. This empirical data analysis…

  9. Inquiry, Argumentation, and the Phases of the Moon: Helping Students Learn Important Concepts and Practices

    ERIC Educational Resources Information Center

    Hall, Cady B.; Sampson, Victor

    2009-01-01

    An important goal of the current reform movement in science education is to promote scientific literacy in the United States, and scientific inquiry is at its heart. However, the National Science Education Standards clearly indicate that to promote inquiry, more emphasis should be placed on "science as argument and explanation" rather than on…

  10. A Survey of Preparation for Metric Changeover among Supervisors of Science and Mathematics at the State Department of Education Level.

    ERIC Educational Resources Information Center

    Trueblood, Cecil R.; And Others

    1981-01-01

    Described is the Northeast Metric Education Consortium survey to study the status of metric conversion throughout the United States. The six categories in the survey included teacher certification practices, status of full metric conversion, state's commitment to metrics, state supervisors' budgetary needs, state metric-resources availability, and…

  11. Science Education and Public Outreach Forums (SEPOF): Providing Coordination and Support for NASA's Science Mission Directorate Education and Outreach Programs

    NASA Astrophysics Data System (ADS)

    Mendez, B. J.; Smith, D.; Shipp, S. S.; Schwerin, T. G.; Stockman, S. A.; Cooper, L. P.; Peticolas, L. M.

    2009-12-01

    NASA is working with four newly-formed Science Education and Public Outreach Forums (SEPOFs) to increase the overall coherence of the Science Mission Directorate (SMD) Education and Public Outreach (E/PO) program. SEPOFs support the astrophysics, heliophysics, planetary and Earth science divisions of NASA SMD in three core areas: * E/PO Community Engagement and Development * E/PO Product and Project Activity Analysis * Science Education and Public Outreach Forum Coordination Committee Service. SEPOFs are collaborating with NASA and external science and education and outreach communities in E/PO on multiple levels ranging from the mission and non-mission E/PO project activity managers, project activity partners, and scientists and researchers, to front line agents such as naturalists/interpreters, teachers, and higher education faculty, to high level agents such as leadership at state education offices, local schools, higher education institutions, and professional societies. The overall goal for the SEPOFs is increased awareness, knowledge, and understanding of scientists, researchers, engineers, technologists, educators, product developers, and dissemination agents of best practices, existing NASA resources, and community expertise applicable to E/PO. By coordinating and supporting the NASA E/PO Community, the NASA/SEPOF partnerships will lead to more effective, sustainable, and efficient utilization of NASA science discoveries and learning experiences.

  12. The Arctic Research Consortium of the United States (ARCUS)

    NASA Astrophysics Data System (ADS)

    Wiggins, H. V.; Warnick, W. K.

    2008-12-01

    The Arctic Research Consortium of the United States (ARCUS) is a nonprofit membership organization composed of universities and institutions that have a substantial commitment to research in the Arctic. ARCUS was formed in 1988 to serve as a forum for planning, facilitating, coordinating, and implementing interdisciplinary studies of the Arctic; to act as a synthesizer and disseminator of scientific information on arctic research; and to educate scientists and the general public about the needs and opportunities for research in the Arctic. ARCUS, in collaboration with the broader science community, relevant agencies and organizations, and other stakeholders, coordinates science planning and educational activities across disciplinary and organizational boundaries. Examples of current ARCUS science planning activities include: serving as the project office for the multi- agency Study of Environmental Arctic Change (SEARCH) program, providing support to the related Bering Ecosystem Study (BEST), and serving as the Science Management Office for the National Science Foundation (NSF) Arctic System Science (ARCSS) Program. ARCUS" central educational activity is PolarTREC (Teachers and Researchers Exploring and Collaborating), an International Polar Year (IPY) program whereby K-12 educators and researchers work together in hands-on field experiences in the Arctic and Antarctic to advance polar science education. Additional science planning, educational, information, and outreach activities include, among many others, the Witness the Arctic newsletter, the Arctic Visiting Speakers" Series, the ArcticInfo listserve, the Internet Media Archive (IMA), and the annual Arctic Forum conference. More information about these and other ARCUS activities can be found at the ARCUS website at: http://www.arcus.org.

  13. The Arctic Research Consortium of the United States

    NASA Astrophysics Data System (ADS)

    Warnick, W. K.; Wiggins, H. V.

    2007-12-01

    The Arctic Research Consortium of the United States (ARCUS) is a nonprofit membership organization composed of universities and institutions that have a substantial commitment to research in the Arctic. ARCUS was formed in 1988 to serve as a forum for planning, facilitating, coordinating, and implementing interdisciplinary studies of the Arctic; to act as a synthesizer and disseminator of scientific information on arctic research; and to educate scientists and the general public about the needs and opportunities for research in the Arctic. ARCUS, in collaboration with the broad science community, relevant agencies and organizations, and other stakeholders, coordinates science planning and educational activities across disciplinary and organizational boundaries. Examples of current ARCUS science planning activities include: serving as the project office for the multi-agency Study of Environmental Arctic Change (SEARCH) program and providing support to the related Bering Ecosystem Study (BEST), and serving as the Science Management Office for the National Science Foundation (NSF) Arctic System Science (ARCSS) Program. ARCUS' central educational activity is PolarTREC (Teachers and Researchers Exploring and Collaborating), an International Polar Year (IPY) program whereby K-12 educators and researchers work together in hands-on field experiences in the Arctic and Antarctic to advance polar science education. Additional science planning, educational, information, and outreach activities include the Witness the Arctic newsletter, the Arctic Visiting Speakers' Series, the ArcticInfo listserve, the Internet Media Archive (IMA), the annual Arctic Forum conference, and many others. More information about these and other ARCUS activities can be found at the ARCUS website at www.arcus.org.

  14. The Arctic Research Consortium of the United States (ARCUS)

    NASA Astrophysics Data System (ADS)

    Creek, K. R.; Fox, S. E.; Wiggins, H. V.

    2010-12-01

    The Arctic Research Consortium of the United States (ARCUS) is a nonprofit membership organization composed of universities and institutions that have a substantial commitment to research in the Arctic. ARCUS was formed in 1988 to serve as a forum for planning, facilitating, coordinating, and implementing interdisciplinary studies of the Arctic; to act as a synthesizer and disseminator of scientific information on arctic research; and to educate scientists and the general public about the needs and opportunities for research in the Arctic. ARCUS, in collaboration with the broader science community, relevant agencies and organizations, and other stakeholders, coordinates science planning and educational activities across disciplinary and organizational boundaries. Examples of current ARCUS science planning activities include: serving as the project office for the multi-agency Study of Environmental Arctic Change (SEARCH) program, providing support to the related Bering Ecosystem Study (BEST), and serving as the Science Management Office for the National Science Foundation (NSF) Arctic System Science (ARCSS) Program. ARCUS’ central educational activity is PolarTREC (Teachers and Researchers Exploring and Collaborating), an International Polar Year (IPY) program whereby K-12 educators and researchers work together in hands-on field experiences in the Arctic and Antarctic to advance polar science education. Additional science planning, educational, information, and outreach activities include, among many others, the Witness the Arctic newsletter, the Arctic Visiting Speakers’ Series, the ArcticInfo listserve, the Internet Media Archive (IMA), and the annual Arctic Forum conference. More information about these and other ARCUS activities can be found at the ARCUS website at: http://www.arcus.org.

  15. Preparing students for higher education and careers in agriculture and related fields: An ethnography of an urban charter school

    NASA Astrophysics Data System (ADS)

    Henry, Kesha Atasha

    This study explored the preparation of students for higher education and careers in agriculturally-related fields at an urban charter high school. The data were collected through interviews, observations, and field notes. The data were analyzed by qualitative methodology with phenomenology as the theoretical framework. Findings indicated that administrators thought it was important to incorporate agricultural science courses into urban school curricula. They stated that agricultural science courses gave urban students a different way of looking at science and helped to enhance the science and technology focus of the school. Further, agricultural science courses helped to break urban students' stereotypes about agriculture and helped to bring in more state funding for educational programs. However they thought that it was more challenging to teach agricultural science in urban versus rural schools and they focused more on Science, Technology, Engineering, and Mathematics (STEM) related careers. The students had mixed views about higher education and careers in agriculture. This was based on their limited knowledge and stereotypes about agricultural majors and career options. The students highlighted several key reasons why they chose to enroll in agricultural science courses. This included the benefits of dual science credits and the ability to earn an associate degree upon successful completion of their program. Students also loved science and appreciated the science intensive nature of the agricultural courses. Additionally, they thought that the agricultural science courses were better than the other optional courses. The results also showed that electronic media such as radio and TV had a negative impact on students' perceptions about higher education and careers in agriculturally-related fields. Conclusions and recommendations are presented.

  16. Educational Satellite Loan Guarantee Program Act, and Distance Learning. Hearing before the Subcommittee on Science, Technology, and Space of the Committee on Commerce, Science, and Transportation. United States Senate. One Hundred Fourth Congress, Second Session.

    ERIC Educational Resources Information Center

    Congress of the U.S., Washington, DC. Senate Committee on Commerce, Science, and Transportation.

    This document presents witness testimony and supplemental materials from a Congressional hearing focused on the role of technology in promoting distance learning in the United States. Distance learning programs make educational resources available to citizens, regardless of socioeconomic status or geographic location, and enable citizens to remain…

  17. MSaTERs: Mathematics, Science, and Technology Educators and Researchers of The Ohio State University. Proceedings of the Annual Spring Conference (2nd, May 16, 1998, Columbus, OH).

    ERIC Educational Resources Information Center

    Reed, Michelle K., Ed.; Costner, Kelly M., Ed.

    The Mathematics, Science, and Technology Educators and Researchers of The Ohio State University (MSaTERS-OSU) is a newly formed student organization. Papers from the conference include: (1) "Was the Geometry Course, The Nature of Proof, Taught by Harold Pascoe Fawcett the Best Course Ever Taught in Secondary School?" (Frederick Flener); (2) "A…

  18. NEWEST teachers

    NASA Technical Reports Server (NTRS)

    1996-01-01

    NEWEST, or NASA Educational Workshops for Elementary School Teachers, is a two-week honors program for teachers, sponsored by NASA, the National Science Teachers Association, the National Council of Teachers of Mathematics and the International Technology Education-Association. A total of 25 teachers from the United States and U.S. State Department schools in Europe are chosen to work with NASA and other federal agency science and engineering professionals. Pictured, participants make hot air balloons as part of their activities.

  19. Museums, zoos, and gardens: how formal-informal partnerships can impact urban students' performance in science.

    PubMed

    Weinstein, Meryle; Whitesell, Emilyn Ruble; Schwartz, Amy Ellen

    2014-12-01

    Informal science education institutions (ISEIs) are critical partners in public science education, as they support the science efforts of school systems by providing authentic opportunities for scientific inquiry. This study reports findings from an evaluation of urban advantage (UA), a collaboration between the New York City Department of Education and eight ISEIs designed to improve science education in New York City (NYC) middle schools. Now in its 10th year, the program harnesses the resources and expertise of NYC's ISEIs to (a) enhance the science content knowledge of middle school science teachers, (b) develop teachers' skills at using inquiry-based approaches in their classrooms, and (c) improve the science achievement of middle school students. We examine whether the UA program has led to increased student achievement on the eighth-grade New York State standardized science exam for students in participating schools; in supplemental analyses, we examine the effects on longer term (ninth-grade) outcomes. We use a difference-in-differences framework with school fixed effects to estimate the impact of attending a UA school in eighth grade on science achievement. Our key outcome is performance on New York State's eighth-grade intermediate-level science assessment; longer term outcomes include enrollment at specialized science, technology, engineering, and math high schools as well as taking and passing the high school (Regents) science exams. We find that attending a UA school increases student performance on the eighth-grade science exam by approximately 0.05 SD, and there is some evidence of small effects on Regents taking and passing rates. © The Author(s) 2014.

  20. Arab Bureau of Education for the Gulf States: Its Role in the Development of Education.

    ERIC Educational Resources Information Center

    Rasheed, Mohammed A.

    The Arab Bureau of Education for the Gulf States (ABEGS) is a regional organization for education, culture, and science founded in 1975 in Riyadh, Saudi Arabia. This paper examines the goals, objectives, and accomplishments of ABEGS, its background; its organizational structure; its major accomplishments; and its future plans in the fields of…

  1. AAFCS Webinars: Statewide Opportunities for FCS Educators

    ERIC Educational Resources Information Center

    Kohl, Mary Jo

    2012-01-01

    Due to budget restrictions over recent years, the state of Ohio has limited the number of face-to-face state consultant implemented professional development seminars for educators to attend. In order to meet the professional development demands of Ohio family and consumer sciences (FCS) teachers, the Ohio Department of Education FCS consultant…

  2. Needed: Reincarnation of National Defense Education Act of 1958

    NASA Astrophysics Data System (ADS)

    Harris, Mary M.; Miller, James R.

    2005-06-01

    This paper reviews the historical and current response of the United States to threats to its world leadership in scientific endeavors, with particular attention to the National Defense Education Act of 1958. The current status of the United States in mathematics, science, and engineering education is reviewed with respect to K-12 student achievement, K-12 teacher quality, numbers of degrees granted, and other indicators of international competitiveness. Concluding that we are a nation in peril, recommendations are made to enhance the likelihood that the United States will retain its preeminent position in science and technology and, therefore, provide for the national defense and economic wellbeing of citizens in an information age and global economy.

  3. Globalization and Science Education

    NASA Astrophysics Data System (ADS)

    Bencze, J. Lawrence; Carter, Lyn; Chiu, Mei-Hung; Duit, Reinders; Martin, Sonya; Siry, Christina; Krajcik, Joseph; Shin, Namsoo; Choi, Kyunghee; Lee, Hyunju; Kim, Sung-Won

    2013-06-01

    Processes of globalization have played a major role in economic and cultural change worldwide. More recently, there is a growing literature on rethinking science education research and development from the perspective of globalization. This paper provides a critical overview of the state and future development of science education research from the perspective of globalization. Two facets are given major attention. First, the further development of science education as an international research domain is critically analyzed. It seems that there is a predominance of researchers stemming from countries in which English is the native language or at least a major working language. Second, the significance of rethinking the currently dominant variants of science instruction from the perspectives of economic and cultural globalization is given major attention. On the one hand, it is argued that processes concerning globalization of science education as a research domain need to take into account the richness of the different cultures of science education around the world. At the same time, it is essential to develop ways of science instruction that make students aware of the various advantages, challenges and problems of international economic and cultural globalization.

  4. Globalization and Science Education

    NASA Astrophysics Data System (ADS)

    Bencze, J. Lawrence; Carter, Lyn; Chiu, Mei-Hung; Duit, Reinders; Martin, Sonya; Siry, Christina; Krajcik, Joseph; Shin, Namsoo; Choi, Kyunghee; Lee, Hyunju; Kim, Sung-Won

    2012-12-01

    Processes of globalization have played a major role in economic and cultural change worldwide. More recently, there is a growing literature on rethinking science education research and development from the perspective of globalization. This paper provides a critical overview of the state and future development of science education research from the perspective of globalization. Two facets are given major attention. First, the further development of science education as an international research domain is critically analyzed. It seems that there is a predominance of researchers stemming from countries in which English is the native language or at least a major working language. Second, the significance of rethinking the currently dominant variants of science instruction from the perspectives of economic and cultural globalization is given major attention. On the one hand, it is argued that processes concerning globalization of science education as a research domain need to take into account the richness of the different cultures of science education around the world. At the same time, it is essential to develop ways of science instruction that make students aware of the various advantages, challenges and problems of international economic and cultural globalization.

  5. Collaboration between research scientists and educators in implementation of a Masters program for training new Earth Science teachers in New York State

    NASA Astrophysics Data System (ADS)

    Nadeau, P. A.; Flores, K. E.; Zirakparvar, N. A.; Grcevich, J.; Ustunisik, G. K.; Kinzler, R. J.; Macdonald, M.; Mathez, E. A.; Mac Low, M.

    2012-12-01

    Educators and research scientists at the American Museum of Natural History are collaborating to implement a teacher education program with the goal of addressing a critical shortage of qualified Earth Science teachers in New York State (NYS), particularly in high-needs schools with diverse populations. This pilot program involves forging a one-of-a-kind partnership between a world-class research museum and high-needs schools in New York City. By placing teaching candidates in such schools, the project has potential to engage, motivate, and improve Earth Science achievement and interest in STEM careers of thousands of students from traditionally underrepresented populations including English language learners, special education students, and racial minority groups. The program, which is part of the state's Race to the Top initiative, is approved by the NYS Board of Regents and will prepare a total of 50 candidates in two cohorts to earn a Board of Regents-awarded Masters of Arts in Teaching (MAT) degree with a specialization in Earth Science for grades 7-12. The museum is in a unique position of being able to break traditional educational barriers as a result of a long history of interdisciplinary collaborations between educators and research scientists, as well as being the only stand-alone science graduate degree-granting museum in the United States. The intensive 15-month curriculum for MAT candidates comprises one summer of museum teaching residency, a full academic year of residency in high-needs public schools, one summer of science research residency, and concurrent graduate-level courses in Earth and space sciences, pedagogy, and adolescent psychology. We emphasize field-based geological studies and experiential learning, in contrast to many traditional teacher education programs. In an effort to ensure that MAT candidates have a robust knowledge base in Earth science, and per NYS Department of Education requirements, we selected candidates with strong backgrounds in fields including geology, meteorology, and environmental science and engineering. Program faculty includes curators and post-doctoral fellows specializing in geology, astrophysics, and paleontology, and doctoral-level Education faculty, who work side by side across disciplines to develop and co-teach courses. With the first cohort of teaching candidates having entered the program in June of 2012, the MAT program is still in the early stages. Current teacher candidates have a wide variety of scientific expertise, come from diverse geographic localities, range from recent bachelors graduates to career changers, and thus far have provided much positive feedback about their experiences with the MAT curriculum. Here we report on the first 6 months of the program.

  6. STEM Enrichment Programs and Graduate School Matriculation: The Role of Science Identity Salience

    ERIC Educational Resources Information Center

    Merolla, David M.; Serpe, Richard T.

    2013-01-01

    Improving the state of science education in the United States has become a national priority. One response to this problem has been the implementation of STEM enrichment programs designed to increase the number of students that enter graduate programs in science. Current research indicates enrichment programs have positive effects for student…

  7. Student Science Achievement and the Integration of Indigenous Knowledge on Standardized Tests

    ERIC Educational Resources Information Center

    Dupuis, Juliann; Abrams, Eleanor

    2017-01-01

    In this article, we examine how American Indian students in Montana performed on standardized state science assessments when a small number of test items based upon traditional science knowledge from a cultural curriculum, "Indian Education for All", were included. Montana is the first state in the US to mandate the use of a culturally…

  8. A Framework for Analyzing Cognitive Demand and Content-Practices Integration: Task Analysis Guide in Science

    ERIC Educational Resources Information Center

    Tekkumru-Kisa, Miray; Stein, Mary Kay; Schunn, Christian

    2015-01-01

    Many countries, including the United States, emphasize the importance of developing students' scientific habits of mind and their capacity to think deeply about scientific ideas in an integrated fashion. Recent science education policies in the United States portray a related vision of science teaching and learning that is meant to guide the…

  9. Where Theory and Law Meet: Trends in establishment clause jurisprudence in the US federal courts and implications for science education

    NASA Astrophysics Data System (ADS)

    King, Lance E.; Southerland, Sherry A.

    2013-03-01

    In this study, federal court opinions and writings of legal scholars, spanning 63 years of establishment clause jurisprudence in the US federal courts were analysed in an effort to determine dominant trends in judicial philosophy that are of significance to science educators. The study's findings suggest that the dominant legal theory underpinning the adjudication of establishment clause cases on the US Supreme Court has undergone a shift from one that emphasizes separation of church and state to one that favours integration of religion in the public sphere. This development poses significant challenges to science educators who are charged with the task of teaching in accordance with state science standards that emphasize topics that are considered controversial (e.g. evolution and global climate change) by many in the faith-based community. These findings constitute a basis for forecasting future actions in US courts regarding the role of government in establishing religious practices in the public sphere-particularly where such actions intersect with the roles of teachers in the nation's public K-12 science classrooms. Finally, we argue that scientists and science educators must adopt an assertive stance in defining science in curricular frameworks, providing something for the courts to draw upon in future decisions.

  10. Science and environmental field experiences at a formal environmental education site: An investigation of teacher participation and educators' perceptions in a large urban school district

    NASA Astrophysics Data System (ADS)

    Sugg, Paul G.

    The state curriculum in Texas was amended in 1997 to require field investigations in all science classes. This study attempted to explore and add to the research base of information about the efficacy and use of field investigations as important but often underutilized tools in science and environmental instruction. The underlying theme of the study was the view that urban students should receive more instruction in natural settings and that doing so not only improves science learning but also environmental literacy. A sequential mixed method approach was employed to investigate teacher and principal participation in, and perceptions of, outdoor field investigations in public school instruction. In the quantitative phase, surveys were administered to 277 science teachers and 96 principals in a large, urban, Texas district. Significant differences (p ≤ .05) were found between teachers and principals who utilized the field investigation and those who did not. In the qualitative phase, 12 teachers were interviewed about various factors related to field investigations. The study found that while science teachers generally have positive opinions of field studies, awareness of the requirement to provide them is low and obstacles remain which prevent teachers from employing the method. Many science teachers are not providing opportunities for their students to experience science and environmental education instruction in natural settings. Half of the teachers and more than a third of the principals surveyed were not aware of the requirement to provide students with field investigations. The study generated quantitative and qualitative evidence demonstrating that teacher use of the field investigation method is strongly linked to the following factors: (a) teacher and principal awareness of the requirement; (b) administrator support; (c) funding for transportation to appropriate natural settings; (d) intra or interdepartmental competition for limited field trip opportunities; and (e) teacher training. The presence or absence of these factors has significant implications for policy and practice in science and environmental education. The findings supply data that could be used by state and local administrators, curriculum superintendents, science curriculum leaders, elementary and secondary principals, and science educators to guide and improve science and environmental instruction in the state.

  11. Using Amphibians and Reptiles to Learn the Process of Science

    ERIC Educational Resources Information Center

    Greene, Janice Schnake; Greene, Brian D.

    2005-01-01

    Although every student must take some science courses to graduate, understanding the process of science is important, and some students never seem to really grasp science. The National Science Education Standards stress process as a major component in science instruction. The standards state that scientific inquiry is basic to science education…

  12. Student science achievement and the integration of Indigenous knowledge on standardized tests

    NASA Astrophysics Data System (ADS)

    Dupuis, Juliann; Abrams, Eleanor

    2017-09-01

    In this article, we examine how American Indian students in Montana performed on standardized state science assessments when a small number of test items based upon traditional science knowledge from a cultural curriculum, "Indian Education for All", were included. Montana is the first state in the US to mandate the use of a culturally relevant curriculum in all schools and to incorporate this curriculum into a portion of the standardized assessment items. This study compares White and American Indian student test scores on these particular test items to determine how White and American Indian students perform on culturally relevant test items compared to traditional standard science test items. The connections between student achievement on adapted culturally relevant science test items versus traditional items brings valuable insights to the fields of science education, research on student assessments, and Indigenous studies.

  13. The Status of Science Education in Illinois Scientific Literacy Target Schools, K-6, 1994. A Study.

    ERIC Educational Resources Information Center

    Finson, Kevin D.; Beaver, John B.

    The Illinois State Board of Education's Scientific Literacy Project provided extra funds to certain schools with the intent of creating demonstration schools useful as models for other schools to improve their science education programs. The study described in this document examined the impact of these funds on the target schools and attempted to…

  14. An Analysis of the Design and Implementation of Elementary Science Methods Class Instruction in Colleges and Universities in Arkansas

    ERIC Educational Resources Information Center

    Lee, Carole K.

    2010-01-01

    This study aims to understand the design and implementation of elementary methods classes focused in science instruction by teacher educators in the colleges and universities in the state of Arkansas. All 18 institutions with an Early Childhood Education program approved by the Arkansas Department of Education were reviewed with interviews, site…

  15. A Comprehensive Approach to Fostering the Next Generation of Science, Technology, Engineering, and Mathematics (STEM) Education Leaders

    ERIC Educational Resources Information Center

    Dierking, Lynn D.

    2010-01-01

    This paper describes an innovative education program launched in 2004 by Oregon State University Science and Mathematics Education Department, with leadership from Oregon Sea Grant, and funding from NOAA. Program development is described as well as the impact of it on participants. The program represents one vision for how to transform research…

  16. Sustainability Science and Education in the Neoliberal Ecoprison

    ERIC Educational Resources Information Center

    Little, Peter C.

    2015-01-01

    As part of the general "greening" of prisons in the last decade of neoliberalization and the formation of institutionalized programs to provide science and environmental education opportunities for the incarcerated, the Sustainability in Prisons Project (SPP), a partnership between Evergreen State College and the Washington State…

  17. Engineering Education's Contribution to the Space Program.

    ERIC Educational Resources Information Center

    Stever, H. Guyford

    1988-01-01

    States that an expanding future in space requires new technology. Stresses that from engineering education, space requires people with a fundamental knowledge of modern science instruments, all engineering sciences, an appreciation and capability for detail and systems design, and an understanding of costs and competitiveness, machines, materials,…

  18. Biology Education in the United States: The Unfinished Century.

    ERIC Educational Resources Information Center

    Bybee, Rodger W.

    2002-01-01

    Adresses five themes basic to biology education: (1) increased recognition of advances in the science of learning; (2) implementation of scientific ideas and technological innovations; (3) incorporation of science- and technology-related issues; (4) elaboration of global perspectives; and (5) professional community and civil discourse. (MM)

  19. Geographical education in Russia: state-of-the-art and new perspectives

    NASA Astrophysics Data System (ADS)

    Chalov, Sergey R.

    2010-05-01

    Up-today education systems of different countries face new perspectives in globalizing World. The Russian higher education framework was basically incompatible with the process of making academic degree standards and quality assurance standards more comparable throughout the World (so called Bologna process for Europe). So did Earth Sciences education framework. Today the key question in the further development of Earth sciences in Russia is the interaction with European education system. At the crossroads it is challenging to analyze the history and state-of-the-art. We considered the question on the example of one of the largest centers of the Earth Sciences education in Russia - Faculty of Geography of Lomonosov Moscow State University, which is moreover regarded to be one of the largest scientific and educational centers of geography in the World. There are 1200 students and 180 PhD students studying on the Faculty. The Faculty consists of 15 departments, 8 research laboratories and 4 field stations, where 850 employees work. Tuition of geography was established at Lomonosov Moscow State University since the day of its foundation. The significance of geographical studies at the University, which originally comprised the Faculty of Philosophy, the Faculty of Law and the Faculty of Medicine, was already mentioned in the draft plan of its establishment (1755), which said that «anyone wishing to attend professors' lectures at the University has to learn foreign languages and first scientific basis beforehand". For this purpose two «gymnasiums» consisting of four schools were es-tablished at the University. Geography was included into the curriculum of the «first scientific basis school» and the «school of the distinguished European languages» - German and French. Today Geography in Russia is regarded to be one of the base sciences that are devoted to the problem of society and environment and their interactions. Geography was gone far from the descriptive field of science and in recent years combined key aspects of Earth Sciences. A new structure of geographical science and education has developed under the influence of modern trends in Geosciences. There are fifteen specialized departments on the Faculty of Geography of Lomonosov Moscow State University. The structure of the Faculty of Geography comprises 3 main profiles: the Environmental Geography, Human Geography and Hydrometeorology. Research and education of the Faculty of Geography of Lomonosov Moscow State University is fundamental and application-oriented in nature. To find solutions for society's present and future demands is the main task of the research and education which is trend to become research-oriented. Eight multidisciplinary primary research laboratories contribute to the research-oriented education. Modern global processes and terms such as sustainability, assessing risk and reducing disaster in environmental hazards, global and regional changes of environment and climate posed new perspectives in the geographical education. Integrative trends were in progress and that could be characterized by the following: - Development of new integrative branch of geography (so called "geoecology") as a response to increasing anthropogenic impact on environment; - Development of supplementary education (GIS, habitation ecology, landscape design etc); - Interdisciplinary features of such branches as environmental impact assessment and audit; - Scientific basis of sustainable development and nature management. Both with organizational issues (i.e. perfection of student practices, field studies and modernization of field stations; creation of training courses for foreign students; strengthening special training programmes in schools and development of distance learning) this integrative trends determine further development of the Geographical education in Russia. All of them greatly depend on the integration processes between Russia and Europe. Firm place of the Geography in the European Earth Sciences system provides both demand for the society and key role in future of science.

  20. The Effect of a State Department of Education Teacher Mentor Initiative on Science Achievement

    NASA Astrophysics Data System (ADS)

    Pruitt, Stephen L.; Wallace, Carolyn S.

    2012-06-01

    This study investigated the effectiveness of a southern state's department of education program to improve science achievement through embedded professional development of science teachers in the lowest performing schools. The Science Mentor Program provided content and inquiry-based coaching by teacher leaders to science teachers in their own classrooms. The study analyzed the mean scale scores for the science portion of the state's high school graduation test for the years 2004 through 2007 to determine whether schools receiving the intervention scored significantly higher than comparison schools receiving no intervention. The results showed that all schools achieved significant improvement of scale scores between 2004 and 2007, but there were no significant performance differences between intervention and comparison schools, nor were there any significant differences between various subgroups in intervention and comparison schools. However, one subgroup, economically disadvantaged (ED) students, from high-level intervention schools closed the achievement gap with ED students from no-intervention schools across the period of the study. The study provides important information to guide future research on and design of large-scale professional development programs to foster inquiry-based science.

  1. Democratizing science and technology education: Perspectives from the philosophy of education

    NASA Astrophysics Data System (ADS)

    Pierce, Clayton Todd

    This study examines conceptualizations of science and technology and their relation to ideas of democratic education in the history of philosophy of education. My genealogical analysis begins by tracing the anti-democratic emergence of ideas and values of science and technology that have evolved through ancient and modern periods within the philosophy of education and continue to shape the ways science and technology are understood and treated in educational settings. From my critical engagement with Plato's Republic and Rousseau's Emile, I argue that anti-democratic structures and values have been embedded in philosophy of education through Plato's educational theory of techne and Rousseau's pedagogical theory that involves science and technology as important educational force. Following this theme, I analyze the work of John Dewey and Herbert Marcuse and their shared project for democratizing science and technology through education. Through a critical comparison of both theorists' models, I suggest that each provides positive legacies for philosophy of education to draw upon in rethinking the intersection of science, technology, and education: a strong model for understanding public problems associated with a highly technological and scientific society and a reconstructive framework for values and sensibilities that demands a new value relationship to be developed between humans and science and technology. Finally, I situate my critique and assessment of this history in the philosophy of education within the current science and technology education reform movement in the United States. I claim that the official models of science and technological literacy and inquiry, as constructed by the National Academy of Sciences and a host of governmental policies, shape science and technology education with a decidedly neo-liberal focus and purpose. In response to this anti-democratic movement I offer an alternative position that utilizes a counter-epistemology to the dominant model that currently exists in science education standards and suggest that this is a project that philosophy of education must be involved while also conscious of its past.

  2. Expanding your horizons in science and mathematics

    NASA Technical Reports Server (NTRS)

    1985-01-01

    Through the presentation of its Expanding Your Horizons in Science and Mathematics career education conferences for secondary school young women, the Math/Science Network continues its efforts to remove the educational, psychological, and cultural barriers which prevent women from entering math-and science-based careers. The Expanding Your Horizons conferences were presented on 77 college, university and high school campuses across the United States. This year, these unique one day conferences reached 15,500 students, 3,000 parents and educators, and involved 3,000 career women who volunteered their services as conference planners, workshop leaders, speakers, and role models.

  3. 78 FR 22254 - Agency Information Collection Activities; Submission to the Office of Management and Budget for...

    Federal Register 2010, 2011, 2012, 2013, 2014

    2013-04-15

    ... State Expanded Learning Time AGENCY: Institute of Education Sciences/National Center for Education... State Expanded Learning Time. OMB Control Number: 1850-NEW. Type of Review: a new collection... conduct semi-structured interviews with 21st Century Community Learning Centers (21st CCLC) state...

  4. Analyzing Sustainability Themes in State Science Standards: Two Case Studies

    ERIC Educational Resources Information Center

    Miller, Hannah K.; Jones, Linda Cronin

    2014-01-01

    Due to the interdisciplinary nature of environmental education, addressing the range of socioscientific issues included under the umbrella of sustainability can be challenging for educators working within the context of mandated state subject area standards. Two states (Washington and Vermont) have been recognized as leaders in incorporating…

  5. Getting from Here to There: The Roles of Policy Makers and Principals in Increasing Science Teacher Quality

    NASA Astrophysics Data System (ADS)

    Shen, Ji; Gerard, Libby; Bowyer, Jane

    2010-04-01

    In this study we investigate how federal and state policy makers, and school principals are working to improve science teacher quality. Interviews, focused discussions, and policy documents serve as the primary data source. Findings suggest that both policy makers and principals prioritize increasing incentives for teachers entering the science teaching profession, providing professional development for new teachers, and using students’ data to evaluate and improve instruction. Differences between the two leadership groups emerged in terms of the grain size and practicality of their concerns. Our findings indicate that the complexity of educational challenges to improve science teacher quality call for the co-construction of policy by multiple constituent groups including school principals, federal and state policy makers, and science education researchers.

  6. NASA Nice Climate Change Education

    NASA Astrophysics Data System (ADS)

    Frink, K.; Crocker, S.; Jones, W., III; Marshall, S. S.; Anuradha, D.; Stewart-Gurley, K.; Howard, E. M.; Hill, E.; Merriweather, E.

    2013-12-01

    Authors: 1 Kaiem Frink, 4 Sherry Crocker, 5 Willie Jones, III, 7 Sophia S.L. Marshall, 6 Anuadha Dujari 3 Ervin Howard 1 Kalota Stewart-Gurley 8 Edwinta Merriweathe Affiliation: 1. Mathematics & Computer Science, Virginia Union University, Richmond, VA, United States. 2. Mathematics & Computer Science, Elizabeth City State Univ, Elizabeth City, NC, United States. 3. Education, Elizabeth City State University, Elizabeth City, NC, United States. 4. College of Education, Fort Valley State University , Fort Valley, GA, United States. 5. Education, Tougaloo College, Jackson, MS, United States. 6. Mathematics, Delaware State University, Dover, DE, United States. 7. Education, Jackson State University, Jackson, MS, United States. 8. Education, Alabama Agricultural and Mechanical University, Huntsville, AL, United States. ABSTRACT: In this research initiative, the 2013-2014 NASA NICE workshop participants will present best educational practices for incorporating climate change pedagogy. The presentation will identify strategies to enhance instruction of pre-service teachers to aligned with K-12 Science, Technology, Engineering and Mathematics (STEM) standards. The presentation of best practices should serve as a direct indicator to address pedagogical needs to include climate education within a K-12 curriculum Some of the strategies will include inquiry, direct instructions, and cooperative learning . At this particular workshop, we have learned about global climate change in regards to how this is going to impact our life. Participants have been charged to increase the scientific understanding of pre-service teachers education programs nationally to incorporate climate education lessons. These recommended practices will provide feasible instructional strategies that can be easily implemented and used to clarify possible misconceptions and ambiguities in scientific knowledge. Additionally, the presentation will promote an awareness to the many facets in which climate change education can be beneficial to future learners and general public. The main scope is to increase the amount of STEM knowledge throughout the nations scientific literacy as we are using the platform of climate change. Federal entities which may include but not limited to National Security Agency and the Department of Homeland Security and Management will serve as resources partners for this common goal of having a more knowledgeable technological savvy and scientific literate society. The presentation will show that incorporating these best practices into elementary and early childhood education undergraduate programs will assist with increasing a enhance scientific literate society. As a measurable outcome have a positive impact on instructional effectiveness of future teachers. Their successfully preparing students in meeting the standards of the Common Core Initiative will attempt to measure across the curriculum uniformly.

  7. Scaling up Three-Dimensional Science Learning through Teacher-Led Study Groups across a State

    ERIC Educational Resources Information Center

    Reiser, Brian J.; Michaels, Sarah; Moon, Jean; Bell, Tara; Dyer, Elizabeth; Edwards, Kelsey D.; McGill, Tara A. W.; Novak, Michael; Park, Aimee

    2017-01-01

    The vision for science teaching in the Framework for K-12 Science Education and the Next Generation Science Standards requires a radical departure from traditional science teaching. Science literacy is defined as three-dimensional (3D), in which students engage in science and engineering practices to develop and apply science disciplinary ideas…

  8. A Longitudinal Study of a 5th Grade Science Curriculum Based on the 5E Model

    ERIC Educational Resources Information Center

    Scott, Timothy P.; Schroeder, Carolyn; Tolson, Homer; Huang, Tse-Yang; Williams, Omah M.

    2014-01-01

    The Center for Mathematics and Science Education at Texas A&M University contracted with Region 4 Education Service Center (ESC) and a large, diverse school district to conduct a longitudinal study from 2005-2009. The state achievement test scores of 5th graders who were taught using a Grade 5 science textbook designed by Region 4 ESC were…

  9. Case Study of a Successful Educational Partnership: University of Illinois at Urbana-Champaign and the Illinois Mathematics and Science Academy

    ERIC Educational Resources Information Center

    DeVol, Dave

    2014-01-01

    When the Illinois Mathematics and Science Academy (IMSA) was founded in 1985, the state of Illinois charged IMSA with two mandates: (1) "The primary role of the Academy shall be to offer a uniquely challenging education for students talented in the areas of mathematics and science." (2) "The Academy shall also carry a responsibility…

  10. Mars Exploration: Is There Water on Mars? An Educator's Guide with Activities for Physical and Earth and Space Science.

    ERIC Educational Resources Information Center

    TERC, Cambridge, MA.

    This educator's guide discusses whether there is water on the planet Mars. The activities, written for grades 9-12, concern physical, earth, and space sciences. By experimenting with water as it changes state and investigating some effects of air pressure, students not only learn core ideas in physical science but can also deduce the water…

  11. Connecting Science and Free Government in Citizenship Education: Teaching about Our Legacy from the Age of Enlightenment.

    ERIC Educational Resources Information Center

    Patrick, John J.

    To maintain the legacy of freedom from the Age of Enlightenment, educators must effectively teach about the interrelated ideas of modern science and constitutional democracy in both social studies and science courses. The United States most directly and fully exemplifies the civic and scientific ideas which have developed as a result of the Age of…

  12. Education and Science Connect at Sea

    NASA Astrophysics Data System (ADS)

    Leckie, R. Mark; St. John, Kristen; Peart, Leslie; Klaus, Ann; Slough, Scott; Niemitz, Matt

    2006-06-01

    In the past several decades, the scientific community's collective understanding of Earth's history and the processes that shape this dynamic planet has grown exponentially. Yet communicating the current understanding of Earth systems to the community outside of science (educators and students, policy makers, and the general public) has lagged. In 1995, the U.S. National Academy of Sciences (NAS) led the effort to establish National Science Education Standards (http://www.nap.edu/readingroom/books/nses/), with the goal of helping all students achieve scientific literacy. Earth and space sciences are one of the eight categories of content standards. Clearly the establishment of science education standards alone will not foster a scientifically literate society, as indicated in the NAS report ``Rising Above the Gathering Storm'' (http://www.nap.edu/catalog/11463.html). This report, released last fall, warns that without strong steps to improve federal support for science and technology education, the quality of life in the United States is threatened as the country loses its competitive edge.

  13. ED20. Crisis or Opportunity? Earth and Space Science Education at the State and National Levels

    NASA Astrophysics Data System (ADS)

    Brett, J. M.

    2011-12-01

    Scientists and researchers, those often in oversight positions and often control of the purse strings, have historically not been kind to the Earth Systems Science (ESS) discipline. This is puzzling to those of us who are ESS educators because we know that to appreciate how our planet works it is necessary to integrate and apply all the disciplines of science. With our amazing technologies and the increasing demands of a growing population we are dramatically changing our home planet. Perhaps a crisis? As the last century ended we found ESS in the same minor league position it was in when the 20th Century started. During the review period of what was to become the National Science Education Standards (NSES) draft after draft, no matter what color the cover was, seemed to ignore, omit, or severely limit ESS topics in meteorology and oceanography. Once published the NSES became the basis for the science standards in many states with what many said were critical gaps. In the years following 1996 different groups have worked to correct the omissions they found by developing guides...Ocean Literacy: Essential Principles of Ocean Science K-12 and Climate Literacy: The Essential Principals of Climate Science. An observer on the side might have considered each effort one of lobbying to get attention, funding and materials. Each effort was clearly interested in making an impact where it mattered...in the classroom. Now our Opportunity! The NAS process for developing "A Framework for K-12 Science Education" presented ESS educators with a real opportunity and we can proudly say we made our voices heard. And while there is great enthusiasm for the framework and the Chapter 7 Earth and Space we face critically important work to bring real Earth Space Science Education into the K-12 classroom. The possibility of the standards to be developed from the Framework becoming Common Core for the majority of states following the course of ELA and mathematics requires that those who previously guarded their territory collaborate.

  14. Meeting the Demands of the Knowledge Based Economy: Strengthening Undergraduate Science, Mathematics and Engineering Education. Hearing Before the Subcommittee on Research, Committee on Science, House of Representatives, 107th Congress, First Session (March 7, 2002).

    ERIC Educational Resources Information Center

    Congress of the U.S., Washington, DC. House.

    This hearing was held to examine the current state of mathematics, science, and engineering education at the undergraduate level by focusing on the demands of a knowledge-based economy. Contents include opening statements by Representative Nick Smith, Chairman, Subcommittee on Research, Committee in Science, U.S. House of Representatives;…

  15. NAEP 1996 Science State Report for Connecticut. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  16. NAEP 1996 Science State Report for Mississippi. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  17. NAEP 1996 Science State Report for Indiana. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  18. NAEP 1996 Science State Report for Wisconsin. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  19. NAEP 1996 Science State Report for Nevada. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  20. NAEP 1996 Science State Report for North Carolina. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  1. NAEP 1996 Science State Report for Georgia. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  2. NAEP 1996 Science State Report for Texas. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  3. NAEP 1996 Science State Report for Colorado. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  4. NAEP 1996 Science State Report for Delaware. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  5. NAEP 1996 Science State Report for Hawaii. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  6. NAEP 1996 Science State Report for New Hampshire. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  7. NAEP 1996 Science State Report for Alabama. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  8. NAEP 1996 Science State Report for Florida. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  9. NAEP 1996 Science State Report for West Virginia. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  10. NAEP 1996 Science State Report for Arizona. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  11. NAEP 1996 Science State Report for Maine. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  12. NAEP 1996 Science State Report for Wyoming. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  13. NAEP 1996 Science State Report for Tennessee. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  14. Life science education in Australia and America: Linking new knowledge with new opportunities

    NASA Astrophysics Data System (ADS)

    Linich, Michael

    If we are to reap the benefit of fundamental scientific research in the future, we must adjust our education priorities to partner the sciences more closely. There are at least four critical areas that industry; government and higher educational institutions have to adjust to maintain public interest in the sciences. Science education aims to train people to apply the principles of science to their everyday life and as such generate products or perform functions that can benefit humankind. Translating research findings to industry requires many scientific skills and an understanding of the history and application of science, through astrobiology, in high schools and undergraduate university programs can help to achieve this. The critical areas we need to address in education to achieve this are: * The skills, discoveries and concepts in astrobiology that is necessary for understanding. * To identify and eliminate barriers to partnering disciplines in science education. * To produce educational resources we can use in this process. * To facilitate science education in a community that is largely scientifically illiterate and suspicious of many aspects of science. Australian science education is somewhat backward in performance when compared to the USA and Europe. This is reflected in the dominance shown by the United States of America in biotechnology. Australia needs to translate developments in education from overseas into modern context. The pathway to achieve this goal is to develop closer partnerships between teaching the disciplines in high schools and the teaching and research in tertiary institutions.

  15. DOE Office of Scientific and Technical Information (OSTI.GOV)

    Nasseh, Bizhan

    Ball State University (BSU) was the recipient of a U.S. Department of Energy award to develop educational games teaching science and math. The Science Media Program will merge Ball State University’s nationally recognized capabilities in education, technology, and communication to develop new, interactive, game-based media for the teaching and learning of science and scientific principles for K-12 students. BSU established a team of educators, researchers, scientists, animators, designers, technology specialists, and hired a professional media developer company (Outside Source Design) from Indianapolis. After six months discussions and assessments the project team selected the following 8 games in Math, Physics, Chemistry,more » and Biology, 2 from each discipline. The assembled teams were innovative and unique. This new model of development and production included a process that integrated all needed knowledge and expertise for the development of high quality science and math games for K-12 students. This new model has potential to be used by others for the development of the educational games. The uniqueness of the model is to integrate domain experts’ knowledge with researchers/quality control group, and combine a professional development team from the game development company with the academic game development team from Computer Science and Art departments at Ball State University. The developed games went through feasibility tests with selected students for improvement before use in the research activities.« less

  16. GLOBE Earth Science Education and Public Outreach in Developing Countries GLOBE Earth Science Education and Public Outreach in Developing Countries

    NASA Astrophysics Data System (ADS)

    Sparrow, E. B.; Boger, R. A.

    2005-12-01

    GLOBE is an international hands-on earth science education program that involves scientists, teachers and students in more than 16,000 primary and secondary schools. GLOBE is funded by the National Aeronautics Administration (NASA), the National Science Foundation (NSF) and the U.S. Department of State. GLOBE works with schools (teachers and students) through more than 100 U.S. GLOBE partnerships with universities, state and local school systems, and non-government organizations. Internationally, GLOBE is partnered with 109 countries that include many developing nations throughout the world. In addition to the GLOBE's different areas of investigation e.g. Atmosphere/ Weather, Hydrology, Soils, Land Cover Biology and Phenology ( plant and animal), there are special projects such as the GLOBE Urban Phenology Year Project (GUPY) that engages developing and developed countries ( Finland, United States, Japan, Philippines, Thailand, Jordan, Kyrgystan, Senegal, Poland, Estonia, and the Dominican Republic) in studying the effects of urbanization on vegetation phenology, a sensitive indicator of climate change. Vegetation phenology integrates different components of the Earth system i.e. carbon and geochemical cycling, water cycling and energy cycling and is an excellent way to engage students in collaborative projects. This presentation will highlight the GUPY project and provide additional examples of local initiatives and collaborations with indigenous communities that use GLOBE and an inquiry approach to revise science education in developing countries .

  17. The ongoing educational anomaly of earth science placement

    USGS Publications Warehouse

    Messina, P.; Speranza, P.; Metzger, E.P.; Stoffer, P.

    2003-01-01

    The geosciences have traditionally been viewed with less "aCademic prTstige" than other science curricula. Among the results of this perception are depressed K-16 enrollments, Earth Science assignments to lower-performing students, and relegation of these classes to sometimes under-qualified educators, all of which serve to confirm the widely-held misconceptions. An Earth Systems course developed at San Jos??e State University demonstrates the difficulty of a standard high school Earth science curriculum, while recognizing the deficiencies in pre-college Earth science education. Restructuring pre-college science curricula so that Earth Science is placed as a capstone course would greatly improve student understanding of the geosciences, while development of Earth systems courses that infuse real-world and hands-on learning at the college level is critical to bridging the information gap for those with no prior exposure to the Earth sciences. Well-crafted workshops for pre-service and inservice teachers of Earth Science can heIp to reverse the trends and unfortunate "sTatus" in geoscience education.

  18. Aerospace Science Education, A Curriculum Guide.

    ERIC Educational Resources Information Center

    Hilburn, Paul

    This curriculum guide was developed by the Alaska State Department of Education for the purpose of aiding elementary and secondary school teachers in incorporating elements of aerospace science in the classroom. The section of the guide designed for elementary school teachers includes chapters under the headings: Aircraft, Airports, Weather,…

  19. Winds of Revolution Sweep through Science Education.

    ERIC Educational Resources Information Center

    Krieger, James

    1990-01-01

    Described is the status of science education reform in 1990. Different groups working on change, demographic trends in the US, student anecdotes, lab operations, the role of Sigma Xi, goals set by the state governors, industry efforts, and programs for the improvement of middle school teachers are discussed. (CW)

  20. Science Education Curriculum Development Principles in Taiwan: Connecting with Aboriginal Learning and Culture

    ERIC Educational Resources Information Center

    Huang, Tzu-Hua; Liu, Yuan-Chen

    2017-01-01

    This paper reflects thorough consideration of cultural perspectives in the establishment of science curriculum development principles in Taiwan. The authority explicitly states that education measures and activities of aboriginal peoples' ethnic group should be implemented consistently to incorporate their history, language, art, living customs,…

  1. Time for Law: Legal Literacy and Gerontological Education

    ERIC Educational Resources Information Center

    Doron, Israel; Hoffman, Asaf

    2005-01-01

    In the past, the law has not been considered as an important part of gerontological science. Historically, different sciences such as medicine, biology, psychology, and sociology have played far more important roles in the creation and crystallization of gerontological knowledge. This state of affairs is reflected in academic education and field…

  2. WWW.cell Biology Education: Evolution Web Sites

    ERIC Educational Resources Information Center

    Liu, Dennis

    2005-01-01

    The debate over teaching evolution has once again reached a fever pitch in the United States. Earnest nineteenth-century clashes between scientific and religious worldviews have given way to the politically charged arguments of creation science and now intelligent design. The Web site of the National Center for Science Education (NCSE;…

  3. GPS: Geoscience Partnership Study

    ERIC Educational Resources Information Center

    Schuster, Dwight

    2010-01-01

    To promote and expand geoscience literacy in the United States, meaningful partnerships between research scientists and educators must be developed and sustained. For two years, science and education faculty from an urban research university and secondary science teachers from a large urban school district have prepared 11th and 12th grade…

  4. A Remote-Sensing Mission

    ERIC Educational Resources Information Center

    Hotchkiss, Rose; Dickerson, Daniel

    2008-01-01

    Sponsored by NASA and the JASON Education Foundation, the remote Sensing Earth Science Teacher Education Program (RSESTeP) trains teachers to use state-of-the art remote-sensing technology with the idea that participants bring back what they learn and incorporate it into Earth science lessons using technology. The author's participation in the…

  5. Symbiosis on Campus: Collaborations of Scientists and Science Educators.

    ERIC Educational Resources Information Center

    Duggan-Haas, Don; Moscovici, Hedy; McNulty, Brendan; Gilmer, Penny J.; Eick, Charles J.; Wilson, John

    This symposium will provide insights into collaborations among scientists and science educators in a variety of contexts-large research universities, small state and private institutions, and collaborations involving both pre- service and in-service programs. The session will begin with a brief framing of these collaborations as management of the…

  6. A survey of specific individualized instruction strategies in elementary science methods courses in Tennessee teacher education institutions

    NASA Astrophysics Data System (ADS)

    Hazari, Alan A.

    The purpose of the study was to determine the status of individualized science instruction in Tennessee teacher education institutions. Specifically, the study sought to investigate the extent of teaching about and/or use of 31 strategies for individualizing instruction in elementary science teaching methods courses. The individualized instruction frameworks, with strategies for individualizing instruction, were developed by Rowell, et al. in the College of Education at the University of Tennessee, Knoxville. A review of the literature on the preparation of preservice elementary science teachers for individualized instruction in K-8 classrooms revealed very limited research. This investigation sought to identify how the elementary science teacher educators prepared their preservice elementary science teachers to (1) learn about the children they will teach, (2) determine differences among learners, (3) plan for individualized science instruction in the elementary school classroom, and (4) help attend to individual student differences. The researcher prepared and used a 31-item survey to poll elementary science teacher educators in Tennessee. The participants included K-8 educators from 40 state-approved teacher education institutions. The high teacher education institution response rate (72.5%) brought input from institutions of varying sizes, operated privately or publicly across the state of Tennessee. In general, Tennessee elementary science teacher educators reported that they tended to teach about and/or use a fair number of the 31 individualized instruction strategies that involve both learning about K-8 students and their differences. On the other hand, many of these educators provided preservice teachers with quite a bit of the strategies that lead to planning for individualized science instruction and to attending to individual student differences. The two strategies that were the most taught about and/or used in elementary science methods by Tennessee educators were planning for and maintaining an interactive classroom and implementing cooperative learning groups. The two strategies with the lowest rating were using a computer-tracking system to keep student profiles and using commercial tests to determine student placement. Almost 42% of the strategies in the survey were rated high to very high. This indicated that Tennessee educators do regularly include many of these 31 strategies in their elementary science methods courses. Examples include hands-on approach, cooperative learning, thematic and project teaching, learning centers, and the use of the Tennessee Instructional Model. The study also showed that Tennessee science teacher educators in church-related institutions appeared to utilize more of the 31 strategies for individualizing instruction in K-8 classrooms than do the educators in non-church-related institutions. Tennessee K-8 teachers could be better prepared if exposed to as many different and effective pedagogical tools and practices as possible during their education and preparation. A strong science program rich in content and a variety of instructional strategies (including individualized instruction) is needed to help maximize the science learning opportunities for all Tennessee students.

  7. The Future of Electronic Educational Networks: Some Ethical Issues.

    ERIC Educational Resources Information Center

    Johnson, Dell

    Institutions of higher education in the United States are making use of educational communication networks, such as the National Science Foundation's INTERNET system, to enhance research and learning. Such information networks are used to exchange information electronically, and exist not only in the United States, but also in other countries.…

  8. Winona State University Action Research in Music Education

    ERIC Educational Resources Information Center

    Sherman, Thomas F., Ed.; Lundquist, Margaret, Ed.

    2004-01-01

    These papers are partial fulfillment of the requirements for the Master of Science Degree in Education at Winona State University in Winona, Minnesota. The cohort included a variety of licensure areas that represent most levels and content areas of K-12 education. The students were encouraged to keep their questions and hypothesis directed at…

  9. The Use of Regional Data Collection to Inform University Led Initiatives: The Case of a STEM Education SWOT Analysis

    ERIC Educational Resources Information Center

    Jackson, Jerlando F. L.; Charleston, LaVar J.; Gilbert, Juan E.

    2014-01-01

    According to the National Science Foundation (NSF; 2006), science and engineering jobs constitute a growing sector of the United States economy. The number of science and engineering degrees has lagged behind this occupational growth. In describing Wisconsin's technology profile, Winters, Strang, and Klus (2000) report that the state is nationally…

  10. What History of Science, How Much, and Why?

    ERIC Educational Resources Information Center

    Russell, Thomas L.

    1981-01-01

    Summarizes positions regarding the role of the history of science in science education since 1950. Also considers the present state of research on attitudes toward science. Discusses data from Harvard Project Physics, a curriculum project making significant use of history of science materials. Makes recommendations regarding teaching, materials…

  11. Teaching Teachers: Assessing Students as Scientists

    ERIC Educational Resources Information Center

    Russ, Rosemary S.; Conlin, Luke

    2017-01-01

    Most elementary science teachers would like to give their students opportunities to do science. The "Next Generation Science Standards" and "A Framework for K-12 Science Education" (NGSS Lead States 2013; NRC 2012) make this goal explicit by requiring that students learn how to engage in the practices of science. Consequently,…

  12. Negotiating Science and Engineering: An Exploratory Case Study of a Reform-Minded Science Teacher

    ERIC Educational Resources Information Center

    Guzey, S. Selcen; Ring-Whalen, Elizabeth A.

    2018-01-01

    Engineering has been slowly integrated into K-12 science classrooms in the United States as the result of recent science education reforms. Such changes in science teaching require that a science teacher is confident with and committed to content, practices, language, and cultures related to both science and engineering. However, from the…

  13. Capturing Parents' Individual and Institutional Interest Toward Involvement in Science Education

    NASA Astrophysics Data System (ADS)

    Kaya, Sibel; Lundeen, Cynthia

    2010-11-01

    Parents are generally less involved in their children’s science education (as compared to reading and mathematics) due to low self-efficacy and a lack of home-school communication. This study examined parental interest and attitudes in science as well as the nature of parent-to-child questioning during an interactive home, school, and community collaboration in the southeastern United States. Study results, compiled from observations, exit surveys, and interviews revealed largely positive family interactions and attitudes about science learning and increased parental interest toward involvement in elementary science. Parents frequently used productive questioning techniques during activities. These results imply that successful home, school, and community partnerships may elevate levels of parental participation in their children’s science education and the parents’ perception of themselves as being competent in assisting in science.

  14. An Assessment of Computer Science Degree Programs in Virginia. A Report to the Council of Higher Education and Virginia's State-Supported Institutions of Higher Education.

    ERIC Educational Resources Information Center

    Virginia State Council of Higher Education, Richmond.

    This report presents the results of a review of all significant instructional efforts in the computer science discipline in Virginia institutions of higher education, with emphasis on those whose instructional activities constitute complete degree programs. The report is based largely on information provided by the institutions in self-studies. A…

  15. Is the Supply of Continuing Education in the Anatomical Sciences Keeping Up with the Demand? Results of a National Survey

    ERIC Educational Resources Information Center

    Wilson, Adam B.; Barger, J. Bradley; Perez, Patricia; Brooks, William S.

    2018-01-01

    Continuing education (CE) is an essential element in the life-long learning of health care providers and educators. Despite the importance of the anatomical sciences in the training and practice of clinicians, no studies have examined the need/state of anatomy-related CE nationally. This study assessed the current landscape of CE in the anatomical…

  16. Content Analysis of the Practicum Course in the Master of Science in Educational Leadership/Administration Program

    ERIC Educational Resources Information Center

    Norman, Scott W.

    2013-01-01

    In this study, I explored the overall efficacy of the Master of Science in Educational Leadership/ Administration (MSEL/A) program at Florida State University (FSU), by taking a closer look at the introductory course, Practicum in Educational Leadership (the Practicum), as well as the final assessment, the student e-portfolio. The MSEL/A at FSU is…

  17. New Information Technology in Social Science Education: Viewpoints from Europe and the United States. Annual Conference of the Social Science Education Consortium (20th, Athens, Georgia, June 8-11, 1983).

    ERIC Educational Resources Information Center

    Hepburn, Mary A., Ed.

    Fourteen conference papers dealing with the effects of electronic information technology on social studies education are provided. Microcomputers received most of the attention, followed by satellite telecommunications, as the conference participants examined implications for student learning styles, student knowledge and attitudes, teacher…

  18. A university system's approach to enhancing the educational mission of health science schools and institutions: the University of Texas Academy of Health Science Education

    PubMed Central

    Buja, L. Maximilian; Cox, Susan M.; Lieberman, Steven A.; MacClements, Jonathan; Williams, Janet F.; Esterl, Robert M.; Shine, Kenneth I.

    2013-01-01

    Background The academy movement developed in the United States as an important approach to enhance the educational mission and facilitate the recognition and work of educators at medical schools and health science institutions. Objectives Academies initially formed at individual medical schools. Educators and leaders in The University of Texas System (the UT System, UTS) recognized the academy movement as a means both to address special challenges and pursue opportunities for advancing the educational mission of academic health sciences institutions. Methods The UTS academy process was started by the appointment of a Chancellor's Health Fellow for Education in 2004. Subsequently, the University of Texas Academy of Health Science Education (UTAHSE) was formed by bringing together esteemed faculty educators from the six UTS health science institutions. Results Currently, the UTAHSE has 132 voting members who were selected through a rigorous, system-wide peer review and who represent multiple professional backgrounds and all six campuses. With support from the UTS, the UTAHSE has developed and sustained an annual Innovations in Health Science Education conference, a small grants program and an Innovations in Health Science Education Award, among other UTS health science educational activities. The UTAHSE represents one university system's innovative approach to enhancing its educational mission through multi- and interdisciplinary as well as inter-institutional collaboration. Conclusions The UTAHSE is presented as a model for the development of other consortia-type academies that could involve several components of a university system or coalitions of several institutions. PMID:23490406

  19. The National Space Science and Technology Center's Education and Public Outreach Program

    NASA Astrophysics Data System (ADS)

    Cox, G. N.; Denson, R. L.

    2004-12-01

    The objective of the National Space Science and Technology Center's (NSSTC) Education and Public Outreach program (EPO) is to support K-20 education by coalescing academic, government, and business constituents awareness, implementing best business/education practices, and providing stewardship over funds and programs that promote a symbiotic relationship among these entities, specifically in the area of K-20 Science, Technology, Engineering, and Mathematics (STEM) education. NSSTC EPO Program's long-term objective is to showcase its effective community-based integrated stakeholder model in support of STEM education and to expand its influence across the Southeast region for scaling ultimately across the United States. The Education and Public Outreach program (EPO) is coordinated by a supporting arm of the NSSTC Administrative Council called the EPO Council (EPOC). The EPOC is funded through federal, state, and private grants, donations, and in-kind contributions. It is comprised of representatives of NSSTC Research Centers, both educators and scientists from the Alabama Space Science and Technology Alliance (SSTA) member institutions, the Alabama Space Grant Consortium and the NASA Marshall Space Flight Center's (MSFC) Education Office. Through its affiliation with MSFC and the SSTA - a consortium of Alabama's research universities that comprise the NSSTC, EPO fosters the education and development of the next generation of Alabama scientists and engineers by coordinating activities at the K-20 level in cooperation with the Alabama Department of Education, the Alabama Commission on Higher Education, and Alabama's businesses and industries. The EPO program's primary objective is to be Alabama's premiere organization in uniting academia, government, and private industry by way of providing its support to the State and Federal Departments of Education involved in systemic STEM education reform, workforce development, and innovative uses of technology. The NSSTC EPO is poised to be a leader in this field because of its direct support to agency's accountable for America's educational systems, and for its synergistic relationships across the integrated stakeholder community. This includes Alabama's NASA facility, USRA, the SSTA's seven research universities, businesses and industries, and the Alabama Math, Science and Technology Education Coalition. In addition to traditional outreach methodologies, the EPO uses the unique resources of the NSSTC to assist in dissolving the boundaries in education among academia, government, and industry and to foster a more collaborative environment in support of STEM education reform.

  20. A Mathematical Sciences Program at an Upper-Division Campus.

    ERIC Educational Resources Information Center

    Swetz, Frank J.

    1978-01-01

    The conception, objectives, contents, and limitations of a degree program in the mathematical sciences at Pennsylvania State University, Capitol Campus, are discussed. Career goals that may be pursued include: managerial, science, education, actuarial, and computer. (MP)

  1. Planning Instruction to Meet the Intent of the Next Generation Science Standards

    NASA Astrophysics Data System (ADS)

    Krajcik, Joseph; Codere, Susan; Dahsah, Chanyah; Bayer, Renee; Mun, Kongju

    2014-03-01

    The National Research Council's Framework for K- 12 Science Education and the Next Generation Science Standards (NGSS Lead States in Next Generation Science Standards: For states, by states. The National Academies Press, Washington, 2013) move teaching away from covering many isolated facts to a focus on a smaller number of disciplinary core ideas (DCIs) and crosscutting concepts that can be used to explain phenomena and solve problems by engaging in science and engineering practices. The NGSS present standards as knowledge-in-use by expressing them as performance expectations (PEs) that integrate all three dimensions from the Framework for K- 12 Science Education. This integration of core ideas, practices, and crosscutting concepts is referred to as three-dimensional learning (NRC in Division of Behavioral and Social Sciences and Education. The National Academies Press, Washington, 2014). PEs state what students can be assessed on at the end of grade level for K-5 and at the end of grade band for 6-8 and 9-12. PEs do not specify how instruction should be developed nor do they serve as objectives for individual lessons. To support students in developing proficiency in the PEs, the elements of the DCIs will need to be blended with various practices and crosscutting concepts. In this paper, we examine how to design instruction to support students in meeting a cluster or "bundle" of PEs and how to blend the three dimensions to develop lesson level PEs that can be used for guiding instruction. We provide a ten-step process and an example of that process that teachers and curriculum designers can use to design lessons that meet the intent of the Next Generation of Science Standards.

  2. Survey on Teaching Science to K-12 Students with Disabilities: Teacher Preparedness and Attitudes

    NASA Astrophysics Data System (ADS)

    Kahn, Sami; Lewis, Anna R.

    2014-12-01

    Students with disabilities are increasingly included in general education science classrooms and are expected to demonstrate academic proficiency on standardized assessments. Teacher preparation and attitudes have been cited as major factors contributing to either the success or failure of students with disabilities in science. In order to assess the current state of what could be facilitative or inhibitory influences, a national online survey to which 1,088 K-12 science teachers responded was conducted. Mixed methods' analyses suggest that science teachers receive little formal training and feel underprepared to teach students with disabilities. Results identify specific gaps in science teachers' education, as well as attitudinal and institutional barriers that may inhibit students with disabilities' success. However, science teachers remain highly receptive to training and collaboration. Implications for science teacher education are discussed.

  3. Building a Global Ocean Science Education Network

    NASA Astrophysics Data System (ADS)

    Scowcroft, G. A.; Tuddenham, P. T.; Pizziconi, R.

    2016-02-01

    It is imperative for ocean science education to be closely linked to ocean science research. This is especially important for research that addresses global concerns that cross national boundaries, including climate related issues. The results of research on these critical topics must find its way to the public, educators, and students of all ages around the globe. To facilitate this, opportunities are needed for ocean scientists and educators to convene and identify priorities and strategies for ocean science education. On June 26 and 27, 2015 the first Global Ocean Science Education (GOSE) Workshop was convened in the United States at the University of Rhode Island Graduate School of Oceanography. The workshop, sponsored by the Consortium for Ocean Science Exploration and Engagement (COSEE) and the College of Exploration, had over 75 participants representing 15 nations. The workshop addressed critical global ocean science topics, current ocean science research and education priorities, advanced communication technologies, and leveraging international ocean research technologies. In addition, panels discussed elementary, secondary, undergraduate, graduate, and public education across the ocean basins with emphasis on opportunities for international collaboration. Special presentation topics included advancements in tropical cyclone forecasting, collaborations among Pacific Islands, ocean science for coastal resiliency, and trans-Atlantic collaboration. This presentation will focus on workshop outcomes as well as activities for growing a global ocean science education network. A summary of the workshop report will also be provided. The dates and location for the 2016 GOES Workshop will be announced. See http://www.coexploration.net/gose/index.html

  4. Staying within the Law

    ERIC Educational Resources Information Center

    Hermann, Ronald S.

    2017-01-01

    Evolution, due to its importance in science, holds a prominent place in national science standards and many state standards. Scientists nearly universally agree that the theory of evolution best explains the unity and diversity of life. Accordingly, numerous science, science education, and religious organizations support the teaching of evolution…

  5. Where Did You Come From? Where Will You Go? Human Evolutionary Biology Education and American Students' Academic Interests and Achievements, Professional Goals, and Socioscientific Decision-Making

    ERIC Educational Resources Information Center

    Schrein, Caitlin M.

    2014-01-01

    In the United States, there is a national agenda to increase the number of qualified science, technology, engineering, and maths (STEM) professionals and a movement to promote science literacy among the general public. This project explores the association between formal human evolutionary biology education (HEB) and high school science class…

  6. The influence of high school academics on freshman college mathematics and science courses at SUNY Oswego

    NASA Astrophysics Data System (ADS)

    Hayali, Tolga

    This study examined the relationship between 2011 freshman college mathematics and science grades and freshman students' high school academics and demographic data, exploring the factors that contribute to the success of first-year STEM majoring freshman students at State University of New York at Oswego. The variables were Gender, Race, SES, School Size, Parent with College Education, High School Grade Point Average (HSGPA), Transfer Credit, SAT Composite Score, and New York State Regents Exam results, based on data from 237 freshman students entering college immediately following high school. The findings show HSGPA as a significant predictor of success in freshman College Mathematics and Sciences, Transfer Credit as a significant predictor in College Mathematics and College Chemistry, SES as a significant predictor in College Biology and College Chemistry, Parent with College Education as a significant predictor in College Biology and New York State Chemistry Regents Exam as a significant predictor in College Chemistry. Based on these findings, guidance counselors, science educators, and education institutions can develop a framework to determine which measurements are meaningful and advise students to focus on excellent performance in the Chemistry Regents Exams, take more college courses during high school, and maintain a high grade point average.

  7. NAEP 1996 Science State Report for Department of Defense Dependents Schools, Grade 4. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    Ballator, Nada; O'Sullivan, Christine Y.; Jerry, Laura

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  8. Science and creationism: a response to Kenneth Tobin

    NASA Astrophysics Data System (ADS)

    Alexakos, Konstantinos

    2009-06-01

    In his December editorial on Michael Reiss, Kenneth Tobin (Cult Stud Sci Educ 3:793-798, 2008), raises some very important questions for science and science teachers regarding science education and the teaching of creationism in the classroom. I agree with him that students' creationist ideologies should be treated not as misconceptions but as worldviews. Because of creationism's peculiarly strong political links though, I argue that such discussion must address three critical and interconnected issues, including the uncertain state of teaching evolution in public schools nationally, the political convergence of the creationist political beliefs with bigoted worldviews, and creationism's inherent contrariness to science and human progress. I suggest that we as science educators therefore not consider all sides to be equally right and to instead take side against the politics of creationism. I also argue that we need much more serious discussion on how to better teach science to students who hold creationist worldviews, and that science educators such as Reiss need to be part of that.

  9. Federal Science, Technology, Engineering, and Mathematics (STEM) Education: 5-Year Strategic Plan. A Report from the Committee on STEM Education National Science and Technology Council

    ERIC Educational Resources Information Center

    Executive Office of the President, 2013

    2013-01-01

    Given that many jobs of the future will be STEM jobs, that our K-12 system is "middle of the pack" in international comparisons, and that progress on STEM education at multiple levels is critical to building a just and inclusive society, there is an urgent need to continue to improve STEM education in the United States. Much knowledge…

  10. [The state's physics examinations for medical students and the construction of a natural science basis for academic medical training between 1865-1880].

    PubMed

    Van Lieburg, M J

    1995-01-01

    Betweem 1865, when the new Dutch Health Acts introduced the legal monopoly of the academic medical profession, and 1879, when a new law for higher education provided the basis for the integration of the non-academic teaching of medicine within the universities, non-academic students could pass state medical examinations in order to become a physician. In this article I studied in detail the first phase of this examination route, when students were questioned about their knowledge of mathematics, physics, chemistry and the life sciences. The state commissions responsible for taking these examinations have certainly played an important role in the process of the introduction of scientific medicine into the universities as well as the introduction of the sciences into secondary schools, preparing scholars for academic medical training. Moreover, because scientists, physicians and secondary school teachers participated together in these commissions, the science examination boards linked the several educational echelons and divisions in science and medicine concerned with this process of transformation of the medical professions and medical science in the 1860s and 1870s.

  11. Alignment of Content and Pedagogy in an Earth Systems Course for Pre-Service Middle School Teachers

    NASA Astrophysics Data System (ADS)

    Cole, T.; Teed, R.; Slattery, W.

    2006-12-01

    In 2003 the Ohio Department of Education developed the Ohio K-12 Science Content Standards. These new science standards substantially tracked the goals and objectives of The National Research Council's National Science Education Standards. The Ohio K-12 Science Content Standards followed the National Standards in the content areas of Physical Science, Life Science and Earth and Space Science. At the same time, the state's K-12 schools were gearing up for a new high school graduation requirement, the successful passing of a high-stakes Ohio Graduation Test, given during a student's tenth grade year. Earth and Space science questions make up approximately one third of the science test items. To make it more likely that teachers have the requisite science content knowledge Ohio has recently changed from certification of K-12 teachers to a more content rich licensure standard. This new licensure requirement splits the older certification designation of K-8 into the elementary and middle school licensure areas. Under the new licensure requirements middle school licensure candidates wishing to earn a science concentration now have to take 15 semester hours of content class work in Science. The Ohio Department of Education has strongly suggested that teacher preparation institutions develop new courses for middle school educators in all four areas of concentration, including science. In response to this call for new courses science education faculty in all science areas worked together to develop a comprehensive suite of courses that would target the science content standards guidelines in the state and national standards. The newly developed Earth and Space science course is titled Earth Systems. The course carries 4.5quarter hours of credit and is intended expressly for pre-service middle school (grades 4- 9) science teachers. The content is structured around three modules of study that are designed to develop interdisciplinary science content within the context of past, present and future Earth Systems science. Because the course is created for pre-service teachers, the class models the jigsaw teaching technique, an effective and age-appropriate method of science instruction. This enables pre-service teachers to experience a technique they can use in their own classroom. Course content is aligned with all state and national 4-10 Earth/Space Science standards, which supports pre- service Middle School Science teachers by covering the content areas tested in the Praxis Middle School Science test, a requirement for graduation with licensure from Wright State University. It also helps the pre- service teachers gain experience with the content that they will need to teach to their K-12 students, so they will be able to pass the high-stakes Ohio Graduation Test. Assessment of the Earth Systems course suggests that the course leads to increased science content knowledge that leads to success in passing the Praxis Middle Childhood Science Test, and that the pedagogy modeled in the course is used by the pre- service teachers in their own K-12 teaching upon graduation.

  12. NASA/State Education Cooperation

    NASA Technical Reports Server (NTRS)

    1990-01-01

    NASA is cooperating with state departments of education in a number of special education programs. An example is Maryland Summer Centers for Gifted and Talented Students sponsored by the Maryland State Department of Education. Some 2,600 students participated in the 1990 program. One of the 12 centers is the Center for Space Science and Technology at Goddard Space Flight Center, which provides instruction to students of the 9-12 grade level. This center is operated by a three organization partnership that includes the Maryland State Department of Education, the University of Maryland and Goddard Space Flight Center, which hosts the instructional program and provides volunteer scientists and engineers as instructors. Typical two-week space intern program includes panel discussions, lectures, tours, field trips and hands-on activity focusing on various space science topics. Senior high students benefit from a one-to-one mentor relationship with a volunteer scientist or engineer. Another example was the Paducah (Kentucky) NASA Community Involvement Project, a joint educational effort of Langley and Lewis Research Centers, Marshall Space Flight Center, the Kentucky Department of Education, the City of Paducah and Paducah Independent Schools. It was a 16 day exposition/symposium featuring seminars on space subjects.

  13. Science education in an urban elementary school: Case studies of teacher beliefs and classroom practices

    NASA Astrophysics Data System (ADS)

    King, Ken; Shumow, Lee; Lietz, Stephanie

    2001-03-01

    Through a case study approach, the state of science education in an urban elementary school was examined in detail. Observations made from the perspective of a science education specialist, an educational psychologist, and an expert elementary teacher were triangulated to provide a set of perspectives from which elementary science instruction could be examined. Findings revealed that teachers were more poorly prepared than had been anticipated, both in terms of science content knowledge and instructional skills, but also with respect to the quality of classroom pedagogical and management skills. Particularly significant, from a science education perspective, was the inconsistency between how they perceived their teaching practice (a hands-on, inquiry-based approach) and the investigator-observed expository nature of the lessons. Lessons were typically expository in nature, with little higher-level interaction of significance. Implications for practice and the associated needs for staff development among urban elementary teachers is discussed within the context of these findings.

  14. Student Expectations, University Goals: Looking for Alignment in General Education Science

    ERIC Educational Resources Information Center

    Ericson, Rebecca J.

    2012-01-01

    This action research dissertation explores the alignment of university goals, faculty practice, and student expectations for general education natural science courses as a first step to understanding how best to restructure the program to ensure that students are learning in alignment with university stated goals for this aspect of their…

  15. NSF and Science Education--Who, Why, and How Did It Work Out?

    ERIC Educational Resources Information Center

    Platt, Joseph B.

    1975-01-01

    The appreciable impact of the National Science Foundation on the education of scientists in the United States since the agency's founding was discussed. One of the major new challenges considered was the need for scientists and engineers to learn more about our society's economics, politics, and values. (Editor/RK)

  16. Manufacturing. Technology Education-Mathematics and Science Interface Project.

    ERIC Educational Resources Information Center

    Smith, Kenneth L., Ed.

    The curriculum materials contained in this document were developed through a cooperative effort by educators in the state of Maryland. It was a curriculum project aimed at the meaningful integration of mathematics and science. It is suggested that these materials be used in two significant ways. First, this document can serve as an instructional…

  17. Construction. Technology Education-Mathematics and Science Interface Project.

    ERIC Educational Resources Information Center

    Maryland State Dept. of Education, Baltimore. Div. of Vocational-Technical Education.

    The curriculum materials contained in this document were developed through a cooperative effort by educators in the state of Maryland. It was a curriculum project aimed at the meaningful integration of mathematics and science. It is suggested that these materials be used in two significant ways. First, this document can serve as an instructional…

  18. Naturwissenschaft und Bildung: Betrachtungen uber die Aktualitat des Genetischen Lernens (Natural Science and Education - Reflections on the Pertinence of Genetic Learning).

    ERIC Educational Resources Information Center

    Ullrich, Heiner

    2000-01-01

    States that the educational mission of instruction in natural science is still not clearly defined. Explains that the unclear mission is revealed by the situation in instruction in physics today as well as by the scholastic achievement in this field. (CMK)

  19. Positionality of African Americans and a Theoretical Accommodation of It: Rethinking Science Education Research

    ERIC Educational Resources Information Center

    Parsons, Eileen R. Carlton

    2008-01-01

    This essay addresses a call for research involving African Americans to interpret data from the historical, contemporary, and cultural experiences of African Americans. The essay argues for a science education research approach that explicitly considers the positionality of African Americans in the United States. This positionality involves the…

  20. Transportation. Technology Education-Mathematics and Science Interface Project.

    ERIC Educational Resources Information Center

    Smith, Kenneth L., Ed.

    The curriculum materials contained in this document were developed through a cooperative effort by educators in the state of Maryland. It was a curriculum project aimed at the meaningful integration of mathematics and science. It is suggested that these materials be used in two significant ways. First, this document can serve as an instructional…

  1. 2008 Mississippi Curriculum Framework: Family and Consumer Sciences. (Program CIP: 19.9999 - Family and Consumer Sciences)

    ERIC Educational Resources Information Center

    Rosetti, Pamela; Byrd, Jenean; West, Brenda; Bigham, Melody

    2008-01-01

    Secondary vocational-technical education programs in Mississippi are faced with many challenges resulting from sweeping educational reforms at the national and state levels. Schools and teachers are increasingly being held accountable for providing true learning activities to every student in the classroom. This accountability is measured through…

  2. A Social Cognitive Examination of East Asian American Career Development: Contextual Factors Influencing Career Choice

    ERIC Educational Resources Information Center

    Liu, Jane

    2012-01-01

    Despite their educational and economic achievements in the United States, Asian Americans continue to be occupationally segregated in the labor force. Asian Americans are overrepresented in mathematics, engineering and biological sciences while underrepresented in field such as education, humanities, social and behavioral sciences (Bureau of Labor…

  3. Science Education for Environmental Sustainability: A Case Study of the Palouse Watershed

    ERIC Educational Resources Information Center

    Lyman, Samson E.

    2009-01-01

    This study uses case study and qualitative content analysis methodologies to answer the question: What is the relationship between Washington State's k-12 science education standards and the environmental sustainability needs of the Palouse River Watershed? After defining the Palouse Watershed's attributes, the author presents a land use history…

  4. Evaluating ATM Technology for Distance Education in Library and Information Science.

    ERIC Educational Resources Information Center

    Stanford, Serena W.

    1997-01-01

    Investigates the impact of asynchronous transfer mode (ATM) technology in an interactive environment providing distance education in library and information science at two San Jose State University (California) sites. The main purpose of the study was to develop a reliable and valid evaluation instrument. Contains 6 tables. (Author/AEF)

  5. A Supplementary Program for Environmental Education, Science, Grades K Through 12.

    ERIC Educational Resources Information Center

    Warpinski, Robert

    Presented in these 13 teacher's guides for grades K-12 are lesson plans and ideas for integrating science and environmental education. Each lesson originates with a fundamental concept pertaining to the environment and states, in addition, its discipline area, subject area, and problem orientation. Following this, behavioral objectives and…

  6. Alabama's Education Coalition Focuses on Supporting the State's Math, Science and Technology Initiative and on Building Distance Learning Programs

    NASA Astrophysics Data System (ADS)

    Denson, R. L.

    2003-12-01

    The Alabama Math Science Technology Educational Coalition (AMSTEC) was formed as a non-profit after a 1998 NASA Linking Leaders program brought in education and corporate leaders to address systemic education reform in Alabama public schools. AMSTEC was instrumental in the creation of the Alabama Math Science Technology Initiative (AMSTI), a K-12 program designed using data from national and international research and local teacher survey. In the face of dwindling government support in a state ranked last in education funding, AMSTEC believes that its best hope for improved STEM education lies in strengthening its community/industry partnerships and building upon the Department of Education's newly created AMSTI program. NASA's GLOBE program is the primary earth science education component being integrated into AMSTI. AMSTI is structured to provide teachers with (1) the materials, equipment, technology and supplies necessary to deliver high quality, inquiry-based instruction; (2) professional development linked directly to the educational resources with the intent of strengthening content knowledge, instructional strategies, and use of assessment tools; and (3) on-site support and mentoring throughout the year in the interest of achieving these goals. Roles for community partners to support these objectives far exceed that of mere funding - especially in the area of mentoring and professional development. Currently, AMSTEC consists of 100+ members including classroom teachers and district officers, education department representatives from higher educational institutions, policy makers and administrators, and government and industry representatives. AMSTEC remains partially tied to NASA fiscally and is administratively housed by the National Space Science and Technology Center's Earth System Science Center. AMSTEC's partnership emphasis is focused on increasing corporate and industry participation to support the implementation of AMSTI and its hub-site-based program. Future foci for AMSTEC are development and implementation of distance learning programs across Alabama's K-12 public schools.

  7. The Story behind the Science: Bringing Science and Scientists to Life in Post-Secondary Science Education

    ERIC Educational Resources Information Center

    Clough, Michael P.

    2011-01-01

    With funding from the United States National Science Foundation, 30 historical short stories designed to teach science content and draw students' attention to the nature of science (NOS) have been created for post-secondary introductory astronomy, biology, chemistry, geology, and physics courses. The project rationale, story development and…

  8. Standardization from below: Science and Technology Standards and Educational Software

    ERIC Educational Resources Information Center

    Fleischmann, Kenneth R.

    2007-01-01

    Education in the United States is becoming increasingly standardized, with the standards being initiated at the national level and then trickling down to the state level and finally the local level. Yet, this top-down approach to educational standards carries with it significant limitations, such as loss of local autonomy and restrictions on the…

  9. STEM Education on a Worldwide Voyage: Curriculum to College, Career, and Community Readiness

    ERIC Educational Resources Information Center

    Furuto, Linda H. L.

    2015-01-01

    This article addresses issues in equitable and quality STEM education, and comes at a significant time as students, educators, and policymakers strive to meet federal and state standards such as the Mathematics Common Core State Standards (CCSS) and Next Generation Science Standards (NGSS). CCSS and NGSS require significantly higher levels of…

  10. Teaching evolution, the Kansas School Board of Education, and the democratization of science

    NASA Astrophysics Data System (ADS)

    Lin, Johnny Wei-Bing

    In the August 1st Republican primaries for the Kansas State Board of Education, three board members were defeated who voted for the 1999 decision to remove most references regarding evolution from state education standards. This makes it likely that the board will in some way overturn or modify the 1999 decision.

  11. Guidelines for Science Curriculum in Washington Schools.

    ERIC Educational Resources Information Center

    Duxbury, Alyn, Ed.

    This document contains guidelines for science curriculum in Washington State schools. Statements of philosophy and program goals are presented and explained. Four major program goals (which address societal demands) operationally describe science education toward the learning of: (1) factual and theoretical knowledge; (2) applied science skills;…

  12. The Need for Computer Science

    ERIC Educational Resources Information Center

    Margolis, Jane; Goode, Joanna; Bernier, David

    2011-01-01

    Broadening computer science learning to include more students is a crucial item on the United States' education agenda, these authors say. Although policymakers advocate more computer science expertise, computer science offerings in high schools are few--and actually shrinking. In addition, poorly resourced schools with a high percentage of…

  13. Science Teacher Retention: Mentoring and Renewal. Issues in Science Education.

    ERIC Educational Resources Information Center

    Rhoton, Jack, Ed.; Bowers, Patricia, Ed.

    This book discusses science teacher retention and renewal, what kinds of problems beginner teachers face, mentoring programs, and intervention programs that support beginner teachers. Chapters include: (1) "Turnover and Shortages among Science and Mathematics Teachers in the United States" (Richard M. Ingersoll); (2) "Comprehensive Teacher…

  14. Science Specialists or Classroom Teachers: Who Should Teach Elementary Science?

    ERIC Educational Resources Information Center

    Levy, Abigail Jurist; Jia, Yueming; Marco-Bujosa, Lisa; Gess-Newsome, Julie; Pasquale, Marian

    2016-01-01

    This study examined science programs, instruction, and student outcomes at 30 elementary schools in a large, urban district in the northeast United States in an effort to understand whether there were meaningful differences in the quality, quantity and cost of science education when provided by a science specialist or a classroom teacher. Student…

  15. The Changing Roles of Science Specialists during a Capacity Building Program for Primary School Science

    ERIC Educational Resources Information Center

    Herbert, Sandra; Xu, Lihua; Kelly, Leissa

    2017-01-01

    Science education starts at primary school. Yet, recent research shows primary school teachers lack confidence and competence in teaching science (Prinsley & Johnston, 2015). A Victorian state government science specialist initiative responded to this concern by providing professional learning programs to schools across Victoria. Drawing on…

  16. Science Fiction and the Big Questions

    NASA Astrophysics Data System (ADS)

    O'Keefe, M.

    Advocates of space science promote investment in science education and the development of new technologies necessary for space travel. Success in these areas requires an increase of interest and support among the general public. What role can entertainment media play in inspiring the public ­ especially young people ­ to support the development of space science? Such inspiration is badly needed. Science education and funding in the United States are in a state of crisis. This bleak situation exists during a boom in the popularity of science-oriented television shows and science fiction movies. This paper draws on interviews with professionals in science, technology, engineering and mathematics (STEM) fields, as well as students interested in those fields. The interviewees were asked about their lifelong media-viewing habits. Analysis of these interviews, along with examples from popular culture, suggests that science fiction can be a valuable tool for space advocates. Specifically, the aspects of character, story, and special effects can provide viewers with inspiration and a sense of wonder regarding space science and the prospect of long-term human space exploration.

  17. Developmental/remedial sciences at community colleges in five states in the central part of the United States

    NASA Astrophysics Data System (ADS)

    Paramore, Tricia L.

    Phipps (1998) emphasized interinstitutional collaboration among colleges to share and replicate best practices and ideas as a strategy to improve the effectiveness of developmental/remedial education, but Johnson (2001) noted a lack of communication between science educators and developmental educators. The purposes of this mixed methods study were (a) to identify and examine the characteristics of developmental/remedial sciences as it existed in the 2006-2007 academic year in terms of organization, structure, instructional practices, and curriculum as offered at community colleges in five states in the central part of the United States; and (b) to develop a set of guidelines for community college faculty and administrators to use in making decisions about whether or not to offer developmental/remedial sciences and identify the general steps to follow in implementation. The study was conducted in four phases which involved two surveys, subsequent interviews with leaders at three institutions selected for case study, and guideline development. Developmental/remedial sciences were offered at few institutions. At those institutions where they were offered, however, nearly half offered courses and multiple support services, but did not define their offerings as a program. Some developmental education best practices were adopted (such as integrating study skills with science content in courses and using a variety of instructional strategies), but many, including goals and assessment, were omitted. Interviewees indicated the need for developmental/remedial sciences would continue in the future. Guidelines to use in determining whether to offer developmental/remedial sciences included the following: (1) adopt an attitude of quality improvement; (2) look to faculty as a #1 resource; (3) assess what is currently offered in the sciences and ask if it works; (4) know what you are remediating; (5) start a conversation between the academic department and support services staff to create a truly integrated program; (6) consider placement and advising; (7) consider assessment; (8) consider training and experience of faculty; (9) plan for the appropriate physical space and staff; and (10)do your homework.

  18. Current Trends and Missing Links in Studies on Teacher Professional Development in Science Education: A Review of Design Features and Quality of Research

    ERIC Educational Resources Information Center

    van Driel, Jan H.; Meirink, J. A.; van Veen, K.; Zwart, R. C.

    2012-01-01

    This review provides an overview of the the current state of research on professional development in science education. An analytical frame was used, based on what is known about PD from educational research. Clarke and Hollingsworth's model for teacher professional growth was also used to categorise the studies according to their aims and…

  19. Science Teaching and the Law.

    ERIC Educational Resources Information Center

    Brown, Billye W.; Brown, Walter R.

    This book aims to inform science teachers of their legal rights and responsibilities. The roles of various federal, state and local authorities in educational legislation are described. The teacher's liability for student safety and for implementing the curriculum as prescribed by state and local regulation is defined, and suggestions are made for…

  20. Deciding on Science: An Analysis of Higher Education Science Student Major Choice Criteria

    NASA Astrophysics Data System (ADS)

    White, Stephen Wilson

    The number of college students choosing to major in science, technology, engineering, and math (STEM) in the United States affects the size and quality of the American workforce (Winters, 2009). The number of graduates in these academic fields has been on the decline in the United States since the 1960s, which, according to Lips and McNeil (2009), has resulted in a diminished ability of the United States to compete in science and engineering on the world stage. The purpose of this research was to learn why students chose a STEM major and determine what decision criteria influenced this decision. According to Ajzen's (1991) theory of planned behavior (TPB), the key components of decision-making can be quantified and used as predictors of behavior. In this study the STEM majors' decision criteria were compared between different institution types (two-year, public four-year, and private four-year), and between demographic groups (age and sex). Career, grade, intrinsic, self-efficacy, and self-determination were reported as motivational factors by a majority of science majors participating in this study. Few students reported being influenced by friends and family when deciding to major in science. Science students overwhelmingly attributed the desire to solve meaningful problems as central to their decision to major in science. A majority of students surveyed credited a teacher for influencing their desire to pursue science as a college major. This new information about the motivational construct of the studied group of science majors can be applied to the previously stated problem of not enough STEM majors in the American higher education system to provide workers required to fill the demand of a globally STEM-competitive United States (National Academy of Sciences, National Academy of Engineering, & Institute of Medicine, 2010).

  1. The United States Particle Accelerator School: Educating the Next Generation of Accelerator Scientists and Engineers

    NASA Astrophysics Data System (ADS)

    Barletta, William A.

    2009-03-01

    Only a handful of universities in the US offer any formal training in accelerator science. The United States Particle Accelerator School (USPAS) is National Graduate Educational Program that has developed a highly successful educational paradigm that, over the past twenty-years, has granted more university credit in accelerator/beam science and technology than any university in the world. Sessions are held twice annually, hosted by major US research universities that approve course credit, certify the USPAS faculty, and grant course credit. The USPAS paradigm is readily extensible to other rapidly developing, cross-disciplinary research areas such as high energy density physics.

  2. Next Generation Science Partnerships

    NASA Astrophysics Data System (ADS)

    Magnusson, J.

    2016-02-01

    I will provide an overview of the Next Generation Science Standards (NGSS) and demonstrate how scientists and educators can use these standards to strengthen and enhance their collaborations. The NGSS are rich in content and practice and provide all students with an internationally-benchmarked science education. Using these state-led standards to guide outreach efforts can help develop and sustain effective and mutually beneficial teacher-researcher partnerships. Aligning outreach with the three dimensions of the standards can help make research relevant for target audiences by intentionally addressing the science practices, cross-cutting concepts, and disciplinary core ideas of the K-12 science curriculum that drives instruction and assessment. Collaborations between researchers and educators that are based on this science framework are more sustainable because they address the needs of both scientists and educators. Educators are better able to utilize science content that aligns with their curriculum. Scientists who learn about the NGSS can better understand the frameworks under which educators work, which can lead to more extensive and focused outreach with teachers as partners. Based on this model, the International Ocean Discovery Program (IODP) develops its education materials in conjunction with scientists and educators to produce accurate, standards-aligned activities and curriculum-based interactions with researchers. I will highlight examples of IODP's current, successful teacher-researcher collaborations that are intentionally aligned with the NGSS.

  3. Implementing the Next Generation Science Standards: Impacts on Geoscience Education

    NASA Astrophysics Data System (ADS)

    Wysession, M. E.

    2014-12-01

    This is a critical time for the geoscience community. The Next Generation Science Standards (NGSS) have been released and are now being adopted by states (a dozen states and Washington, DC, at the time of writing this), with dramatic implications for national K-12 science education. Curriculum developers and textbook companies are working hard to construct educational materials that match the new standards, which emphasize a hands-on practice-based approach that focuses on working directly with primary data and other forms of evidence. While the set of 8 science and engineering practices of the NGSS lend themselves well to the observation-oriented approach of much of the geosciences, there is currently not a sufficient number of geoscience educational modules and activities geared toward the K-12 levels, and geoscience research organizations need to be mobilizing their education & outreach programs to meet this need. It is a rare opportunity that will not come again in this generation. There are other significant issues surrounding the implementation of the NGSS. The NGSS involves a year of Earth and space science at the high school level, but there does not exist a sufficient workforce is geoscience teachers to meet this need. The form and content of the geoscience standards are also very different from past standards, moving away from a memorization and categorization approach and toward a complex Earth Systems Science approach. Combined with the shift toward practice-based teaching, this means that significant professional development will therefore be required for the existing K-12 geoscience education workforce. How the NGSS are to be assessed is another significant question, with an NRC report providing some guidance but leaving many questions unanswered. There is also an uneasy relationship between the NGSS and the Common Core of math and English, and the recent push-back against the Common Core in many states may impact the implementation of the NGSS.

  4. A Pre-History of Educational Philosophy in the United States: 1861 to 1914.

    ERIC Educational Resources Information Center

    Kaminsky, James S.

    1992-01-01

    Early stages of the development of educational philosophy in the United States involved the social reform movement of the 1890s, populism, progressivism, social science, literary history, muckraking, Hull House, and the work of Herbert Spencer and John Dewey. (SK)

  5. Bioinformatics in high school biology curricula: a study of state science standards.

    PubMed

    Wefer, Stephen H; Sheppard, Keith

    2008-01-01

    The proliferation of bioinformatics in modern biology marks a modern revolution in science that promises to influence science education at all levels. This study analyzed secondary school science standards of 49 U.S. states (Iowa has no science framework) and the District of Columbia for content related to bioinformatics. The bioinformatics content of each state's biology standards was analyzed and categorized into nine areas: Human Genome Project/genomics, forensics, evolution, classification, nucleotide variations, medicine, computer use, agriculture/food technology, and science technology and society/socioscientific issues. Findings indicated a generally low representation of bioinformatics-related content, which varied substantially across the different areas, with Human Genome Project/genomics and computer use being the lowest (8%), and evolution being the highest (64%) among states' science frameworks. This essay concludes with recommendations for reworking/rewording existing standards to facilitate the goal of promoting science literacy among secondary school students.

  6. Bioinformatics in High School Biology Curricula: A Study of State Science Standards

    PubMed Central

    Sheppard, Keith

    2008-01-01

    The proliferation of bioinformatics in modern biology marks a modern revolution in science that promises to influence science education at all levels. This study analyzed secondary school science standards of 49 U.S. states (Iowa has no science framework) and the District of Columbia for content related to bioinformatics. The bioinformatics content of each state's biology standards was analyzed and categorized into nine areas: Human Genome Project/genomics, forensics, evolution, classification, nucleotide variations, medicine, computer use, agriculture/food technology, and science technology and society/socioscientific issues. Findings indicated a generally low representation of bioinformatics-related content, which varied substantially across the different areas, with Human Genome Project/genomics and computer use being the lowest (8%), and evolution being the highest (64%) among states' science frameworks. This essay concludes with recommendations for reworking/rewording existing standards to facilitate the goal of promoting science literacy among secondary school students. PMID:18316818

  7. Curriculum Framework (CF) Implementation Conference. Report of the Regional Educational Laboratory Network Program and the National Network of Eisenhower Mathematics and Science Regional Consortia (Hilton Head Island, South Carolina, January 26-27, 1995).

    ERIC Educational Resources Information Center

    Palmer, Jackie; Powell, Mary Jo

    The Laboratory Network Program and the National Network of Eisenhower Mathematics and Science Regional Consortia, operating as the Curriculum Frameworks Task Force, jointly convened a group of educators involved in implementing state-level mathematics or science curriculum frameworks (CF). The Hilton Head (South Carolina) conference had a dual…

  8. NAEP 1996 Science Report for Department of Defense Dependents Schools. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    O'Sullivan, Christine Y.; Jerry, Laura; Ballator, Nada; Herr, Fiona

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  9. Task Force on Teacher Education in Physics: Findings and Recommendations

    NASA Astrophysics Data System (ADS)

    Otero, Valerie

    2010-03-01

    In response to the national crisis in science education, including low performance in high school physical science and a critical shortage of highly qualified physics teachers, a National Task Force was convened to investigate the state of physics education in the United States. The Task Force spent one year collecting data from over 900 universities and conducting site visits at 13 universities that were identified as ``high producers'' of physics teachers. The final report of the Task Force will be published early in 2010 and will highlight the findings and recommendations that resulted from the study. In this presentation, the main findings and recommendations will be presented along with selected case studies that illustrate exemplary practices in physics and education departments.

  10. Creating Next Generation Teacher Preparation Programs to Support Implementation of the Next Generation Science Standards and Common Core State Standards in K-12 Schools: An Opportunity for the Earth and Space Sciences

    NASA Astrophysics Data System (ADS)

    Geary, E. E.; Egger, A. E.; Julin, S.; Ronca, R.; Vokos, S.; Ebert, E.; Clark-Blickenstaff, J.; Nollmeyer, G.

    2015-12-01

    A consortium of two and four year Washington State Colleges and Universities in partnership with Washington's Office of the Superintendent of Public Instruction (OSPI), the Teachers of Teachers of Science, and Teachers of Teachers of Mathematics, and other key stakeholders, is currently working to improve science and mathematics learning for all Washington State students by creating a new vision for STEM teacher preparation in Washington State aligned with the Next Generation Science Standards (NGSS) and the Common Core State Standards (CCSS) in Mathematics and Language Arts. Specific objectives include: (1) strengthening elementary and secondary STEM Teacher Preparation courses and curricula, (2) alignment of STEM teacher preparation programs across Washington State with the NGSS and CCSS, (3) development of action plans to support implementation of STEM Teacher Preparation program improvement at Higher Education Institutions (HEIs) across the state, (4) stronger collaborations between HEIs, K-12 schools, government agencies, Non-Governmental Organizations, and STEM businesses, involved in the preparation of preservice STEM teachers, (5) new teacher endorsements in Computer Science and Engineering, and (6) development of a proto-type model for rapid, adaptable, and continuous improvement of STEM teacher preparation programs. A 2015 NGSS gap analysis of teacher preparation programs across Washington State indicates relatively good alignment of courses and curricula with NGSS Disciplinary Core Ideas and Scientific practices, but minimal alignment with NGSS Engineering practices and Cross Cutting Concepts. Likewise, Computer Science and Sustainability ideas and practices are not well represented in current courses and curricula. During the coming year teams of STEM faculty, education faculty and administrators will work collaboratively to develop unique action plans for aligning and improving STEM teacher preparation courses and curricula at their institutions.

  11. NAEP 1996 Science State Report for Department of Defense Domestic Dependent Elementary and Secondary Schools, Grade 4. Findings from the National Assessment of Educational Progress.

    ERIC Educational Resources Information Center

    Ballator, Nada; O'Sullivan, Christine Y.; Jerry, Laura

    In 1990, the National Assessment of Educational Progress (NAEP) included a Trial State Assessment (TSA); for the first time in the NAEP's history, voluntary state-by-state assessments were made. The sample was designed to represent the 8th grade public school population in a state or territory. In 1996, 44 states, the District of Columbia, Guam,…

  12. Service Learning in High School Biology and College Major Choice

    ERIC Educational Resources Information Center

    Wyss, Vanessa L.; Tai, Robert H.

    2012-01-01

    In section two of a 2002 amendment on the Undergraduate Science, Mathematics, Engineering, and Technology Education Improvement Act, congress stated "A workforce that is highly trained in science...is crucial to generating the innovation that drives economic growth..." (Committee on Science, 2002). Given the growth in science,…

  13. Project Learning in Science: 6th Graders' Scientific Investigations

    ERIC Educational Resources Information Center

    Shea, Mary; Shea, Brian

    2013-01-01

    This article presents rationale for an enhanced inquiry approach to science education that authentically integrates content knowledge and application skills in a middle school science curriculum. Such pedagogy ensures students' attainment of national and state standards for learning science and multiple literacies (e.g. language arts and…

  14. 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…

  15. Science education crisis: Problems, solutions discussed

    NASA Astrophysics Data System (ADS)

    Wolcott, John

    Public concern about the state of science education in America at the pre-college and college levels is widespread, triggered largely by the perception that we are losing ground in the global economy. Science, and particularly technology, are seen as our most likely sources of recovery. For those who recall the public reaction to the launching of Sputnik by Russia in 1957, the present mood is similar, if somewhat less intense.AGU members are in a unique position to influence debate about the science education crisis. Many of us, either as experts in some subset of physical science issues, as teachers at the college level, or even as parents observing our children's experiences in elementary or secondary school classrooms, may offer insight to this debate.

  16. 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.

  17. Behavioral science priorities in residency education: The perspective of practicing family physicians.

    PubMed

    Brandt-Kreutz, Richard L; Ferguson, Kyle E; Sawyer, Devin

    2015-12-01

    The family medicine residency behavioral science curriculum is more effective if prioritized to match what is needed in practice after graduation. Two prior studies (Kendall, Marvel, & Cruickshank, 2003; Marvel & Major, 1999) identified physician priorities for behavioral science education. The present study extends this research to include topics from more recent curriculum guidelines and examines the extent to which size of community and perceived competence correlate with prioritization of Washington state family physicians. Practicing family physicians in Washington state (N = 2,270) were invited to complete the survey. Respondents provided demographic and practice information. Respondents then rated, on a scale from 1 to 4, 35 behavioral science topics on 2 different scales including (a) priority to be given in residency education and (b) perceived level of competence. A total of 486 responded and 430 completed both priority and competence scales for a response rate of 19%. The top half of 35 topics of the present study included the top 13 topics found in the 2 prior studies. Priority and competence scales were moderately correlated (r = .48, n = 430, p = .001). There was a small significant correlation with size of community and priority ratings (r = .13, n = 435, p = .006). Family physicians in Washington state prioritize behavioral science topics in residency education similar to Colorado and Mississippi. The results of this study support recent ACGME guidelines, in that training should focus on common psychiatric illnesses, including depression and anxiety, and interpersonal processes. (PsycINFO Database Record (c) 2015 APA, all rights reserved).

  18. Broadening Educational Horizons: The National Science Foundation GK-12 Teaching Fellowship Program at the University of Maine, Orono, ME, USA.

    NASA Astrophysics Data System (ADS)

    Wilson, K. R.; Kelley, J. T.

    2005-12-01

    The future of meaningful scientific research in the United States depends heavily upon the quality of the science and mathematics education received by students in our grade K-12 education system. The National Science Foundation's GK-12 Teaching Fellowship Program provides opportunities for scientific enrichment for students and their teachers at the K-12 level. Currently in its fifth year at the University of Maine, Orono, the program is one of over 100 such programs in the country. Last year, the program was honored by the New England Board of Higher Education with a Regional Award for Excellence in Project Achievement. The program has three broad goals: to enrich the scientific education of students by providing equipment, role models, and expertise that they may not otherwise be exposed; to provide professional development for teachers through curriculum enrichment and participation at scientific conferences; and to improve the teaching and communication skills of fellows. Fellows represent a broad spectrum of research interests at the University of Maine, including Biology, Chemistry, Engineering, Forestry, Geological Sciences, and Marine Science. This past year, 13 graduate students and 1 undergraduate student worked with 52 teachers and 2300 students in 26 schools across the state of Maine. The benefits of this program are tangible and substantial. New awareness of the innovative ways that K-12 and University education systems can work together to promote hands-on science and the scientific method, is one of the major contributions of the NSF GK-12 Teaching Fellowship Program.

  19. Toward enhanced learning of science: An educational scheme for informal science institutions

    NASA Astrophysics Data System (ADS)

    Suzuki, Midori

    Current educational operation for informal science institutions tend to be based on the staff's experience and intuition rather than on educational theories or research findings. This status study sought research evidence for an educational scheme to give informal science institutions. Evidence for this scheme came from surveys to determine specific circumstances of educational operations and visitor behaviors. The Provus discrepancy model, seeking gaps between the actual and desired states, guided this investigation of how informal science education institution staff view the nature and status of educational operations. Another investigation sought visitors' views of the effectiveness of the main idea for exhibit understanding (n=68 for each group of with the main idea and without the main idea), effective labels (n=68), expectations toward on-site lessons(n=22 and 65 for student groups, and n=2 for teachers), and possibilities for assessments of museum operations. Institutional data were collected via a web portal, with a separate site created for administrators (n=41), exhibit developers (n=21), and program planners (n=35). The survey asked about actual and desired states in terms of goals and roles of staff, contents of exhibits and programs, assessment, and professional development. The four visitor surveys were administered individually at the North Carolina Museum of Natural Sciences. The institutional survey found that most institutions focus on attitudinal reinforcement rather than visitor learning, do not overtly value research or long-term assessment, and value partnerships with K-12 schools more than other groups. It is also clarified that the staff do not have a clear vision of the nature or function of an operations manuals. Large gaps were found between the actual and desired states in terms of assessment (administrators, exhibit developers, and program planners), professional development (exhibit developers and program planners), and partnerships (program planners), indicating that their current visions and attempts are not consistent and may need improvement. The survey of effective labels did not find a preference for any one particular type of label, and although visitors prefer concise labels, they perceive "being concise" in a variety of ways. Student visitor expectations toward on-site lessons closely matched that of their teachers, which is for science learning beyond the classroom. Assessment of daily operation indicated that a tailored design for long-term assessments could overcome perceived drawbacks of feasibility (for the staff to interpret the results and for the visitors to fill in the survey) and measurement of visitor learning. No statistically significant difference was found between respondents who were provided the main exhibit ideas those who were not. Four notions were generated from these five surveys: (1) Assessment instruments must include evaluation of visitor learning as well as their state of mind of them; (2) Staff professional development sessions must include acquisition of assessment skills and general knowledge in science and science education; (3) K-12 partnerships can be an initial step in bridging between institutions and their visitors; and (4) An operations manual could help direct an informal science institutions to more effective educational operations. The importance of a fair and systematic assessment system would help achieve all these notions.

  20. [Choose science! in a historical perspective: changing views on girls' education and the sciences, 1650-1880].

    PubMed

    Bosch, M

    1997-01-01

    According to recent historiography on women/gender and science, the uneasy relationship between women and the exact sciences only arose when in the last quarter of the nineteenth century secondary education for girls was organised and structured in opposition to boys' education, stressing the importance of a 'modern' curriculum. Before that moment women had taken part in the popular science culture as visitors of public lectures, as amateur and rather more professional scientists and as writers of best selling books on botany, chemistry or physics. This thesis, as argued most convincingly by Patricia Phillips in her book The Scientific Lady (1990), is tested for the Netherlands. Part I deals with recent literature on the history of gender and science. Part II explores the extent to which women had access to eighteenth-century science culture in the Netherlands, and the traces this left on early nineteenth-century education for girls. The author shows that the educational reformer Barbara van Meerten-Schilperoort did indeed pay quite some attention to the 'sciences' in her curriculum proposal as well as in her publications. This confirms the thesis that only when women gained access to formal education in girls' schools next to the state regulated boys' schools for secondary education, were the exact sciences labelled 'masculine', and contrasted with the 'feminine' humanities, in part as a reflection of the respective curricula.

  1. Getting to Know and Address Your State Science Standards to Connect Classroom Instruction and Field Trips During IYA

    NASA Astrophysics Data System (ADS)

    Bednarski, M.; Larsen, K.

    2008-11-01

    Astronomy activities often pose problems for in-service teachers, especially at the elementary level, as many do not have a solid content background. Often astronomy instruction revolves around reading and answering questions. This is not an effective way to work with abstract concepts or engage students, and also fails to meet the standards of inquiry-based instruction recommended by the National Science Teachers Association and national and state standards. Science museums and planetariums bring unique and exciting perspectives to astronomy education. However, bringing students to the museum can sometimes be perceived as only a ``cool field trip.'' With mounting pressure for teachers to teach to the new standardized tests demanded by No Child Left Behind, and shrinking school budgets, field trips are rapidly becoming an endangered species. Coordinating museum, science center, and planetarium offerings with national and state science standards can renew interest in (and perceived relevance of) field trips. Therefore, university faculty, in-service teachers, and museum/planetarium staff can form successful partnerships which can both improve student learning and increase attendance at informal education science events and facilities. This workshop will first briefly introduce participants to national and representative state standards as well as research on in-service teachers' astronomy content knowledge and the educational value of field trips. For the majority of the workshop, participants will engage in the actual steps of coordinating, planning, and writing inquiry-based astronomy curriculum embedded performance tasks that collectively meet the learning needs of students in elementary, middle, or high school.

  2. Climate change science education across schools, campuses, and centers: strategies and successes

    NASA Astrophysics Data System (ADS)

    Merrill, J.; Harcourt, P.; Rogers, M.; Buttram, J.; Petrone, C.; Veron, D. E.; Sezen-Barrie, A.; Stylinski, C.; Ozbay, G.

    2016-02-01

    With established partnerships in higher education, K-12, and informal science education communities across Delaware and Maryland, the NSF-funded MADE CLEAR project (Maryland Delaware Climate Change Education, Assessment, and Research) has instituted a suite of professional development strategies to bring climate change science into science education methods courses, K-12 classrooms, university lecture halls, and public park facilities. MADE CLEAR partners have provided consistent climate literacy topics (mechanisms, human contributions, local and global impacts, mitigation and adaptation) while meeting the unique needs of each professional community. In-person topical lectures, hands-on work with classroom materials, seed funding for development of new education kits, and on-line live and recorded sessions are some of the tools employed by the team to meet those needs and build enduring capacity for climate change science education. The scope of expertise of the MADE CLEAR team, with climate scientists, educators, learning scientists, and managers has provided not only PD tailored for each education audience, but has also created, fostered, and strengthened relationships across those audiences for long-term sustainability of the newly-built capacity. Specific examples include new climate change programs planned for implementation across Delaware State Parks that will be consistent with middle school curriculum; integration of climate change topics into science methods classes for pre-service teachers at four universities; and active K-12 and informal science education teams working to cooperatively develop lessons that apply informal science education techniques and formal education pedagogy. Evaluations by participants highlight the utility of personal connections, access to experts, mentoring and models for developing implementation plans.

  3. Will the No Child Left Behind Act Promote Direct Instruction of Science?

    NASA Astrophysics Data System (ADS)

    Hake, Richard

    2005-03-01

    Education research in physics at the high school and undergraduate level strongly suggests that interactive engagement enhances students' conceptual understanding much more than traditional Direct Science Instruction (DSI). Similar conclusions can be drawn from K-8 science-education research. Nevertheless, DSI predominates in CA because of the DSI- orientation of the CA State Board of Education and Curriculum Commission [1]. Likewise the U.S. Dept. of Education's (USDE's): (a) DSI-orientation as demonstrated by its recent national-education summit showcasing of the research of Klahr and Nigam [2]; and (b) science achievement testing starting in 2007; threatens to promote DSI nationwide. It might be hoped that NRC's expert science education committees will steer the USDE away from promoting DSI, the antithesis of the NRC's own recommendations for inquiry methods. [1] R.R. Hake. ``Direct Science Instruction Suffers a Setback in California - Or Does It?" (2004), <ł http://www.physics.indiana.edu/˜hake/DirInstSetback-041104f.pdf>. [2] Klahr, D. & M. Nigam. 2004. ``The equivalence of learning paths in early science instruction: effects of direct instruction and discovery learning" (2004), .

  4. Authentic Learning Experiences for Educators through Summer Internships: Revising the DIG Texas Instructional Blueprints

    NASA Astrophysics Data System (ADS)

    Martinez, A. O.; Bohls-Graham, E.; Jacobs, B. E.; Ellins, K. K.

    2014-12-01

    Texas teachers have expressed a need for engaging activities for use in high school Earth science courses. With funding from the NSF, geoscience and education faculty from different institutions around the state collaborated with ten Earth science teachers to create five online Earth science instructional blueprints. The work is part of the DIG (Diversity and Innovation for Geosciences) Texas Instructional Blueprint project. A blueprint stitches together nine units for a yearlong Earth science course (scope and sequence). Each unit covers three weeks of teaching and contains lectures, readings, visualizations, lab investigations, learning activities, and other educational materials from credible sources, which are aligned with Texas state science standards for Earth and Space Science and the Earth Science Literacy Principles. Taken together, the collection of activities address the Next Generation Science Standards (NGSS). During summer 2014, three minority-serving secondary teachers completed a six-week internship at The University of Texas Institute for Geophysics (UTIG). As DIG Texas Education Interns, we organized and revised the content of the units, created scaffolding notes, and built blueprints by selecting groups of nine units from the project's current collection of twenty-one units. Because fieldwork is an important element of geoscience learning, we integrated virtual field trips into each unit. We (1) gained expertise in selecting high quality activities that directly correlate with state standards and address the Earth Science Literacy Principles; (2) developed a keen awareness of the value of the NGSS; (3) learned how to navigate through the NGSS website to track the relationships between the Science and Engineering Practices, Disciplinary Core Ideas, and Crosscutting Concepts for Earth science, as well as connections to other disciplines in the same grade level. Collaborating with other secondary Earth science teachers introduced each of us to new teaching practices, allowing us to build relationships that we expect to last for many years. UTIG researchers mentored and introduced us to their research and methodology. In addition, they helped us find high quality activities for the units. In turn, we shared our knowledge of pedagogy and classroom expertise with them.

  5. Selected Science Educational Outcomes as a Function of South Dakota Educational Reform Policies 1995-2004

    NASA Astrophysics Data System (ADS)

    Hsu, T.; Tien, K. C.

    2005-05-01

    This research investigates selected South Dakota science educational outcomes as a function of selected educational reform policies. In the state of South Dakota, echoing divergent reform initiatives from "A Nation at Risk" to "No Child Left Behind," new guidelines and requirements have been instituted. Yet, very little effort has been made to assess the progress of these educational changes. In this study, selected educational outcomes-SAT8/9/10 scores-as a function of selected South Dakota educational reform policies were examined. School districts, ranked in the top and bottom five percent of socioeconomic status (SES) in the state, were selected for analysis. Comparison on student's science educational outcomes was also be made between the two major ethnic populations-Caucasians and Native Americans. All research questions were stated in the null form for hypothesis for statistical testing. Critical t was the statistic technique used to test the hypotheses. The findings revealed that the selected reform policies in South Dakota appeared to assist students from the higher socioeconomic backgrounds to perform better than pupils from the lower socioeconomic backgrounds. The academic performance for the ethnic and social class minorities remained unchanged within the study timeline for reform. Examined from the prism of Michael Apple's critical theory, the selected South Dakota reform policies have paid little attention to the issues of social equality. Continuing and collective efforts to promote equitable reform policies for enhancing the learning experience of all children in South Dakota seem necessary.

  6. Marine Science Initiative at South Carolina State College: An Investigation of the Biosensing Parameters Regulating Bacterial and Larval Attachment on Substrata

    DTIC Science & Technology

    1993-08-12

    State College would provide the educational facilities and SCWMRD would provide the initial research facilities. Research and teaching would be conducted...by ti"lizing the 52 ft. R/V ALila as a teaching platform for short cruises in Charleston Harbor. In addition, a marine science career day would be...held to expose students to careers in marine science. 3. To have appropriate SCWMRD scientists teach courses in topics related to marine science for

  7. Teaching science as inquiry in US and in Japan: A cross-cultural comparison of science teachers' understanding of, and attitudes toward inquiry-based teaching

    NASA Astrophysics Data System (ADS)

    Tosa, Sachiko

    Since the publication of the National Science Education Standards in 1996, learning science through inquiry has been regarded as the heart of science education. However, the TIMSS 1999 Video Study showed that inquiry-based teaching has been taking place less in the United States than in Japan. This study examined similarities and differences in how Japanese and American middle-school science teachers think and feel about inquiry-based teaching. Teachers' attitudes toward the use of inquiry in science teaching were measured through a survey instrument (N=191). Teachers' understanding of inquiry-based teaching was examined through interviews and classroom observations in the United States (N=9) and Japan (N=15). The results show that in spite of the variations in teachers' definitions of inquiry-based teaching, teachers in both countries strongly agree with the idea of inquiry-based teaching. However, little inquiry-based teaching was observed in either of the countries for different reasons. The data indicate that Japanese teachers did not generally help students construct their own understanding of scientific concepts in spite of well-planned lesson structures and activity set-ups. On the other hand, the observational data indicate that American teachers often lacked meaningful science content in spite of their high level of pedagogical knowledge. The need for addressing the importance of scientific concepts in teacher preparation programs in higher education institutions in the US is advocated. To the Japanese science education community, the need for teachers' acquisition of instructional strategies for inquiry-based teaching is strongly addressed.

  8. Parliamentary Hearings "On the Conception of Reforming the System of Education of the Russian Federation" (20 January 1998).

    ERIC Educational Resources Information Center

    Russian Education and Society, 1998

    1998-01-01

    Provides the discussion from the parliamentary hearings of the Russian Committee of the State Duma for Education and Science, held at Moscow State University, that focused on the draft of a plan to change some of the basic elements of Russian education. Offers recommendations of the parliamentary hearings and three letters. (CMK)

  9. Changing States of Matter: Science, Education, and Giftedness in 21st Century High Schools.

    ERIC Educational Resources Information Center

    Sytsma, Rachel E.

    2001-01-01

    This article uses the change of solids to liquids to gases as a metaphor for the need of high school gifted education to change from current rigid forms to the liquidity of increased flexibility, individual opportunity, and freedom and the maximum energy, freedom and flexibility (gaseous state) achieved by gifted education at its best. (Contains…

  10. Riding the Kondratieff Wave with the Liberal Arts and Sciences.

    ERIC Educational Resources Information Center

    Hawley, John B.

    The major elements of the Schumpeterian schema are examined, and events in the development of higher education in the United States are plotted on the Kondratieff Waves, with special reference to the evolution of liberal education and the sciences. It is suggested that the liberal arts, which had great impact in the 17th century, declined after…

  11. Power and Energy. Technology Education-Mathematics and Science Interface Project.

    ERIC Educational Resources Information Center

    Maryland State Dept. of Education, Baltimore. Div. of Vocational-Technical Education.

    The curriculum materials contained in this document were developed through a cooperative effort by educators in the state of Maryland. It was a curriculum project aimed at the meaningful integration of mathematics and science. It is suggested that these materials be used in two significant ways. First, this document can serve as an instructional…

  12. Computational Science as Part of Technology Education: An Interview with Aaron Clark

    ERIC Educational Resources Information Center

    Technology Teacher, 2008

    2008-01-01

    As teachers search for the most appropriate form of TIDE education for the future, they must consider as many alternatives as possible. One such alternative is computational science, which is described in detail in this interview with Dr. Aaron Clark of North Carolina State University. Dr. Clark recently agreed to this interview, with the primary…

  13. The Future of STEM Education: An Analysis of Two National Reports

    ERIC Educational Resources Information Center

    Raju, P. K.; Clayson, Ashley

    2010-01-01

    This article presents an analysis of two major reports discussing the current crisis in STEM education. Both the National Science Board (NSB) and the President's Council of Advisors on Science and Technology (PCAST) reported alarming facts and figures about the United States' position in the global knowledge economy. The U.S. is no longer…

  14. NGSS and the Landscape of Engineering in K-12 State Science Standards

    ERIC Educational Resources Information Center

    Moore, Tamara J.; Tank, Kristina M.; Glancy, Aran W.; Kersten, Jennifer A.

    2015-01-01

    Recent documents pertaining to K-12 education have fostered a connection between engineering and science education to help better prepare our students and future citizens to better meet the current and future challenges of our modern and technological society. With that connection, there has been a concerted effort to raise the visibility of…

  15. Communicating Science Concepts to Individuals with Visual Impairments Using Short Learning Modules

    ERIC Educational Resources Information Center

    Stender, Anthony S.; Newell, Ryan; Villarreal, Eduardo; Swearer, Dayne F.; Bianco, Elisabeth; Ringe, Emilie

    2016-01-01

    Of the 6.7 million individuals in the United States who are visually impaired, 63% are unemployed, and 59% have not attained an education beyond a high school diploma. Providing a basic science education to children and adults with visual disabilities can be challenging because most scientific learning relies on visual demonstrations. Creating…

  16. Computer Science Education in North-Rhine Westphalia, Germany--A Case Study

    ERIC Educational Resources Information Center

    Knobelsdorf, Maria; Magenheim, Johannes; Brinda, Torsten; Engbring, Dieter; Humbert, Ludger; Pasternak, Arno; Schroeder, Ulrik; Thomas, Marco; Vahrenhold, Jan

    2015-01-01

    In North-Rhine Westphalia, the most populated state in Germany, Computer Science (CS) has been taught in secondary schools since the early 1970s. This article provides an overview of the past and current situation of CS education in North-Rhine Westphalia, including lessons learned through efforts to introduce and to maintain CS in secondary…

  17. External Insect Morphology: A Negative Factor in Attitudes toward Insects and Likelihood of Incorporation in Future Science Education Settings

    ERIC Educational Resources Information Center

    Wagler, Ron; Wagler, Amy

    2012-01-01

    This study investigated if the external morphology of an insect had a negative effect on United States (US) preservice elementary teacher's attitudes toward insects and beliefs concerning the likelihood of incorporating insects into future science education settings. 270 US kindergarten through sixth grade preservice elementary teachers…

  18. Strategy for Engaging the Society for Neuroscience in Science Education

    ERIC Educational Resources Information Center

    Cameron, William E.; McNerney, Colleen D.

    2006-01-01

    The Society for Neuroscience (SfN) has more than 37,000 members and constitutes one of the largest single-theme scientific societies in the United States. Although many of its members are engaged in various activities that support their local science education programs, historically the society has not played a major role in shaping the national…

  19. Involvement of African-American Girls in Science, Technology, Engineering, and Mathematics (STEM) Education

    ERIC Educational Resources Information Center

    Nkere, Nsidi

    2016-01-01

    A qualitative case study was conducted by examining the perceptions of fifth-grade African American girls about their experiences with science, technology, engineering and mathematics (STEM) education and potential for STEM as a future career. As the United States suffers from waning participation across all demographics in STEM and a high level…

  20. Reading First: Impact on Third Grade Student Performance in Reading, Math, Science Before, During, and after Implementation

    ERIC Educational Resources Information Center

    Allen, Vikki Renee

    2012-01-01

    Critical issues are confronting educators regarding increasing student achievement levels in reading, math and science in United States' public schools. Educators and legislators are attempting to make radical changes in instructional methodology and to find viable and sustainable solutions to problems associated with poor student achievement.…

  1. Mind the Gap: Political Science Education in Community Colleges

    ERIC Educational Resources Information Center

    Yanus, Alixandra B.; O'Connor, Karen; Weakley, Jon L.

    2012-01-01

    Community colleges occupy a growing role in the American education system. Their unique cross-section of students poses a challenge for teachers of political science. This paper uses information from a survey completed by over 2,000 students at 20 colleges and universities across the United States to shed light on some of the most significant…

  2. The Nation's Report Card Science 2011 State Snapshot Report. Minnesota. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  3. The Nation's Report Card Science 2011 State Snapshot Report. Pennsylvania. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  4. The Nation's Report Card Science 2011 State Snapshot Report. Idaho. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  5. The Nation's Report Card Science 2011 State Snapshot Report. New Hampshire. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  6. The Nation's Report Card Science 2011 State Snapshot Report. Hawaii. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  7. The Nation's Report Card Science 2011 State Snapshot Report. Wisconsin. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  8. The Nation's Report Card Science 2011 State Snapshot Report. Ohio. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  9. The Nation's Report Card Science 2011 State Snapshot Report. Iowa. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  10. The Nation's Report Card Science 2011 State Snapshot Report. Rhode Island. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  11. The Nation's Report Card Science 2011 State Snapshot Report. Maryland. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  12. The Nation's Report Card Science 2011 State Snapshot Report. Georgia. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  13. The Nation's Report Card Science 2011 State Snapshot Report. North Dakota. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  14. The Nation's Report Card Science 2011 State Snapshot Report. Delaware. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  15. The Nation's Report Card Science 2011 State Snapshot Report. Oklahoma. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  16. The Nation's Report Card Science 2011 State Snapshot Report. Connecticut. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  17. The Nation's Report Card Science 2011 State Snapshot Report. Kentucky. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  18. The Nation's Report Card Science 2011 State Snapshot Report. Alabama. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  19. The Nation's Report Card Science 2011 State Snapshot Report. South Dakota. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

  20. The Nation's Report Card Science 2011 State Snapshot Report. Nevada. Grade 8, Public Schools

    ERIC Educational Resources Information Center

    National Center for Education Statistics, 2012

    2012-01-01

    A representative sample of 122,000 eighth-graders participated in the 2011 National Assessment of Educational Progress (NAEP) science assessment, which is designed to measure students' knowledge and abilities in the areas of physical science, life science, and Earth and space sciences. This report covers the overall results, achievement level…

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