Sample records for science fair projects

  1. From science fair to project-based science: A study of the implementation of an innovation through an existing activity system

    NASA Astrophysics Data System (ADS)

    Walker, Lisa Jean

    The implementation process is critical to the success of educational innovations. Project-based science is an innovation designed to support students' science learning. Science fair is a pervasive school practice in which students exhibit science projects. Little is known about how science fair may affect the implementation of reform efforts in science education. This study explores the relationship of science fair and project-based science in the classrooms of three science teachers. Two theories are used to understand science fair as an instructional practice. Cultural historical activity theory supports an analysis of the origins and development of science fair. The idea of communities of practice supports a focus on why and how educational practitioners participate in science fair and what meanings the activity holds for them. The study identifies five historically-based design themes that have shaped science fair: general science, project method, scientific method, extra-curricular activity, and laboratory science. The themes provide a new framework for describing teachers' classroom practices for science fair activities and support analysis of the ways their practices incorporate aspects of project-based science. Three case studies in Chicago present ethnographic descriptions of science fair practices within the context of school communities. One focuses on the scientific method as a linear process for doing science, another on knowledge generation through laboratory experiments, and the third on student ability to engage in open-ended inquiry. One teacher reinvents a project-based science curriculum to strengthen students' laboratory-based science fair projects, while another reinvents science fair to teach science as inquiry. In each case, science fair is part of the school's efforts to improve science instruction. The cases suggest that reform efforts help to perpetuate science fair practice. To support systemic improvements in science education, this study recommends that science fair be recognized as a classroom instructional activity---rather than an extra-curricular event---and part of the system of science education in this country. If science fair is to reflect new ideas in science education, direct intervention in the practice is necessary. This study---including both the history and examples of current practice---provides valuable insights for reconsidering science fair's design.

  2. Environmental Science: 49 Science Fair Projects. Science Fair Projects Series.

    ERIC Educational Resources Information Center

    Bonnet, Robert L.; Keen, G. Daniel

    This book contains 49 science fair projects designed for 6th to 9th grade students. Projects are organized by the topics of soil, ecology (projects in habitat and life cycles), pests and controls (projects in weeds and insects), recycling (projects in resources and conservation), waste products (projects in decomposition), microscopic organisms,…

  3. COSEE-AK Ocean Science Fairs: A Science Fair Model That Grounds Student Projects in Both Western Science and Traditional Native Knowledge

    ERIC Educational Resources Information Center

    Dublin, Robin; Sigman, Marilyn; Anderson, Andrea; Barnhardt, Ray; Topkok, Sean Asiqluq

    2014-01-01

    We have developed the traditional science fair format into an ocean science fair model that promoted the integration of Western science and Alaska Native traditional knowledge in student projects focused on the ocean, aquatic environments, and climate change. The typical science fair judging criteria for the validity and presentation of the…

  4. Gender Differences in Science Interests: An Analysis of Science Fair Projects.

    ERIC Educational Resources Information Center

    Lawton, Carol A.; Bordens, Kenneth S.

    Gender differences in science interests were examined in two studies of projects entered in a regional science fair in kindergarten through grade 12. A content analysis of 1,319 project topics and materials submitted to the Northeastern Indiana Regional Science and Engineering Fair from 1991 through 1993 showed that girls were more likely than…

  5. "Saturday Night Live" Goes to High School: Conducting and Advising a Political Science Fair Project

    ERIC Educational Resources Information Center

    Allen, Meg; Brewer, Paul R.

    2010-01-01

    This article uses a case study to illustrate how science fair projects--which traditionally focus on "hard science" topics--can contribute to political science education. One of the authors, a high school student, conducted an experimental study of politics for her science fair project. The other author, a faculty member, was asked to advise the…

  6. The use of animals in national high school student science fair projects in the United States.

    PubMed

    Miller-Spiegel, Crystal

    2004-06-01

    Science fair projects can provide a sound opportunity to teach students the value of scientific methodology without relying on the routine and unnecessary use of animals. Unfortunately, students are often encouraged to use animals in an expendable manner that both duplicates previous experiments and neglects the opportunity to "think outside the box" in order to generate new hypotheses/theories about human health, physiological processes or basic biological concepts. Although at least one national science fair sponsor has changed its policy regarding students' utilisation of vertebrate animals, others continue to encourage the more traditional in vivo experimental projects. This paper will review the guidelines of two major national science fairs in the USA; types of projects conducted that involve animals; numbers of animals involved; interview responses by some student finalists who used vertebrates in their projects; successful initiatives by animal advocates in the USA to eliminate the use of animals in science fairs; and potential areas of outreach to science educators, science fair sponsors, high schools and students.

  7. Science Teachers' Views about the Science Fair at Primary Education Level

    ERIC Educational Resources Information Center

    Tortop, Hasan Said

    2013-01-01

    Science fair is an environment where students present their scientific research projects. Opinions of science teachers who participated as a mentor in science fair are important for determining of the science fair quality and its contribution of science education. The aim of study was to determine science teachers' views about the science fair at…

  8. Four Tools for Science Fair Success

    ERIC Educational Resources Information Center

    Smith, Sherry Weaver; Messmer, Barbara; Storm, Bill; Weaver, Cheryl

    2007-01-01

    These teacher-tested ideas will guide students in creating true inquiry-based projects. Two of the ideas, the Topic Selection Wizard and Science Project Timeline, are appropriate for all science fair programs, even new ones. For existing programs, the Black Box of Project Improvement and After-School Project Clinic improve project quality and…

  9. Science Fair Projects: The Environment.

    ERIC Educational Resources Information Center

    Bonnet, Bob; Keen, Dan

    This book approaches the development of science fair projects from the point of view that science should be enjoyable, interesting, and thought-provoking. The scientific concepts introduced here will later help young students to understand more advanced scientific principles. These projects develop skills such as classification, making measured…

  10. Can participation in a school science fair improve middle school students' attitudes toward science and interest in science careers?

    NASA Astrophysics Data System (ADS)

    Finnerty, Valerie

    The purpose of this study was to investigate whether participation in a school-based science fair affects middle school students' attitudes toward science and interest in science and engineering careers. A quasi-experimental design was used to compare students' pre- and posttest attitudes toward and interest in science. Forty-eight of the 258 participants completed a school-based science fair during the study. In addition, twelve middle school science teachers completed an online survey. Both the Survey of Science Attitudes and Interest I and II (SSAI-I and II) measured students' attitudes toward and interest in science and science and mathematics self-efficacy, asked about classroom inquiry experiences and gathered demographic information. An online survey gathered qualitative data about science teachers' perceptions of school science fairs. The results showed no significant interactions among completion of a science fair project and attitudes toward and interest in science, science and mathematics self-efficacy or gender. There were significant differences at both pre- and posttest in attitudes between the students who did and did not complete a science fair project. All participating teachers believed that participation in science fairs could have a positive effect on students' attitudes and interest, but cited lack of time as a major impediment. There was significant interaction between level of classroom inquiry and attitudes and interest in science; students who reported more experiences had higher scores on these measures. Classroom inquiry also interacted with the effects of a science fair and participants' pre- and posttest attitude scores. Finally, the amount and source of assistance on a science fair project had a significant impact on students' posttest measures. Major limitations which affect the generalization of these findings include the timing of the administration of the pretest, the number of participants in the experimental group and differences in the science fair procedures at the participating schools. Embedded in a curriculum that includes the teaching of inquiry practices, science fairs may play a role in the inspiration of future scientists, but more research needs to be done on the quality of students' experiences, including amount and type of classroom instruction before and during the science fair process.

  11. Physics at the International Science and Engineering Fair.

    ERIC Educational Resources Information Center

    Walker, Jearl

    1979-01-01

    A judge for the physics projects for the 1979 International Science and Engineering Fair describes many of the more popular science projects. Projects described include the following: carbon dioxide and helium-neon lasers, reverse flame investigations, holography, construction of a magnetic bottle to confine plasma, and aerodynamic drag. (BT)

  12. The NASA Goddard Space Flight Center Virtual Science Fair

    NASA Technical Reports Server (NTRS)

    Bolognese, Jeff; Walden, Harvey; Obenschain, Arthur F. (Technical Monitor)

    2002-01-01

    This report describes the development of the NASA Goddard Space Flight Center Virtual Science Fair, including its history and outgrowth from the traditional regional science fairs supported by NASA. The results of the 1999 Virtual Science Fair pilot program, the mechanics of running the 2000 Virtual Science Fair and its results, and comments and suggestions for future Virtual Science Fairs are provided. The appendices to the report include the original proposal for this project, the judging criteria, the user's guide and the judge's guide to the Virtual Science Fair Web site, the Fair publicity brochure and the Fair award designs, judges' and students' responses to survey questions about the Virtual Science Fair, and lists of student entries to both the 1999 and 2000 Fairs.

  13. University of Maryland MRSEC - Education: Resources

    Science.gov Websites

    . University of Maryland Materials Research Science and Engineering Center Home About Us Leadership Moments in MSE The Materials Science and Engineering Career Resources Center Materials Research Society Central Super Science Fair Projects: Ideas, Topics, & Experiments All Science Fair Projects Science

  14. The NASA Goddard Space Flight Center Virtual Science Fair

    NASA Technical Reports Server (NTRS)

    Bolognese, Jeff; Walden, Harvey; Obenschain, Arthur F. (Technical Monitor)

    2001-01-01

    This report describes the development of the NASA Goddard Space Flight Center Virtual Science Fair, including its history and outgrowth from the traditional regional science fairs supported by NASA. The results of the 1999 Virtual Science Fair pilot program, the mechanics of running the 2000 Virtual Science Fair and its results, and comments and suggestions for future Virtual Science Fairs are provided. The appendices to the report contain supporting documentation, including the original proposal for this project, the judging criteria, the user's guide and the judge's guide to the Virtual Science Fair Web site, the Fair publicity brochure and the Fair award designs, judges' and students' responses to survey questions about the Virtual Science Fair, and lists of student entries to both the 1999 and 2000 Fairs.

  15. The Complete Science Fair Handbook. For Teachers and Parents of Students in Grades 4-8.

    ERIC Educational Resources Information Center

    Fredericks, Anthony D.; Asimov, Isaac

    Interest in a science fair is low when students feel undirected and lack the information they need to produce a successful project. For many students, parents, and teachers, planning and carrying out a science fair project may be very frustrating. This book is designed to be a reference that helps teachers guide students through this process. The…

  16. Examining of the Predictors of Pre-Service Teachers' Perceptions of the Quality of the Science Fair Projects in Turkey

    ERIC Educational Resources Information Center

    Tortop, Hasan Said

    2014-01-01

    This study aimed at examining the predictors of quality of science fair (SF) projects in the light of pre-service teachers' evaluation of SF rubric' domains. These projects were selected by judges in A city for the A Regional Exhibition of Science and Mathematics Project Study for Primary School Students: The SF projects were evaluated by thirty…

  17. Science 101: What Constitutes a Good Science Project

    ERIC Educational Resources Information Center

    Robertson, Bill

    2016-01-01

    Having written columns dealing with science fairs before, Bill Robertson notes that it's been a long time since he has tackled the subject of what passes for a "science fair" in schools these days. Because science fairs have changed over the years, Robertson revisits the topic and explains the scientific method. The main focus of the…

  18. A Beginner's Guide to Science Project Competitions in Indiana.

    ERIC Educational Resources Information Center

    Zeck, Patricia Arnett

    2000-01-01

    Describes a regional science fair in Indiana. Presents guidelines for organization and registration, rules and regulations, display and presentation, science fair advancement opportunities, and other competitions. (SAH)

  19. Establishing the Goals of a Science Fair Based on Sound Research Studies.

    ERIC Educational Resources Information Center

    Slisz, Jill

    Science fairs are held in many elementary, junior high, and high schools. Typically they are thought of as a competitive event where students display science projects. Publications occasionally print accounts of successful science fairs, but these articles are usually based on opinions rather than on research. The purpose of this study is to…

  20. Abstracts of the Finalists of the International Science and Engineering Fair (35th, Columbus, Ohio, May 8-13, 1984).

    ERIC Educational Resources Information Center

    Science Service, Inc., Washington, DC.

    A science and engineering fair is a competition based on the quality of projects done by students, the results of which are reported through exhibits and oral presentations at the fair. Fairs operate on a step basis. Students who win in small fairs such as a local fair, move to a city fair, then to a regional fair, and may be chosen to represent…

  1. Abstracts of the Finalists of the International Science and Engineering Fair (37th, Ft. Worth, Texas, May 11-17, 1986).

    ERIC Educational Resources Information Center

    Science Service, Inc., Washington, DC.

    A science and engineering fair is a competition based on the quality of projects done by students, the results of which are reported through exhibits and oral presentations at the fair. Fairs operate on a step basis. Students who win in small, local fairs, move to a city fair, then to a regional fair, and may be chosen to represent that fair in…

  2. Abstracts of the Finalists of the International Science and Engineering Fair (39th, Knoxville, Tennessee, May 8-14, 1988).

    ERIC Educational Resources Information Center

    Science Service, Inc., Washington, DC.

    A science and engineering fair is a competition based on the quality of projects done by students, the results of which are reported through exhibits and oral presentations at the fair. Fairs operate on a step basis. Students who win in small, local fairs, move to a city fair, then to a regional fair, and may be chosen to represent that fair in…

  3. Abstracts of the Finalists of the International Science and Engineering Fair (34th, Albuquerque, New Mexico, May 9-14, 1983).

    ERIC Educational Resources Information Center

    Science Service, Inc., Washington, DC.

    A science and engineering fair is a competition based on the quality of projects done by students, the results of which are reported through exhibits and oral presentations at the fair. Fairs operate on a step basis. Students who win in small fairs such as a local fair, move to a city fair, then to a regional fair, and may be chosen to represent…

  4. Abstracts of the Finalists of the International Science and Engineering Fair (38th, San Juan, Puerto Rico, May 10-16, 1987).

    ERIC Educational Resources Information Center

    Science Service, Inc., Washington, DC.

    A science and engineering fair is a competition based on the quality of projects done by students, the results of which are reported through exhibits and oral presentations at the fair. Fairs operate on a step basis. Students who win in small, local fairs, move to a city fair, then to a regional fair, and may be chosen to represent that fair in…

  5. Abstracts of the Finalists of the International Science and Engineering Fair (36th, Shreverport/Bossier City, Louisiana, May 12-18, 1985).

    ERIC Educational Resources Information Center

    Science Service, Inc., Washington, DC.

    A science and engineering fair is a competition based on the quality of projects done by students, the results of which are reported through exhibits and oral presentations at the fair. Fairs operate on a step basis. Students who win in small fairs such as a local fair, move to a city fair, then to a regional fair, and may be chosen to represent…

  6. The 1939-1940 New York World's Fair and the Transformation of the American Science Extracurriculum

    ERIC Educational Resources Information Center

    Terzian, Sevan G.

    2009-01-01

    At the 1939-1940 New York World's Fair, several thousand boys and girls, all members of a growing national network of high school science and engineering clubs, displayed their science fair projects and conducted live experiments to more than 10 million visitors. Housed in the building sponsored by the Westinghouse Electric and Manufacturing…

  7. Plasma Science and Applications at the Intel Science Fair: A Retrospective

    NASA Astrophysics Data System (ADS)

    Berry, Lee

    2009-11-01

    For the past five years, the Coalition for Plasma Science (CPS) has presented an award for a plasma project at the Intel International Science and Engineering Fair (ISEF). Eligible projects have ranged from grape-based plasma production in a microwave oven to observation of the effects of viscosity in a fluid model of quark-gluon plasma. Most projects have been aimed at applications, including fusion, thrusters, lighting, materials processing, and GPS improvements. However diagnostics (spectroscopy), technology (magnets), and theory (quark-gluon plasmas) have also been represented. All of the CPS award-winning projects so far have been based on experiments, with two awards going to women students and three to men. Since the award was initiated, both the number and quality of plasma projects has increased. The CPS expects this trend to continue, and looks forward to continuing its work with students who are excited about the possibilities of plasma. You too can share this excitement by judging at the 2010 fair in San Jose on May 11-12.

  8. Nevada's Climate Change High School Science Fair Network

    NASA Astrophysics Data System (ADS)

    Buck, P.

    2012-12-01

    The purpose of this 3 year project funded by NSF (GEO 1035049) is to increase the climate change science content knowledge and teaching effectiveness of in-service high school science teachers and increase the numbers of quality of high school geoscience projects competing in Nevada's three regional Intel ISEF (International Science & Engineering Fair) affiliated science fairs. In year 1 of the project participants consisted of six female and three male high school teachers from across Nevada. Eight of the participants were white and one was Asian. Five participants taught in Clark County, two taught in Owyhee, one taught in Elko and one taught in Spring Creek. Over 20% of the projects were noted (by the teachers) as being submitted by underrepresented students; however, this information is not reliable as most students did not provide this data themselves. Pre-and post- content tests were given. Teachers improved from an average of eight missed on the pre-test to an average of only four items missed on the post-test. Participants were also asked to evaluate their own teaching efficacy. In general, participants had a strong science efficacy. The item on which there was the most discrepancy among participants was on #10, the one stating that "The low achievement of some students cannot generally be blamed on their teachers." Most teachers completed an end of year program evaluation. All but one of the participants felt that the pace of the workshop was comfortable. All participants who used faculty mentors in helping their students rated their faculty mentors very highly. All participants rated the program content very highly in terms of clarity, organization, relevance, helpfulness and usefulness. All participants gave the program a very high rating overall and stated they would likely use the information to mentor future students and in instruction in future classes. The science fairs are the culmination of the program. Teachers were required to have at least one student submit a project related to climate change science in their regional fair. There were 28 projects submitted in 2011; of these there were 10 first place winners, 5 second place winners, and 1 third place winner. Over half of the projects entered in the regional science fairs received an award. The reported student science fair projects relating to climate change include, among others: comparing CO2 emissions in old and new cars, comparing travel by mass transit with travel by private car, studying how CO2 effects global warming, studying seedlings in a climate controlled environment, studying the effect of climate change on hurricanes, determining ammonia emission from bovine manure, and studying the effect of Dendroctonus brevicomis on the depopulation of Pinus edulis and Pinus ponderosa due to climate change.

  9. How Science Fairs Foster Inquiry Skills and Enrich Learning

    ERIC Educational Resources Information Center

    Paul, Jürgen; Groß, Jorge

    2017-01-01

    Science competitions have continuing relevance for schools. The aim of the German youth science fair "Jugend forscht" is to encourage scientific thinking and inquiry methods such as experimentation. Three concrete examples of participating projects are given. We summarise the current state of research related to science competitions,…

  10. Science Fair Projects. LC Science Tracer Bullet. TB 07-6

    ERIC Educational Resources Information Center

    Howland, Joyce, Comp.

    2007-01-01

    Selected sources in this bibliography provide guidance to students, parents, and teachers throughout the process of planning, developing, implementing and competing in science fair activities. Sources range in suitability from elementary to high school levels. This guide updates "Library of Congress Science Tracer Bullet" 01-4. More specialized…

  11. Environmental Science: High-School Science Fair Experiments.

    ERIC Educational Resources Information Center

    Dashefsky, H. Steven

    This book contains 23 suggestions for experiments involving environmental science that can be used to create a science fair project. Aimed at grades 10-12, a wide range of environmental topics is covered. These topics include soil ecosystems, aquatic ecosystems, applied ecology, global warming and the greenhouse effect, deforestation and…

  12. Enhancing Teacher and Student Engagement and Understanding of Marine Science Through Classroom Citizen Science Projects

    NASA Astrophysics Data System (ADS)

    Goodale, T. A.

    2016-02-01

    Overview This paper presentation shares findings from a granted funded project that sought to expand teacher content knowledge and pedagogy within the fields of marine science and coastal resource management through the implementation of classroom citizen science projects. A secondary goal was to increase middle and high school student interest and participation in marine science and natural resources research. Background A local science & engineering fair has seen a rapid decline in secondary student participants in the past four years. Research has demonstrated that when students are a part of a system of knowledge production (citizen science) they become much more aware, involved and conscious of scientific concepts compared to traditional school laboratory and nature of science activities. This project's primary objectives were to: (a) enhance teacher content expertise in marine science, (b) enrich teacher professional learning, (c) support citizen science classroom projects and inspire student activism and marine science engagement. Methods Project goals were addressed through classroom and meaningful outdoor educational experiences that put content knowledge into field based practices. Teachers learned to apply thier expanded content knowlege through classroom citizen science projects that focus on marine resource conservation issues such as fisheries management, water quality, turtle nesting and biodiversity of coastal ecosystems. These projects would eventually become potential topics of citizen science research topics for their students to pursue. Upon completion of their professional development, participants were urged to establish student Marine Science clubs with the goal of mentoring student submissions into the local science fair. Supplemental awards were possible for the students of project participants. Findings Based on project measures participants significantly increased their knowledge and awareness of presented material marine science and coastal resources. 11/14 teacher participants established citizen science clubs that focused on marine related issues. Science fair participation increased by 42% and of those students whose mentor teacher was a project participant 90% stated they would likely pursue a marine science related major in college.

  13. White House Science Fair

    NASA Image and Video Library

    2014-05-27

    Bobak Ferdowsi, a system's engineer at NASA's Jet Propulsion Laboratory who became widely known for his mohawk hairstyle during the broadcast of the Curiosity landing on Mars, is seen here discussing a project with a participant in the White House Science Fair. The fourth White House Science Fair was held at the White House and included 100 students from more than 30 different states who competed in science, technology, engineering, and math (STEM) competitions. (Photo Credit: NASA/Aubrey Gemignani)

  14. Earth Science: 49 Science Fair Projects Series.

    ERIC Educational Resources Information Center

    Bonnet, Robert L.; Keen, G. Daniel

    This book offers a large collection of Earth science projects and project ideas for students, teachers, and parents. The projects described are complete but can also be used as spring boards to create expanded projects. Overviews, organizational direction, suggested hypotheses, materials, procedures, and controls are provided. The projects…

  15. Sometimes It's Not Fair!

    ERIC Educational Resources Information Center

    Goldsworthy, Anne; Watson, Rod; Wood-Robinson, Valerie

    1998-01-01

    The fair test is predominately used by primary teachers participating in a science-education project with King's College London. Debates whether this level of use of fair test investigations is appropriate. (DDR)

  16. International Rules for Precollege Science Research: Guidelines for Science Fairs. June 1995-May 1996.

    ERIC Educational Resources Information Center

    Science Service, Inc., Washington, DC.

    This document presents the international rules for precollege science research. Sections include: (1) Quick Rules Reference; (2) Highlights for 1995-96; (3) International Science and Engineering Fair (ISEF) Category Descriptions; (4) Display and Safety Regulations; (5) Eligibility; (6) Requirements; (7) Limitations; (8) Continuation of Projects;…

  17. A World of Discovery Online: Science Fairs.

    ERIC Educational Resources Information Center

    Joseph, Linda C.

    1996-01-01

    K-12 students and teachers can use the Internet for planning science fair activities--for project ideas, resources, and interactive Web sites. Lists 26 science Web sites specializing in question answering, activities, experiments, optics, math, dissection, inventions, physics, space, genetics, cockroaches and worms, and Twinkies (sponge cakes).…

  18. The Effect of the Use of Outside Facilities and Resources on Success in Secondary School Science Fairs.

    ERIC Educational Resources Information Center

    Wiygul, Sherrill M.; Gifford, Vernon

    To investigate the effect of outside help in executing a successful science fair project, surveys were distributed to 356 participants in the 1987 Mississippi Region V Science Fair. Of this number, 147 students were in grades 7 and 8, 136 in grades 9 and 10, and 73 in grades 11 and 12. Students listed the number of hours they spent using outside…

  19. Gender Aspects of Participation, Support, and Success in a State Science Fair

    ERIC Educational Resources Information Center

    Sonnert, Gerhard; Sadler, Philip; Michaels, Mish

    2013-01-01

    This study of students competing in the 2009 Massachusetts State Science & Engineering Fair investigates the role gender played in students' participation, choice of science field, award of prizes, and mentioning inspiring teachers. Females made up 62 percent of the participants and were more likely to enter projects in biology and in…

  20. Celebrating Science with the Community: An Approach to Science Fairs Intended to Create Learning Celebrations

    ERIC Educational Resources Information Center

    Pittman, Jason

    2016-01-01

    Learning celebrations are increasingly common in schools looking to put more emphasis on community and efficacy in place formulaic science fair projects. The celebration aspect is in the community's participation and interaction with the learners. Students are the main event, performing as they would in a school play or applying acquired knowledge…

  1. White House Science Fair Emphasizes Importance of STEM Education

    NASA Astrophysics Data System (ADS)

    Showstack, Randy

    2014-06-01

    "I have a confession to make," U.S. president Barack Obama told the audience of young inventors and their mentors at a 27 May White House Science Fair ceremony in the East Room of the White House. "When I was growing up, my science fair projects were not as successful as the ones here." Recalling that during one of his experiments, "a bunch of mice escaped in my grandmother's apartment," Obama joked, "These experiments did not take me straight to the White House."

  2. Science Experiments Index for Young People. 2nd Edition.

    ERIC Educational Resources Information Center

    Pilger, Mary Anne

    The purpose of the index is to guide students in finding information on thousands of science experiments for investigative projects and science projects for science fairs. Experiments range from simple to complex and are from 1527 books that are both old and new. The nature and range of the projects and activities are appropriate for primary…

  3. Getting a Jump on the Science Fair.

    ERIC Educational Resources Information Center

    Fort, Deborah C.

    1985-01-01

    Success of the Murch Elementary School (Washington, DC) science fair is due to many factors which are applicable to other schools. Suggestions, ideas, and hints are given in this description of the school's program. Projects with an electrocardiogram, water weeds, and preserving ice are also discussed. (DH)

  4. Researching the Real: Transforming the Science Fair through Relevant and Authentic Research

    NASA Astrophysics Data System (ADS)

    Davidson, Rosemary McBryan

    This teacher research study documents the processes used to help students in an all-female, religious-based high school create science fair projects that are personally meaningful, scientifically sophisticated and up-to date in terms of science content. One-hundred sixteen young women in an honors chemistry class were introduced by their teacher to the methods used by science journalists when researching and crafting articles. The students then integrated these strategies into their science fair research through collaborative classroom activities designed by their teacher. Data collected during the process included audio and video tapes of classroom activities, student interviews, process work, finished projects, email conversations and the reflective journaling, annotated lesson plans, and memories of the lived experience by the teacher. The pedagogical changes which resulted from this project included the use of Read Aloud-Think Alouds (RATA) to introduce content and provide relevance, a discussion based topic selection process, the encouragement of relevant topic choices, the increased use of technology for learning activities and for sharing research, and an experimental design process driven by the student's personally relevant, topic choice. Built in feedback loops, provided by the teacher, peer editors and an outside editor, resulted in multiple revisions and expanded opportunities for communicating results to the community-at-large. Greater student engagement in science fair projects was evident: questioning for understanding, active involvement in decision making, collaboration within the classroom community, experience and expertise with reading, writing and the use of technology, sense of agency and interest in science related activities and careers all increased. Students communicated their evolving practices within the school community and became leaders who promoted the increased use of technology in all of their classes. Integrating journalistic practices into the research projects of these honors chemistry students also brought about positive changes in the attitude of the students toward science. The pedagogy implemented was successful at increasing the engagement of the participants in their own learning processes as well as increased interest in science. Moreover, the teacher researcher has expanded her skill set and is transitioning toward a more student-centered classroom. While this study focused on 116 honors chemistry students over the course of three years, it identified changes in practices that can be taken up and examined more broadly by science teachers who include science fairs as part of their curriculum.

  5. Dissection & Science Fairs. [Information Packet.

    ERIC Educational Resources Information Center

    National Anti-Vivisection Society, Chicago, IL.

    This collection of pamphlets and articles reprinted from other National Anti-Vivisection Society (NAVS) publications was compiled to address the issues of classroom laboratory dissection and the use of animals in science fair projects. Three of the pamphlets contained in this packet are student handbooks designed to help students of elementary,…

  6. Evaluation of a High School Fair Program for Promoting Successful Inquiry-based Learning

    NASA Astrophysics Data System (ADS)

    Betts, Julia Nykeah

    The success of inquiry-based learning (IBL) in supporting science literacy can be challenged when students encounter obstacles in the absence of proper support. This research is intended to evaluate the effectiveness of an Oregon public school district's regional science fair coaching program in promoting inquiry skills and positive attitudes toward science in participating high school students. The purpose of this study was to better understand students' perception of program support, obstacles or barriers faced by students, and potential benefits of IBL facilitated by the science fair program. Data included responses to informal and semi-structured interviews, an anonymous survey, a Skills assessment of final project displays, and an in-depth case study on three students' experiences. Results suggest that the science fair program can properly engage participants in authentic IBL. However, when assessing the participant's final project displays, I found that previous fair experience did not significantly increase mean scores as identified by the official Oregon Department of Education (ODE) scoring guides. Based on results from the case study, it is suggested that participants' low science self-concept, poor understanding of inquiry skills, and inability to engage in reflective discourse may reduce students' abilities to truly benefit. Recommendations to address this discrepancy include identifying specific needs of students through a pre--fair survey to develop more targeted support, and providing new opportunities to develop skills associated with science-self concept, understanding of inquiry and reflective discourse. In addition, results suggest that students would benefit from more financial support in the form of grants, and more connections with knowledgeable mentors.

  7. Conservation Science Fair Projects.

    ERIC Educational Resources Information Center

    Soil Conservation Society of America, Ankeny, IA.

    Included are ideas, suggestions, and examples for selecting and designing conservation science projects. Over 70 possible conservation subject areas are presented with suggested projects. References are cited with each of these subject areas, and a separate list of annotated references is included. The references pertain to general subject…

  8. Boulder Experiments Scrapook. A Description of How the Student and Professional Staff of the S.A.D.M.E.S.S. Project Planned and Put On a Community Environmental Fair.

    ERIC Educational Resources Information Center

    Social Science Education Consortium, Inc., Boulder, CO.

    This Scrapbook is a description of how eight 12th grade students, with help from the professional staff of the Social Science Education Consortium, planned and put on a community environmental fair in Boulder, Colorado. The Boulder Experiments Fair grew out of an environmental education project conducted by SSEC and funded by the Office of…

  9. Promoting Original Scientific Research and Teacher Training Through a High School Science Research Program: A Five Year Retrospective and Analysis of the Impact on Mentored 8th Grade Geoscience Students and the Mentors Themselves

    NASA Astrophysics Data System (ADS)

    Danch, J. M.

    2015-12-01

    In 2010 a group of 8th grade geoscience students participated in an extracurricular activity allowing them to conduct original scientific research while being mentored by students enrolled in a 3 - year high school Science Research program. Upon entering high school the mentored students themselves enrolled in the Science Research program and continued for 4 years, culminating with their participation in Science Research 4. This allowed them to continue conducting original scientific research, act as mentors to 8th grade geoscience students and to provide teacher training for both middle and high school teachers conducting inquiry-based science lessons. Of the 7 Science Research 4 students participating since 2010, 100% plan on majoring or minoring in a STEM - related field in college and their individual research projects have been been granted over 70 different awards and honors in science fair and symposia including a 3rd and 4th place category awards at two different international science fairs - the International Sustainable Energy Engineering and Environment Project (iSWEEP) and the International Science and Engineering Fair (ISEF). Science Research 4 students developed and conducted a Society for Science and the Public affiliated science fair for middle school students enrolled in an 8th grade honors geoscience program allowing over 100 students from 5 middle schools to present their research and be judged by STEM professionals. Students with research judged in the top 10% were nominated for participation in the National Broadcom MASTERS program which they successfully entered upon further mentoring from the Science Research 4 students. 8th grade enrollment in the Science Research program for 2015 increased by almost 50% with feedback from students, parents and teachers indicating that the mentorship and participation in the 8th grade science fair were factors in increasing interest in continuing authentic scientific research in high school.

  10. Evaluation of constructivist pedagogy: Influence on critical thinking skills, science fair participation and level of performance

    NASA Astrophysics Data System (ADS)

    Foxx, Robbie Evelyn

    Science education reform, driven by a rapidly advancing technological society, demands the attention of both elementary and middle school curriculum-developers. Science education training in current standards (National Research Council [NRC] Standards 1996) emphasize inquiry, which is reported to be a basic tenet of the theory known as constructivism (NAASP, 1996; Cohen, 1988; Conley, 1993; Friedman, 1999; Newman, Marks, & Gamoran, 1996; Smerdon & Burkam 1999; Sizer 1992; Talbert & McLaughlin 1993; Tobin & Gallagher, 1987; Yager, 1991, 2000). Pedagogy focusing on the tenets of constructivist theory, at the intermediate level, can address current science standards. Many science educators believe participation in science fairs helps students develop the attitudes, skills, and knowledge that will help them to be comfortable and successful in the scientific and technological society (Czerniak, 1996). Competing in science fairs is one vehicle which allows students to apply science to societal issues, solve problems and model those things scientists do. Moreover, constructing a science fair project is suggested as being an excellent means to foster the development of concepts necessary in promoting scientific literacy (Czerniak, 1996). Research further suggests that through science fairs or other inquiry activities, students construct their knowledge with fewer misconceptions as they explore and discover the nature of science (NRC 1996). Tohn 's study (as cited in Bellipanni, 1994) stated that science fairs are a major campaign to increase student skills and to allow students a chance to have fun with science. The purpose of this research was twofold: (1) to assess science problem solving skills of students instructed using constructivist pedagogy, and (2) to explore the effects of constructivist pedagogy's influence(s) on science fair participation/placement. Students' attitudes resulting from these experiences were examined as well.

  11. CosmoQuest: Engaging Students in Authentic Research through Science Fairs

    NASA Astrophysics Data System (ADS)

    Lebofsky, Larry A.; Canizo, Thea; Buxner, Sanlyn; Schmitt, Bill; Runco, Susan; Graff, Paige; CosmoQuest Team

    2016-10-01

    CosmoQuest is embarking on a five-year effort to increase student participation in science fairs through nation-wide training of teachers, science educators, and scientists. The program focuses on helping teachers attain the needed content knowledge and skills to support creation of meaningful science fair research projects. . This includes supporting teachers' understanding of how to engage students in age-appropriate projects as young science and engineering professionals. If successful, students will create their own understanding of STEM content through research. This occurs when students are guided into learning where they become involved at a level that makes it possible for them to independently ask questions and investigate answers by seeking patterns, testing, building conceptual models, and/or designing technology.To support this kind of engagement, we are curating and creating resources to support students of all ages and abilities. Students at different age levels generally have very different developmental reasoning abilities, and engagement and learning are increased when students use age-appropriate reasoning abilities. For instance primary students are effective in observing, communicating, and comparing. As they get older they develop abilities in sequencing and finding relationships. At middle school they add inferring and finally in high school the acquired skills for applying ideas from many disciplines to create more complex understanding.Through a comprehensive program of curriculum development, educator professional development, and building strategic partnerships, we will increase the number and quality of space science related science fair projects in the United States. CosmoQuest is funded through individual donations, through NASA Cooperative Agreement NNX16AC68A, and through additional grants and contracts that are listed on the About page of our website, cosmoquest.org.

  12. The Magic of Janice VanCleave.

    ERIC Educational Resources Information Center

    Winarski, Diana L.

    1995-01-01

    Profiles the author of 28 science books for children, teachers, and parents. Most of the books focus on science fair projects, teaching science to elementary school students, and fun science activities that parents and teachers can use with students. (MDM)

  13. Public Library YA Program Roundup: Murder, We Wrote...and Played [and] Asleep in the Library: Girl Scouts Earn "From Dreams to Reality" Patch [and] Sign Language Funshop [and] Science Fair Help Day [and] A Skyomish Fairy Tale [and] The POW! Project: Picturing Our World! Teens Create Art and Self-Esteem at the Boston Public Library.

    ERIC Educational Resources Information Center

    Goldsmith, Francisca; Seblonka, Cathy Sullivan; Wagner, Joyce; Smith, Tammy; Sipos, Caryn; Bodart, Joni Richards

    1998-01-01

    Includes six articles that describe public library programs for teens. Highlights include interactive murder mysteries; a girl scout sleepover program on career awareness; sign language workshop; a Science Fair help day that included guest speakers; a unit on fairy tales and legends; and a project to enhance creativity and self-esteem. (LRW)

  14. Nuclear Science Teaching Aids and Activities.

    ERIC Educational Resources Information Center

    Woodburn, John H.

    This publication is a sourcebook for science teachers. It provides guides for basic laboratory work in nuclear energy, suggesting various teacher and student demonstrations. Ideas for science clubs, science fairs, and project research seminars are presented. Problem-solving activities for both science and mathematics classes are included, as well…

  15. Janice VanCleave's Electricity: Mind-Boggling Experiments You Can Turn into Science Fair Projects.

    ERIC Educational Resources Information Center

    VanCleave, Janice

    This book is designed to provide guidance and ideas for science projects to help students learn more about science as they search for answers to specific problems. The 20 topics on electricity in this book suggest many possible problems to solve. Each topic has one detailed experiment followed by a section that provides additional questions about…

  16. The Amateur Zoologist: Explorations and Investigations. Amateur Science Series.

    ERIC Educational Resources Information Center

    Dykstra, Mary

    This book contains over 30 investigations and activities that can be used or adapted for science fair projects. It outlines basic techniques and procedures that can be applied to zoological investigations. Projects and activities described include: finding out how many different kinds of insects and other arthropods live in nearby fields and…

  17. Science Challenge Day

    ERIC Educational Resources Information Center

    Siegel, Deborah

    2013-01-01

    Science fairs can be good motivators, but as extracurricular activities, they leave some students behind. However, by staging a Science Challenge Day at school, educators can involve all students in doing everything from choosing activities to judging projects. This article presents a model for running a successful Science Challenge Day. The…

  18. Janice VanCleave's Rocks and Minerals: Mind-Boggling Experiments You Can Turn into Science Fair Projects.

    ERIC Educational Resources Information Center

    VanCleave, Janice

    Science projects are a great way for students to learn more about science as they search for the answers to specific problems. This book offers guidance and provides ideas for students as they plan experiments, find and record information related to the problem, and organize data to find answers to the problem. The 20 topics in this book suggest…

  19. The CPS Plasma Award at the Intel Science and Engineering Fair

    NASA Astrophysics Data System (ADS)

    Berry, Lee

    2012-10-01

    For the past eight years, the Coalition for Plasma Science (CPS) has presented an award for a plasma project at the Intel International Science and Engineering Fair (ISEF). We reported on the first five years of this award at the 2009 DPP Symposium. Pulsed neutron-producing experiments are a recurring topic, with the efforts now turning to applications. The most recent award at the Pittsburgh ISEF this past May was given for analysis of data from Brookhaven's Relativistic Heavy Ion Collider. The effort had the goal of understanding the fluid properties of the quark-gluon plasma. All of the CPS award-winning projects so far have been based on experiments, with four awards going to women students and four to men. In 2009 we noted that the number and quality of projects was improving. Since then, as we we predicted (hoped for), that trend has continued. The CPS looks forward to continuing its work with students who are excited about the possibilities of plasma. You too can share this excitement by judging at the 2013 fair in Phoenix on May 12-17. Information may be obtained by emailing cps@plasmacoalition.org.

  20. Mini-Portfolio on Math and Science.

    ERIC Educational Resources Information Center

    Teaching PreK-8, 1996

    1996-01-01

    Presents six articles dealing with math and science education: "Sneaker Geometry" (Jack George), "Fairs with a Flair" (Diane McCarty), "Generating Excitement with Math Projects" (Jeffrey Kostecky and Louis Roe), "Playing with Numbers" (Diana Smith), "When Student Teachers Want to Do Hands-On Science" (Betsy Feldkamp-Price), and "Science ala Carte"…

  1. So, You Want to Host a Family Science Night?

    ERIC Educational Resources Information Center

    Lundeen, Cynthia

    2005-01-01

    With the exception of periodic science fairs or the occasional home-science project, science is not usually the galvanizing force for the school community. But, through family science events, it can be. It is no secret that students whose families are involved in their children's education significantly benefit in achievement, attitudes, and…

  2. The Priscilla and Bart Bok Award, presented by the ASP and the AAS at the Intel International Science and Engineering Fair

    NASA Astrophysics Data System (ADS)

    Garmany, K.

    2013-04-01

    The Bok Award is presented to high school students for astronomy research. While there are relatively few astronomy projects at this fair, many of the winners of this award have continued in the field of astronomy.

  3. Are Science Fairs Fair to Animals?

    ERIC Educational Resources Information Center

    Fox, Michael W.; Ward, M. Andrea

    1977-01-01

    Experiments by secondary school students which inflict pain and suffering are described. NSTA policy regarding the use of live animals is presented. An argument for the use of animals in research is given along with a recommendation by the author that animal projects should show a reverence for life. (AJ)

  4. Intel ISEF 2008 Student Handbook

    ERIC Educational Resources Information Center

    Science Service, 2008

    2008-01-01

    Research is a process by which people discover or create new knowledge about the world in which they live. The International Science and Engineering Fair (ISEF) and Affiliated Fairs are research (data) driven. Students design research projects that provide quantitative data through experimentation followed by analysis and application of that data.…

  5. A Curriculum for a Three Year High School Science Research Program

    NASA Astrophysics Data System (ADS)

    Darytichen, F.; Danch, J.

    2003-12-01

    A three-year high school science research program has been taught in Woodbridge Township School District - Woodbridge, New Jersey, since 1987. The program's focus is to foster originial science research projects for high school students that have shown an aptitude and an interest in science. Students are instructed in basic research skills, including developing and conducting original research projects, statistical analysis, scientific writing, and presentation of research at local and national symposia, and science fairs. Upon completion of the third year all students are required to submit a paper, suitable for journal publication, detailing their research. Participating students have gone on to win awards with Westinghouse, Intel, The National Junior Science and Humanities Symposium, the International Science and Engineering Fair, New Jersey Academy of Sciences, and local and regional science fairs and symposia. Participating teachers have been recoginized by the Sigma Xi Research Society of Rutgers University for excellence in science teaching. New Jersey awarded the curriulum a Best Practice Award for 2003. Goals and strategies of the curriculum are detailed in a guide written for the courses. Professional development for the courses and resources for mentoring programs are the responsibility of the District Science Supervisor, and have been fostered over the years with the assistance of local colleges and universities including Rutgers Univesity, Monmouth University, University of Medicine and Dentistry of New Jersey, Liberty Science Center of New Jersey's Partners in Science Program, as well as local industries including Hatco Corporation, Merck Corporation, Englehard Corporation, and Lucent Technologies. Science Research teachers have conducted developmental workshops for school districts interested in implementing similar curricula.

  6. A Science, Engineering and Technology (SET) Approach Improves Science Process Skills in 4-H Animal Science Participants

    ERIC Educational Resources Information Center

    Clarke, Katie C.

    2010-01-01

    A new Science, Engineering and Technology (SET) approach was designed for youth who participated in the Minnesota State Fair Livestock interview process. The project and evaluation were designed to determine if the new SET approach increased content knowledge and science process skills in participants. Results revealed that youth participants not…

  7. Position Posters: An Alternative Take on Science Posters

    ERIC Educational Resources Information Center

    Dorner, Meredith

    2015-01-01

    Research shows the importance of active learning, especially within science classes. One way to achieve this goal is to incorporate student-driven projects into the course (e.g., posters). Traditionally, science-poster assignments follow the spirit of the science fair in which a student conducts an experiment and analyzes the results. This article…

  8. Then I started thinking: A qualitative study of innovative projects by secondary students in STEM disciplines

    NASA Astrophysics Data System (ADS)

    Haggerty, Rebecca

    This qualitative bounded case study examined the self-described motivations of 14 finalists in an international science fair, eight male and six female, between the ages of 15 and 19, from Spain, Ukraine, India, Singapore, Australia, Canada, and the United States. The study used semi-structured interviews and document review to explore participant motivation for undertaking complex research in math and science. Participants reported being highly motivated to pursue their projects, which they found intrinsically interesting and valuable. They enjoyed the benefits that ensued from their science fair activities, including prizes and acclaim, social camaraderie, a satisfying sense of accomplishment and independence, and access to well-known and established practitioners in the field. Female participants experienced a comfortable gender balance in science fairs. Prosocial motivations, and the opportunity to have a positive impact on the world, emerged from the findings as important factors in stimulating the creativity of many participants as well as in bolstering their persistence. Participants showed adaptive patterns of attributions as well as high self-efficacy. They successfully strategized to overcome setbacks, and drew upon their available resources of family, school, and community support to develop and sustain their interest.

  9. Impact of problem finding on the quality of authentic open inquiry science research projects

    NASA Astrophysics Data System (ADS)

    Labanca, Frank

    2008-11-01

    Problem finding is a creative process whereby individuals develop original ideas for study. Secondary science students who successfully participate in authentic, novel, open inquiry studies must engage in problem finding to determine viable and suitable topics. This study examined problem finding strategies employed by students who successfully completed and presented the results of their open inquiry research at the 2007 Connecticut Science Fair and the 2007 International Science and Engineering Fair. A multicase qualitative study was framed through the lenses of creativity, inquiry strategies, and situated cognition learning theory. Data were triangulated by methods (interviews, document analysis, surveys) and sources (students, teachers, mentors, fair directors, documents). The data demonstrated that the quality of student projects was directly impacted by the quality of their problem finding. Effective problem finding was a result of students using resources from previous, specialized experiences. They had a positive self-concept and a temperament for both the creative and logical perspectives of science research. Successful problem finding was derived from an idiosyncratic, nonlinear, and flexible use and understanding of inquiry. Finally, problem finding was influenced and assisted by the community of practicing scientists, with whom the students had an exceptional ability to communicate effectively. As a result, there appears to be a juxtaposition of creative and logical/analytical thought for open inquiry that may not be present in other forms of inquiry. Instructional strategies are suggested for teachers of science research students to improve the quality of problem finding for their students and their subsequent research projects.

  10. Are Students More Engaged When Schools Offer Extracurricular Activities? PISA in Focus. No. 18

    ERIC Educational Resources Information Center

    OECD Publishing (NJ1), 2012

    2012-01-01

    Are students more engaged and do they perform better in science if their school encourages them to work on science projects, participate in science fairs, belong to a science-related club or go on science-related field trips--in addition to teaching them the mandatory science curriculum? To find out, PISA (Programme for International Student…

  11. Diminishing the Gap between University and High School Research Programs: Computational Physics

    ERIC Educational Resources Information Center

    Vondracek, Mark

    2007-01-01

    There are many schools (grades K-12) around the country that offer some sort of science research option for students to pursue. Often this option is a local science fair, where students do smaller projects that are then presented at poster sessions. Many times the top local projects can advance to some type of regional and, possibly, state science…

  12. Hawaii Student / Teacher Astronomy Research program (HI STAR): 10 years of high school students exploring the universe

    NASA Astrophysics Data System (ADS)

    Mathews, Geoffrey; Armstrong, James; Nassir, Michael A.; Kaichi, Carolyn

    2017-01-01

    For the past decade, the Hawaii Student / Teacher Astronomy Research program (HI STAR) at UH Manoa’s Institute for Astronomy has trained astronomy-enthusiastic high school students in research, data analysis and science presentation skills. Every summer, a selected group of 8th-to-12th-grade students attend a week-long residential astronomy "camp" in Honolulu, Hawaii. The students experience the profession of astronomy by learning scientific skills such as imaging and spectroscopy, data-reduction, and data analysis. The week culminates with presention of a research project guided by professional astronomer mentors. During the following six months, each student continues to work with a mentor to complete a research project for submission to their local science fair. From 2012 - 2015, ~80% of students completed their long-term projects. Many have performed well; in each of 2015 and 2016, 5 alumni progressed to the International Science and Engineering Fair. Here we present the current structure of HI STAR and plans for the future.

  13. The Effectiveness of a Project Day to Introduce Sixth Grade Students to Science Competitions

    ERIC Educational Resources Information Center

    Blankenburg, Janet S.; Höffler, Tim N.; Peters, Heide; Parchmann, Ilka

    2016-01-01

    Background: Science Olympiads and science fairs are effective instruments to foster interested and talented students. However, at most schools competitions are not systematically integrated into the school mission statement so that students are unaware of these opportunities. Purpose: The purpose of this study was to investigate the effectiveness…

  14. NREL Offers Renewable Energy Award at International Competition

    Science.gov Websites

    Research Institute will offer a special renewable energy award May 14 at the International Science and Offers Renewable Energy Award at International Competition For more information contact: e:mail of science fairs. As the only international science project competition for 9th - 12th graders, ISEF

  15. A Project to Develop an Associate of Science Degree Curriculum in Renewable Energy Resources and Applications in Agriculture. Final Report, July 1, 1980-June 30, 1981.

    ERIC Educational Resources Information Center

    Allen, Keith; Fielding, Marvin R.

    A project was conducted at State Fair Community College (SFCC) in Sedalia, Missouri, to develop an associate of science degree curriculum in renewable energy resources and their application in agriculture. A pilot study, designed to verify and rate the importance of 138 competencies in fuel alcohol production and to ascertain employment…

  16. Expanding educational access and opportunities: The globalization and foreign direct investment of multinational corporations and their influence on STEM, project-based learning and the national science and technology fair in schools in Costa Rica

    NASA Astrophysics Data System (ADS)

    Valdez, Joaquin G.

    The purpose of this qualitative study was to examine the influence of globalization and the foreign direct investment (FDI) of multinational corporations (MNCs) on the curriculum in schools in Costa Rica. The study focused primarily on Science, Technology, Engineering and Mathematics (STEM), Project-Based Learning (PBL), 21st century skills, and the national science and technology fair. The high influx of MNCs such as Intel has changed the global and educational culture of the country increasing the number of knowledge-based workers in Costa Rica. As a result, policy changes have been instituted in education to mirror the demands of sustaining the country's global economy. This study was supported by the creation of three research questions that would attempt to answer 1) the extent that teachers implementing STEM curriculum trace their practices back to policy, globalization, and multinational corporations as well as the extent to which the economic growth of Costa Rica and STEM education are related, 2) how mandating the national science and technology fair has influenced 21st century skills through project-based learning and the use of technology by teachers and its impact on curriculum and instruction, and 3) how has the national science and technology fair policy changed the value of STEM education for students, teachers, and educational leaders. To further understand the outcome of this study, four theoretical frameworks were applied that included, Spring's theory of world educational culture, Friedman's world flatteners, Wagner's 21st century skills and partnerships for 21st century skills, and Slough and Milam's STEM project-based learning theoretical framework. Each framework was applied to support the changes to the educational system; survival skills necessary to compete in the global job market; application of 21st century skills in the classroom and in the science projects students created. A research team comprised of 14 doctoral students, led by Dr. Michael Escalante, studied the influence of globalization and FDI on MNCs on the educational system in Costa Rica. Data collection for this qualitative case study included the use of various instruments including surveys, interviews, and observations. A total of 20 participants were interviewed and 174 students and 33 teachers were surveyed in support of the findings for this study. The use of multiple sources helped to triangulate the data and increase the validity of the findings.

  17. Evaluation of Bacterial & Fungal Culture Practices in School Classrooms

    ERIC Educational Resources Information Center

    Weese, J. Scott

    2009-01-01

    A wide range of activities may be undertaken in elementary and secondary school science laboratories as part of regular curricular activities or optional classroom activities, including science fair projects. Among these is the culturing of microorganisms such as bacteria or fungi. There are various potential educational opportunities associated…

  18. A Reverse Science Fair That Connects High School Students with University Researchers

    ERIC Educational Resources Information Center

    Mernoff, Brian; Aldous, Amanda R.; Wasio, Natalie A.; Kritzer, Joshua A.; Sykes, E. Charles H.; O'Hagan, Karen

    2017-01-01

    Many university science outreach programs involve presentations of research projects to high school students. These presentations often focus more on exciting scientific content and less on fostering direct relationships between high school students and scientists. Such interactions are important for sustaining student interest in science…

  19. Your Digestive System (For Kids)

    MedlinePlus

    ... next class. In a few minutes you're thinking about the capital of Oregon or your science fair project. You've completely forgotten about that pizza lunch you just ate. But it's still in your stomach — sort of like a science experiment that happens all the time! The Mouth Starts ...

  20. WHK Interns Win Big at Frederick County Science Fair | Poster

    Cancer.gov

    Three Werner H. Kirsten student interns claimed awards at the 35th Annual Frederick County Science and Engineering Fair—and got a shot at the national competition—for imaginative projects that reached out to the rings of Saturn and down to the details of advanced cancer diagnostics.

  1. Obama Announces Science Education Goal at White House Science Fair

    NASA Astrophysics Data System (ADS)

    Showstack, Randy

    2012-02-01

    With student participants in the second annual White House Science Fair as a backdrop, President Barack Obama announced on 7 February programs to help prepare new math and science teachers and to meet a new goal of having 1 million more U.S. college graduates in science, technology, engineering, and math (STEM) over the next decade than there would be at the current graduation rate. That goal is outlined in a report entitled “Engage to excel,” by the President's Council of Advisors on Science and Technology (PCAST), released the same day. Obama also announced several other initiatives, including a $22 million private-sector investment, led by the Carnegie Corporation of New York, to invest in STEM teacher training. After he toured the science fair projects, Obama said the science fair students “inspire” him. “What impresses me so much is not just how smart you are, but it's the fact that you recognize you've got a responsibility to use your talents in service of something bigger than yourselves,” he said. What these young people are doing is “going to make a bigger difference in the life of our country over the long term than just about anything,” adding, “We've got to emphasize how important this is and recognize these incredible young people who are doing that that I couldn't even imagine thinking about at fifth grade or eighth grade or in high school.”

  2. Earthquakes for Kids

    MedlinePlus

    ... across a fault to learn about past earthquakes. Science Fair Projects A GPS instrument measures slow movements of the ground. Become an Earthquake Scientist Cool Earthquake Facts Today in Earthquake History A scientist stands in ...

  3. Bridging a High School Science Fair Experience with First Year Undergraduate Research: Using the E-SPART Analyzer to Determine Electrostatic Charge Properties of Compositionally Varied Rock Dust Particles as Terrestrial Analogues to Mars Materials

    NASA Technical Reports Server (NTRS)

    Scott, A. G.; Williams, W. J. W.; Mazumder, M. K.; Biris, A.; Srirama, P. K.

    2005-01-01

    NASA missions to Mars confirm presence of surficial particles, as well as dramatic periods of aeolian reworking. Dust deposition on, or infiltration into, exploration equipment such as spacecraft, robotic explorers, solar panel power supplies, and even spacesuits, can pose significant problems such as diminished power collection, short circuits / discharges, and added weight. We report results conducted initially as a science fair project and a study now part of a first year University undergraduate research experience.

  4. Educational Outreach for Astrobiology

    NASA Astrophysics Data System (ADS)

    Kadooka, M.; Meech, K.

    2009-12-01

    Astrobiology, the search for life in the universe, has fascinating research areas that can excite students and teachers about science. Its integrative nature, relating to astronomy, geology, oceanography, physics, and chemistry, can be used to encourage students to pursue physical sciences careers. Since 2004, the University of Hawaii NASA Astrobiology Institute (NAI) team scientists have shared their research with secondary teachers at our ALI’I national teacher program to promote the inclusion of astrobiology topics into science courses. Since 2007, our NAI team has co-sponsored the HI STAR program for Hawaii’s middle and high school students to work on authentic astronomy research projects and to be mentored by astronomers. The students get images of asteroids, comets, stars, and extrasolar planets from the Faulkes Telescope North located at Haleakala Observatories on the island of Maui and owned by Las Cumbres Observatory Global Telescope network. They also do real time observing with DeKalb Observatory telescope personally owned by Donn Starkey who willing allows any student access to his telescope. Student project results include awards at the Hawaii State Science Fair and the Intel International Science and Engineering Fair. We believe that research experience stimulates these students to select STEM (science, technology, engineering and mathematics) majors upon entering college so a longitudinal study is being done. Plans are underway with California and Hawaii ALI’I teachers cooperating on a joint astronomy classroom project. International collaborations with Brazil, Portugal, and Italy astronomers have begun. We envision joint project between hemispheres and crossing time zones. The establishment of networking teachers, astronomers, students and educator liaisons will be discussed.

  5. Science fair: Is it worth the work? A qualitative study on deaf students' perceptions and experiences regarding science fair in primary and secondary school

    NASA Astrophysics Data System (ADS)

    Smith, Vivian Lee

    Science fairs have a long history in American education. They play an important role for establishing inquiry-based experiences in a science classroom. Students may be more motivated to learn science content when they are allowed to choose their own science fair topics. The purpose of this study was to examine Deaf college students' perceptions and experiences regarding science fair participation during primary and/or secondary school and determine the influence of science fair involvement on the development of language skills, writing skills, and higher order thinking skills as well as its impact on choice of a STEM major. This study examined responses from Deaf students attending Gallaudet University and National Technical Institute for the Deaf (NTID) majoring in a Science, Technology, Engineering, or Math (STEM) field. An electronic questionnaire and a semi-structured interview were used to collect data. The electronic questionnaire was divided into two strands: demographics and science fair experience. Twenty-one respondents participated in the questionnaire and ten participants were interviewed. A cross-case analysis revealed communication was the key to a successful science fair experience. Findings showed the educational background of participants influenced their perspective regarding the experience of a science fair. When communicating through American Sign Language, the science fair experience was more positive. When communicating through an interpreter or having no interpreter at all, the science fair experience was viewed in a negative light. The use of science fairs to enhance language development, writing skills, and higher order thinking skills was supported. Teachers and parents were strong influences for Deaf students participating in a science fair. Participation in a science fair did influence students to choose a STEM major but there were other considerations as well.

  6. An exploration of gender participation patterns in science competitions

    NASA Astrophysics Data System (ADS)

    Arámbula Greenfield, Teresa

    This study investigated participation in a state-level science competition over most of its 35-year history. Issues examined included whether different gender patterns occurred with respect to entry rate, project topic (life science, physical science, earth science, and math), and project type (research or display). The study also examined to what extent the identified patterns reflected or contradicted nationwide patterns of girls' academic performance in science over roughly the same time period. It was found that although girls initially participated in the fair less frequently than boys, for the past 20 years their participation rate has been greater than that of boys. Examination of topic preferences over the years indicates that both girls and boys have traditionally favored life science; however, boys have been and continue to be more likely to prepare physical, earth, and math/computer science projects than girls. Another gender difference is that girls are generally less likely than boys to prepare projects based on experimental research as opposed to library research. The study provides some suggestions for teachers and teacher educators for addressing these disparities.Received: 4 February 1994; Revised: 12 January 1995;

  7. Playing Fair?: Minority Research Institutions Call for NIH to Address Funding Disparities

    ERIC Educational Resources Information Center

    Stuart, Reginald

    2012-01-01

    When Ph.D. science and health researchers are seeking financial support for their health science studies, more often than not they apply to the federal government's National Institutes of Health (NIH) for an RO1 research grant, which boosts a project's standing in the research community as well as the career of the applicant. Even before the NIH…

  8. The Use of Cylindrical Lenses in Easy Experiments for Physics Education and the Magic Arts

    ERIC Educational Resources Information Center

    Bednarek, Stanislaw; Krysiak, Jerzy

    2011-01-01

    The purpose of this article is to present the properties of cylindrical lenses and provide some examples of their use in easy school physics experiments. Such experiments could be successfully conducted in the context of science education, in fun experiments that teach physics and in science fair projects, or used to entertain an audience by…

  9. CCD Astrometric Measurements of Double Stars BAL 746, BPM 342, KU 92, and STF 897

    NASA Astrophysics Data System (ADS)

    Smith, Schuyler

    2017-07-01

    Double stars WDS 06589-0106 (BAL 746), WDS 06579+1430 (BPM 342), WDS 07006+0921 (KU 92), and WDS 06224+2640 (STF 897) were measured as part of a science fair project for the 2016 Greater San Diego Science and Engineering Fair. The goal was to measure the separation and position angles of stars by using a telescope with a charge-coupled device (CCD) on the iTelescope network. Five images were taken of each of the stars. These images were plate solved with Visual PinPoint and measured using Aladin Sky Atlas. Measurements for all five doubles compare well to the more recent values in the Washington Double Star Catalog.

  10. The Recycling Solution: How I Increased Recycling on Dilworth Road

    ERIC Educational Resources Information Center

    Keller, J. Jacob

    2010-01-01

    The grandson of Fred Keller, one of the founders of behavior analysis, Jacob was 10 years old when he conducted the project for his elementary school science fair. We recently contacted Jacob to learn more about his project. He told us the inspiration came from a class field trip to the county recycling center, which included seeing video footage…

  11. Students' Sources of Motivation for Participating in Science Fairs: An Exploratory Study within the Canada-Wide Science Fair 2008

    ERIC Educational Resources Information Center

    Dionne, Liliane; Reis, Giuliano; Trudel, Louis; Guillet, Gabriel; Kleine, Leonard; Hancianu, Corina

    2012-01-01

    Science fairs have been for many years a popular school activity in North America. They are a venue for the popularization of science and consequently an important encouragement for the pursuit of careers in science or engineering. However, little is known about students' perceived motives for participating in local or national science fairs and…

  12. Gender-related attitudinal differences towards science fairs of students in Christian private schools in South Carolina

    NASA Astrophysics Data System (ADS)

    Westbury, Glenda F.

    Science fairs afford students at all grade levels the opportunity to practice thinking as a scientist does, a valuable 21st century skill (Jacobs, 2010) and may influence students to pursue STEM-related careers. Even though science fairs have been occurring since the 1920s, literature related to science competitions, especially science fairs, is limited (Dionne et al., 2012; Terzian, 2009). The purpose of this quantitative study was to use a causal comparative research design to determine if there is a difference in overall attitudes towards science fairs, enjoyment of science fairs, and usefulness of science fairs of female and male students at private Christian middle schools. The sample included 146 fifth through eighth grade students, 72 males and 74 females from four private Christian schools in the southern United States. The researcher visited each school and administered the Students' Attitudes toward Science Fairs (SATSFS) instrument (Michael & Huddleston, 2014) to the students on the day of the local science fair. A one-way multivariate analysis of variance (MANOVA) was used to determine the difference in attitudes between the female and male participants toward science fairs in the areas of overall attitude, student's enjoyment, and student's usefulness of science fairs. The result of the MANOVA was not significant at an alpha level of .05, where F (2, 143) = 2.52, p = .08, partial eta2 = 0.034, suggesting there are no significant differences on the dependent variables (enjoyment, usefulness, and overall attitude toward science fairs) by gender of fifth through eighth grade students in Christian private schools. The effect size as measured by partial eta squared was small. Implications for educators include the need to address gender differences in STEM education at earlier stages of development, and the importance of stressing personal meaning and relevance to science-related activities. Recommendations for further studies were made.

  13. High school science fair and research integrity

    PubMed Central

    Dalley, Simon; Shepherd, Karen; Reisch, Joan

    2017-01-01

    Research misconduct has become an important matter of concern in the scientific community. The extent to which such behavior occurs early in science education has received little attention. In the current study, using the web-based data collection program REDCap, we obtained responses to an anonymous and voluntary survey about science fair from 65 high school students who recently competed in the Dallas Regional Science and Engineering Fair and from 237 STEM-track, post-high school students (undergraduates, 1st year medical students, and 1st year biomedical graduate students) doing research at UT Southwestern Medical Center. Of the post-high school students, 24% had competed in science fair during their high school education. Science fair experience was similar overall for the local cohort of Dallas regional students and the more diverse state/national cohort of post-high school students. Only one student out of 122 reported research misconduct, in his case making up the data. Unexpectedly, post-high school students who did not participate in science fair anticipated that carrying out science fair would be much more difficult than actually was the case, and 22% of the post-high school students anticipated that science fair participants would resort to research misconduct to overcome obstacles. No gender-based differences between students’ science fair experiences or expectations were evident. PMID:28328976

  14. High school science fair and research integrity.

    PubMed

    Grinnell, Frederick; Dalley, Simon; Shepherd, Karen; Reisch, Joan

    2017-01-01

    Research misconduct has become an important matter of concern in the scientific community. The extent to which such behavior occurs early in science education has received little attention. In the current study, using the web-based data collection program REDCap, we obtained responses to an anonymous and voluntary survey about science fair from 65 high school students who recently competed in the Dallas Regional Science and Engineering Fair and from 237 STEM-track, post-high school students (undergraduates, 1st year medical students, and 1st year biomedical graduate students) doing research at UT Southwestern Medical Center. Of the post-high school students, 24% had competed in science fair during their high school education. Science fair experience was similar overall for the local cohort of Dallas regional students and the more diverse state/national cohort of post-high school students. Only one student out of 122 reported research misconduct, in his case making up the data. Unexpectedly, post-high school students who did not participate in science fair anticipated that carrying out science fair would be much more difficult than actually was the case, and 22% of the post-high school students anticipated that science fair participants would resort to research misconduct to overcome obstacles. No gender-based differences between students' science fair experiences or expectations were evident.

  15. Inside the Science Fair: The Judge's Perspective

    ERIC Educational Resources Information Center

    Rillero, Peter; Zambo, Ron

    2011-01-01

    Science fair judges provide secrets to a successful science fair. Whether students are competing in science fairs at the high school, local, district, regional, state, or international level, their success is dependent on the judges' interpretation of their work. In this article, the authors present a series of questions and answers from past…

  16. GLOBE Cornerstones: Advancing Student Research Worldwide through Virtual and Regional Symposia

    NASA Astrophysics Data System (ADS)

    Bourgeault, J.; Malmberg, J. S.; Murphy, T.; Darche, S.; Ruscher, P.; Jabot, M.; Odell, M. R. L.; Kennedy, T.

    2016-12-01

    The GLOBE Program, an international science and education program, encourages students from around the world to participate in authentic scientific research of the Earth system. Students use scientific protocols to explore their local environments, compare their findings with other GLOBE schools both in the U.S. and in other participating countries, and then share their findings via the GLOBE.gov website. In order to facilitate this scientific communication, GLOBE held an international virtual science fair in 2016. The science fair included 105 research projects submitted from GLOBE students in various countries, 37 mentoring scientists, and 24 judges. Mentors and judges were members of the GLOBE International STEM Professionals Network and located around the world. On a national level, NSF funded six face-to-face U.S. regional student research symposia where 164 students presented 67 research projects to scientists for review. The 1.5 day events included student activities, teacher professional development, tours of NASA centers, and opportunities for students to engage with scientists to discover both traditional and non-traditional STEM career pathways. To support teachers, the leadership team offered and archived webinars on science practices; from field investigation basics to creating a poster and GLOBE partners provided guidance along the way. This presentation will include the framework for the regional and international science symposia , the scoring rubrics and evaluation, recruitment of judges and mentors, and lessons learned.

  17. Investigating Teachers' Beliefs in the Implementation of Science Inquiry and Science Fair in Three Boston High Schools

    NASA Astrophysics Data System (ADS)

    De Barros Miller, Anne Marie

    In previous decades, inquiry has been the focus of science education reform in the United States. This study sought to investigate how teachers' beliefs affect their implementation of inquiry science and science fair. It was hypothesized that science teachers' beliefs about inquiry science and science fair are predictive of their implementation of such strategies. A case study approach and semi-structured interviews were employed to collect the data, and an original thematic approach was created to analyze the data. Findings seem to suggest that science teachers who embrace science inquiry and science fair believe these practices enhance students' performance, facilitate their learning experience, and allow them to take ownership of their learning. However, results also suggest that teachers who do not fully embrace inquiry science as a central teaching strategy tend to believe that it is not aligned with standardized tests and requires higher cognitive skills from students. Overall, the study seems to indicate that when inquiry is presented as a prescribed teaching approach, this elicits strong negative feelings/attitudes amongst science teachers, leading them not only to resist inquiry as a teaching tool, but also dissuading them from participating in science fair. Additionally, the findings suggest that such feelings among teachers could place the school at risk of not implementing inquiry science and science fair. In conclusion, the study reveals that science inquiry and science fair should not be prescribed to teachers as a top-down, mandatory approach for teaching science. In addition, the findings suggest that adequate teacher training in content knowledge and pedagogy in science inquiry and science fair should be encouraged, as this could help build a culture of science inquiry and implementation amongst teachers. This should go hand-in-hand with offering mentoring to science teachers new to inquiry and science fair for 2-5 years.

  18. Designing Summer Research Experiences for Teachers and Students That Promote Classroom Science Inquiry Projects and Produce Research Results

    NASA Astrophysics Data System (ADS)

    George, L. A.; Parra, J.; Rao, M.; Offerman, L.

    2007-12-01

    Research experiences for science teachers are an important mechanism for increasing classroom teachers' science content knowledge and facility with "real world" research processes. We have developed and implemented a summer scientific research and education workshop model for high school teachers and students which promotes classroom science inquiry projects and produces important research results supporting our overarching scientific agenda. The summer training includes development of a scientific research framework, design and implementation of preliminary studies, extensive field research and training in and access to instruments, measurement techniques and statistical tools. The development and writing of scientific papers is used to reinforce the scientific research process. Using these skills, participants collaborate with scientists to produce research quality data and analysis. Following the summer experience, teachers report increased incorporation of research inquiry in their classrooms and student participation in science fair projects. This workshop format was developed for an NSF Biocomplexity Research program focused on the interaction of urban climates, air quality and human response and can be easily adapted for other scientific research projects.

  19. Science Fairs: A Qualitative Study of Their Impact on Student Science Inquiry Learning and Attitudes toward STEM

    ERIC Educational Resources Information Center

    Schmidt, Kathleen M.; Kelter, Paul

    2017-01-01

    Little is known about the impact of science fair participation on student science inquiry learning. Furthermore, there is only a small research base relating to science fair participation and student attitudes toward science, technology, engineering, and mathematics (STEM) careers and coursework. In this study, 41 seventh-grade science fair…

  20. The use of cylindrical lenses in easy experiments for physics education and the magic arts

    NASA Astrophysics Data System (ADS)

    Bednarek, Stanisław; Krysiak, Jerzy

    2011-09-01

    The purpose of this article is to present the properties of cylindrical lenses and provide some examples of their use in easy school physics experiments. Such experiments could be successfully conducted in the context of science education, in fun experiments that teach physics and in science fair projects, or used to entertain an audience by staging tricks, effects or illusions of seemingly impossible or supernatural feats.

  1. Science Fairs and Observational Science: A Case History from Earth Orbit

    NASA Technical Reports Server (NTRS)

    Lowman, Paul D., Jr.; Smith, David E. (Technical Monitor)

    2002-01-01

    Having judged dozens of science fairs over the years, I am repeatedly disturbed by the ground rules under which students must prepare their entries. They are almost invariably required to follow the "scientific method," involving formulating a hypothesis, a test of the hypothesis, and then a project in which this test is carried out. As a research scientist for over 40 years, I consider this approach to science fairs fundamentally unsound. It is not only too restrictive, but actually avoids the most important (and difficult) part of scientific research: recognizing a scientific problem in the first place. A well-known example is one of the problems that, by his own account, stimulated Einstein's theory of special relativity: the obvious fact that when an electric current is induced in a conductor by a magnetic field , it makes no difference whether the field or the conductor is actually (so to speak) moving. There is in other words no such thing as absolute motion. Physics was transformed by Einstein's recognition of a problem. Most competent scientists can solve problems after they have been recognized and a hypothesis properly formulated, but the ability to find problems in the first Place is much rarer. Getting down to specifics, the "scientific method" under which almost all students must operate is actually the experimental method, involving controlled variables, one of which, ideally, is changed at a time. However, there is another type of science that can be called observational science. As it happens, almost all the space research I have carried out since 1959 has been this type, not experimental science.

  2. Conducting Science Fair Activities: Reflections of the Prospective Science Teachers on Their Expectations, Opinions, and Suggestions Regarding Science Fairs

    ERIC Educational Resources Information Center

    Durmaz, Hüsnüye; Oguzhan Dinçer, Emrah; Osmanoglu, Ashhan

    2017-01-01

    The aim of this study is to examine the reflections of the prospective science teachers on their expectations, opinions, and suggestions towards science fairs. The study was conducted with 34 prospective science teachers. All participants had education in junior class of Science Teaching Program of a university located in western part of Turkey in…

  3. No Blue Ribbon

    ERIC Educational Resources Information Center

    Wilsey, Matthew; Kloser, Matthew

    2015-01-01

    Imagine middle and high school science classes without a science fair. Participation in science fairs is declining (Harmon 2011), a trend that some teachers, parents, and students find disturbing. The authors opine that the decline in science fairs calls for critically reviewing the potential disconnect between the aims and outcomes of science…

  4. Science Fair

    NASA Image and Video Library

    2014-05-27

    NASA Administrator Charles Bolden (left) and Bill Nye, The Science Guy, speak with some students that participated in the White House Science Fair. The fourth White House Science Fair was held at the White House on May 27, 2014 and included 100 students from more than 30 different states who competed in science, technology, engineering, and math (STEM) competitions. (Photo Credit: NASA/Aubrey Gemignani)

  5. The Role of Ethnographic Interviewing in Climate Change Evaluation Research: Investigating Intended and Unintended program effects

    NASA Astrophysics Data System (ADS)

    Lloro-Bidart, T.

    2012-12-01

    Ethnographic interviewing is an under-utilized tool in climate change evaluation research, even though it has the potential to serve as a powerful method of data collection. The utility of the ethnographic interview lies in its ability to elicit responses from program participants describing what a program is in practice, shedding light on both intended and unintended program impacts. Drawing on evaluation work involving a federally-funded climate change grant at the University of California, Riverside, I will discuss how to design an ethnographic interview protocol in an effort to share "best practices" with other climate change evaluators. Particular attention will be given to applying ethnographic approaches to various program types, even those differing from the one discussed. I will share some of the concrete findings from my work on this grant, to serve as examples of the kinds of data evaluators can collect when employing an ethnographic approach to interviewing. UC Riverside's climate change grant is multi-faceted, however the component studied ethnographically was a science fair mentoring program. About twenty K-12 students from high poverty, ethnically diverse schools who expressed an interest in participating in science fair were paired up with graduate student mentors to simultaneously research climate change and design authentic science fair projects to compete at various levels. Since one of the stated goals of the grant is to "stimulate…students to consider climate science as a career track through experiential education activities" I was particularly interested in how student experiences with the project might differ from school science which has historically "pushed out" ethnically diverse students like those in many of Riverside's schools. (In the program students are able to interact one-on-one with a mentor and in school settings there is typically one teacher for more than thirty students). I also sought to understand student perceptions of the project design and implementation and how these perceptions might influence their thinking about science as a career. Further, I aimed to explore how mentor pedagogical philosophies might impact student experiences with the projects, since the scholarly literature supports the idea that teaching practices are linked to student success and interest in science. The key to ethnographic interviewing, which sets it apart from survey research and other interviewing styles is that the evaluator or researcher designs guided, yet open-ended questions, allowing informants to discuss what is important to them. This type of questioning affords the researcher the opportunity to ascertain whether or not the grant met some of its intended goals and impacts, while simultaneously granting participants the freedom to discuss unintended impacts not anticipated by the principal investigator and evaluator.

  6. White House Science Fair

    NASA Image and Video Library

    2013-04-22

    U.S. President Barack Obama speaks as he hosts the third-ever White House Science Fair in the East Room at the White House in Washington, April 22, 2013. The science fair celebrated student winners of a broad range of science, technology, engineering and math (STEM) competitions from across the country. Photo Credit: (NASA/Bill Ingalls)

  7. International Rules for Precollege Science Research: Guidelines for Science and Engineering Fairs, 2007-2008

    ERIC Educational Resources Information Center

    Science Service, 2007

    2007-01-01

    This publication presents changes and modifications for 2007-2008 to the "International Rules for Precollege Science Research: Guidelines for Science and Engineering Fairs." It is written to guide fair directors, teachers, scientists, parents, and adult volunteers as they pursue their work of encouraging students to explore and investigate their…

  8. International Rules for Precollege Science Research: Guidelines for Science and Engineering Fairs, 2006-2007

    ERIC Educational Resources Information Center

    Science Service, 2006

    2006-01-01

    This publication presents changes and modifications for 2006-2007 to the "International Rules for Precollege Science Research: Guidelines for Science and Engineering Fairs." It is written to guide fair directors, teachers, scientists, parents, and adult volunteers as they pursue their work of encouraging students to explore and investigate their…

  9. UCS-PROMOVE: The engineer of the future

    NASA Astrophysics Data System (ADS)

    Villas-Boas, V.

    2010-06-01

    The Universidade de Caxias do Sul (UCS) elaborated the cooperative project called 'The engineer of the future', with the objective of promoting science and engineering among high school teachers and students. This project aims to improve the quality of the teaching and to increase the interest of students in technological areas, leading to a future career in engineering. The activities of this project were planned to give meaning and foundation to the teaching-learning process of science and for the application of theory in the solution of real problems, while articulating scientific, economic, environmental, social and political aspects and also to reinforce the important role of engineering in society. Amongst the activities to be offered to high school teachers and students are a specialisation course for teachers based upon new educational methodologies, workshops in different areas of science and technology, a programme entitled 'Encouraging girls in technology, science and engineering', science fairs and visits to the industries of the region. Activities with the engineering instructors of UCS are also being developed in order to help them to incorporate in their classes more effective pedagogical strategies for educating the engineer-to-be.

  10. Children and their 4-H animal projects: How children use science in agricultural activity

    NASA Astrophysics Data System (ADS)

    Emo, Kenneth Roy

    Many children are introduced to science through informal educational programs. 4-H, an educational youth program, has a history of introducing scientific practices into agriculture. The purpose of this ethnographically-driven case study is to examine how science informs the actions of children raising market animals in a 4-H project. For two years the researcher collected data on 4-H children with market animal projects. Observations, interviews, and artifacts gathered are interpreted using the framework of activity theory. This study provides evidence for how the context of an activity system influences individual actions. Rules developed by the organization guide the actions of children to incorporate physical and psychological tools of science into their project to achieve the object: producing animals of proper weight and quality to be competitive in the county fair. Children learn the necessary actions from a community of practitioners through which expertise is distributed. Children's learning is demonstrated by the way their participation in their project changes with time, from receiving assistance from others to developing expertise in which they provide assistance to others. The strength of this educational experience is how children apply specific tools of science in ways that provide meaning and relevancy to their 4-H activity.

  11. State of STEM (SoSTEM) Address

    NASA Image and Video Library

    2014-01-29

    Panels participants, from left, Dr. John P. Holdren, Assistant to the President for Science and Technology and Director of the White House Office of Science & Technology Policy, former White House Science Fair participant Joey Hudy, Environmentalist and third-year law student at Elon University School of Law Tyrone Davis, White House innovation expert Cristin Dorgelo, and Defense Advanced Research Projects Agency (DARPA) Gill Pratt, take a question from the audience during the annual White House State of Science, Technology, Engineering, and Math (SoSTEM) address, Wednesday, Jan. 29, 2014, in the South Court Auditorium in the Eisenhower Executive Office Building on the White House complex in Washington. Photo Credit: (NASA/Bill Ingalls)

  12. White House Science Fair

    NASA Image and Video Library

    2013-04-22

    Planetary Society Executive Director and “Bill Nye the Science Guy” host Bill Nye, right, photographs himself with NASA Mars Curiosity Landing mission controller, Bobak "Mohawk Guy" Ferdowsi, during the White House Science Fair held at the White House, April 22, 2013. The science fair celebrated student winners of a broad range of science, technology, engineering and math (STEM) competitions from across the country. Photo Credit: (NASA/Bill Ingalls)

  13. White House Science Fair

    NASA Image and Video Library

    2014-05-27

    President Barack Obama spoke at the White House Science Fair Tuesday, May 27, 2014 at the White House. NASA Administrator Charles Bolden attended and was recognized by the President at the fourth White House Science Fair, which included 100 students from more than 30 different states who competed in science, technology, engineering, and math (STEM) competitions. (Photo Credit: NASA/Aubrey Gemignani)

  14. White House Science Fair

    NASA Image and Video Library

    2013-04-22

    U.S. President Obama recognizes NASA Administrator Charles Bolden during his remarks at the 3rd Annual White House Science Fair in the East Room of the White House on Monday, April 22, 2013. The science fair celebrated student winners of a broad range of science, technology, engineering and math (STEM) competitions from across the country. Photo Credit: (NASA/Bill Ingalls)

  15. EDGE (Experiential Discoveries in Geoscience Education) Field Course Provides Alaskan High School and Middle School students with Earth Science and GIS Skills for Science Fair Projects and a College Experience

    NASA Astrophysics Data System (ADS)

    Connor, C. L.; Prakash, A.; Brownlee, M.; Nagorski, S.; Walling, R.

    2006-12-01

    For this outreach project we created watershed scale field activities in the Mendenhall Glacier system in Juneau, Alaska to introduce pre-college students to earth surface processes. These activities were designed to teach field data collection methods and to provide experiences that included exposure to the disciplines of glaciology, hydrology, and geomorphology. Students used their own observations to understand the on-going effects of warming climate in southeastern Alaska. Twenty seven, pre-college students from throughout the state participated in a 5-day, two-credit, introductory college-level course. This course was designed to introduce them to earth science as practiced in the field. Students divided their time between field sessions with data collection and indoor GIS labs. EDGE field excursions enabled students to learn about glacial geomorphology from river rafts, to collect stream discharge and other hydrologic data in local streams, and to integrate glacier recession observations with GPS waypoints collected from observed recessional positions. In labs at the University of Alaska Southeast campus, EDGE students were introduced to the fundamentals of ArcGIS. They downloaded their GPS waypoints onto modern and historic maps. They analyzed their stream flow data and created dynamic maps using their own observations in the field. During Fall 2006 semester, the students will generate earth science projects in their villages and towns that they can complete and present to their peers. EDGE teachers who attended a 10 day workshop in June will mentor their EDGE students. EDGE teachers and students will return to the UAS Juneau campus in March 2007 for a symposium. EGDE students will present their projects to Juneau area undergraduates and Juneau School District K-12 classes. In addition EDGE high school students will have the option to enter and compete in the Southeast Alaska Regional Science Fair held the same weekend. Funding from the National Science Foundation (NSF), US Department of Education, and NASA Space Grant programs will support 3-4 cohorts of EDGE teachers and 2-3 cohorts of EDGE students.

  16. How to implement the Science Fair Self-Help Development Program in schools

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

    Menicucci, D.

    1994-01-01

    This manual is intended to act as a working guide for setting up a Science Fair Volunteer Support Committee at your school. The Science Fair Volunteer Support Committee, or SFVSC, is the key component of the Science Fair Self-Help program, which was developed by Sandia National Laboratories and is designed to support a school`s science activities. The SFVSC is a team of parents and community volunteers who work in concert with a school`s teaching staff to assist and manage all areas of a school Science and Engineering Fair. The main advantage of creating such a committee is that it freesmore » the science teachers from the organizational aspects of the fair and lets them concentrate on their job of teaching science. This manual is based on information gained through a Self-Help Development pilot program that was developed by Sandia National Laboratories during the 1991--92 school year at three Albuquerque, NM, middle schools. The manual describes the techniques that were successful in the pilot program and discusses how these techniques might be implemented in other schools. This manual also discusses problems that may be encountered, including suggestions for how they might be resolved.« less

  17. White House Science Fair

    NASA Image and Video Library

    2013-04-22

    Director of Strategic Communications and Senior Science and Technology Policy Analyst, Office of Science and Technology Policy, Executive Office of the President, Rick Weiss, left, “Big Bang Theory” co-creator Bill Prady, center, and NASA Mars Curiosity Landing mission controller, Bobak "Mohawk Guy" Ferdowsi talk during the White House Science Fair held at the White House, April 22, 2013. The science fair celebrated student winners of a broad range of science, technology, engineering and math (STEM) competitions from across the country. Photo Credit: (NASA/Bill Ingalls)

  18. Mars Science Laboratory and Its Payload Fairing

    NASA Image and Video Library

    2011-11-10

    Preparations are under way to enclose NASA Mars Science Laboratory in an Atlas V rocket payload fairing. The fairing protects the spacecraft from the impact of aerodynamic pressure and heating during ascent.

  19. Bringing Seismological Research into the School Setting

    NASA Astrophysics Data System (ADS)

    Pavlis, G. L.; Hamburger, M. W.

    2004-12-01

    One of the primary goals of educational seismology programs is to bring inquiry-based research to the middle- and high-school classroom setting. Although it is often stated as a long-term goal of science outreach programs, in practice there are many barriers to research in the school setting, among them increasing emphasis on test-oriented training, decreasing interest and participation in science fairs, limited teacher confidence and experience for mentoring research, insufficient student preparedness for research projects, and the short term of university involvement (typically limited to brief one-day encounters). For the past three+ years we have tried to address these issues through a focused outreach program we have called the PEPP Research Fellows Program. This is treated as an honors program in which high school teachers in our group nominate students with interests in science careers. These students are invited to participate in the program, and those who elect to take part participate in a one-day education and training session in the fall. Rather than leave research projects completely open, we direct the students at toward one of two specific, group-oriented projects (in our case, one focusing on local recordings of mining explosions, and a second on teleseismic body-wave analysis), but we encourage them to act as independent researchers and follow topics of interest. The students then work on seismic data from the local educational network or from the IRIS facilities. Following several months of informal interaction with teachers and students (email, web conferencing, etc.), we bring the students and teachers to our university for a weekend research symposium in the spring. Students present their work in oral or poster form and prizes are given for the best papers. Projects range from highly local projects (records of seismic noise at school X) to larger-scale regional projects (analysis of teleseismic P-wave delays at PEPP network stations) From 20 to 40 students and teachers have participated in the program in the past three years and independent work by students has been outstanding including several students' work that have won awards at regional and national science fairs. The program is feasible because we had a pool of dedicated teachers with experience in using seismographs in schools as a legacy of the Princeton Earth Physics Program (PEPP). It provides a model for focused outreach to top science students to give them an early research experience.

  20. Participatory science and innovation for improved sanitation and hygiene: process and outcome evaluation of project SHINE, a school-based intervention in Rural Tanzania.

    PubMed

    Hetherington, Erin; Eggers, Matthijs; Wamoyi, Joyce; Hatfield, Jennifer; Manyama, Mange; Kutz, Susan; Bastien, Sheri

    2017-02-07

    Diarrheal disease is a major cause of mortality and morbidity in low and middle income countries with children being disproportionately affected. Project SHINE (Sanitation & Hygiene INnovation in Education) is a grassroots participatory science education and social entrepreneurship model to engage youth and the wider community in the development of sustainable strategies to improve sanitation and hygiene. Based in rural and remote Tanzania, this pilot study engaged pastoralist high-school students and communities in the development and evaluation of culturally and contextually relevant strategies to improve sanitation and hygiene. Using a train-the-trainer approach, key activities included teacher workshops, school-based lessons, extra-curricular activities, community events and a One Health sanitation science fair which showcased projects related to water, sanitation and hygiene in relation to human and animal health. The process and outcome of the study were evaluated through qualitative interviews and focus group discussions with diverse project participants, as well as pre- and post- questionnaires completed by students on knowledge, attitudes and practices concerning sanitation and hygiene. The questionnaire results at baseline and follow-up showed statistically significant improvements on key measures including a decrease in unhygienic behaviors, an increase in the perceived importance of handwashing and intention to use the toilet, and increased communication in the social network about the importance of clean water and improved sanitation and hygiene practices, however there were no significant changes in sanitation related knowledge. Qualitative data highlighted strong leadership emerging from youth and enthusiasm from teachers and students concerning the overall approach in the project, including the use of participatory methods. There was a high degree of community engagement with hundreds of community members participating in school-based events. Sanitation science fair projects addressed a range of pastoralist questions and concerns regarding the relationship between water, sanitation and hygiene. Several projects, such as making soap from local materials, demonstrate potential as a sustainable strategy to improve health and livelihoods in the long-term. The Project SHINE model shows promise as an innovative capacity building approach and as an engagement and empowerment strategy for youth and communities to develop locally sustainable strategies to improve sanitation and hygiene.

  1. Environmental Project of I.E.S. Antoni Maura

    NASA Astrophysics Data System (ADS)

    Crespi Salom, Pere

    2010-05-01

    Environmental Project of I.E.S. Antoni Maura Author(s): Pere Crespí i Salom Teacher of Department of Biology and Geology and Environmental Coordinator (2009-2010) from I.E.S. Antoni Maura . Mallorca. Illes Balears. Spain Teachers participating in the project : Myriam Fuentes Milani, Olga Ballester Nebot, Antoni Salom Ruiz, Julio René Loayza Casanova, Puy Aguirre Rémirez, Yolanda Martínez Laserna, Jaume Puppo Lama, Carme Arrom , Dolors Aguiló Segura, Marga Ordinas Boter, Angel Fernàndez Albertí , Immaculada Suau López, Antònia Florit Torrandell, Isabel Mateu Arcos, Román Piña Valls i Pere Crespí Salom. Our institute takes part since 2004 in adapting environmentally the schools in the Balearics which consists of developing activities which aim is that both teachers and students acquire habits so as to apply to their ordinary lives though different participative commissions ( 10-15 teachers): 1st commission: recycling and reusing materials. Enough bins in the classrooms and floors: yellow for plastic, blue for paper, and green for the other. We tend to use recycled materials in different celebrations such as Carnival, Christmas, Saint Jordi and Environmental day. We also organise workshops for the teachers to develop afterwards with the students and nature of environmental exposures. 2nd commission: Scatter information ( MonMaura, Maurifull, Green window and website).Throughout different means we inform the teachers and students about all the school activities and where to consult.( www.iesantonimaura.net, Playful area , environmental project ). 3rd commission: Reusing text books.( there is a students service of borrowing books and giving them back at the end of the school year if the book is in good use.) 4th commission: Improving the school surroundings, the back garden and garden with native plants. Department of Biology and Geology is responsible for caring for an organic garden and in turn improve the center's garden with native plants within the field of "Experimental Workshop"). 5th commission: Energy and mobility: Related to the consumption of resources (oil, water, electricity) from the center and the means of transport used by pupils and teachers. La informació inicial śobtindrá a partir d'enquestes és propossaran activitats per fer un consum més sostenible ( Design shirts CO2 reduction) 6th commission: Volunteerism and environmental awareness: audiovisual videos, cleaning competitions of the classrooms (biweekly ranking classrooms), moving project of coming to school on bike and going back home. Going for an excursion by bike along the bike lane recently developed in the city of Palma. The Balearics Science Fair Our institute takes part in the Balearics Science Fair which takes place every year in the last 5 years. In this fair the students who have been working in a project teach to the general public the experiments in biology, geology, physics and chemistry ( www.iesantonimaura.net, Departments of Biology and Geology, Physics and Chemistry, Science Fair 2007, 2008).

  2. Rethinking the Science Fair

    ERIC Educational Resources Information Center

    Craven, John; Hogan, Tracy

    2008-01-01

    In this article, the authors reflect on whether the competitiveness of science fairs does anything to enhance the learning environment of schools. The authors narrate how a visit to a local school's gymnasium to witness one of these gala events reminded them of why they so dislike science fairs. The authors mention that they applaud any sincere…

  3. You Can't Start Young Enough: Even a Kindergartner Can Be a Scientist!

    ERIC Educational Resources Information Center

    Young, Terrence E., Jr.

    2011-01-01

    From the time they are born, children have a natural curiosity toward the world around them. Even though they can't speak, one can still observe that they are skilled at discovery. Science fair projects can nurture this natural curiosity and give elementary students the opportunity to explore their interests in a rewarding way. Participation in a…

  4. Science Fairs: Tired of the Same Old, Same Old?

    ERIC Educational Resources Information Center

    Silver, Debbie

    1994-01-01

    Presents an alternative to the competition fostered through traditional science fairs. The Science Expo is an all-day event meant to show students and the community that science is fascinating and fun. (PR)

  5. How Are Science Fairs Fairing?

    ERIC Educational Resources Information Center

    Schachter, Ron

    2011-01-01

    For more than half a century, the annual science fair has been a fixture in many a school's academic life, both for science teachers, who guide classes through the hands-on experience of researching topics of interest, and for students, who often hectically put the finishing touches on their work the night before it is exhibited in the school gym…

  6. Rethinking the Science Fair

    ERIC Educational Resources Information Center

    Craven, John; Hogan, Tracy

    2008-01-01

    Spring is the season when thousands of creased cardboard pests can be found lodged under the armpits of students and teachers as they observe the educational rite of spring known as the school science fair. A recent visit to a local school's gymnasium to witness one of these events reminded the authors of why they so dislike science fairs. In this…

  7. Development of Teachers' Attitude Scale towards Science Fair

    ERIC Educational Resources Information Center

    Tortop, Hasan Said

    2013-01-01

    This study was conducted to develop a new scale for measuring teachers' attitude towards science fair. Teacher Attitude Scale towards Science Fair (TASSF) is an inventory made up of 19 items and five dimensions. The study included such stages as literature review, the preparation of the item pool and the reliability and validity analysis. First of…

  8. Merging science, engineering, and data with FUN: Recreational Drones in STEaM Education Activities and Science Fair Projects

    NASA Astrophysics Data System (ADS)

    Olds, S. E.; Mooney, M. E.; Dahlman, L. E.

    2016-12-01

    Recreational drones, also known as unmanned aerial vehicles (UAVs), provide an ideal platform for engaging students in science, technology, engineering, and math (STEM) investigations for science fair projects, after-school clubs, and in-class activities. UAVs are very popular (estimate of >1 million received as gifts this past year), relatively inexpensive (<$100), weigh less than 250g (don't require FAA registration), are modifiable, and can carry small instrument packages. Seeing the world from above can stimulate curiosity and give students a reason to engage in the Next Generation Science Standards (NGSS) process of science and engineering practices by designing and carrying out their own investigations. Using drones to facilitate experiments, students also participate in engineering design: they may choose off-the-shelf sensors or build DIY sensors to carry on their UAVs. Leveraging the learning potential of UAVs, the Federation of Earth Science Information Partners (ESIP) Education Committee has been developing an e-book of learning activities and investigation suggestions for secondary education students. The freely available download incorporates UAV civility and safety through a pre-flight checklist and flying guidelines, suggests science and flight team roles, and advocates robust data and metadata-collection practices. The ESIP team also worked with an engineer to build a 33-gram prototype environmental logger called SABEL (Shelley (Olds) and Bob's Environmental Logger). SABEL collects temperature, humidity, and GPS position assembled on an Arduino board. This presentation will elaborate upon the year-long process of working with educators via webinars and a 1-day workshop at the 2016 ESIP summer meeting and beyond. It will also provide examples of student-led investigations, instructions for building the SABEL sensor package, insights gleaned from workshop feedback - and - the status of the new e-book compilation of student-focused activities using recreational drones to pursue STEM investigations!

  9. CBM Collaboration

    NASA Astrophysics Data System (ADS)

    Ablyazimov, T.; Abuhoza, A.; Adak, R.; Adamczewski-Musch, J.; Adamczyk, M.; Aggarwal, M. M.; Ahammed, Z.; Ahmad, F.; Ahmad, N.; Ahmad, S.; Akindinov, A.; Akishin, P.; Akishina, E.; Akishina, T.; Akishina, V.; Al-Turany, M.; Alexandrov, E.; Alexandrov, I.; Amar-Youcef, S.; Anđelić, M.; Andreeva, O.; Andrei, C.; Andronic, A.; Anisimov, Yu.; Appelshäuser, H.; Arend, A.; Argintaru, D.; Atkin, E.; Avdeev, S.; Averbeck, R.; Azmi, M. D.; Baban, V.; Bach, M.; Badura, E.; Baginyan, S.; Balle, T.; Balog, T.; Bandyopadhyay, S.; Banerjee, P.; Baranova, N.; Barczyk, T.; Bartoş, D.; Bashir, S.; Basrak, Z.; Baszczyk, M.; Batenkov, O.; Baublis, V.; Baumann, C.; Baznat, M.; Becker, K.-H.; Bel, T.; Belogurov, S.; Bendarouach, J.; Berceanu, I.; Bercuci, A.; Berdermann, E.; Berdnikov, A.; Berdnikov, Y.; Berendes, R.; Bergmann, C.; Bertini, D.; Bertini, O.; Beşliu, C.; Bezshyyko, O.; Bhaduri, P. P.; Bhasin, A.; Bhati, A. K.; Bhattacharjee, B.; Bhattacharyya, A.; Bhattacharyya, T. K.; Biswas, S.; Blau, D.; Blume, C.; Bocharov, Yu.; Böttger, S.; Borysova, M.; Breitner, T.; Brüning, U.; Brzychczyk, J.; Bubak, A.; Büsching, H.; Bychkov, A.; Byszuk, A.; Cai, Xu; Cãlin, M.; Cao, Ping; Čaplar, R.; Caragheorgheopol, G.; Carević, I.; Cătănescu, V.; Chakrabarti, A.; Chatterji, S.; Chattopadhyay, Sanatan; Chattopadhyay, Subhasis; Chen, Hongfang; Cheng, Jianping; Chepurnov, V.; Chernenko, S.; Chernogorov, A.; Choi, Kyung-Eon; Ciobanu, M. I.; Claus, G.; Constantin, F.; Covlea, V.; Csanád, M.; D'Ascenzo, N.; Das, S.; Davkov, K.; Davkov, V.; de Cuveland, J.; Debnath, B.; Dementiev, D.; Deng, Zhi; Deppe, H.; Deppner, I.; Derenovskaya, O.; Deveaux, C. A.; Deveaux, M.; Dey, K.; Dey, M.; Dillenseger, P.; Dobyrn, V.; Doering, D.; Dorokhov, A.; Drozd, A.; Dubey, A. K.; Dubnichka, S.; Dubnichkova, A.; Dürr, M.; Dulinski, W.; Dutka, L.; Dželalija, M.; Emschermann, D.; Engel, H.; Eremin, V.; Eşanu, T.; Eschke, J.; Eschweiler, D.; Eum, Jongsik; Fan, Huanhuan; Fateev, O.; Filozova, I.; Finogeev, D.; Fischer, P.; Flemming, H.; Frankenfeld, U.; Friese, V.; Friske, E.; Fröhlich, I.; Frühauf, J.; Fülöp, Á.; Gajda, J.; Galatyuk, T.; Galkin, A.; Galkin, V.; Gangopadhyay, G.; García Chávez, C.; Gašparić, I.; Gebelein, J.; Ghosh, P.; Ghosh, S. K.; Goffe, M.; Golinka-Bezshyyko, L.; Golovatyuk, V.; Golovnya, S.; Golovtsov, V.; Golubeva, M.; Golubkov, D.; Gómez Ramírez, A.; Gorbunov, S.; Gorokhov, S.; Gottschalk, D.; Gryboś, P.; Grzeszczuk, A.; Guber, F.; Gudima, K.; Gupta, A.; Gusakov, Yu.; Haldar, A.; Haldar, S.; Hartmann, H.; Hehner, J.; Heidel, K.; Heine, N.; Hellbär, E.; Herghelegiu, A.; Herrmann, N.; Heß, B.; Heuser, J. M.; Himmi, A.; Höhne, C.; Holzmann, R.; Huang, Guangming; Huang, Xinjie; Hutsch, J.; Hutter, D.; Iakovleva, E.; Ierusalimov, A.; Ilgenfritz, E.-M.; Irfan, M.; Ivanov, M.; Ivanov, Valery; Ivanov, Victor; Ivanov, Vladimir; Ivashkin, A.; Jaaskelainen, K.; Jahan, H.; Jain, V.; Jakovlev, V.; Janson, T.; Jipa, A.; Kadenko, I.; Kämpfer, B.; Kalcher, S.; Kalinin, V.; Kampert, K.-H.; Kang, Tae Im; Kaptur, E.; Karabowicz, R.; Karavichev, O.; Karavicheva, T.; Karmanov, D.; Karnaukhov, V.; Karpechev, E.; Kasiński, K.; Kasprowicz, G.; Kaur, M.; Kazantsev, A.; Kebschull, U.; Kekelidze, G.; Khan, M. M.; Khan, S. A.; Khanzadeev, A.; Khasanov, F.; Khvorostukhin, A.; Kirakosyan, V.; Kirejczyk, M.; Kiryakov, A.; Kiš, M.; Kisel, I.; Kisel, P.; Kiselev, S.; Kiss, A.; Kiss, T.; Klaus, P.; Kłeczek, R.; Klein-Bösing, Ch.; Kleipa, V.; Kmon, P.; Koch, K.; Kochenda, L.; Koczoń, P.; König, W.; Kohn, M.; Kolb, B. W.; Kolosova, A.; Komkov, B.; Kopfer, J. M.; Korolev, M.; Korolko, I.; Kotte, R.; Kotynia, A.; Kovalchuk, A.; Kowalski, S.; Koziel, M.; Kozlov, G.; Kravtsov, P.; Krebs, E.; Kreidl, C.; Kresan, D.; Kretschmar, G.; Kretz, M.; Krieger, M.; Kryshen, E.; Kucewicz, W.; Kudin, L.; Kugler, A.; Kulakov, I.; Kunkel, J.; Kurepin, A.; Kurilkin, P.; Kushpil, V.; Kyva, V.; Ladygin, V.; Lara, C.; Larionov, P.; Laso Garcia, A.; Lavrik, E.; Lazanu, I.; Lebedev, A.; Lebedev, S.; Lebedeva, E.; Lehnert, J.; Lehrbach, J.; Lemke, F.; Li, Cheng; Li, Jin; Li, Qiyan; Li, Yuanjing; Li, Yulan; Lindenstruth, V.; Linev, S.; Linnik, B.; Litvinenko, E.; Liu, Feng; Lobanov, I.; Lobanova, E.; Löchner, S.; Loizeau, P.-A.; Lucio Martínez, J. A.; Lymanets, A.; Maevskaya, A.; Mahajan, S.; Mahapatra, D. P.; Mahmoud, T.; Maj, P.; Majka, Z.; Malakhov, A.; Malankin, E.; Malkevich, D.; Malyatina, O.; Malygina, H.; Mandal, S.; Manko, V.; Manz, S.; Marin, V.; Marin Garcia, A. M.; Markert, J.; Masciocchi, S.; Matulewicz, T.; Merkin, M.; Mialkovski, V.; Michel, J.; Miftakhov, N.; Mikhailov, K.; Mikhaylov, V.; Milanović, B.; Militsija, V.; Mir, M. F.; Miskowiec, D.; Morhardt, T.; Müller, W. F. J.; Müntz, C.; Murin, Yu.; Najman, R.; Naumann, L.; Nayak, T.; Nedosekin, A.; Neumann, B.; Niebur, W.; Nikulin, V.; Normanov, D.; Nüssle, M.; Oancea, A.; Oh, Kunsu; Onishchuk, Y.; Osipov, D.; Ososkov, G.; Ossetski, D.; Otfinowski, P.; Ovcharenko, E.; Pal, S.; Panasenko, I.; Panda, N. R.; Parzhitskiy, S.; Pauly, C.; Peng, Haiping; Peric, I.; Peshekhonov, D.; Peshekhonov, V.; Petráček, V.; Petriş, M.; Petrovici, A.; Petrovici, M.; Petrovskiy, A.; Petukhov, O.; Piasecki, K.; Pieper, J.; Pietraszko, J.; Płaneta, R.; Plekhanov, E.; Plotnikov, V.; Plujko, V.; Pluta, J.; Poliakov, V.; Polozov, P.; Pop, A.; Popov, V.; Pospisil, V.; Potukuchi, B. V. K. S.; Pouryamout, J.; Poźniak, K.; Prakash, A.; Prokudin, M.; Pshenichnov, I.; Pugach, M.; Pugatch, V.; Querchfeld, S.; Radulescu, L.; Raha, S.; Raja, W.; Rami, F.; Raniwala, R.; Raniwala, S.; Raportirenko, A.; Rautenberg, J.; Rauza, J.; Ray, R.; Razin, S.; Reichelt, P.; Reinecke, S.; Reshetin, A.; Ristea, C.; Ristea, O.; Roether, F.; Romaniuk, R.; Rost, A.; Rostchin, E.; Rostovtseva, I.; Roy, A.; Rożynek, J.; Ryabov, Yu.; Rykalin, V.; Sadovsky, A.; Sadovsky, S.; Sahoo, R.; Sahu, P. K.; Saini, J.; Samanta, S.; Sambyal, S. S.; Samsonov, V.; Sánchez Rosado, J.; Sau, S.; Saveliev, V.; Schatral, S.; Schiaua, C.; Schmidt, C. J.; Schmidt, H. R.; Schmidt, K.; Schweda, K.; Scurtu, A.; Seck, F.; Seddiki, S.; Selyuzhenkov, I.; Semennikov, A.; Senger, A.; Senger, P.; Shabunov, A.; Shao, Ming; Sharma, M. K.; Shumeiko, N.; Shumikhin, V.; Sikora, B.; Simakov, A.; Simon, C.; Simons, C.; Singaraju, R. N.; Singh, A. K.; Singh, B. K.; Singh, C. P.; Singhal, V.; Siwek-Wilczyńska, K.; Škoda, L.; Skwira-Chalot, I.; Som, I.; Song, Jihye; Sorokin, I.; Sosin, Z.; Soyk, D.; Staszel, P.; Stavinskiy, A.; Stephan, E.; Storozhyk, D.; Strikhanov, M.; Strohauer, S.; Stroth, J.; Sturm, C.; Sultanov, R.; Sun, Yongjie; Svoboda, O.; Szczygieł, R.; Talukdar, R.; Tang, Zebo; Tanha, M.; Tarasiuk, J.; Tarassenkova, O.; Târzilă, M.-G.; Tiflov, V.; Tischler, T.; Tlustý, P.; Toia, A.; Tolyhi, T.; Topil'skaya, N.; Trageser, C.; Trivedy, P.; Tsakov, I.; Tsyupa, Yu.; Turowiecki, A.; Uhlig, F.; Usenko, E.; Valin, I.; Vasiliev, T.; Vassiliev, I.; Verbitskaya, E.; Verhoeven, W.; Veshikov, A.; Visinka, R.; Viyogi, Y. P.; Volkov, S.; Volkov, Yu.; Vorobiev, A.; Voronin, A.; Vovchenko, V.; Vznuzdaev, E.; Vznuzdaev, M.; Wang, Dong; Wang, Yaping; Yi, Wang; Wendisch, C.; Wessels, J. P.; Wiebusch, M.; Wiechula, J.; Wiedemann, B.; Wielanek, D.; Wieloch, A.; Winckler, N.; Winter, M.; Wiśniewski, K.; Wohlfeld, D.; Wolf, Gy.; Sanguk, Won; Wüstenfeld, J.; Xiang, Changzhou; Nu, Xu; Yi, Jun-Gyu; Yin, Zhongbao; Yoo, In-Kwon; Yue, Qian; Yuldashev, B.; Yushmanov, I.; Zabołotny, W.; Zaitsev, Yu.; Zanevsky, Yu.; Zhalov, M.; Zhang, Ya Peng; Zhang, Yifei; Zhou, Daicui; Zhu, Xianglei; Zinchenko, A.; Zipper, W.; Żoładź, M.; Zrelov, P.; Zryuev, V.; Zumbruch, P.; Zyzak, M.

    2014-11-01

    We acknowledge support by the Seventh Framework Programme (FP7) of the European Commission through projects AIDA, CRISP and HadronPhysics3; the Bundesministerium für Bildung und Forschung, Germany, through the grants 05P09PXFC5, 05P12PXFCE, 05P12RFFC7, 05P12RFFCM, 05P12RFFCP, 05P12RGFCG,05P12RGGHM, 05P12VHFCE, 05P12VHFCF, 05PRVHFC7, and 06HD9123I; the Deutsche Forschungsgemeinschaft, Germany, grant GRK 1039; the Hessian Loewe Initiative through the Helmholtz International Center for FAIR (HIC4FAIR); the Helmholtz Graduate School HIRe; the Helmholtz Research School H-QM; the GSI Helmholzzentrum für Schwerionenforschung mbH, Germany, through F&E cooperations with Goethe-Universität Frankfurt, Justus-Liebig-Universität Gießen and Bergische Universität Wuppertal (WKAMPE1012); the Department of Science and Technology, Government of India; the Department of Atomic Energy, Government of India; the Council of Scientific and Industrial Research, Government of India; the University Grants Commission, Government of India; the Indo-FAIR Co-ordination Centre, Bose Institute, Kolkata, India; the Strategic Grants POSDRU/89/1.5/S/58852 and PN-II-ID-PCE-IDEI 34/05.10.2011, Romania; the NASR/CAPACITATI-Modul III, Romania, contract nr. 179EU; the NASR/NUCLEU Project PN09370103, Romania; the FAIR Russia Research Center (FRRC), Russia; and the Federal Agency for Atomic Research (Rosatom), Russia.

  10. On fairness, full cooperation, and quantum game with incomplete information

    NASA Astrophysics Data System (ADS)

    Lei, Zhen-Zhou; Liu, Bo-Yang; Yi, Ying; Dai, Hong-Yi; Zhang, Ming

    2018-03-01

    Quantum entanglement has emerged as a new resource to enhance cooperation and remove dilemmas. This paper aims to explore conditions under which full cooperation is achievable even when the information of payoff is incomplete. Based on the quantum version of the extended classical cash in a hat game, we demonstrate that quantum entanglement may be used for achieving full cooperation or avoiding moral hazards with the reasonable profit distribution policies even when the profit is uncertain to a certain degree. This research further suggests that the fairness of profit distribution should play an important role in promoting full cooperation. It is hopeful that quantum entanglement and fairness will promote full cooperation among distant people from various interest groups when quantum networks and quantum entanglement are accessible to the public. Project supported by the National Natural Science Foundation of China (Grant Nos. 61673389, 61273202, and 61134008.

  11. Science Fairs Plus: Reinventing an Old Favorite. Grades K-8.

    ERIC Educational Resources Information Center

    Cusick, Judy, Ed.; Duval, Carol, Ed.; Smith, Betty, Ed.

    This book presents a selection of articles published in "Science and Children", "Science Scope", and "The Science Teacher", all journals published by the National Science Teachers Association (NSTA), that cover all grade levels from elementary through secondary education. It describes how to organize and conduct a successful science fair. Contents…

  12. Learning Experimentation through Science Fairs

    ERIC Educational Resources Information Center

    Paul, Jürgen; Lederman, Norman G.; Groß, Jorge

    2016-01-01

    Experiments are essential for both doing science and learning science. The aim of the German youth science fair, "Jugend forscht," is to encourage scientific thinking and inquiry methods such as experimentation. Based on 57 interviews with participants of the competition, this study summarises students' conceptions and steps of learning…

  13. Effects of an Inquiry-Based Science Program on Critical Thinking, Science Process Skills, Creativity, and Science Fair Achievement of Middle School Students

    ERIC Educational Resources Information Center

    Longo, Christopher M.

    2012-01-01

    This study investigated the impact of an inquiry-based science program on the critical thinking skills, science process skills, creativity, and science fair achievement of middle school students. Although research indicates the connection between inquiry and achievement, there is limited empirical research relating specific inquiry-based programs…

  14. Putting Science into Elementary Science Fairs.

    ERIC Educational Resources Information Center

    Russell, Helen Ross

    In a world where science has become too confined to books and too reliant on technology, and science fairs have been taken over by parents, this paper offers suggestions to help young people have actual hands-on experience with nature. Topics include soil formation; ants; earthworms; temperature; weather predictions; rain acidity; physical science…

  15. White House Science Fair

    NASA Image and Video Library

    2014-05-27

    Bobak Ferdowsi, a system's engineer at NASA's Jet Propulsion Laboratory, speaks with a member of "invenTeam" at the White House Science Fair. Olivia Van Amsterdam, 16, Katelyn Sweeney, 17, and their team of student engineers from Natick, MA, invented a 120 lb remotely operated vehicle (ROV) that can help search-and-rescue dive teams search for bodies in dangerous, icy waters. The fourth White House Science Fair was held at the White House and included 100 students from more than 30 different states who competed in science, technology, engineering, and math (STEM) competitions. (Photo Credit: NASA/Aubrey Gemignani)

  16. Development of an instrument to measure student attitudes toward science fairs

    NASA Astrophysics Data System (ADS)

    Huddleston, Claudia A.

    Science fairs are woven into the very fabric of science instruction in the United States and in other countries. Even though thousands of students participate in science fairs every year, no instrument to measure student attitudes toward partaking in this hands-on learning experience has been fully developed and available for school administrators and teachers to assess the perceived value that current students attribute to participation in science fairs. Therefore, the purpose of this study was to continue the development and refinement of an instrument that measured student attitudes towards science fairs based on an unpublished instrument created by Michael (2005). The instrument developed and tested using 110 students at two different middle schools in southwest Virginia. The instrument consisted of 45 questions. After applying a principal component factor analysis, the instrument was reduced to two domains, enjoyment and value. The internal consistency of the instrument was calculated using Cronbach's alpha and showed good internal consistency of .89 between the two domains. Further analysis was conducted using a Pearson product-moment test and showed a significant positive correlation between enjoyment and value (r = .78). Demographic information was explored concerning the domains using a series of statistical tests, and results revealed no significant differences among race and science fair category. However, a significant difference was found among gender and students who won awards and those who did not. The conclusion was that further development and refinement of the instrument should be conducted.

  17. Have a Kids Inquiry Conference!

    ERIC Educational Resources Information Center

    Magee, Paula A.; Flessner, Ryan

    2011-01-01

    In school, the traditional format for the formal sharing of science experiences has been the science fair. Usually the science fair is conducted as a competitive event at which prizes are awarded for the "best" examples. Unfortunately, this type of science event has little connection to the real sharing that scientists do regularly. The National…

  18. Students Inspiring Students: An Online Tool for Science Fair Participants

    ERIC Educational Resources Information Center

    Seeman, Jeffrey I.; Lawrence, Tom

    2011-01-01

    One goal of 21st-century education is to develop mature citizens who can identify issues, solve problems, and communicate solutions. What better way for students to learn these skills than by participating in a science and engineering fair? Fair participants face the same challenges as professional scientists and engineers, even Nobel laureates.…

  19. White House Science Fair

    NASA Image and Video Library

    2014-05-27

    Crystal Brockington and Aaron Barron, both 18 years old, designed a more efficient and cost effective solar cell that harnesses energy without cadmium, which has been shown to be harmful to the environment. They were selected to participate in the White House Science Fair after they were awarded the High School Grand Prize at the Siemens We Can Change the World Challenge. The fourth White House Science Fair was held at the White House on May 27, 2014 and included 100 students from more than 30 different states who competed in science, technology, engineering, and math (STEM) competitions. (Photo Credit: NASA/Aubrey Gemignani)

  20. Recruiting first generation college students into the Geosciences: Alaska's EDGE project

    NASA Astrophysics Data System (ADS)

    Prakash, A.; Connor, C.

    2008-12-01

    Funded in 2005-2008, by the National Science Foundation's Geoscience Education Division, the Experiential Discoveries in Geoscience Education (EDGE) project was designed to use glacier and watershed field experiences as venues for geospatial data collected by Alaska's grade 6-12 middle and high school teachers and their students. EDGE participants were trained in GIS and learned to analyze geospatial data to answer questions about the warming Alaska environment and to determine rates of ongoing glacier recession. Important emphasis of the program was the recruitment of Alaska Native students of Inupiat, Yup'ik, Athabascan, and Tlingit populations, living in both rural and urban areas around the state. Twelve of Alaska's 55 school districts have participated in the EDGE program. To engage EDGE students in the practice of scientific inquiry, each was required to carry out a semester scale research project using georeferenced data, guided by their EDGE teacher and mentor. Across Alaska students investigated several Earth systems processes including freezing conditions of lake ice; the changes in water quality in storm drains after rainfall events; movements of moose, bears, and bison across Alaskan landscapes; changes in permafrost depth in western Alaska; and the response of migrating waterfowl to these permafrost changes. Students correlated the substrate beneath their schools with known earthquake intensities; measured cutbank and coastal erosion on northern rivers and southeastern shorelines; tracked salmon infiltration of flooded logging roads; noted the changing behavior of eagles during late winter salmon runs; located good areas for the use of tidal power for energy production; tracked the extent and range of invasive plant species with warming; and the change of forests following deglaciation. Each cohort of EDGE students and teachers finished the program by attended a 3-day EDGE symposium at which students presented their research projects first in a practice sessions at the University and then in an actual competition in a Regional High School Science Fair at which they could qualify to compete at the Intel International Science and Engineering fair. Thirty-four teachers, 30 high school students (over 40 percent of whom were Alaska Native) and over 1000 middle school students (25 percent Alaska natives) participated in EDGE activities, increasing their knowledge of Earth science, GIS skills, and data management and analysis. More information on the EDGE project is available at www.edge.alaska.edu.

  1. Risk Management in Construction Project: Taking Fairness into Account

    NASA Astrophysics Data System (ADS)

    Górecki, Jarosław; Bizon-Górecka, Jadwiga

    2017-10-01

    Risk management requires a comprehensive review of possible hazards, their possible outcomes as well as some recommendations about minimizing the risk. The study emphasises that the project risk management refers to an analysis of the risk factors and a creation of the strategy minimising negative effects of the risk. It was pointed out that a construction project is this kind of projects that can be defined as a unique process of high complexity (design documentation, various stages of creating the building), which has clearly defined time frames and a given financial limit. It is executed as a team work, by qualified or highly qualified specialists of different matters, for example masonry, precast, etc. Additionally, it requires a use of modern equipment and an adequate preparation of the investment. Therefore, the risk management focuses on the problems allowing for troubleshooting. A basis of the risk management is to recognise the fundamentals, which are crucial for the construction project management, i.e. an object perspective, including technological, supporting and management processes as well as an entity perspective - project stakeholders. Construction projects require also an acquaintance with the specificity of the branch. The article refers to the risk management in construction project and, in particular, a phenomenon of participants’ fairness in such projects. The problem of fairness of the entities involved in a project should be understood as a fair play, according to the arrangements agreed in a contract and compatible with current formal procedures and social rules. It was indicated that fairness can be treated as an important factor in predicting the success of such projects. Interviews conducted among contractors in Kuyavian-Pomeranian region showed varied fairness requirements put to individual participants of construction projects. The article presents results of the research. It shows a desired attitude of the surveyed enterprises towards a problem of the fair behaviour. These behaviours, relating to individual stakeholders, have been underlined in different phases of the construction projects’ life cycle.

  2. Culture Matters in Science Education

    ERIC Educational Resources Information Center

    Pang, Valerie Ooka; Lafferty, Karen Elizabeth; Pang, Jennifer M.; Griswold, Joan; Oser, Rick

    2014-01-01

    On the Saturday before Halloween, hundreds of students and their parents went from booth to booth participating in science activities at an annual Fall Festival and Learning Fair. The Fall Festival and Learning Fair is a valuable annual partnership where culturally relevant teaching engages each child in hands-on, standards-based science lessons.…

  3. Research Based Science Education: Bringing Authentic Scientific Research into the Secondary Classroom

    NASA Astrophysics Data System (ADS)

    Sayers, J.

    2003-12-01

    Teachers and students at Northview High School in Brazil, Indiana have the opportunity to engage in authentic scientific research through our participation in two national projects, TLRBSE and PEPP. Teacher Leaders in Research Based Science Education (TLRBSE) is a teacher professional development and retention program coupled with authentic scientific research projects in astronomy. Teacher-Leaders are trained in research-based pedagogy and serve as mentors to less experienced colleagues and work with students to develop science research methods and research projects for the classroom. Astronomical data collected at Kitt Peak by astronomers and teachers is made available on CD for classroom use. Northview is in its second year as a TLRBSE school. The Princeton Earth Physics Project (PEPP) trains mentor teachers in fundamentals of research in seismology. Teachers and students then gain hands on experience in science research through operation of a research quality seismic station sited at the high school. Data from the Northview seismometer are stored locally and also transmitted over the Internet to a database at Indiana University. Students have access to local data as well as seismic databases accessible through the Internet to use for research projects. The Northview Seismic Station has been in operation since 1998. In this presentation, I will describe how these projects have been incorporated into the physics and earth science programs at Northview High School. I will discus how our teachers and students have benefited from the opportunity to take part in hands-on scientific research under the guidance of university faculty. In particular, I will describe our participation in a regional seismic network through seismic data acquisition, data analysis using seismological software, and students' experiences in a university-based student research symposium. I reflect on the some of the successes and barriers to high-school teachers' and students' involvement in scientific research programs. I conclude with a discussion of a successful student seismology project that was a finalist in the 2003 INTEL International Science and Engineering Fair

  4. Science mentor program at Mission Hill Junior High School

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

    Dahlquist, K.

    Science graduate students from the University of California at Santa Cruz mentor a class of 7th graders from the Mission Hill Junior High School. The program`s purpose is: (1) to create a scientific learning community where scientists interact at different levels of the educational hierarchy; (2) to have fun in order to spark interest in science; and (3) to support girls and minority students in science. A total of seven mentors met with the students at least once a week after school for one quarter to tutor and assist with science fair projects. Other activities included a field trip tomore » a university earth science lab, judging the science fair, and assisting during laboratory exercises. Graduate students run the program with minimal organization and funding, communicating by electronic mail. An informal evaluation of the program by the mentors has concluded that the most valuable and effective activities have been the field trip and assisting with labs. The actual {open_quotes}mentor meetings{close_quotes} after school did not work effectively because they had a vaguely defined purpose and the kids did not show up regularly to participate. Future directions include redefining ourselves as mentors for the entire school instead of just one class and better coordinating our activities with the teachers` curriculum. We will continue to assist with the labs and organize formal tutoring for students having problems with math and science. Finally, we will arrange more activities and field trips such as an amateur astronomy night. We will especially target girls who attended the {open_quotes}Expanding Your Horizons{trademark} in Science, Mathematics, and Engineering{close_quotes} career day for those activities.« less

  5. A High School Research-Oriented Academy

    NASA Astrophysics Data System (ADS)

    Adkins, J.

    2011-12-01

    For the past several years Deer Valley High School (Antioch, CA) has hosted a science research academy (DVSRA). This academy has promoted original student primary research in engineering, behavior science, astronomy and physics topics and initiated the school's first entries into science fair and directed a number of students into science careers. During the previous school year the Antioch Unified School District has supported the expansion of the academy into a general research academy encompassing all areas of science and humanities, a move into a new building, purchase of a new planetarium and the development of a collegiate academy model making it easier to integrate the academy into the larger school's academic program. The presentation will discuss the design of the academy and the involvement of students in projects connected to the Teachers in Space Suborbital Flight Opportunity program, NASA's WISE, Mars Global Surveyor, Spitzer, and other missions.

  6. KSC-92PC-1538

    NASA Image and Video Library

    1992-07-18

    CAPE CANAVERAL, Fla. -- At Cape Canaveral Air Force Station's Launch Complex 17, Pad A, technicians encapsulate the Geotail spacecraft upper and attached Payload Assist Module-D upper stage lower in the protective payload fairing. Geotail and secondary payload Diffuse Ultraviolet Experiment DUVE are scheduled for launch about the Delta II rocket on July 24. The GEOTAIL mission is a collaborative project undertaken by the Institute of Space and Astronautical Science ISAS, Japan Aerospace Exploration Agency JAXA and NASA. Photo Credit: NASA

  7. 45 CFR 74.34 - Equipment.

    Code of Federal Regulations, 2010 CFR

    2010-10-01

    ... equipment with a current per unit fair market value of $5000 or more, the recipient may retain the equipment... the original project or program to the current fair market value of the equipment. If the recipient... project or program to the current fair market value of the equipment, plus any reasonable shipping or...

  8. Student Intern Freed Competes at Intel ISEF, Two Others Awarded at Local Science Fair | Poster

    Cancer.gov

    Class of 2014–2015 Werner H. Kirsten (WHK) student intern Rebecca “Natasha” Freed earned a fourth-place award in biochemistry at the 2015 Intel International Science and Engineering Fair (ISEF), the largest high school science research competition in the world, according to the Society for Science & the Public’s website. Freed described the event as “transformative

  9. Description of the supporting factors of final project in Mathematics and Natural Sciences Faculty of Syiah Kuala University with multiple correspondence analysis

    NASA Astrophysics Data System (ADS)

    Rusyana, Asep; Nurhasanah; Maulizasari

    2018-05-01

    Syiah Kuala University (Unsyiah) is hoped to have graduates who are qualified for working or creating a field of work. A final project course implementation process must be effective. This research uses data from the evaluation conducted by Mathematics and Natural Sciences Faculty (FMIPA) of Unsyiah. Some of the factors that support the completion of the final project are duration, guidance, the final project seminars, facility, public impact, and quality. This research aims to know the factors that have a relationship with the completion of the final project and identify similarities among variables. The factors that support the completion of the final project at every study program in FMIPA are (1) duration, (2) guidance and (3) facilities. These factors are examined for the correlations by chi-square test. After that, the variables are analyzed with multiple correspondence analysis. Based on the plot of correspondence, the activities of the guidance and facilities in Informatics Study Program are included in the fair category, while the guidance and facilities in the Chemistry are included in the best category. Besides that, students in Physics can finish the final project with the fastest completion duration, while students in Pharmacy finish for the longest time.

  10. Obama Boosts Science Education During White House Student Fair

    NASA Astrophysics Data System (ADS)

    Showstack, Randy

    2010-10-01

    With the East Room of the White House flush with Nobel laureates and government officials, including freshly sworn-in U.S. National Science Foundation director Subra Suresh, President Barack Obama honored dozens of students who participated in a White House science fair on 18 October. The fair—many of whose participants have won other science, technology, engineering, and math (STEM) competitions—is part of a series of events that culminated 23-24 October in the USA Science and Engineering Festival on the National Mall in Washington, D. C., and at 50 satellite events around the country. “We welcome championship sports teams to the White House to celebrate their victories,” Obama said, noting that the Los Angeles Lakers basketball team, New Orleans Saints football team, and others have been to the White House. “I thought we ought to do the same thing for the winners of science fair and robotic contests and math competitions, because often we don’t give these victories the attention that they deserve. When you win first place at a science fair, nobody is rushing the field or dumping Gatorade over your head [in celebration].”

  11. 18 CFR 4.14 - Hearing upon report.

    Code of Federal Regulations, 2013 CFR

    2013-04-01

    ... OF PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act... Commission. (c) Adjustment to licensee's books. The licensee's books of account for the project shall be adjusted to conform to the fair value of the project as revised by the order of the Commission. These...

  12. 18 CFR 4.14 - Hearing upon report.

    Code of Federal Regulations, 2011 CFR

    2011-04-01

    ... OF PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act... Commission. (c) Adjustment to licensee's books. The licensee's books of account for the project shall be adjusted to conform to the fair value of the project as revised by the order of the Commission. These...

  13. 18 CFR 4.14 - Hearing upon report.

    Code of Federal Regulations, 2014 CFR

    2014-04-01

    ... OF PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act... Commission. (c) Adjustment to licensee's books. The licensee's books of account for the project shall be adjusted to conform to the fair value of the project as revised by the order of the Commission. These...

  14. 18 CFR 4.14 - Hearing upon report.

    Code of Federal Regulations, 2010 CFR

    2010-04-01

    ... OF PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act... Commission. (c) Adjustment to licensee's books. The licensee's books of account for the project shall be adjusted to conform to the fair value of the project as revised by the order of the Commission. These...

  15. 18 CFR 4.14 - Hearing upon report.

    Code of Federal Regulations, 2012 CFR

    2012-04-01

    ... OF PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act... Commission. (c) Adjustment to licensee's books. The licensee's books of account for the project shall be adjusted to conform to the fair value of the project as revised by the order of the Commission. These...

  16. A Job Fair Demonstration for Senior Citizens and People with Disabilities.

    ERIC Educational Resources Information Center

    Brown, Patricia L.; Roessler, Richard T.

    1991-01-01

    Tested job fair project, Better Days, at two sites. Project targeted people with disabilities and older adults. Sixty-two older adults and 81 people with disabilities who attended rated the fairs as "good to excellent" employment resources. Total of 13 companies reported hiring someone as result of contacts made with applicants or…

  17. Astronomy Remote Observing Research Projects of US High School Students

    NASA Astrophysics Data System (ADS)

    Kadooka, M.; Meech, K. J.

    2006-08-01

    In order to address the challenging climate for promoting astronomy education in the high schools we have used astronomy projects to give students authentic research experiences in order to encourage their pursuit of science and technology careers. Initially, we conducted teacher workshops to develop a cadre of teachers who have been instrumental in recruiting students to work on projects. Once identified, these students have been motivated to conduct astronomy research projects with appropriate guidance. Some have worked on these projects during non-school hours and others through a research course. The goal has been for students to meet the objectives of inquiry-based learning, a major US National Science Standard. Case studies will be described using event-based learning with the NASA Deep Impact mission. Hawaii students became active participants investigating comet properties through the NASA Deep Impact mission. The Deep Impact Education and Public Outreach group developed materials which were used by our students. After learning how to use image processing software, these students obtained Comet 9P/ Tempel 1 images in real time from the remote observing Faulkes Telescope North located on Haleakala, Maui for their projects. Besides conducting event-based projects which are time critical, Oregon students have worked on galaxies and sunspots projects. For variable star research, they used images obtained from the remote observing offline mode of Lowell Telescope located in Flagstaff, Arizona. Essential to these projects has been consistent follow-up required for honing skills in observing, image processing, analysis, and communication of project results through Science Fair entries. Key to our success has been the network of professional and amateur astronomers and educators collaborating in a multiplicity of ways to mentor our students. This work-in-progress and process will be shared on how to inspire students to pursue careers in science and technology with these projects.

  18. MY NASA DATA: Making Earth Science Data Accessible to the K-12 Community

    NASA Astrophysics Data System (ADS)

    Chambers, L. H.; Alston, E. J.; Diones, D. D.; Moore, S. W.; Oots, P. C.; Phelps, C. S.

    2006-12-01

    In 2004, the Mentoring and inquirY using NASA Data on Atmospheric and Earth science for Teachers and Amateurs (MY NASA DATA) project began. The goal of this project is to enable K-12 and citizen science communities to make use of the large volume of Earth System Science data that NASA has collected and archived. One major outcome is to allow students to select a problem of real-life importance, and to explore it using high quality data sources without spending months looking for and then learning how to use a dataset. The key element of the MY NASA DATA project is the implementation of a Live Access Server (LAS). The LAS is an open source software tool, developed by NOAA, that provides access to a variety of data sources through a single, fairly simple, point- and- click interface. This tool truly enables use of the available data - more than 100 parameters are offered so far - in an inquiry-based educational setting. It readily gives students the opportunity to browse images for times and places they define, and also provides direct access to the underlying data values - a key feature of this educational effort. The team quickly discovered, however, that even a simple and fairly intuitive tool is not enough to make most teachers comfortable with data exploration. User feedback has led us to create a friendly LAS Introduction page, which uses the analogy of a restaurant to explain to our audience the basic concept of an LAS. In addition, we have created a "Time Coverage at a Glance" chart to show what data are available when. This keeps our audience from being too confused by the patchwork of data availability caused by the start and end of individual missions. Finally, we have found it necessary to develop a substantial amount of age appropriate documentation, including topical pages and a science glossary, to help our audience understand the parameters they are exploring and how these parameters fit into the larger picture of Earth System Science. MY NASA DATA intends to create a community of data explorers. A MY NASA DATA e-mentor network provides opportunities for educators, students, and citizens to engage in dialog about the questions they encounter. The website hosts a collection of data-based lesson plans that have been written by teachers for use in their own classrooms. A new portion of the website, launched this summer, invites submission of student research projects that use our resources. Finally, we are continually seeking additional Earth System Science datasets that can be offered to our audience through the MY NASA DATA LAS interface.

  19. The Accidental Toxicologist: A Career in the Science of ...

    EPA Pesticide Factsheets

    This PowerPoint presentation is part of a Health Science Career fair for Wake County, NC high school students. The purpose is to familiarize students with careers in the health sciences and the education necessary to be eligible for those careers. This presentation is part of a Health Science Career fair for Wake County, NC high school students. The purpose is to familiarize students with careers in the health sciences and the education necessary to be eligible for those careers.

  20. International Rules for Pre-College Science Research: Guidelines for Science and Engineering Fairs, 2010-2011

    ERIC Educational Resources Information Center

    Society for Science & the Public, 2011

    2011-01-01

    This paper presents the rules and guidelines of the Intel International Science and Engineering Fair 2011 to be held in Los Angeles, California in May 8-13, 2011. In addition to providing the rules of competition, these rules and guidelines for conducting research were developed to facilitate the following: (1) protect the rights and welfare of…

  1. Clinton Administration announces FY 2001 budget request

    NASA Astrophysics Data System (ADS)

    Showstack, Randy

    Blessed with a strong US. economy the Clinton Administration on February 7 released a fiscal year 2001 federal budget request totaling a whopping $1,835 billion. Most of the funding request is slated for big ticket items including Social Security defense spending, Medicaid, Medicare, and paying down the federal debt. However, within the 19% of the budget that funds non-defense discretionary programs,science agencies receive fairly healthy increases.The National Science Foundation (NSF) budget request would increase NSF funding by 17.3% $675 million and bring the total budget request to $4.6 billion. This includes significant increases for several initiatives: biocomplexity in the environment, information technology research, nanoscale science and engineering, and 21st century workforce. Among the major Earth science projects are launching the Earthscope initiative which includes the US Array and San Andreas Fault Observatory at Depth (SAFOD) and the National Ecological Observatory Network (NEON).

  2. The delta cooperative model: a dynamic and innovative team-work activity to develop research skills in microbiology.

    PubMed

    Rios-Velazquez, Carlos; Robles-Suarez, Reynaldo; Gonzalez-Negron, Alberto J; Baez-Santos, Ivan

    2006-05-01

    The Delta Cooperative Model (DCM) is a dynamic and innovative teamwork design created to develop fundamentals in research skills. High school students in the DCM belong to the Upward Bound Science and Math (UBSM) program at the Inter American University, Ponce Campus. After workshops on using the scientific method, students were organized into groups of three students with similar research interests. Each student had to take on a role within the group as either a researcher, data analyst, or research editor. Initially, each research team developed hypothesis-driven ideas on their proposed project. In intrateam research meetings, they emphasized team-specific tasks. Next, interteam meetings were held to present ideas and receive critical input. Finally, oral and poster research presentations were conducted at the UBSM science fair. Several team research projects covered topics in medical, environmental, and general microbiology. The three major assessment areas for the workshop and DCM included: (i) student's perception of the workshops' effectiveness in developing skills, content, and values; (ii) research team self- and group participation evaluation, and (iii) oral and poster presentation during the science fair. More than 91% of the students considered the workshops effective in the presentation of scientific method fundamentals. The combination of the workshop and the DCM increased student's knowledge by 55% from pre- to posttests. Two rubrics were designed to assess the oral presentation and poster set-up. The poster and oral presentation scores averaged 83% and 75% respectively. Finally, we present a team assessment instrument that allows the self- and group evaluation of each research team. While the DCM has educational plasticity and versatility, here we document how the this model has been successfully incorporated in training and engaging students in scientific research in microbiology.

  3. Positive Outcomes of a Teacher Professional Development Program Promoting Science Research in the Classroom

    NASA Astrophysics Data System (ADS)

    Miller, A.

    2003-12-01

    This presentation will focus on the experiences of a middle school science teacher from Brownsville, TX who attended the NSF-funded Research Based Science Education program during the summer of 2000. RBSE, sponsored by the National Optical Astronomy Observatories based in Tucson, AZ, provided attending teachers the opportunity to interact with and receive instruction from professional astronomers, both at the NOAO facility in Tucson, and at the Kitt Peak Observatory. Teachers were provided with raw astronomical data collected by astronomers and then trained in the use of image processing software for data analysis. Upon returning to the classroom in Brownsville, a research-based after school program was initiated by the teacher for four interested students. The students were given background on the research projects, taught to use the software, and then developed their own research questions in each of the three areas of RBSE: a search for novae in the Andromeda galaxy; an analysis of the number and area of sunspots; and an investigation into spectra of Active Galactic Nuclei. Students came to the classroom after school daily during a large part of the year and generally would work for one to two hours processing and analyzing data. Completed research projects were presented in a variety of formats including: competition at the Brownsville School District, Rio Grande Valley Regional, and Texas State science fairs; publication of professional-style research articles in the RBSE journal; and poster presentations at Research Day at the University of Texas-Brownsville. The students have won numerous awards at all levels of Science Fair competition, have been the subject of three local newspaper articles, and two of them have accelerated their academics to the point of graduating from high school in only two years and have received full college scholarship offers. The students today credit their RBSE experience with increasing their interest level in science, helping them to understand the scientific method and research, and developing the self-confidence that has enabled them to pursue greater academic and personal goals.

  4. Planning a Gender Fair as a Semester-Long Final Project

    ERIC Educational Resources Information Center

    Enck, Suzanne Marie

    2015-01-01

    This semester-long activity for a "Gender Fair" project helps undergraduate students gain an appreciation of gender as a social, historical, and cultural construction that is constituted intersectionally (with race-class-sexuality, at minimum) and fundamentally through communication practices. Specifically, upon completing this project,…

  5. "Physics and Life" - Teachers Meet Scientists at Major EIROforum Event [

    NASA Astrophysics Data System (ADS)

    2003-11-01

    More than 400 selected delegates from 22 European countries will take part in "Physics on Stage 3" , organised by the EIROforum [1] research organisations (CERN, EFDA, EMBL, ESA, ESO, ESRF, ILL) at the ESA ESTEC site (Noordwijk, The Netherlands). It is the culmination of a year-long educational programme and is a central event during the EC-sponsored European Science and Technology Week (November 8-15, 2003). Following the vastly successful preceeding events in 2000 and 2002, the main theme this year is "Physics and Life", reflecting the decision to broaden the Physics on Stage activities to encompass more of the natural sciences within an interdisciplinary approach. As before, European teachers, scientists, curricula organisers and others connected to the national education systems in Europe will gather with the main goal of exploring solutions to stimulate the interest of young people in science, by means of exciting and innovative teaching methods and materials. The rich one-week programme has many components: spectacular and original performances by students and professional actors, intensive encounters at a central fair where each country will present the latest developments from its teaching community at their stands, workshops about a host of crucial themes related to the central mission of this programme, seminars where EIROforum scientists and experienced high school teachers get together to discuss new teaching opportunities based on the latest results from front-line research projects at Europe's leading science centres, as well as a publishers fair that will also serve as an international exchange for new educational materials. A mystery cultural event will surprise everyone with its originality. And last but not least, the annual European Science Teaching Awards - the highest distinction in this field - will be presented at the end of the meeting. "Physics on Stage" is a joint project organised by EIROforum, together with the European Physical Society (EPS) and the European Association for Astronomy Education (EAAE) . The project is funded in part by the European Commission and takes place under the auspices of the European Science and Technology Week 2003. It is directed by the EIROforum Working Group on Outreach that brings together key members of the seven organisations' respective outreach departments. The "Physics on Stage 3" festival will be opened on Monday, November 10, by His Royal Highness, Prince Johan Friso of the Netherlands. Among the distinguished guests will also be Her Excellency, Mrs. Maria van der Hoeven, the Dutch Minister of Education, Culture and Science, as well as several Directors-General of the EIROforum organisations. This "Physics on Stage 3" festival is the most visible event within a year-long programme with the very active involvement of National Committees in two dozen European countries, each of which organised national events or competitions, during which the 400 delegates to the festival were selected for their outstanding projects to promote science teaching. Among the many entries, for example, two young physicists from Germany focus on the beauty of physical phenomena, producing fractals and demonstrating the "Theremin", the only musical instrument played without being touched. In another demonstration, a team from the UK explore the nature of sound and the theme of genetics through drama, music and physical theatre. In this third international festival of physics education, biological and biochemical themes will also play a major role. As usual, the colourful centrepiece of the week is the Fair. Every country has its own stand where delegates show their new, exciting and surprising projects, innovative software, elegant experiments, etc. In this highly inspiring atmosphere, the teachers exchange practical experience and insights, learning from each other and preparing themselves to bring back to their respective countries a rich harvest of new ideas and inspiration for better teaching of science. "Physics on Stage 3" is thus a unique international event, both in terms of international exchange, opportunities for collaboration, as well as encounters between the still all too separate worlds of school education and state-of-the-art science and technology. The organisers cordially invite journalists to take part in this spectacular event, an extraordinary opportunity in political as well as in cultural, scientific and visual terms.

  6. 18 CFR 4.10 - Valuation data.

    Code of Federal Regulations, 2012 CFR

    2012-04-01

    ... PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act § 4.10... Power Act that requires the determination of the fair value of a project already constructed, the... a statement to the effect that the actual legitimate original cost, or if not known, the estimated...

  7. 18 CFR 4.10 - Valuation data.

    Code of Federal Regulations, 2014 CFR

    2014-04-01

    ... PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act § 4.10... Power Act that requires the determination of the fair value of a project already constructed, the... a statement to the effect that the actual legitimate original cost, or if not known, the estimated...

  8. 18 CFR 4.10 - Valuation data.

    Code of Federal Regulations, 2013 CFR

    2013-04-01

    ... PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act § 4.10... Power Act that requires the determination of the fair value of a project already constructed, the... a statement to the effect that the actual legitimate original cost, or if not known, the estimated...

  9. Sources of Anxiety and the Meaning of Participation in/for Science Fairs: A Canadian Case

    ERIC Educational Resources Information Center

    Reis, Giuliano; Dionne, Liliane; Trudel, Louis

    2015-01-01

    Although anxiety is a significant emotional element of formal school science, little is known about how anxiety is originated and managed in the context of science fairs. The purpose of the present study was to investigate how a group of students in Grades 7 to 12 discursively (re)produce anxiety and its management from the perspective of their…

  10. Metaphoric Perceptions of the Students of the Sports Sciences Faculty Regarding the Concept of Fair-Play

    ERIC Educational Resources Information Center

    Çaglayan, Hakan Salim; Gül, Özgür

    2017-01-01

    The objective of this study is to reveal the perceptions of the students of the sports sciences faculty regarding the concept of "Fair-Play" by means of metaphors. 275 students [male[subscript (n = 173)], female [subscript (n = 102)

  11. The World Science Festival

    NASA Astrophysics Data System (ADS)

    Pazmino, J.

    2012-06-01

    (Abstract only) New York City in the late 20th century rose to be a planetary capital for the sciences, not just astronomy. This growth was mainly in the academic sector but a parallel growth occurred in the public and home field. With the millennium crossing, scientists in New York agitated for a celebration of the City as a place for a thriving science culture. In 2008 they began World Science Festival. 2011 is the fourth running, on June 1-5, following the AAVSO/AAS meetings. World Science Festival was founded by Dr. Brian Greene, Columbia University, and is operated through the World Science Foundation. The Festival is "saturation science" all over Manhattan in a series of lectures, shows, exhibits, performances. It is staged in "science" venues like colleges and musea, but also in off-science spaces like theaters and galleries. It is a blend from hard science, with lectures like those by us astronomers, to science-themed works of art, dance, music. Events are fitted for the public, either for free or a modest fee. While almost all events are on Manhattan, effort has been made to geographically disperse them, even to the outer boroughs. The grand finale of World Science Festival is a street fair in Washington Square. Science centers in booths, tents, and pavilions highlight their work. In past years this fair drew 100,000 to 150,000 visitors. The entire Festival attracts about a quarter-million attendees. NYSkies is a proud participant at the Washington Square fair. It interprets the "Earth to the Universe" display, debuting during IYA-2009. Attendance at "Earth..." on just the day of the fair plausibly is half of all visitors in America. The presentation shows the scale and scope of World Science Festival, its relation to the City, and how our astronomers work with it.

  12. The World Science Festival

    NASA Astrophysics Data System (ADS)

    Pazmino, John

    2011-05-01

    New York City in the late 20th century rose to be a planetary capital for the sciences, not just astronomy. This growth is mainly in the academic sector but a parallel growth occurred in the public and home field. With the millennium crossing scientists in New York agitated for a celebration of the City as a place for a thriving science culture. In 2008 they began World Science Festival. 2011 is the fourth running, on June 1st-5th, following AAVSO/AAS. World Science Festival was founded by Dr Brian Greene, Columbia University, and is operated thru World Science Foundation. The Festival is 'saturation science' all over Manhattan in a series of lectures, shows, exhibits, performances. It is staged in 'science' venues like colleges and musea, but also in off-science spaces like theaters and galleries. It is a blend of hard science, with lectures like those by us astronomers to science-themed works of art, dance, music. Events are fitted for the public, either for free or a modest fee. While almost all events are on Manhattan, effort is done to geographicly disperse them, even to the outer boros. The grand finale of World Science Festival is a street fair in Washington Square. Science centers in booths, tents, pavilions highlight their work. This fair drew in past years 100,000 to 150,000 visitors. The entire Festival attracts about a quarter million. NYSkies is a proud participant at the Washington Square fair. It interprets the 'Earth to the Universe' display, debuting during IYA-2009. Attendance at 'Earth ...' on just the day of the fair plausibly is half of all visitors in America. The presentation shows the scale and scope of World Science Festival, its relation to the City, and how our astronomers work with it.

  13. Making science education meaningful for American Indian students: The effect of science fair participation

    NASA Astrophysics Data System (ADS)

    Welsh, Cynthia Ann

    Creating opportunities for all learners has not been common practice in the United States, especially when the history of Native American educational practice is examined (Bull, 2006; Chenoweth, 1999; Starnes, 2006a). The American Indian Science and Engineering Society (AISES) is an organization working to increase educational opportunity for American Indian students in science, engineering, and technology related fields (AISES, 2005). AISES provides pre-college support in science by promoting student science fair participation. The purpose of this qualitative research is to describe how American Indian student participation in science fairs and the relationship formed with their teacher affects academic achievement and the likelihood of continued education beyond high school. Two former American Indian students mentored by the principal investigator participated in this study. Four ethnographic research methods were incorporated: participant observation, ethnographic interviewing, search for artifacts, and auto-ethnographic researcher introspection (Eisenhart, 1988). After the interview transcripts, photos documenting past science fair participation, and researcher field notes were analyzed, patterns and themes emerged from the interviews that were supported in literature. American Indian academic success and life long learning are impacted by: (a) the effects of racism and oppression result in creating incredible obstacles to successful learning, (b) positive identity formation and the importance of family and community are essential in student learning, (c) the use of best practice in science education, including the use of curricular cultural integration for American Indian learners, supports student success, (d) the motivational need for student-directed educational opportunities (science fair/inquiry based research) is evident, (e) supportive teacher-student relationships in high school positively influences successful transitions into higher education. An overarching theme presented itself embedded within all themes: the importance of understanding the continued resiliency of the American Indian culture as it relates to success. Ultimately, for long-lasting change to occur, teachers and the community must focus on eliminating educational barriers, while supporting academic success, in order to initiate renewal and school wide change.

  14. White House Science Fair

    NASA Image and Video Library

    2014-05-27

    NASA Administrator Charles Bolden poses with an all-girl engineering team that participated in the White House Science Fair. "Team Rocket Power" was one of 100 teams that qualified for last year’s Team America Rocketry Challenge (TARC). Nia'mani Robinson, 15, Jasmyn Logan, 15, and Rebecca Chapin-Ridgely, 17, gave up their weekends and free time after school to build and test their bright purple rocket, which is designed to launch to an altitude of about 750 ft, and then return a “payload” (an egg) to the ground safely. The fourth White House Science Fair was held at the White House on May 27, 2014 and included 100 students from more than 30 different states who competed in science, technology, engineering, and math (STEM) competitions. (Photo Credit: NASA/Aubrey Gemignani)

  15. 40 CFR 35.6340 - Disposal of CERCLA-funded property.

    Code of Federal Regulations, 2010 CFR

    2010-07-01

    ... has stopped supporting the project. (b) Supplies. (1) If supplies have an aggregate fair market value.... (2) If the supplies remaining at the end of the project period have an aggregate fair market value of... actions at the direction of EPA: (i) Use the supplies on another CERCLA project and reimburse the original...

  16. For Argument's Sake: the shadow side of argumentation and debate in the science classroom (Invited)

    NASA Astrophysics Data System (ADS)

    Berbeco, M.; McCaffrey, M.

    2013-12-01

    Though the science on climate change is clear, those dismissive of current findings and future projections continue to influence the public sphere. This is never more problematic than in an educational setting, where a concern for fairness has driven the push for unscientific material to be used to balance the science. The introduction of the Next Generation Science Standards in many states across the country, which emphasizes the use of argumentation as a theme for engaging students in critical thinking, and the appeal of having students 'debate' politically controversial concepts such as climate change could unintentionally undermine the science by casting doubt and manufacturing 'controversy' where scientifically there is none. How can scientists help support teachers to use appropriate material for educating about climate change? Where is the line between supporting good science and activism? How can teachers separate the science from the politics without undermining its value in informing policy decisions? In this presentation, we will address how teachers can manage these challenges to engage students about politically and socially controversial topics while maintaining a clear, current and robust scientific basis for instruction.

  17. White House Science Fair

    NASA Image and Video Library

    2014-05-27

    Girl Scout troop 2612 members from Tulsa, OK take photos of one another with Google Glass at the White House Science Fair Tuesday, May 27, 2014. Avery Dodson, 6; Natalie Hurley, 8; Miriam Schaffer, 8; Claire Winton, 8; and Lucy Claire Sharp, 8 participated in the Junior FIRST Lego League's Disaster Blaster Challenge, which invites elementary-school-aged students from across the country to explore how simple machines, engineering, and math can help solve problems posed by natural disasters. The girls invented the "Flood Proof Bridge" and built a model mechanizing the bridge using motors and developing a computer program to automatically retract the bridge when flood conditions are detected. The fourth White House Science Fair was held at the White House and included 100 students from more than 30 different states who competed in science, technology, engineering, and math (STEM) competitions. (Photo Credit: NASA/Aubrey Gemignani)

  18. Center for Advancing ystemic Heliophysics Education (CAHEd): Outreach through Community Building

    NASA Astrophysics Data System (ADS)

    Whitman, K.; Kadooka, M.

    2012-12-01

    In 2010, the Center for Advancing ystemic Heliophysics Education (CAHEd) was established at the University of Hawaii Institute for Astronomy to promote public outreach and education of solar astronomy and heliophysics. The primary objectives of CAHEd are to increase public awareness of the significance of heliophysics and space weather through lectures, open houses, and online resources. In addition, CAHEd works to educate secondary teachers and students on physics concepts essential for understanding heliophysics ideas. For the first two years of the NASA sponsored grant, CAHEd has focused its efforts on teachers and students in Hawaii. Approaching its third year, CAHEd has begun to expand to a national level, partnering with teachers in locations across the United States. Two core goals of CAHEd will be discussed here: collaboration with a select group of Master Teachers and student mentoring in research projects. CAHEd has built a partnership with over a dozen Master Teachers that work with scientists to develop curriculum for the middle and high school classroom. These teachers come from diverse backgrounds with a variety of scientific experiences. Master Teachers play the important role of assessing and improving CAHEd curriculum and provide support for CAHEd activities. All Master Teachers participate in in-depth multi-day workshops that allow them to develop a deeper understanding of the science behind heliophysics. After building a strong background, Master Teachers organize workshops, growing a community of teachers who incorporate heliophysics into their curriculum. Scientists also work closely with middle school and high school students who wish to pursue study in heliophysics. Student research is a fundamental goal of CAHEd and scientists work with students to complete projects for school and state science fairs. Four students have completed award winning heliophysics projects to date and three of the four students have gone on to pursue a second science fair project under the tutelage of the same mentor. A selection of science fair projects includes those carried out by high school sophomore Kira Fox (2011), freshman Malia Swartz (2011), and freshman Kayla Ishida (2012). Kira searched for long-term cycles in solar activity. Using Beryllium-10 data from the GRIP ice core, she applied a Lomb-Scargle Periodogram to identify possible cyclic frequencies, then created a fit to the Be10 data by summing up sine functions with these frequencies. This method reproduced the major maxima and minima present in the last 75,000 years of solar activity. Malia hypothesized that major medical pandemics were more likely to occur during solar minima when the Earth experiences increased galactic cosmic ray flux. She compared the dates of pandemics to sunspot number and Be10 data. Her investigation lead to no correlation between sunspots and pandemics. Kayla asked the question, which flares cause EUV waves? Using SDO data to search for EUV waves visually and flare and CME catalogs, she found that EUV waves are associated with M and X class flares that also generate a CME. Working with students and Master Teachers in a systematic way over multiple years, CAHEd has built long-term relationships with teachers and students, creating a self-sustaining community that collaborates to incorporate heliophysics education into the classroom.

  19. 24 CFR 5.655 - Section 8 project-based assistance programs: Owner preferences in selection for a project or unit.

    Code of Federal Regulations, 2013 CFR

    2013-04-01

    ... in the Affirmative Fair Housing Marketing plan (in accordance with § 108.25 of this title) as a... jurisdiction in which the project is located; (C) Modification of the Affirmative Fair Housing Marketing Plan... with a specific disability. (4) Preference for victims of domestic violence. The owner should consider...

  20. 24 CFR 5.655 - Section 8 project-based assistance programs: Owner preferences in selection for a project or unit.

    Code of Federal Regulations, 2011 CFR

    2011-04-01

    ... in the Affirmative Fair Housing Marketing plan (in accordance with § 108.25 of this title) as a... jurisdiction in which the project is located; (C) Modification of the Affirmative Fair Housing Marketing Plan... with a specific disability. (4) Preference for victims of domestic violence. The owner should consider...

  1. 24 CFR 5.655 - Section 8 project-based assistance programs: Owner preferences in selection for a project or unit.

    Code of Federal Regulations, 2010 CFR

    2010-04-01

    ... in the Affirmative Fair Housing Marketing plan (in accordance with § 108.25 of this title) as a... jurisdiction in which the project is located; (C) Modification of the Affirmative Fair Housing Marketing Plan... with a specific disability. (4) Preference for victims of domestic violence. The owner should consider...

  2. 24 CFR 5.655 - Section 8 project-based assistance programs: Owner preferences in selection for a project or unit.

    Code of Federal Regulations, 2014 CFR

    2014-04-01

    ... in the Affirmative Fair Housing Marketing plan (in accordance with § 108.25 of this title) as a... jurisdiction in which the project is located; (C) Modification of the Affirmative Fair Housing Marketing Plan... with a specific disability. (4) Preference for victims of domestic violence. The owner should consider...

  3. 24 CFR 5.655 - Section 8 project-based assistance programs: Owner preferences in selection for a project or unit.

    Code of Federal Regulations, 2012 CFR

    2012-04-01

    ... in the Affirmative Fair Housing Marketing plan (in accordance with § 108.25 of this title) as a... jurisdiction in which the project is located; (C) Modification of the Affirmative Fair Housing Marketing Plan... with a specific disability. (4) Preference for victims of domestic violence. The owner should consider...

  4. IN13B-1660: Analytics and Visualization Pipelines for Big Data on the NASA Earth Exchange (NEX) and OpenNEX

    NASA Technical Reports Server (NTRS)

    Chaudhary, Aashish; Votava, Petr; Nemani, Ramakrishna R.; Michaelis, Andrew; Kotfila, Chris

    2016-01-01

    We are developing capabilities for an integrated petabyte-scale Earth science collaborative analysis and visualization environment. The ultimate goal is to deploy this environment within the NASA Earth Exchange (NEX) and OpenNEX in order to enhance existing science data production pipelines in both high-performance computing (HPC) and cloud environments. Bridging of HPC and cloud is a fairly new concept under active research and this system significantly enhances the ability of the scientific community to accelerate analysis and visualization of Earth science data from NASA missions, model outputs and other sources. We have developed a web-based system that seamlessly interfaces with both high-performance computing (HPC) and cloud environments, providing tools that enable science teams to develop and deploy large-scale analysis, visualization and QA pipelines of both the production process and the data products, and enable sharing results with the community. Our project is developed in several stages each addressing separate challenge - workflow integration, parallel execution in either cloud or HPC environments and big-data analytics or visualization. This work benefits a number of existing and upcoming projects supported by NEX, such as the Web Enabled Landsat Data (WELD), where we are developing a new QA pipeline for the 25PB system.

  5. Analytics and Visualization Pipelines for Big ­Data on the NASA Earth Exchange (NEX) and OpenNEX

    NASA Astrophysics Data System (ADS)

    Chaudhary, A.; Votava, P.; Nemani, R. R.; Michaelis, A.; Kotfila, C.

    2016-12-01

    We are developing capabilities for an integrated petabyte-scale Earth science collaborative analysis and visualization environment. The ultimate goal is to deploy this environment within the NASA Earth Exchange (NEX) and OpenNEX in order to enhance existing science data production pipelines in both high-performance computing (HPC) and cloud environments. Bridging of HPC and cloud is a fairly new concept under active research and this system significantly enhances the ability of the scientific community to accelerate analysis and visualization of Earth science data from NASA missions, model outputs and other sources. We have developed a web-based system that seamlessly interfaces with both high-performance computing (HPC) and cloud environments, providing tools that enable science teams to develop and deploy large-scale analysis, visualization and QA pipelines of both the production process and the data products, and enable sharing results with the community. Our project is developed in several stages each addressing separate challenge - workflow integration, parallel execution in either cloud or HPC environments and big-data analytics or visualization. This work benefits a number of existing and upcoming projects supported by NEX, such as the Web Enabled Landsat Data (WELD), where we are developing a new QA pipeline for the 25PB system.

  6. Exploring the Changes in Students' Understanding of the Scientific Method Using Word Associations

    NASA Astrophysics Data System (ADS)

    Gulacar, Ozcan; Sinan, Olcay; Bowman, Charles R.; Yildirim, Yetkin

    2015-10-01

    A study is presented that explores how students' knowledge structures, as related to the scientific method, compare at different student ages. A word association test comprised of ten total stimulus words, among them experiment, science fair, and hypothesis, is used to probe the students' knowledge structures. Students from grades four, five, and eight, as well as first-year college students were tested to reveal their knowledge structures relating to the scientific method. Younger students were found to have a naïve view of the science process with little understanding of how science relates to the real world. However, students' conceptions about the scientific process appear to be malleable, with science fairs a potentially strong influencer. The strength of associations between words is observed to change from grade to grade, with younger students placing science fair near the center of their knowledge structure regarding the scientific method, whereas older students conceptualize the scientific method around experiment.

  7. Wildlife, Snow, Coffee, and Video: The IPY Activities of the University of Alaska Young Researchers' Network

    NASA Astrophysics Data System (ADS)

    Pringle, D.; Alvarez-Aviles, L.; Carlson, D.; Harbeck, J.; Druckenmiller, M.; Newman, K.; Mueller, D.; Petrich, C.; Roberts, A.; Wang, Y.

    2007-12-01

    The University of Alaska International Polar Year (IPY) Young Researchers' Network is a group of graduate students and postdoctoral fellows. Our interdisciplinary group operates as a volunteer network to promote the International Polar Year through education and outreach aimed at the general public and Alaskan students of all ages. The Young Researchers' Network sponsors and organizes science talks or Science Cafés by guest speakers in public venues such as coffee shops and bookstores. We actively engage high school students in IPY research concerning the ionic concentrations and isotopic ratios of precipitation through Project Snowball. Our network provides hands-on science activities to encourage environmental awareness and initiate community wildlife monitoring programs such as Wildlife Day by Day. We mentor individual high school students pursuing their own research projects related to IPY through the Alaska High School Science Symposium. Our group also interacts with the general public at community events and festivals to share the excitement of IPY for example at the World Ice Art Championship and Alaska State Fair. The UA IPY Young Researchers' Network continues to explore new partnerships with educators and students in an effort to enhance science and education related to Alaska and the polar regions in general. For more information please visit: http://ipy-youth.uaf.edu or e-mail: ipy-youth@alaska.edu

  8. 78 FR 19727 - Notice of Proposed Information Collection: Comment Request Affirmative Fair Housing Marketing...

    Federal Register 2010, 2011, 2012, 2013, 2014

    2013-04-02

    ... Information Collection: Comment Request Affirmative Fair Housing Marketing (AFHM) Plan AGENCY: Office of the... (marketing efforts) to assure that they meet the Fair Housing guidelines in how the project is marketed to.... This Notice also lists the following information: Title of Proposal: Affirmative Fair Housing Marketing...

  9. Fair Play: A Study of Scientific Workforce Trainers’ Experience Playing an Educational Video Game about Racial Bias

    PubMed Central

    Kaatz, Anna; Carnes, Molly; Gutierrez, Belinda; Savoy, Julia; Samuel, Clem; Filut, Amarette; Pribbenow, Christine Maidl

    2017-01-01

    Explicit racial bias has decreased in the United States, but racial stereotypes still exist and conspire in multiple ways to perpetuate the underparticipation of Blacks in science careers. Capitalizing on the potential effectiveness of role-playing video games to promote the type of active learning required to increase awareness of and reduce subtle racial bias, we developed the video game Fair Play, in which players take on the role of Jamal, a Black male graduate student in science, who experiences discrimination in his PhD program. We describe a mixed-methods evaluation of the experience of scientific workforce trainers who played Fair Play at the National Institutes of Health Division of Training Workforce Development and Diversity program directors’ meeting in 2013 (n = 47; 76% female, n = 34; 53% nonwhite, n = 26). The evaluation findings suggest that Fair Play can promote perspective taking and increase bias literacy, which are steps toward reducing racial bias and affording Blacks equal opportunities to excel in science. PMID:28450447

  10. Exposing and deposing hyper-economized school science

    NASA Astrophysics Data System (ADS)

    Bencze, John Lawrence

    2010-06-01

    Despite indications of the problematic nature of laissez faire capitalism, such as the convictions of corporate leaders and the global financial crisis that appeared to largely stem from a de-regulated financial services industry, it seems clear that societies and environments continue to be strongly influenced by hyper-economized worldviews and practices. Given the importance of societal acceptance of a potentially dominant ideological perspective, it is logical to assume that it would be critical for students to be prepared to function in niches prioritizing unrestricted for-profit commodity exchanges. Indeed, in their article in this issue, Lyn Carter and Ranjith Dediwalage appear to support this claim in their analyses of the large-scale and expensive Australian curriculum and instruction project, Sustainability by the Bay. More specifically, they effectively demonstrate that this project manifests several characteristics that would suggest neoliberal and neoconservative influences—ideological perspectives that they argue are largely fundamental to the functioning of the global economic system. In this forum article, possible adverse effects of neoliberalism and neoconservatism on school science are discussed—with further justification for Carter and Dediwalage's concerns. Additionally, however, this article raises the possibility of subverting neoliberalism and neoconservatism in science education through application of communitarian ideals.

  11. A Future Fair: Building Tomorrow Today.

    ERIC Educational Resources Information Center

    Weatherly, Myra S.

    1992-01-01

    Gifted intermediate-level students in Greenville, South Carolina, held a Future Fair in which students completed projects and developed critical and creative thinking skills as they investigated real problems. Projects such as models, inventions, photo essays, and creative writing focused on future schools, art, fashions, space travel, and other…

  12. Explore Elementary Teachers' Professional Knowledge of Guiding Science Fair Product by Using Different Instruction Model

    ERIC Educational Resources Information Center

    Lu, Chow-Chin

    2013-01-01

    This research is about using two different instruction models, "theory course combined with sample introduction" and "theory course combined with case method teaching", to instruct elementary teachers on how to guide the science fair product in two courses (16 and 12 teachers in each class) and observe their guiding tactics after the instructed…

  13. Competence is My Watchword: An Analysis of the Relationship between Competence and Character in the Army

    DTIC Science & Technology

    2016-06-10

    first is a 2013 Army War College manuscript by Colonel (COL) Brian M. Michelson entitled Character Development of U.S. Army Leaders: A Laissez Faire ...Leaders: A Laissez Faire Approach” (Strategy Research Project, US Army War College, 2013), 19. 21 Ibid., 6-7. 22 Ibid., 20. 23 Ibid., 16. 24...2014. Michelson, Brian M. “Character Development of U.S. Army Leaders: A Laissez Faire Approach.” Strategy Research Project, US Army War College

  14. Detailed Project Report. Small Beach Erosion Control Project. Broadkill Beach, Delaware.

    DTIC Science & Technology

    1972-02-01

    this study. TABLE 3 ESTIMATED PROPERTY VALUES IN BROADKILL BEACH (July 1971) Beach Front Property* Entire Community Present Present Fair Value Fair ...between the 14th and 50th year reflect only the land, houses and utilities (minus salvage value estimated at 25% of the fair value ) that are located... Value $ $ 1,221,000 2,866,000 ftExcluding beach area. >4’ 5 11. The water entering Delaware Bay from Delaware River is polluted, but the degree of

  15. Student Intern Freed Competes at Intel ISEF, Two Others Awarded at Local Science Fair | Poster

    Cancer.gov

    Class of 2014–2015 Werner H. Kirsten (WHK) student intern Rebecca “Natasha” Freed earned a fourth-place award in biochemistry at the 2015 Intel International Science and Engineering Fair (ISEF), the largest high school science research competition in the world, according to the Society for Science & the Public’s website. Freed described the event as “transformative experience,” where she was able to present her research to “experts, including Nobel laureates, as well as members of the general community and, of course, to [other students].”

  16. Developing Conceptions of Fair Contest Procedures and the Understanding of Skill and Luck.

    ERIC Educational Resources Information Center

    Thorkildsen, Theresa A.; White-McNulty, Lisa

    2002-01-01

    Contrary to assumptions about aversive effects of competition on achievement motivation, in this study young people saw academic contests as fair. When participants completed structural interviews on fair ways to organize science contests and on differentiation of skill and luck, age-related trends in their conceptions of procedural justice were…

  17. Publishing FAIR Data: An Exemplar Methodology Utilizing PHI-Base.

    PubMed

    Rodríguez-Iglesias, Alejandro; Rodríguez-González, Alejandro; Irvine, Alistair G; Sesma, Ane; Urban, Martin; Hammond-Kosack, Kim E; Wilkinson, Mark D

    2016-01-01

    Pathogen-Host interaction data is core to our understanding of disease processes and their molecular/genetic bases. Facile access to such core data is particularly important for the plant sciences, where individual genetic and phenotypic observations have the added complexity of being dispersed over a wide diversity of plant species vs. the relatively fewer host species of interest to biomedical researchers. Recently, an international initiative interested in scholarly data publishing proposed that all scientific data should be "FAIR"-Findable, Accessible, Interoperable, and Reusable. In this work, we describe the process of migrating a database of notable relevance to the plant sciences-the Pathogen-Host Interaction Database (PHI-base)-to a form that conforms to each of the FAIR Principles. We discuss the technical and architectural decisions, and the migration pathway, including observations of the difficulty and/or fidelity of each step. We examine how multiple FAIR principles can be addressed simultaneously through careful design decisions, including making data FAIR for both humans and machines with minimal duplication of effort. We note how FAIR data publishing involves more than data reformatting, requiring features beyond those exhibited by most life science Semantic Web or Linked Data resources. We explore the value-added by completing this FAIR data transformation, and then test the result through integrative questions that could not easily be asked over traditional Web-based data resources. Finally, we demonstrate the utility of providing explicit and reliable access to provenance information, which we argue enhances citation rates by encouraging and facilitating transparent scholarly reuse of these valuable data holdings.

  18. Student attitudes toward science and sciencerelated careers: A program designed to promote a stimulating gender-free learning environment

    NASA Astrophysics Data System (ADS)

    Mason, Cheryl L.; Butler Kahle, Jane

    A project designed to foster the full and fair participation of girls in high-school science classes addressed obstacles, both perceived and actual, to equal participation. In order to modify existing classroom techniques and environments, a Teacher Intervention Program was designed. By means of a workshop and periodic personal communications, teachers were sensitized to the importance of a stimulating, gender-free learning environment. In addition, they were presented with a variety of methods and materials which had been shown to encourage girls in science. Twelve teachers, who were selected randomly, taught in diverse communities throughout one Midwestern state. The subjects tested were students in 24 general biology classes taught by the 12 teachers. Although both qualitative and quantitative measures were used during the research, only the quantitative results are discussed in this paper. Using ANOVA's, treatment group by student sex, a comparison of the mean scores was made for all students, as well as for all females and for all males. The results indicated that the experimental group, compared to the control group, had significantly higher mean scores on tests of attitudes toward science, perceptions of science, extracurricular science activities, and interest in a science-related career.

  19. WHK Interns Sweep Entire Category at Frederick County Science Fair | Poster

    Cancer.gov

    By Nancy Parrish, Staff Writer The competitors in the cellular and molecular biology category of the Frederick County Science and Engineering Fair on March 22–23 didn’t stand a chance against the Werner H. Kirsten student interns at the National Cancer Institute at Frederick. These interns swept the entire category, with Madelyne Xiao, a rising intern, winning first place;

  20. The Role of Educational Leadership on Participation in the Costa Rican National Program of Science and Technology Fairs at Escuela Abraham Lincoln in the Coastal Region

    ERIC Educational Resources Information Center

    Marquez, Fernando

    2016-01-01

    The purpose of this study was to identify the role that Costa Rican educational leaders play in implementing the National Program of Science and Technology Fairs (Programa Nacional de Ferias de Ciencia y Tecnologia [PRONAFECYT]) initiative. The study provides an examination of leadership practices, instructional strategies, and professional…

  1. Whistling Tea Kettles, Train Whistles, and Organ Pipes

    NASA Astrophysics Data System (ADS)

    Greenslade, Thomas B.

    2016-12-01

    The object on the right-hand side of Fig. 1 is the whistling mechanism of an old-fashioned tea kettle. This started me thinking about similar devices in which a thin blade of air strikes a sharp wedge and a resonator is used to pick out specific frequencies. This note tells how I went about using the frequency spectrum application on a smartphone to learn more about these systems. This would seem to be a good line of small-scale research that would appeal to the introductory physics student who is searching for a science fair project.

  2. Engaging Scientists with the CosmoQuest Citizen Science Virtual Research Facility

    NASA Astrophysics Data System (ADS)

    Grier, Jennifer A.; Gay, Pamela L.; Buxner, Sanlyn; Noel-Storr, Jacob; CosmoQuest Team

    2016-10-01

    NASA Science Mission Directorate missions and research return more data than subject matter experts (SMEs - scientists and engineers) can effectively utilize. Citizen scientist volunteers represent a robust pool of energy and talent that SMEs can draw upon to advance projects that require the processing of large quantities of images, and other data. The CosmoQuest Virtual Research Facility has developed roles and pathways to engage SMEs in ways that advance the education of the general public while producing science results publishable in peer-reviewed journals, including through the CosmoQuest Facility Small Grants Program and CosmoAcademy. Our Facility Small Grants Program is open to SMEs to fund them to work with CosmoQuest and engage the public in analysis. Ideal projects have a specific and well-defined need for additional eyes and minds to conduct basic analysis and data collection (such as crater counting, identifying lineaments, etc.) Projects selected will undergo design and implementation as Citizen Science Portals, and citizen scientists will be recruited and trained to complete the project. Users regularly receive feedback on the quality of their data. Data returned will be analyzed by the SME and the CQ Science Team for joint publication in a peer-reviewed journal. SMEs are also invited to consider presenting virtual learning courses in the subjects of their choice in CosmoAcademy. The audience for CosmoAcademy are lifelong-learners and education professionals. Classes are capped at 10, 15, or 20 students. CosmoAcademy can also produce video material to archive seminars long-term. SMEs function as advisors in many other areas of CosmoQuest, including the Educator's Zone (curricular materials for K-12 teachers), Science Fair Projects, and programs that partner to produce material for podcasts and planetaria. Visit the CosmoQuest website at cosmoquest.org to learn more, and to investigate current opportunities to engage with us. CosmoQuest is funded through individual donations, through NASA Cooperative Agreement NNX16AC68A, and through additional grants and contracts that are listed on the About page of our website, cosmoquest.org.

  3. Livestock Judges Training Provides Hands-On Experience

    ERIC Educational Resources Information Center

    Nash, Scott; Harrison, Steve; Packham, Joel; Sanchez, Dawn; Jensen, Jim; Kaysen, Brett; King, Marc

    2016-01-01

    The judging of a market animal at a fair is the highlight of a youth-owned livestock project. Livestock judges are hired to evaluate youth projects at fairs. They are critical ambassadors for agriculture and influence countless youths and adults. Judges must be knowledgeable about current animal evaluation methods that support youth development.…

  4. 78 FR 17703 - Federal Property Suitable as Facilities To Assist the Homeless

    Federal Register 2010, 2011, 2012, 2013, 2014

    2013-03-22

    ... to fair conditions; fairly significant deterioration on interior wood frame in several places...: Agriculture Property Number: 15201310019 Status: Unutilized Comments: 2,432 sf.; office; fair conditions....; poor conditions; vacant South Dakota Big Bend Project 33573 N. Shore Rd. Chamberlin SD 57325...

  5. Learning the scientific method using GloFish.

    PubMed

    Vick, Brianna M; Pollak, Adrianna; Welsh, Cynthia; Liang, Jennifer O

    2012-12-01

    Here we describe projects that used GloFish, brightly colored, fluorescent, transgenic zebrafish, in experiments that enabled students to carry out all steps in the scientific method. In the first project, students in an undergraduate genetics laboratory course successfully tested hypotheses about the relationships between GloFish phenotypes and genotypes using PCR, fluorescence microscopy, and test crosses. In the second and third projects, students doing independent research carried out hypothesis-driven experiments that also developed new GloFish projects for future genetics laboratory students. Brianna Vick, an undergraduate student, identified causes of the different shades of color found in orange GloFish. Adrianna Pollak, as part of a high school science fair project, characterized the fluorescence emission patterns of all of the commercially available colors of GloFish (red, orange, yellow, green, blue, and purple). The genetics laboratory students carrying out the first project found that learning new techniques and applying their knowledge of genetics were valuable. However, assessments of their learning suggest that this project was not challenging to many of the students. Thus, the independent projects will be valuable as bases to widen the scope and range of difficulty of experiments available to future genetics laboratory students.

  6. Character Development of U.S. Army Leaders: A Laissez Faire Approach

    DTIC Science & Technology

    2013-03-01

    Character Development of U.S. Army Leaders: A Laissez Faire Approach by Colonel Brian M. Michelson United States Army...Army Leaders: A Laissez Faire Approach 5a. CONTRACT NUMBER 5b. GRANT NUMBER 5c. PROGRAM ELEMENT NUMBER 6. AUTHOR(S) Colonel Brian M...STRATEGY RESEARCH PROJECT Character Development of U.S. Army Leaders: A Laissez Faire Approach by Colonel Brian M

  7. Reliability and Validity: A Sine Qua Non for Fair Assessment of Undergraduate Technical and Vocational Education Projects in Nigerian Universities

    ERIC Educational Resources Information Center

    John, A. C.

    2015-01-01

    The aim of the study was to examine the importance of reliability and validity as necessary foundation for fair assessment. The concepts of reliability, validity, fair assessment and their relationships were analysed. Qualities of fair assessment were discussed. A number of recommendations were made to make assessors be more cautious in award of…

  8. Does gender bias influence awards given by societies?

    NASA Astrophysics Data System (ADS)

    Holmes, Mary Anne; Asher, Pranoti; Farrington, John; Fine, Rana; Leinen, Margaret S.; LeBoy, Phoebe

    2011-11-01

    AGU is a participant in a U.S. National Science Foundation (NSF)-funded project called Advancing Ways of Awarding Recognition in Disciplinary Societies (AWARDS), which seeks to examine whether gender bias affects selection of recipients of society awards. AGU is interested in learning why there is a higher proportion of female recipients of service and education awards over the past 2 decades. Combined with a lower rate of receipt of research awards, these results suggest that implicit (subconscious) bias in favor of male candidates still influences awardee selection. Six other professional societies (American Chemical Society, American Mathematical Society, American Society of Anesthesiologists, Mathematical Association of America, Society for Neuroscience, and Society for Industrial and Applied Mathematics) are participating in the project. Volunteers from each participant society attended an Association for Women in Science (AWIS)-sponsored workshop in May 2010 to examine data and review literature on best practices for fair selection of society awardees. A draft proposal for implementing these practices will be brought before the AGU Council and the Honors and Recognition Committee at their upcoming meetings.

  9. Using Recreational Drones to Promote STEM Learning

    NASA Astrophysics Data System (ADS)

    Olds, S. E.; Dahlman, L. E.; Mooney, M. E.; Russell, R. M.

    2017-12-01

    The popularity of unmanned aerial vehicles (UAVs or drones) as a fun, inexpensive (<$100), and easy to fly "toy" continues to grow yearly. Flying drones can also serve as a great entry point to stimulate curiosity and encourage students to engage in science, technology, engineering, and math (STEM) investigations. Leveraging the popularity of recreational drones, the Education Committee at the Earth System Information Partners (ESIP) has worked with educators, researchers, and data scientists to develop a Drones for STEM initiative to inspire learners to use drones as a platform to collect and analyze local-scale data using lightweight cameras and/or sensors. In 2016, the initiative developed learning activity outlines and piloted the materials at an ESIP-sponsored teacher workshop and National Science Teacher Association sessions. After incorporating feedback from those sessions, ESIP collaborated with the UCAR Center for Science Education to publish finalized activities. Available on the UCAR SciEd website (SciEd.ucar.edu/engineering-activities), the activities encompass skills to measure drone payload, flight height, and velocity. Investigations also encourage the use of repeat photography, comparing images from drones and satellites, and creating 3D structure from motion (SfM) models from overlapping photographs. The site also offers general guidance to develop science projects or science fair investigations using Next Generation Science Standards science and engineering practices. To encourage the use of drones in STEM, UNAVCO and NOAA staff, sponsored by ESIP, led two hands-on workshops this summer; a three half-day workshop at the Earth Educator Rendezvous (EER) and a half-day session during the ESIP Educator Workshop. Participants practiced UAV flying skills, experimented with lightweight sensors, and learned about current drone-enhanced research projects. In small groups, they tested existing activities and designed student-focused investigations. Examples of projects include measuring aeromagnetics, developing 3D topographic models, creating vertical profiles over various land-surfaces at different temporal intervals, and developing a multi-semester drone-focused curriculum. This presentation will elaborate upon the workshops, learning materials, and insights.

  10. Student Involvement in Assessment: A Project Designed to Assess Class Participation Fairly and Reliably

    ERIC Educational Resources Information Center

    Dancer, Diane; Kamvounias, Patty

    2005-01-01

    This article describes a project designed to ensure that class participation in a large introductory commercial law course is assessed fairly and reliably. The subjectivity often associated with this type of assessment is minimized by involving students in the specification of clear criteria and the assessment process as they were asked to assess…

  11. Fair Start for Children: Lessons Learned from Seven Demonstration Projects.

    ERIC Educational Resources Information Center

    Larner, Mary, Ed.; And Others

    In the early 1980s, the Ford Foundation launched a grants program called Child Survival/A Fair Start for Children (CS/FS) that addressed issues related to birth and infant health and development among families that were poor and underserved by traditional human services. This book reports on each of seven CS/FS projects, describing the concerns…

  12. 34 CFR 74.34 - Equipment.

    Code of Federal Regulations, 2010 CFR

    2010-07-01

    ... following standards: (1) For equipment with a current per unit fair market value of $5000 or more, the... the cost of the original project or program to the current fair market value of the equipment. (2) If... the current fair market value of the equipment, plus any reasonable shipping or interim storage costs...

  13. 45 CFR 2543.34 - Equipment.

    Code of Federal Regulations, 2010 CFR

    2010-10-01

    ... used to determine current fair market value where a recipient compensates the Federal awarding agency... following standards. For equipment with a current per unit fair market value of $5,000 or more, the... recipient's participation in the cost of the original project or program to the current fair market value of...

  14. 29 CFR 95.34 - Equipment.

    Code of Federal Regulations, 2010 CFR

    2010-07-01

    ... disposal and sales price or the method used to determine current fair market value where a recipient... following standards. For equipment with a current per unit fair market value of $5,000 or more, the... in the cost of the original project or program to the current fair market value of the equipment. If...

  15. 28 CFR 70.34 - Equipment.

    Code of Federal Regulations, 2010 CFR

    2010-07-01

    ... disposal and sales price or the method used to determine current fair market value where a recipient... equipment with a current per unit fair market value of $5,000 or more, the recipient may retain the... the original project or program to the current fair market value of the equipment. If the recipient...

  16. 22 CFR 518.34 - Equipment.

    Code of Federal Regulations, 2010 CFR

    2010-04-01

    ... used to determine current fair market value where a recipient compensates the Federal awarding agency... following standards. For equipment with a current per unit fair market value of $5,000 or more, the... recipient's participation in the cost of the original project or program to the current fair market value of...

  17. 49 CFR 19.34 - Equipment.

    Code of Federal Regulations, 2010 CFR

    2010-10-01

    ... used to determine current fair market value where a recipient compensates the Federal awarding agency... following standards. For equipment with a current per unit fair market value of $5,000 or more, the... recipient's participation in the cost of the original project or program to the current fair market value of...

  18. 40 CFR 30.34 - Equipment.

    Code of Federal Regulations, 2010 CFR

    2010-07-01

    ... the following standards. For equipment with a current per unit fair market value of $5000 or more, the... cost of the original project or program to the current fair market value of the equipment, plus any... data, including date of disposal and sales price or the method used to determine current fair market...

  19. 7 CFR 550.38 - Equipment.

    Code of Federal Regulations, 2010 CFR

    2010-01-01

    ... or the method used to determine current fair market value where a Cooperator compensates the REE... the current fair market value of the equipment. If the Cooperator has no need for the equipment, the... cost of the original project or program to the current fair market value of the equipment, plus any...

  20. Structural Optimisation Of Payload Fairings

    NASA Astrophysics Data System (ADS)

    Santschi, Y.; Eaton, N.; Verheyden, S.; Michaud, V.

    2012-07-01

    RUAG Space are developing materials and processing technologies for manufacture of the Next Generation Launcher (NGL) payload fairing, together with the Laboratory of Polymer and Composite Technology at the EPFL, in a project running under the ESA Future Launchers Preparatory Program (FLPP). In this paper the general aims and scope of the project are described, details of the results obtained shall be presented at a later stage. RUAG Space design, develop and manufacture fairings for the European launch vehicles Ariane 5 and VEGA using well proven composite materials and production methods which provide adequate cost/performance ratio for these applications. However, the NGL shall make full use of innovations in materials and process technologies to achieve a gain in performance at a much reduced overall manufacturing cost. NGL is scheduled to become operational in 2025, with actual development beginning in 2014. In this current project the basic technology is being developed and validated, in readiness for application in the NGL. For this new application, an entirely new approach to the fairing manufacture is evaluated.

  1. Initiating New Science Partnerships in Rural Education (INSPIRE) Brining STEM Research to 7th-12th Grade Science and Math Classrooms

    NASA Astrophysics Data System (ADS)

    Radencic, S.; McNeal, K. S.; Pierce, D.

    2012-12-01

    The Initiating New Science Partnerships in Rural Education (INSPIRE) program at Mississippi State University (MSU), funded by the NSF Graduate STEM Fellows in K-12 Education (GK12) program, focuses on the advancement of Earth and Space science education in K-12 classrooms. INSPIRE currently in its third year of partnering ten graduate students each year from the STEM fields of Geosciences, Engineering, Physics and Chemistry at MSU with five teachers from local, rural school districts. The five year project serves to enhance graduate student's communication skills as they create interactive lessons linking their STEM research focus to the state and national standards covered in science and math classrooms for grades 7-12 through inquiry experiences. Each graduate student is responsible for the development of two lessons each month of the school year that include an aspect of their STEM research, including the technologies that they may utilize to conduct their STEM research. The plans are then published on the INSPIRE project webpage, www.gk12.msstate.edu, where they are a free resource for any K-12 classroom teacher seeking innovative activities for their classrooms and total over 300 lesson activities to date. Many of the participating teachers and graduate students share activities developed with non-participating teachers, expanding INSPIRE's outreach of incorporating STEM research into activities for K-12 students throughout the local community. Examples of STEM research connections to classroom topics related to earth and ocean science include activities using GPS with GIS for triangulation and measurement of area in geometry; biogeochemical response to oil spills compared to organism digestive system; hydrogeology water quality monitoring and GIS images used as a determinant for habitat suitability in area water; interactions of acids and bases in the Earth's environments and surfaces; and the importance of electrical circuitry in an electrode used in sediment analysis. INSPIRE is striving to create synergy with other education focused grants at MSU, including those that focus on climate literacy and Earth hazards. Graduate students create at least one lesson plan that links their STEM research to climate related topics to share in their assigned K-12 classrooms. They also assist with a science day sponsored at MSU centered on Earth hazards where local middle school students participate. In addition to the development of interactive experiences that bring current STEM research into the classroom, INSPIRE also creates and organizes inquiry activities for National GIS Day each year. Graduate students not only design the GIS explorations focused on hazards, but they also guide middle school students through these explorations. Additionally, all graduate students involved with INSPIRE are required to participate in at least one Science Fair event either at the local school level or at the regional competitions. Participating teachers have noted that several students had science fair projects that included some aspect of the STEM research topics they had learned about from the graduate students in the classroom.

  2. Special Colloquium : Looking at High Energy Physics from a gender studies perspective

    ScienceCinema

    Goetschel, Helene

    2018-01-23

    Human actors, workplace cultures and knowledge production: Gender studies analyse the social constructions and cultural representations of gender. Using methods and tools from the humanities and social science, we look at all areas, including the natural sciences and technology, science education and research labs. After a short introduction to gender studies, the main focus of my talk will be the presentation of selected research findings on gender and high energy physics. You will hear about an ongoing research project on women in neutrino physics and learn about a study on the world of high energy physicists characterised by "rites of passage" and "male tales" told during a life in physics. I will also present a study on how the HEP community communicates, and research findings on the naming culture in HEP. Getting to know findings from another field on your own might contribute to create a high energy physics culture that is fair and welcoming to all genders.

  3. Special Colloquium : Looking at High Energy Physics from a gender studies perspective

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

    Goetschel, Helene

    Human actors, workplace cultures and knowledge production: Gender studies analyse the social constructions and cultural representations of gender. Using methods and tools from the humanities and social science, we look at all areas, including the natural sciences and technology, science education and research labs. After a short introduction to gender studies, the main focus of my talk will be the presentation of selected research findings on gender and high energy physics. You will hear about an ongoing research project on women in neutrino physics and learn about a study on the world of high energy physicists characterised by "rites ofmore » passage" and "male tales" told during a life in physics. I will also present a study on how the HEP community communicates, and research findings on the naming culture in HEP. Getting to know findings from another field on your own might contribute to create a high energy physics culture that is fair and welcoming to all genders.« less

  4. Scientific disputes that spill over into Research Ethics: interview with Maria Cecília de Souza Minayo.

    PubMed

    Minayo, Maria Cecília de Souza

    2015-09-01

    This is an interview with Maria Cecília de Souza Minayo, by university lecturers Iara Coelho Zito Guerriero and Maria Lúcia Magalhães Bosi. It reflects the heat of the current debates surrounding implementation of a specific protocol for evaluation of research in the Human and Social Sciences (HSS), vis-à-vis the current rules set by the National Health Council, which have a clearly biomedical bias. The interview covers the difficulties of introducing appropriate and fair rules for judgment of HSS projects, in the face of a hegemonic understanding of the very concept of science by biologists and medical doctors, who tend not to recognize other approaches unless those approaches adopt their frames of reference. In this case, the National Health Council becomes the arena of this polemic, leading researchers in the human and social sciences to ask themselves whether the health sector has the competency to create rules for other areas of knowledge.

  5. 25 CFR 900.129 - How do the Secretary and Indian tribe or tribal organization arrive at an overall fair and...

    Code of Federal Regulations, 2013 CFR

    2013-04-01

    ... construction project cost information available to them in order to facilitate reaching agreement on an overall fair and reasonable price for the project or part thereof. In order to enhance this communication, the... cost estimate shall be an independent cost estimate based on such information as the following: (1...

  6. 25 CFR 900.129 - How do the Secretary and Indian tribe or tribal organization arrive at an overall fair and...

    Code of Federal Regulations, 2014 CFR

    2014-04-01

    ... construction project cost information available to them in order to facilitate reaching agreement on an overall fair and reasonable price for the project or part thereof. In order to enhance this communication, the... cost estimate shall be an independent cost estimate based on such information as the following: (1...

  7. 25 CFR 900.129 - How do the Secretary and Indian tribe or tribal organization arrive at an overall fair and...

    Code of Federal Regulations, 2012 CFR

    2012-04-01

    ... construction project cost information available to them in order to facilitate reaching agreement on an overall fair and reasonable price for the project or part thereof. In order to enhance this communication, the... cost estimate shall be an independent cost estimate based on such information as the following: (1...

  8. The Entrepreneur Fair: Fifth Grade Student Businesses

    ERIC Educational Resources Information Center

    Moore, Teresa

    2010-01-01

    In twenty years of teaching, the author has never been involved in a project that sparked as much enthusiasm from students, parents, the administration, and other teachers as the Entrepreneur Fair. In an effort to challenge students to become entrepreneurs, the author developed a one-day market called the Entrepreneur Fair at Stonewall Elementary…

  9. Evaluation of the FAIR Program: Teaching Gender Equality to Children

    ERIC Educational Resources Information Center

    Brinkman, Britney G.

    2009-01-01

    The purpose of this study was to explore the impact of the Fairness for All Individuals through Respect (FAIR) program on fifth grade students' understanding of gender as a diversity issue. In particular, this project examined the influence of this program on students' knowledge, self-identity, attitudes about gender roles, experiences of gender…

  10. 10 CFR 600.134 - Equipment.

    Code of Federal Regulations, 2010 CFR

    2010-01-01

    ... the following standards. Equipment with a current per-unit fair market value of less than $5000 may be... with a current per unit fair market value of $5000 or more, the recipient may retain the equipment for... the cost of the original project or program to the current fair market value of the equipment. If the...

  11. Alaska's Secondary Science Teachers and Students Receive Earth Systems Science Knowledge, GIS Know How and University Technical Support for Pre- College Research Experiences: The EDGE Project

    NASA Astrophysics Data System (ADS)

    Connor, C. L.; Prakash, A.

    2007-12-01

    Alaska's secondary school teachers are increasingly required to provide Earth systems science (ESS) education that integrates student observations of local natural processes related to rapid climate change with geospatial datasets and satellite imagery using Geographic Information Systems (GIS) technology. Such skills are also valued in various employment sectors of the state where job opportunities requiring Earth science and GIS training are increasing. University of Alaska's EDGE (Experiential Discoveries in Geoscience Education) program has provided training and classroom resources for 3 cohorts of inservice Alaska science and math teachers in GIS and Earth Systems Science (2005-2007). Summer workshops include geologic field experiences, GIS instruction, computer equipment and technical support for groups of Alaska high school (HS) and middle school (MS) science teachers each June and their students in August. Since 2005, EDGE has increased Alaska science and math teachers' Earth science content knowledge and developed their GIS and computer skills. In addition, EDGE has guided teachers using a follow-up, fall online course that provided more extensive ESS knowledge linked with classroom standards and provided course content that was directly transferable into their MS and HS science classrooms. EDGE teachers were mentored by University faculty and technical staff as they guided their own students through semester-scale, science fair style projects using geospatial data that was student- collected. EDGE program assessment indicates that all teachers have improved their ESS knowledge, GIS knowledge, and the use of technology in their classrooms. More than 230 middle school students have learned GIS, from EDGE teachers and 50 EDGE secondary students have conducted original research related to landscape change and its impacts on their own communities. Longer-term EDGE goals include improving student performance on the newly implemented (spring 2008) 10th grade, standards-based, High School Qualifying Exam, on recruiting first-generation college students, and on increasing the number of Earth science majors in the University of Alaska system.

  12. 7 CFR 3565.354 - Fair housing accommodations.

    Code of Federal Regulations, 2010 CFR

    2010-01-01

    ..., DEPARTMENT OF AGRICULTURE GUARANTEED RURAL RENTAL HOUSING PROGRAM Project Management § 3565.354 Fair housing... in the development of the property, the selection of applicants for housing, and ongoing management...

  13. 7 CFR 3565.354 - Fair housing accommodations.

    Code of Federal Regulations, 2014 CFR

    2014-01-01

    ..., DEPARTMENT OF AGRICULTURE GUARANTEED RURAL RENTAL HOUSING PROGRAM Project Management § 3565.354 Fair housing... in the development of the property, the selection of applicants for housing, and ongoing management...

  14. 7 CFR 3565.354 - Fair housing accommodations.

    Code of Federal Regulations, 2012 CFR

    2012-01-01

    ..., DEPARTMENT OF AGRICULTURE GUARANTEED RURAL RENTAL HOUSING PROGRAM Project Management § 3565.354 Fair housing... in the development of the property, the selection of applicants for housing, and ongoing management...

  15. 7 CFR 3565.354 - Fair housing accommodations.

    Code of Federal Regulations, 2013 CFR

    2013-01-01

    ..., DEPARTMENT OF AGRICULTURE GUARANTEED RURAL RENTAL HOUSING PROGRAM Project Management § 3565.354 Fair housing... in the development of the property, the selection of applicants for housing, and ongoing management...

  16. 7 CFR 3565.354 - Fair housing accommodations.

    Code of Federal Regulations, 2011 CFR

    2011-01-01

    ..., DEPARTMENT OF AGRICULTURE GUARANTEED RURAL RENTAL HOUSING PROGRAM Project Management § 3565.354 Fair housing... in the development of the property, the selection of applicants for housing, and ongoing management...

  17. The Museum of Science and Industry Basic List of Children's Science Books, 1986.

    ERIC Educational Resources Information Center

    Richter, Bernice, Comp.; Wenzel, Duane, Comp.

    This first supplement to the Museum of Science and Industry Basic List of Children's Science Books contains books received for the museum's 13th annual children's science book fair. Children's science books are listed under these headings: animals; astronomy; aviation and space; biography; careers; earth sciences; environment/conservation;…

  18. Fair Play: A Study of Scientific Workforce Trainers' Experience Playing an Educational Video Game about Racial Bias.

    PubMed

    Kaatz, Anna; Carnes, Molly; Gutierrez, Belinda; Savoy, Julia; Samuel, Clem; Filut, Amarette; Pribbenow, Christine Maidl

    2017-01-01

    Explicit racial bias has decreased in the United States, but racial stereotypes still exist and conspire in multiple ways to perpetuate the underparticipation of Blacks in science careers. Capitalizing on the potential effectiveness of role-playing video games to promote the type of active learning required to increase awareness of and reduce subtle racial bias, we developed the video game Fair Play, in which players take on the role of Jamal, a Black male graduate student in science, who experiences discrimination in his PhD program. We describe a mixed-methods evaluation of the experience of scientific workforce trainers who played Fair Play at the National Institutes of Health Division of Training Workforce Development and Diversity program directors' meeting in 2013 ( n = 47; 76% female, n = 34; 53% nonwhite, n = 26). The evaluation findings suggest that Fair Play can promote perspective taking and increase bias literacy, which are steps toward reducing racial bias and affording Blacks equal opportunities to excel in science. © 2017 A. Kaatz et al. CBE—Life Sciences Education © 2017 The American Society for Cell Biology. This article is distributed by The American Society for Cell Biology under license from the author(s). It is available to the public under an Attribution–Noncommercial–Share Alike 3.0 Unported Creative Commons License (http://creativecommons.org/licenses/by-nc-sa/3.0).

  19. Fair market value: taking a proactive approach.

    PubMed

    Romero, Richard A

    2008-04-01

    A valuation report assessing the fair market value of a contractual arrangement should include: A description of the company, entity, or circumstance being valued. Analysis of general economic conditions that are expected to affect the enterprise. Evaluation of economic conditions in the medical services industry. Explanation of the various valuation approaches that were considered. Documentation of key underlying assumptions, including revenue and expense projections, projected profit, and ROI.

  20. Seamonster: A Smart Sensor Web in Southeast Alaska

    NASA Astrophysics Data System (ADS)

    Fatland, D. R.; Heavner, M. J.; Hood, E.; Connor, C.; Nagorski, S.

    2006-12-01

    The NASA Research Opportunities in Space and Earth Science (ROSES) program is supporting a wireless sensor network project as part of its Advanced Information Systems Technology "Smart Sensor Web" initiative. The project, entitled Seamonster (for SouthEast Alaska MONitoring Network for Science, Telecomm, and Education Research) is led by the University of Alaska Southeast (Juneau) in collaboration with Microsoft- Vexcel in Boulder Colorado. This paper describes both the data acquisition components and science research objectives of Seamonster. The underlying data acquisition concept is to facilitate geophysics data acquisition by providing a wireless backbone for data recovery. Other researchers would be encouraged to emplace their own sensors together with short-range wireless (ZigBee, Bluetooth, etc). Through a common protocol the backbone will receive data from these sensors and relay them to a wired server. This means that the investigator can receive their data via email on a daily basis thereby cutting cost and monitoring sensor health. With environmental hardening and fairly high bandwidth and long range (100kbps/50km to 5mpbs/15km per hop) the network is intended to cover large areas and operate in harsh environments. Low power sensors and intelligent power management within the backbone are the dual ideas to contend with typical power/cost/data dilemmas. Seamonster science will focus over the next three years on hydrology and glaciology in a succession of valleys near Juneau in various stages of deglaciation, in effect providing a synopsis of a millennium-timescale process in a single moment. The instrumentation will include GPS, geophones, digital photography, met stations, and a suite of stream state and water quality sensors. Initial focus is on the Lemon Creek watershed with expansion to follow in subsequent years. The project will ideally expand to include marine and biological monitoring components.

  1. KSC-2009-1719

    NASA Image and Video Library

    2009-02-18

    VANDENBERG AIR FORCE BASE, Calif. -- On Launch Complex 576-E at Vandenberg Air Force Base in California, Orbital Science's Jose Castillo and Mark Neuse (right) move in to remove the fairing payload access door on NASA's Orbiting Carbon Observatory, or OCO, spacecraft. Orbital Science's Glenn Weigle and Brett Gladish are nearby (shadows on the fairing) to take the GN2 flow reading. The encapsulated OCO tops Orbital Sciences' Taurus XL rocket, which is scheduled to launch Feb. 24. The spacecraft will collect precise global measurements of carbon dioxide (CO2) in the Earth's atmosphere. Scientists will analyze OCO data to improve our understanding of the natural processes and human activities that regulate the abundance and distribution of this important greenhouse gas. Photo courtesy of Glenn Weigle, Orbital Sciences

  2. KSC-2009-1720

    NASA Image and Video Library

    2009-02-18

    VANDENBERG AIR FORCE BASE, Calif. -- With the fairing door off, Orbital Science's Jose Castillo and Mark Neuse remove the fairing payload access door on NASA's Orbiting Carbon Observatory, or OCO, spacecraft on Launch Complex 576-E at Vandenberg Air Force Base in California. Orbital Science's Glenn Weigle and Brett Gladish stand by to take the GN2 flow reading The encapsulated OCO tops Orbital Sciences' Taurus XL rocket, which is scheduled to launch Feb. 24. The spacecraft will collect precise global measurements of carbon dioxide (CO2) in the Earth's atmosphere. Scientists will analyze OCO data to improve our understanding of the natural processes and human activities that regulate the abundance and distribution of this important greenhouse gas. Photo courtesy of Glenn Weigle, Orbital Sciences

  3. WHK Interns Sweep Entire Category at Frederick County Science Fair | Poster

    Cancer.gov

    By Nancy Parrish, Staff Writer The competitors in the cellular and molecular biology category of the Frederick County Science and Engineering Fair on March 22–23 didn’t stand a chance against the Werner H. Kirsten student interns at the National Cancer Institute at Frederick. These interns swept the entire category, with Madelyne Xiao, a rising intern, winning first place; Maria Hamscher, second place; Ashley Babyak and Dahlia Kronfli tying for third place; and Maham Ahmed receiving an honorable mention.

  4. Rightsizing LISA

    NASA Technical Reports Server (NTRS)

    Stebbins, Robin T.

    2009-01-01

    The LISA science requirements and conceptual design have been fairly stable for over a decade. In the interest of reducing costs, the LISA Project at NASA has looked for simplifications of the architecture, at downsizing of subsystems, and at descopes of the entire mission. This is a natural activity of the formulation phase, and one that is particularly timely in the current NASA budgetary context. There is, and will continue to be, enormous pressure for cost reduction from both ESA and NASA, reviewers and the broader research community. Here, the rationale for the baseline architecture is reviewed, and recent efforts to find simplifications and other reductions that might lead to savings are reported. A few possible simplifications have been found in the LISA baseline architecture. In the interest of exploring cost sensitivity, one moderate and one aggressive descope have been evaluated; the cost savings are modest and the loss of science is not.

  5. Reviews

    NASA Astrophysics Data System (ADS)

    2006-03-01

    WE RECOMMEND It’s About Time: Understanding Einstein’s Relativity An excellent novel explanation of special relativity. The Plane Factory A great way to make projects more quantitative. Spacesaver Microvoltmeter This meter is robust, portable and covers a good range of voltages. Cassell’s Laws of Nature This book covers everything that governs our physical universe. J D Bernal: The Sage of Science Awell researched biography that is hard to put down. AS-Level Physics: The Revision Guide A very good, reasonably priced revision guide. WORTH A LOOK Symmetry and the Beautiful Universe This book on modern physics is fairly readable but a bit haphazard. HANDLE WITH CARE Hover Football An inferior and cheaper version of the Kick Dis. art & science Art students will get more out of this than physics students. WEB WATCH Practicalphysics.org is an excellent site, packed with useful tips and instructions for practical physics experiments. Louisa Jones describes her favourite websites about waves

  6. Science, Pseudo-Science, and Natural Theology.

    ERIC Educational Resources Information Center

    Ferre, Frederick

    1983-01-01

    Religions are unfalsifiable in the short run but open to long-term influence by science. Conversely, scientists sometimes extend their findings to mythic proportions. The struggle between evolutionary science and pseudo-scientific creationism rests on tensions resulting at this interface. Good education and social fairness require greater…

  7. Fairness in Knowing: Science Communication and Epistemic Justice.

    PubMed

    Medvecky, Fabien

    2017-09-22

    Science communication, as a field and as a practice, is fundamentally about knowledge distribution; it is about the access to, and the sharing of knowledge. All distribution (science communication included) brings with it issues of ethics and justice. Indeed, whether science communicators acknowledge it or not, they get to decide both which knowledge is shared (by choosing which topic is communicated), and who gets access to this knowledge (by choosing which audience it is presented to). As a result, the decisions of science communicators have important implications for epistemic justice: how knowledge is distributed fairly and equitably. This paper presents an overview of issues related to epistemic justice for science communication, and argues that there are two quite distinct ways in which science communicators can be just (or unjust) in the way they distribute knowledge. Both of these paths will be considered before concluding that, at least on one of these accounts, science communication as a field and as a practice is fundamentally epistemically unjust. Possible ways to redress this injustice are suggested.

  8. The MY NASA DATA Project: Preparing Future Earth and Environmental Scientists, and Future Citizens

    NASA Astrophysics Data System (ADS)

    Chambers, L. H.; Phelps, C. S.; Phipps, M.; Holzer, M.; Daugherty, P.; Poling, E.; Vanderlaan, S.; Oots, P. C.; Moore, S. W.; Diones, D. D.

    2008-12-01

    For the past 5 years, the MY NASA DATA (MND) project at NASA Langley has developed and adapted tools and materials aimed at enabling student access to real NASA Earth science satellite data. These include web visualization tools including Google Earth capabilities, but also GPS and graphing calculator exercises, Excel spreadsheet analyses, and more. The project team, NASA scientists, and over 80 classroom science teachers from around the country, have created over 85 lesson plans and science fair project ideas that demonstrate NASA satellite data use in the classroom. With over 150 Earth science parameters to choose from, the MND Live Access Server enables scientific inquiry on numerous interconnected Earth and environmental science topics about the Earth system. Teachers involved in the project report a number of benefits, including networking with other teachers nationwide who emphasize data collection and analysis in the classroom, as well as learning about other NASA resources and programs for educators. They also indicate that the MND website enhances the inquiry process and facilitates the formation of testable questions by students (a task that is typically difficult for students to do). MND makes science come alive for students because it allows them to develop their own questions using the same data scientists use. MND also provides educators with a rich venue for science practice skills, which are often overlooked in traditional curricula as teachers concentrate on state and national standards. A teacher in a disadvantaged school reports that her students are not exposed to many educational experiences outside the classroom. MND allows inner city students to be a part of NASA directly. They are able to use the same information that scientists are using and this gives them inspiration. In all classrooms, the MND microsets move students out of their local area to explore global data and then zoom back into their homes realizing that they are a part of the global Earth System. These armchair explorers learn to unite datasets in a region to learn about places like and unlike where they live. In a world that's becoming smaller and smaller with the aid of technology, projects like MND prepare our students for their global future. A teacher located in an area of California strongly impacted by pollution and potential climate changes noted that this project makes available data that are very relevant to issues that will affect her students' lives. She points out that not all scientific information they currently see is in a form that is understandable to an educated citizen, and that the experience with MND will enable her students to have better than average skills not only for deciphering scientific maps and graphs; but also for creating maps and graphics that successfully convey information to others.

  9. A Revamped Science Expo

    ERIC Educational Resources Information Center

    Barth, Lorna

    2007-01-01

    By changing the venue from festival to a required academic exposition, the traditional science fair was transformed into a "Science Expo" wherein students were guided away from cookbook experiments toward developing a question about their environment into a testable and measurable experiment. The revamped "Science Expo" became a night for students…

  10. The Gender and Science Digital Library: Affecting Student Achievement in Science.

    ERIC Educational Resources Information Center

    Nair, Sarita

    2003-01-01

    Describes the Gender and Science Digital Library (GSDL), an online collection of high-quality, interactive science resources that are gender-fair, inclusive, and engaging to students. Considers use by teachers and school library media specialists to encourage girls to enter careers in science, technology, engineering, and math (STEM). (LRW)

  11. Enabling FAIR and Open Data - The Importance of Communities on Influencing Change

    NASA Astrophysics Data System (ADS)

    Stall, S.; Lehnert, K.; Robinson, E.; Parsons, M. A.; Hanson, B.; Cutcher-Gershenfeld, J.; Nosek, B.

    2017-12-01

    Our research ecosystem is diverse and dependent on many interacting stakeholders that influence and support the process of science. These include funders, institutions, libraries, publishers, researchers, data managers, repositories, archives and communities. Process improvement in this ecosystem thus usually needs support by more than one of these many stakeholders. For example, mandates for open data extend across this ecosystem. Solutions require these stakeholders to come together and agree upon improvements. Recently, the value of FAIR and Open Data has encouraged funders to sponsor discussions with tangible agreements that include the steps needed to move the ecosystem towards results. Work by many of these stakeholders over the past years have developed pilot efforts that are ready to be scaled with broader engagement. A partnership of the AGU, Earth Science Information Partners (ESIP), Research Data Alliance (RDA), Center for Open Science, and key publishers including Science, Nature, and the Proceedings of the National Academy of Science (PNAS) have agreed to work together to develop integrated processes, leveraging these pilots, to make FAIR and open data the default for Earth and space science publications. This effort will build on the work of COPDESS.org, ESIP, RDA, the scientific journals, and domain repositories to ensure that well documented data, preserved in a repository with community agreed-upon metadata, and supporting persistent identifiers becomes part of the expected research products submitted in support of each publication.

  12. KSC-2011-7259

    NASA Image and Video Library

    2011-10-06

    CAPE CANAVERAL, Fla. -- In the Payload Hazardous Servicing Facility at NASA's Kennedy Space Center in Florida, the fairing acoustic protection (FAP) system lining the inside of the Atlas V payload fairing for NASA's Mars Science Laboratory (MSL) mission is in view as the fairing is lifted into a vertical position. The FAP protects the payload by dampening the sound created by the rocket during liftoff. The fairing has been uncovered, and preparations are under way to clean it to meet NASA's planetary protection requirements. At left is the other half of the fairing, still uncovered. The fairing will protect the spacecraft from the impact of aerodynamic pressure and heating during ascent. Although jettisoned once the spacecraft is outside the Earth's atmosphere, the fairing must be cleaned to the same exacting standards as the laboratory to avoid the possibility of contaminating it. MSL's components include a compact car-sized rover, Curiosity, which has 10 science instruments designed to search for evidence on whether Mars has had environments favorable to microbial life, including the chemical ingredients for life. The unique rover will use a laser to look inside rocks and release its gasses so that the rover’s spectrometer can analyze and send the data back to Earth. Launch of MSL aboard a United Launch Alliance Atlas V rocket is planned for Nov. 25 from Space Launch Complex 41 on Cape Canaveral Air Force Station. For more information, visit http://www.nasa.gov/msl. Photo credit: NASA/Kim Shiflett

  13. Internet Connections.

    ERIC Educational Resources Information Center

    Lindroth, Linda K.

    1996-01-01

    Annotates 16 World Wide Web (WWW) sites dealing with math and science education matters covered in feature articles for this journal issue. Topics include math fairs, classroom restructuring, and hands-on science. (JW)

  14. One Health in social networks and social media

    PubMed Central

    Mekaru, S.R.; Brownstein, J.S.

    2015-01-01

    Summary In the rapidly evolving world of social media, social networks, mobile applications and citizen science, online communities can develop organically and separately from larger or more established organisations. The One Health online community is experiencing expansion from both the bottom up and the top down. In this paper, the authors review social media’s strengths and weaknesses, earlier work examining Internet resources for One Health, the current state of One Health in social media (e.g. Facebook, Twitter, YouTube) and online social networking sites (e.g. LinkedIn and ResearchGate), as well as social media in One Health-related citizen science projects. While One Health has a fairly strong presence on websites, its social media presence is more limited and has an uneven geographic distribution. In work following the Stone Mountain Meeting, the One Health Global Network Task Force Report recommended the creation of an online community of practice. Professional social networks as well as the strategic use of social media should be employed in this effort. Finally, One Health-related research projects using volunteers (citizen science) often use social media to enhance their recruitment. Including these researchers in a community of practitioners would take full advantage of their existing social media presence. In conclusion, the interactive nature of social media, combined with increasing global Internet access, provides the One Health community with opportunities to meaningfully expand their community and promote their message. PMID:25707189

  15. One Health in social networks and social media.

    PubMed

    Mekaru, S R; Brownstein, J S

    2014-08-01

    In the rapidly evolving world of social media, social networks, mobile applications and citizen science, online communities can develop organically and separately from larger or more established organisations. The One Health online community is experiencing expansion from both the bottom up and the top down. In this paper, the authors review social media's strengths and weaknesses, earlier work examining Internet resources for One Health, the current state of One Health in social media (e.g. Facebook, Twitter, YouTube) and online social networking sites (e.g. LinkedIn and ResearchGate), as well as social media in One Health-related citizen science projects. While One Health has a fairly strong presence on websites, its social media presence is more limited and has an uneven geographic distribution. In work following the Stone Mountain Meeting,the One Health Global Network Task Force Report recommended the creation of an online community of practice. Professional social networks as well as the strategic use of social media should be employed in this effort. Finally, One Health-related research projects using volunteers (citizen science) often use social media to enhance their recruitment. Including these researchers in a community of practitioners would take full advantage of their existing social media presence. In conclusion, the interactive nature of social media, combined with increasing global Internet access, provides the One Health community with opportunities to meaningfully expand their community and promote their message.

  16. Increased fairness in priority setting processes within the health sector: the case of Kapiri-Mposhi District, Zambia

    PubMed Central

    2014-01-01

    Background The challenge of priority setting (PS) in health care within contexts of severe resource limitations has continued to receive attention. Accountability for Reasonableness (AFR) has emerged as a useful framework to guide the implementation of PS processes. In 2006, the AFR approach to enhance legitimate and fair PS was introduced by researchers and decision makers within the health sector in the EU funded research project entitled ‘Response to Accountable priority setting for Trust in health systems’ (REACT). The project aimed to strengthen fairness and accountability in the PS processes of health systems at district level in Zambia, Tanzania and Kenya. This paper focuses on local perceptions and practices of fair PS (baseline study) as well as at the evolution of such perceptions and practices in PS following an AFR based intervention (evaluation study), carried out at district level in Kapiri-Mposhi District in Zambia. Methods Data was collected using in depth interviews (IDIs), focus group discussions (FGDs) and review of documents from national to district level. The study population for this paper consisted of health related stakeholders employed in the district administration, in non-governmental organizations (NGO) and in health facilities. Results During the baseline study, concepts of legitimacy and fairness in PS processes were found to be grounded in local values of equity and impartiality. Government and other organizational strategies strongly supported devolution of PS and decision making procedures. However, important gaps were identified in terms of experiences of stakeholder involvement and fairness in PS processes in practice. The evaluation study revealed that a transformation of the views and methods regarding fairness in PS processes was ongoing in the study district, which was partly attributed to the AFR based intervention. Conclusions The study findings suggest that increased attention was given to fairness in PS processes at district level. The changes were linked to a number of simultaneous factors among them the concepts introduced by the present project with its emphasis on fairness and enhanced participation. A responsive leadership that was increasingly accountable to its operational staff and communities emerged as one of the key elements in driving the processes forward. PMID:24548767

  17. Increased fairness in priority setting processes within the health sector: the case of Kapiri-Mposhi District, Zambia.

    PubMed

    Zulu, Joseph M; Michelo, Charles; Msoni, Carol; Hurtig, Anna-Karin; Byskov, Jens; Blystad, Astrid

    2014-02-18

    The challenge of priority setting (PS) in health care within contexts of severe resource limitations has continued to receive attention. Accountability for Reasonableness (AFR) has emerged as a useful framework to guide the implementation of PS processes. In 2006, the AFR approach to enhance legitimate and fair PS was introduced by researchers and decision makers within the health sector in the EU funded research project entitled 'Response to Accountable priority setting for Trust in health systems' (REACT). The project aimed to strengthen fairness and accountability in the PS processes of health systems at district level in Zambia, Tanzania and Kenya. This paper focuses on local perceptions and practices of fair PS (baseline study) as well as at the evolution of such perceptions and practices in PS following an AFR based intervention (evaluation study), carried out at district level in Kapiri-Mposhi District in Zambia. Data was collected using in depth interviews (IDIs), focus group discussions (FGDs) and review of documents from national to district level. The study population for this paper consisted of health related stakeholders employed in the district administration, in non-governmental organizations (NGO) and in health facilities. During the baseline study, concepts of legitimacy and fairness in PS processes were found to be grounded in local values of equity and impartiality. Government and other organizational strategies strongly supported devolution of PS and decision making procedures. However, important gaps were identified in terms of experiences of stakeholder involvement and fairness in PS processes in practice. The evaluation study revealed that a transformation of the views and methods regarding fairness in PS processes was ongoing in the study district, which was partly attributed to the AFR based intervention. The study findings suggest that increased attention was given to fairness in PS processes at district level. The changes were linked to a number of simultaneous factors among them the concepts introduced by the present project with its emphasis on fairness and enhanced participation. A responsive leadership that was increasingly accountable to its operational staff and communities emerged as one of the key elements in driving the processes forward.

  18. KSC-2011-7258

    NASA Image and Video Library

    2011-10-06

    CAPE CANAVERAL, Fla. -- In the Payload Hazardous Servicing Facility at NASA's Kennedy Space Center in Florida, the fairing acoustic protection (FAP) system lining the inside of the Atlas V payload fairing for NASA's Mars Science Laboratory (MSL) mission comes into view as the fairing is lifted into a vertical position. The FAP protects the payload by dampening the sound created by the rocket during liftoff. The fairing has been uncovered, and preparations are under way to clean it to meet NASA's planetary protection requirements. The fairing will protect the spacecraft from the impact of aerodynamic pressure and heating during ascent. Although jettisoned once the spacecraft is outside the Earth's atmosphere, the fairing must be cleaned to the same exacting standards as the laboratory to avoid the possibility of contaminating it. MSL's components include a compact car-sized rover, Curiosity, which has 10 science instruments designed to search for evidence on whether Mars has had environments favorable to microbial life, including the chemical ingredients for life. The unique rover will use a laser to look inside rocks and release its gasses so that the rover’s spectrometer can analyze and send the data back to Earth. Launch of MSL aboard a United Launch Alliance Atlas V rocket is planned for Nov. 25 from Space Launch Complex 41 on Cape Canaveral Air Force Station. For more information, visit http://www.nasa.gov/msl. Photo credit: NASA/Kim Shiflett

  19. Connecting Physics Bachelors to Their Dream Jobs

    NASA Astrophysics Data System (ADS)

    Bhattacharya, Shouvik

    2013-01-01

    People who earn bachelor’s degrees in physics are highly employable. Employers value the skills that physics bachelor’s recipients acquire and develop over their four years of a college education, such as complex problem solving, advanced mathematics, teamwork and programming. The Career Pathways Project of the American Institute of Physics (AIP) aims to better prepare physics undergraduates for the science, technology, engineering, and math (STEM) workforce. This presentation will include a discussion of common features among departments visited by the AIP’s Career Pathways team, ideas for a career workshop for physics undergraduates, and advice on how to make the most out of a job fair and how to start effective online professional networking.

  20. Transformative Science Teaching in Higher Education

    ERIC Educational Resources Information Center

    Fraser, Sharon P.

    2015-01-01

    University science teaching remains fairly traditional in its approach, incorporating teacher-centred and lecture-based methodologies and utilizing cook book laboratory experiences. Innovative science lecturers, however, have transformed their understanding and practice as teachers, placing their students at the heart of their actions and engaging…

  1. A review of event processing frameworks used in HEP

    DOE PAGES

    Sexton-Kennedy, E.

    2015-12-23

    Today there are many different experimental event processing frameworks in use by running or about to be running experiments. This talk will discuss the different components of these frameworks. In the past there have been attempts at shared framework projects for example the collaborations on the BaBar framework (between BaBar, CDF, and CLEO), on the Gaudi framework (between LHCb and ATLAS), on AliROOT/FairROOT (between Alice and GSI/Fair), and in some ways on art (Fermilab based experiments) and CMS’ framework. However, for reasons that will be discussed, these collaborations did not result in common frameworks shared among the intended experiments. Thoughmore » importantly, two of the resulting projects have succeeded in providing frameworks that are shared among many customer experiments: Fermilab's art framework and GSI/Fair's FairROOT. Interestingly, several projects are considering remerging their frameworks after many years apart. I'll report on an investigation and analysis of these realities. In addition, with the advent of the need for multi-threaded frameworks and the scarce available manpower, it is important to collaborate in the future, however it is also important to understand why previous attempts at multi-experiment frameworks either worked or didn't work.« less

  2. Making Sense of New Science Assessments

    ERIC Educational Resources Information Center

    Pellegrino, James W.

    2016-01-01

    What we choose to assess in science is what will end up being the focus of instruction. US science standards once treated content and inquiry as fairly separate strands of science learning, with content standards stating what students should know and inquiry standards stating what they should be able to do. In its content coverage, these standards…

  3. ARC-2009-ACD09-0218-005

    NASA Image and Video Library

    2009-10-06

    NASA Conducts Airborne Science Aboard Zeppelin Airship: equipped with two imaging instruments enabling remote sensing and atmospheric science measurements not previously practical. Hyperspectral imager and large format camera mounted inside the Zeppelin nose fairing.

  4. Socialization into science: An ethnographic study in a field research station

    NASA Astrophysics Data System (ADS)

    Calovini, Theresa Ann

    While the place of language in building the tasks and activities of the science classroom has received attention in the education literature, how students do the work of affiliation building through language remains poorly understood. This dissertation is based on ethnographic research in an apprenticeship learning situation at a biological field research station. I carried out this research with five undergraduates apprentices. I focus on how the language used in this apprenticeship situation positioned the apprentices with science. Issues of access and diversity in science education have motivated this research but this point can be missed because the five apprentices were all fairly successful in university science. They had all secured their job for the summer as paid research assistants. Yet, even with these successful students, science had a complicated place in their lives. I draw on Gee's (1999) notion of Discourse to understand this complexity. I focus on four Discourses--- Science, Knowing about the Animals, Senior Projects and RAships, and Relationships ---which were important in the apprentices' learning about and socialization with science. I try to understand the inter-workings of these four Discourses through a detailed analysis of three conversations involving one of the participants, Michelle. Michelle's use of narrative emerged as a linguistic resource which she used to explore dilemmas she experienced in the tensions between these four Discourses. Michelle was in many ways an ideal apprentice. She did her job well and she sought and received expert advice on her Senior project. Nonetheless, Michelle faced obstacles in her pursuit of a career in science and these obstacles related to language use and her use of narrative. I show how her use of narrative either facilitated or impeded her learning, depending on the context of the interaction. My analysis of Discourse points to important issues in language use by both students and teachers, with broad implications across a range of teaching/learning contexts. I describe multi-genre science reports as a pedagogy that might allow flexibility for students' representations with science, a flexibility that might be necessary given the complicated ways science plays out in the lives of students.

  5. The Big Bang: UK Young Scientists' and Engineers' Fair 2010

    ERIC Educational Resources Information Center

    Allison, Simon

    2010-01-01

    The Big Bang: UK Young Scientists' and Engineers' Fair is an annual three-day event designed to promote science, technology, engineering and maths (STEM) careers to young people aged 7-19 through experiential learning. It is supported by stakeholders from business and industry, government and the community, and brings together people from various…

  6. KSC-2011-7532

    NASA Image and Video Library

    2011-10-25

    CAPE CANAVERAL, Fla. -- In the Payload Hazardous Servicing Facility at NASA's Kennedy Space Center in Florida, spacecraft technicians prepare to enclose NASA's Mars Science Laboratory (MSL) in an Atlas V rocket payload fairing. The blocks on the interior of the fairing are components of the fairing acoustic protection (FAP) system, designed to protect the payload by dampening the sound created by the rocket during liftoff. The fairing will protect the spacecraft from the impact of aerodynamic pressure and heating during ascent. MSL's components include a compact car-sized rover, Curiosity, which has 10 science instruments designed to search for evidence on whether Mars has had environments favorable to microbial life, including the chemical ingredients for life. The unique rover will use a laser to look inside rocks and release its gasses so that the rover’s spectrometer can analyze and send the data back to Earth. Launch of MSL aboard a United Launch Alliance Atlas V rocket is planned for Nov. 25 from Space Launch Complex-41 on Cape Canaveral Air Force Station. For more information, visit http://www.nasa.gov/msl. Photo credit: NASA/Jim Grossmann

  7. KSC-2011-7534

    NASA Image and Video Library

    2011-10-25

    CAPE CANAVERAL, Fla. -- In the Payload Hazardous Servicing Facility at NASA's Kennedy Space Center in Florida, sections of an Atlas V rocket payload fairing obscure NASA's Mars Science Laboratory (MSL) from view as they close in around it. The blocks on the interior of the fairing are components of the fairing acoustic protection (FAP) system, designed to protect the payload by dampening the sound created by the rocket during liftoff. The fairing will protect the spacecraft from the impact of aerodynamic pressure and heating during ascent. MSL's components include a compact car-sized rover, Curiosity, which has 10 science instruments designed to search for evidence on whether Mars has had environments favorable to microbial life, including the chemical ingredients for life. The unique rover will use a laser to look inside rocks and release its gasses so that the rover’s spectrometer can analyze and send the data back to Earth. Launch of MSL aboard a United Launch Alliance Atlas V rocket is planned for Nov. 25 from Space Launch Complex-41 on Cape Canaveral Air Force Station. For more information, visit http://www.nasa.gov/msl. Photo credit: NASA/Jim Grossmann

  8. KSC-2011-7531

    NASA Image and Video Library

    2011-10-25

    CAPE CANAVERAL, Fla. -- In the Payload Hazardous Servicing Facility at NASA's Kennedy Space Center in Florida, NASA's Mars Science Laboratory (MSL) is ready to be enclosed in the Atlas V rocket payload fairing in the background. The blocks on the interior of the fairing are components of the fairing acoustic protection (FAP) system, designed to protect the payload by dampening the sound created by the rocket during liftoff. The fairing will protect the spacecraft from the impact of aerodynamic pressure and heating during ascent. MSL's components include a compact car-sized rover, Curiosity, which has 10 science instruments designed to search for evidence on whether Mars has had environments favorable to microbial life, including the chemical ingredients for life. The unique rover will use a laser to look inside rocks and release its gasses so that the rover’s spectrometer can analyze and send the data back to Earth. Launch of MSL aboard a United Launch Alliance Atlas V rocket is planned for Nov. 25 from Space Launch Complex-41 on Cape Canaveral Air Force Station. For more information, visit http://www.nasa.gov/msl. Photo credit: NASA/Jim Grossmann

  9. KSC-2011-7533

    NASA Image and Video Library

    2011-10-25

    CAPE CANAVERAL, Fla. -- In the Payload Hazardous Servicing Facility at NASA's Kennedy Space Center in Florida, sections of an Atlas V rocket payload fairing engulf NASA's Mars Science Laboratory (MSL) as they close in around it. The blocks on the interior of the fairing are components of the fairing acoustic protection (FAP) system, designed to protect the payload by dampening the sound created by the rocket during liftoff. The fairing will protect the spacecraft from the impact of aerodynamic pressure and heating during ascent. MSL's components include a compact car-sized rover, Curiosity, which has 10 science instruments designed to search for evidence on whether Mars has had environments favorable to microbial life, including the chemical ingredients for life. The unique rover will use a laser to look inside rocks and release its gasses so that the rover’s spectrometer can analyze and send the data back to Earth. Launch of MSL aboard a United Launch Alliance Atlas V rocket is planned for Nov. 25 from Space Launch Complex-41 on Cape Canaveral Air Force Station. For more information, visit http://www.nasa.gov/msl. Photo credit: NASA/Jim Grossmann

  10. KSC-2011-7530

    NASA Image and Video Library

    2011-10-25

    CAPE CANAVERAL, Fla. -- In the Payload Hazardous Servicing Facility at NASA's Kennedy Space Center in Florida, preparations are under way to enclose NASA's Mars Science Laboratory (MSL) in an Atlas V rocket payload fairing. The blocks on the interior of the fairing are components of the fairing acoustic protection (FAP) system, designed to protect the payload by dampening the sound created by the rocket during liftoff. The fairing will protect the spacecraft from the impact of aerodynamic pressure and heating during ascent. MSL's components include a compact car-sized rover, Curiosity, which has 10 science instruments designed to search for evidence on whether Mars has had environments favorable to microbial life, including the chemical ingredients for life. The unique rover will use a laser to look inside rocks and release its gasses so that the rover’s spectrometer can analyze and send the data back to Earth. Launch of MSL aboard a United Launch Alliance Atlas V rocket is planned for Nov. 25 from Space Launch Complex-41 on Cape Canaveral Air Force Station. For more information, visit http://www.nasa.gov/msl. Photo credit: NASA/Jim Grossmann

  11. KSC-2011-7252

    NASA Image and Video Library

    2011-10-06

    CAPE CANAVERAL, Fla. -- In the Payload Hazardous Servicing Facility at NASA's Kennedy Space Center in Florida, the fairing acoustic protection (FAP) system lines the inside of the Atlas V payload fairing for NASA's Mars Science Laboratory (MSL) mission. This half of the fairing has been uncovered during preparations to clean it to meet NASA's planetary protection requirements. The FAP protects the payload by dampening the sound created by the rocket during liftoff. The fairing will protect the spacecraft from the impact of aerodynamic pressure and heating during ascent. Although jettisoned once the spacecraft is outside the Earth's atmosphere, the fairing must be cleaned to the same exacting standards as the laboratory to avoid the possibility of contaminating it. MSL's components include a compact car-sized rover, Curiosity, which has 10 science instruments designed to search for evidence on whether Mars has had environments favorable to microbial life, including the chemical ingredients for life. The unique rover will use a laser to look inside rocks and release its gasses so that the rover’s spectrometer can analyze and send the data back to Earth. Launch of MSL aboard a United Launch Alliance Atlas V rocket is planned for Nov. 25 from Space Launch Complex 41 on Cape Canaveral Air Force Station. For more information, visit http://www.nasa.gov/msl. Photo credit: NASA/Kim Shiflett

  12. KSC-2011-7253

    NASA Image and Video Library

    2011-10-06

    CAPE CANAVERAL, Fla. -- In the Payload Hazardous Servicing Facility at NASA's Kennedy Space Center in Florida, the fairing acoustic protection (FAP) system lining the inside of the Atlas V payload fairing for NASA's Mars Science Laboratory (MSL) mission is visible after the fairing is uncovered during preparations to clean it to meet NASA's planetary protection requirements. The FAP protects the payload by dampening the sound created by the rocket during liftoff. The fairing will protect the spacecraft from the impact of aerodynamic pressure and heating during ascent. Although jettisoned once the spacecraft is outside the Earth's atmosphere, the fairing must be cleaned to the same exacting standards as the laboratory to avoid the possibility of contaminating it. MSL's components include a compact car-sized rover, Curiosity, which has 10 science instruments designed to search for evidence on whether Mars has had environments favorable to microbial life, including the chemical ingredients for life. The unique rover will use a laser to look inside rocks and release its gasses so that the rover’s spectrometer can analyze and send the data back to Earth. Launch of MSL aboard a United Launch Alliance Atlas V rocket is planned for Nov. 25 from Space Launch Complex 41 on Cape Canaveral Air Force Station. For more information, visit http://www.nasa.gov/msl. Photo credit: NASA/Kim Shiflett

  13. 18 CFR 4.12 - Service of report.

    Code of Federal Regulations, 2013 CFR

    2013-04-01

    ... PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act § 4.12... the State where such project is located. The report will be made available for public inspection at...

  14. 18 CFR 4.12 - Service of report.

    Code of Federal Regulations, 2014 CFR

    2014-04-01

    ... PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act § 4.12... the State where such project is located. The report will be made available for public inspection at...

  15. 18 CFR 4.12 - Service of report.

    Code of Federal Regulations, 2011 CFR

    2011-04-01

    ... PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act § 4.12... the State where such project is located. The report will be made available for public inspection at...

  16. 18 CFR 4.12 - Service of report.

    Code of Federal Regulations, 2012 CFR

    2012-04-01

    ... PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act § 4.12... the State where such project is located. The report will be made available for public inspection at...

  17. Data management and data enrichment for systems biology projects.

    PubMed

    Wittig, Ulrike; Rey, Maja; Weidemann, Andreas; Müller, Wolfgang

    2017-11-10

    Collecting, curating, interlinking, and sharing high quality data are central to de.NBI-SysBio, the systems biology data management service center within the de.NBI network (German Network for Bioinformatics Infrastructure). The work of the center is guided by the FAIR principles for scientific data management and stewardship. FAIR stands for the four foundational principles Findability, Accessibility, Interoperability, and Reusability which were established to enhance the ability of machines to automatically find, access, exchange and use data. Within this overview paper we describe three tools (SABIO-RK, Excemplify, SEEK) that exemplify the contribution of de.NBI-SysBio services to FAIR data, models, and experimental methods storage and exchange. The interconnectivity of the tools and the data workflow within systems biology projects will be explained. For many years we are the German partner in the FAIRDOM initiative (http://fair-dom.org) to establish a European data and model management service facility for systems biology. Copyright © 2017 The Authors. Published by Elsevier B.V. All rights reserved.

  18. "Adventures in Science": Casting Scientifically Talented Youth as National Resources on American Radio, 1942-1958

    ERIC Educational Resources Information Center

    Terzian, Sevan G.

    2008-01-01

    From 1942 to 1958, a national weekly programme on CBS radio and presented by Science Service, Inc. devoted 37 of its broadcasts to profiling American high school students' achievements in science talent searches, clubs and fairs. These "Adventures in Science" radio programmes cast scientifically talented youth as potential contributors to national…

  19. Taking Science to Special Needs and At-Risk Youth in the San Francisco Bay Area

    NASA Astrophysics Data System (ADS)

    Scherrer, D. K.; Yager, D.; Blair, J.; McCully, D.; Alameda, E.; Crawford, K.

    2009-12-01

    Youth in Juvenile Detention Facilities do attend (in-house) school, but rarely receive any instruction in science. We report on a new program to bring science to students at the Santa Clara County Juvenile Detention Facilitirs. Working in partnership with the Knock Out Dog Fighting campaign put together by Kris Crawford of For Pits Sake, Inc., our program provides alternatives to inappropriate behavior so often seen in inner city environments by introducing students to hands-on, inquiry based science activities. Likewise, we report on using similar materials to provide hands-on science activities to special needs students in Santa Clara and Santa Cruz Counties through “Take Flight for Kids” events organized by Dean McCully of Cisco Systems. Through “Take Flight for Kids”, amateur pilots offer special needs students rides in light aircraft and invite them to explore science and other activities through a community fair hosted by hundreds of local organizations. The fair highlights science opportunities and is supported and attended by a wide variety of NASA, NSF, and other science-related organizations. Our poster will focus on techniques and materials we use to excite special young people about science and opportunities for them in STEM fields.

  20. Save Beady Kid from the Sun

    ERIC Educational Resources Information Center

    Demetrikopoulos, Melissa; Thompson, Wesley; Pecore, John

    2017-01-01

    Art and science help students investigate light energy and practice fair testing. With the goal of finding a way to save "Beady Kid" from invisible rays, students used science practices to investigate the transfer of light energy from the Sun. During this art-integrated science lesson presented in this article, upper elementary (grades…

  1. 18 CFR 4.12 - Service of report.

    Code of Federal Regulations, 2010 CFR

    2010-04-01

    ... PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act § 4.12... the Governor of the State where such project is located. The report will be made available for public...

  2. Obama Reiterates Strong Support for Science at Two Recent Appearances

    NASA Astrophysics Data System (ADS)

    Showstack, Randy

    2013-05-01

    President Barack Obama expressed his continued strong support for science and technology in remarks at the U.S. National Academy of Sciences (NAS) on 29 April. His call for continued funding, for scientific integrity, and for an "all-hands-on-deck" approach to science, technology, engineering, and mathematics (STEM) followed remarks he made a week earlier at the White House Science Fair.

  3. 76 FR 43382 - Proposed Collection; Comment Request for Regulation Project

    Federal Register 2010, 2011, 2012, 2013, 2014

    2011-07-20

    ... higher yielding investments. The regulation provides safe harbors for establishing the fair market value... paid more than fair market value for nonpurpose investments under section 148 of the Internal Revenue... on proposed and/or continuing information collections, as required by the Paperwork Reduction Act of...

  4. 13 CFR 314.5 - Federal Share.

    Code of Federal Regulations, 2010 CFR

    2010-01-01

    .... If the Property is disposed of when its current fair market is $250, the Federal Share is $125 (i.e... Business Credit and Assistance ECONOMIC DEVELOPMENT ADMINISTRATION, DEPARTMENT OF COMMERCE PROPERTY General... fair market value of any Property attributable to EDA's participation in the Project. The Federal Share...

  5. KSC-2009-1725

    NASA Image and Video Library

    2009-02-19

    VANDENBERG AIR FORCE BASE, Calif. -- With the fairing door off, Orbital Sciences' Glenn Weigle and Brett Gladish maneuver into position to take the GN2 flow reading from NASA's Orbiting Carbon Observatory, or OCO, spacecraft. At left, Jose Castillo and Mark Neuse stand by to replace the fairing door when the OCO operation is complete. The spacecraft sits atop Orbital Sciences' Taurus XL rocket. At right is a portion of the umbilical tower attached to the upper stack. The spacecraft sits atop Orbital Sciences' Taurus XL rocket. At right is a portion of the umbilical tower attached to the upper stack. The spacecraft will collect precise global measurements of carbon dioxide (CO2) in the Earth's atmosphere. Scientists will analyze OCO data to improve our understanding of the natural processes and human activities that regulate the abundance and distribution of this important greenhouse gas. Photo courtesy of Jim Stowers, Orbital Sciences

  6. Measuring the academic, social, and psychological effects of academic service learning on middle school students

    NASA Astrophysics Data System (ADS)

    Giacalone, Valarie A.

    The purpose of this study was to examine the effects of an academic service learning project on ninth-grade students' science achievement and attitudes. A quasi-experimental, pretest-posttest design was used with four classes of one teacher in a rural school. The treatment was an Energy Fair service project. Two treatment classes that were chosen by random assignment (n = 58) were compared to two control classes (n = 64), who performed an alternative assignment. The Energy Fair was conducted for the elementary school students and on a limited basis for fellow students (peers). The academic effect was measured by a teacher-designed end-of-unit ecology test, with a subset of the questions on energy use. Psychological effects were measured by a self-esteem questionnaire, which measured both self-esteem and the satisfaction felt about one's self-esteem. Social effects were measured by three semantic differentials, one each for "adults," "peers," and "elementary students." The teacher was interviewed regarding her observations about the project. Written reflections from both the treatment and control groups were coded and analyzed. Pretest results were divided into thirds of high, medium, and low for all variables to search for the possibility of an attribute-treatment interaction. Analysis of covariance was used to reduce the possibility of pretest bias, to test for significant effects, and to test for a level by treatment interaction. Although the posttest means favored the experimental group, no statistically significant difference was found for academic results. No significant effect was found for either of the psychological measures. No change was found for the social results regarding "adults." A statistically significant effect was found for social results in the categories of "elementary students" and "peers." No statistically significant level by treatment interaction was found. Further research on the effects of academic service learning projects is needed at the middle school level, in all disciplines, and containing service of a longer duration and intensity.

  7. Ergonomics and the physiotherapist: a report on a research project on working postures.

    PubMed

    Bullock, M I; Lanchester, J J

    1969-09-01

    In a series of lectures on biomechanical principles, Professor E. R. Tichauer, an authority on man-machine-task systems, stated: "Only a few years ago, the physical work load imposed on the individual employee was much heavier than is the case today, but it was, in many occupations, fairly evenly distributed over the entire musculo skeletal system. Today, the total energy demanded from man in the performance of an industrial task has often been reduced, but stress is concentrated on individual and small components of the worker's anatomy," The techniques for combating these new stresses are found in the science of ergonomics (Hopkins 1966). Copyright © 1969 Australian Physiotherapy Association. Published by . All rights reserved.

  8. Teacher Training and Authentic Scientific Research Utilizing Cretaceous Fossil Resources

    NASA Astrophysics Data System (ADS)

    Danch, J. M.

    2016-12-01

    The readily accessible Cretaceous fossil beds of central New Jersey provide an excellent opportunity for both teacher training in the utilization of paleontological resources in the classroom and authentic scientific student research at the middle and high school levels. Woodbridge Township New Jersey School District teachers participated in field trips to various fossiliferous sites to obtain photographic and video data and invertebrate and vertebrate fossil specimens for use in the classroom. Teachers were also presented with techniques allowing them to mentor students in performing authentic paleontological research. Students participated in multi-year research projects utilizing Cretaceous fossils collected in the field and presented their findings at science fairs and symposia. A workshop for K - 12 teachers statewide was developed for the New Jersey Science Convention providing information about New Jersey fossil resources and allowing participants to obtain, study and classify specimens. Additionally, the workshop provided participants with the information necessary for them to plan and conduct their own field trips.

  9. Design and Implementation of a Modern Automatic Deformation Monitoring System

    NASA Astrophysics Data System (ADS)

    Engel, Philipp; Schweimler, Björn

    2016-03-01

    The deformation monitoring of structures and buildings is an important task field of modern engineering surveying, ensuring the standing and reliability of supervised objects over a long period. Several commercial hardware and software solutions for the realization of such monitoring measurements are available on the market. In addition to them, a research team at the University of Applied Sciences in Neubrandenburg (NUAS) is actively developing a software package for monitoring purposes in geodesy and geotechnics, which is distributed under an open source licence and free of charge. The task of managing an open source project is well-known in computer science, but it is fairly new in a geodetic context. This paper contributes to that issue by detailing applications, frameworks, and interfaces for the design and implementation of open hardware and software solutions for sensor control, sensor networks, and data management in automatic deformation monitoring. It will be discussed how the development effort of networked applications can be reduced by using free programming tools, cloud computing technologies, and rapid prototyping methods.

  10. To catch a childs's imagination: Educational overview of CAN DO G-324

    NASA Technical Reports Server (NTRS)

    Nicholson, J. H.

    1986-01-01

    The experience has shown that a GAS experiment can be a valuable education tool. It can return results far in excess of the resources invested. The best estimate on the financial investment per student indicates that it is somewhat less than the cost of a school lunch. That's a bargain in a time when educational bargains are hard to come by. To reach this goal means reaching far beyond the students who could possibly design or fly experiments in a single canister. The greatest value of CAN DO is that it serves as a catalyst and inspiration for other activities. To not reach out would have turned it into an overblown, expensive science fair project for a few exceptional students. To fully exploit the benefit of a GAS canister, you should build on a well established science enrichment program. As part of a comprehensive plan, a GAS can be one of the most motivating educational tools available.

  11. Joint Antarctic School Expedition - An International Collaboration for High School Students and Teachers on Antarctic Science

    NASA Astrophysics Data System (ADS)

    Botella, J.; Warburton, J.; Bartholow, S.; Reed, L. F.

    2014-12-01

    The Joint Antarctic School Expedition (JASE) is an international collaboration program between high school students and teachers from the United States and Chile aimed at providing the skills required for establishing the scientific international collaborations that our globalized world demands, and to develop a new approach for science education. The National Antarctic Programs of Chile and the United States worked together on a pilot program that brought high school students and teachers from both countries to Punta Arenas, Chile, in February 2014. The goals of this project included strengthening the partnership between the two countries, and building relationships between future generations of scientists, while developing the students' awareness of global scientific issues and expanding their knowledge and interest in Antarctica and polar science. A big component of the project involved the sharing by students of the acquired knowledge and experiences with the general public. JASE is based on the successful Chilean Antarctic Science Fair developed by Chile´s Antarctic Research Institute. For 10 years, small groups of Chilean students, each mentored by a teacher, perform experimental or bibliographical Antarctic research. Winning teams are awarded an expedition to the Chilean research station on King George Island. In 2014, the Chileans invited US participation in this program in order to strengthen science ties for upcoming generations. On King George Island, students have hands-on experiences conducting experiments and learning about field research. While the total number of students directly involved in the program is relatively small, the sharing of the experience by students with the general public is a novel approach to science education. Research experiences for students, like JASE, are important as they influence new direction for students in science learning, science interest, and help increase science knowledge. We will share experiences with the planning of the pilot program as well as the expedition itself. We also share the results of the assessment report prepared by an independent party. Lastly, we will offer recommendations for initiating international science education collaborations. United States participation was funded by the NSF Division of Polar Programs.

  12. 77 FR 66184 - Federal Property Suitable as Facilities To Assist the Homeless

    Federal Register 2010, 2011, 2012, 2013, 2014

    2012-11-02

    ....; bathroom; poor to fair conditions; significant deterioration on interior wood frame in several places... removal only; 36 sf.; pump house; fair conditions; access road is gated; unlocked by Ft. Gibson Lake... Project 33573 N. Shore Rd. Chamberlin SD 57325 Landholding Agency: COE Property Number: 31201240001 Status...

  13. The Vulnerable Worker? A Labor Law Challenge for WIL and Work Experience

    ERIC Educational Resources Information Center

    Cameron, Craig

    2013-01-01

    The Fair Work Act (2009) in Australia deregulates "work" in work-integrated learning (WIL) by distinguishing "vocational placement" from "employee". Following concerns about the legal position of WIL and work experience, the Fair Work Ombudsman (FWO) published a fact sheet and commenced a joint research project into…

  14. The Lunar and Planetary Institute Summer Intern Program in Planetary Science

    NASA Astrophysics Data System (ADS)

    Kramer, G. Y.

    2017-12-01

    Since 1977, the Lunar and Planetary Institute (LPI) Summer Intern Program brings undergraduate students from across the world to Houston for 10 weeks of their summer where they work one-on-one with a scientist at either LPI or Johnson Space Center on a cutting-edge research project in the planetary sciences. The program is geared for students finishing their sophomore and junior years, although graduating seniors may also apply. It is open to international undergraduates as well as students from the United States. Applicants must have at least 50 semester hours of credit (or equivalent sophomore status) and an interest in pursuing a career in the sciences. The application process is somewhat rigorous, requiring three letters of recommendation, official college transcripts, and a letter describing their background, interests, and career goals. The deadline for applications is in early January of that year of the internship. More information about the program and how to apply can be found on the LPI website: http://www.lpi.usra.edu/lpiintern/. Each advisor reads through the applications, looking for academically excellent students and those with scientific interest and backgrounds compatible with the advisor's specific project. Interns are selected fairly from the applicant pool - there are no pre-arranged agreements or selections based on who knows whom. The projects are different every year as new advisors come into the program, and existing ones change their research interest and directions. The LPI Summer Intern Program gives students the opportunity to participate in peer-reviewed research, learn from top-notch planetary scientists, and preview various careers in science. For many interns, this program was a defining moment in their careers - when they decided whether or not to follow an academic path, which direction they would take, and how. While past interns can be found all over the world and in a wide variety of occupations, all share the common bond of that summer in Houston.

  15. NSTA Positions on Critical Issues Confronting the Science Teaching Profession

    ERIC Educational Resources Information Center

    Sci Teacher, 1970

    1970-01-01

    Presents National Science Teachers Association (NSTA) policy statements of 1968 and 1969 with respect to the (1) use of natural resources for teaching purposes, (2) use of live animals, (3) teaching of human reproduction and sexuality, (4) functions of science fairs, (5) teacher liability for laboratory safety and field trips, (6) national…

  16. The Science Activity Center: An Alternative To the Traditional Science Fair.

    ERIC Educational Resources Information Center

    Padwa, Linda; Krieger, Melanie

    1997-01-01

    Describes the Suffolk Activity Center for Science (SACS) built by middle school students for middle school students and enhanced by a partnership with the University of Stony Brook. Involves students from nine participating schools building an interactive hands-on exhibit dealing with the concept of energy. Discusses advantages and suggestions for…

  17. How the Fair Test Nearly Killed Enquiry

    ERIC Educational Resources Information Center

    Nickels, Juliet

    2016-01-01

    In this article, Juliet Nickels explores the importance of content and exploration in a child- and enquiry-led curriculum. During British Science Week, Nickels runs science week at Coten End Primary School, culminating in an exhibition. Leading up to the school's science week in 2015, she ran staff meetings to clarify purpose and logistics, and…

  18. 78 FR 43797 - Protection of Stratospheric Ozone: The 2013 Critical Use Exemption From the Phaseout of Methyl...

    Federal Register 2010, 2011, 2012, 2013, 2014

    2013-07-22

    ... Ozone Protection regulations, the science of ozone layer depletion, and related topics. SUPPLEMENTARY... should be based in sound science, and be transparent, fair and objective. The nomination process should... sound science and meet the critical needs of the applicants. EPA also strives to make the process...

  19. Authentic research projects: Students' perspectives on the process, ownership, and benefits of doing research

    NASA Astrophysics Data System (ADS)

    Bernard, Warren

    2005-11-01

    Authentic research projects are one type of inquiry activity as defined by the American Association for the Advancement of Science (1993) and are a core component in science education reform movements. The purpose of this study was to examine high school students' perspectives of an authentic research project. The context for this study was a local Science and Engineering Fair (SEF) that involved students from a Metro-Atlanta public high school. This study provided information about this type of activity from the student's perspective, an emic viewpoint. In this qualitative study, demographic information was used for the purposeful selection of fourteen students making up the study sample. In this descriptive ethnography, data were collected via an open-ended survey, three individual interviews, a web log, and a group interview. Interviews were audio taped and conducted according to the protocol established by Lincoln and Guba (1998). Transcripts of the interviews, web logs, and survey responses were coded and analyzed by the constant comparative method as described by Glaser and Strauss (1965). Reliability and validity were achieved through member checks and triangulation. Using Gowin's Vee diagram (1981) as a theoretical framework for analysis, themes emerged describing the students' research experience. The themes included the students' initial reactions, difficulty getting started, accepting ownership of their project, growing interest, acknowledged benefits of the research experience, and a reflective look back at their experience. Overall, students described the authentic research experience as a worthwhile activity. The implications of the study are two-fold. At the practitioner level, teachers should engage students in research, but should do so in a manner that maximizes authenticity. Examples may include having students present a formal prospectus and work with a scientist mentor. For Science Educators in teacher preparation programs, there should be an experience with authentic research for pre-service teachers during the certification program. Future research may focus on the students' perspectives of ownership through the process of the authentic research and teachers' perspectives of the authentic research experience.

  20. 18 CFR 4.11 - Reports.

    Code of Federal Regulations, 2014 CFR

    2014-04-01

    ... PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act § 4.11 Reports. Representatives of the Commission will inspect the project works, engineering reports, and other records of the project, check the inventory and make an appraisal of the property and an audit of the...

  1. 18 CFR 4.11 - Reports.

    Code of Federal Regulations, 2011 CFR

    2011-04-01

    ... PROJECT COSTS Determination of Fair Value of Constructed Projects, Under Section 23(a) of the Act § 4.11 Reports. Representatives of the Commission will inspect the project works, engineering reports, and other records of the project, check the inventory and make an appraisal of the property and an audit of the...

  2. Publishing FAIR Data: An Exemplar Methodology Utilizing PHI-Base

    PubMed Central

    Rodríguez-Iglesias, Alejandro; Rodríguez-González, Alejandro; Irvine, Alistair G.; Sesma, Ane; Urban, Martin; Hammond-Kosack, Kim E.; Wilkinson, Mark D.

    2016-01-01

    Pathogen-Host interaction data is core to our understanding of disease processes and their molecular/genetic bases. Facile access to such core data is particularly important for the plant sciences, where individual genetic and phenotypic observations have the added complexity of being dispersed over a wide diversity of plant species vs. the relatively fewer host species of interest to biomedical researchers. Recently, an international initiative interested in scholarly data publishing proposed that all scientific data should be “FAIR”—Findable, Accessible, Interoperable, and Reusable. In this work, we describe the process of migrating a database of notable relevance to the plant sciences—the Pathogen-Host Interaction Database (PHI-base)—to a form that conforms to each of the FAIR Principles. We discuss the technical and architectural decisions, and the migration pathway, including observations of the difficulty and/or fidelity of each step. We examine how multiple FAIR principles can be addressed simultaneously through careful design decisions, including making data FAIR for both humans and machines with minimal duplication of effort. We note how FAIR data publishing involves more than data reformatting, requiring features beyond those exhibited by most life science Semantic Web or Linked Data resources. We explore the value-added by completing this FAIR data transformation, and then test the result through integrative questions that could not easily be asked over traditional Web-based data resources. Finally, we demonstrate the utility of providing explicit and reliable access to provenance information, which we argue enhances citation rates by encouraging and facilitating transparent scholarly reuse of these valuable data holdings. PMID:27433158

  3. Enacting FAIR Education: Approaches to Integrating LGBT Content in the K-12 Curriculum

    ERIC Educational Resources Information Center

    Vecellio, Shawn

    2012-01-01

    The FAIR Education Act (SB 48) was signed into law in California in July of 2011, amending the Education Code by requiring representation of lesbian, gay, bisexual, and transgender persons in the social sciences. In this article, the author uses James Banks' model of the Four Levels of Integration of Multicultural Content to suggest ways in which…

  4. Tackling the Anglophones' Free Ride: Fair Linguistic Cooperation with a Global Lingua Franca

    ERIC Educational Resources Information Center

    Van Parijs, Philippe

    2007-01-01

    In science and in all other domains that require communication across borders, we need one lingua franca, and this lingua franca will be English. The adoption of the native language of some as everyone's lingua franca unavoidably raises a problem of justice in various senses. One of these is cooperative justice, the fair distribution of the cost…

  5. Course Outlines in Science of the Rumson-Fair Haven Senior Elective Program.

    ERIC Educational Resources Information Center

    1976

    The Rumson-Fair Haven Senior Elective Program was developed and implemented by students, faculty, and administrators over the three-year period from 1971 to 1974. The program offers high school students who complete graduation requirements in the first three years of the four-year program a combination of the following options for the senior year:…

  6. Fermilab Education Office - Special Events for Students and Families

    Science.gov Websites

    students and families. These include: null Fermilab Outdoor Family Fair (K-12) null Wonders of Science (2-7 ) null Family Open House (3-12) null STEM Career Expo (9-12) Search Programs - Search Science Adventures

  7. SeriousGeoGames - Geoscience Virtual Reality Experiences for Festival Settings

    NASA Astrophysics Data System (ADS)

    Skinner, Christopher

    2017-04-01

    Festivals, fairs and showcases provide scientists an opportunity to engage with potentially thousands of members of the public in a short space of time. However, the festival setting provides the same members of the public many exhibits competing for their attention - for family groups, this means a successful exhibit must both attract the attention of the group, and also entertain them long enough for the scientist to communicate their message. Here, we will discuss the use of short Virtual Reality (VR) experiences by the SeriousGeoGames project in engaging the public with research in a festival-like setting. SeriousGeoGames uses bespoke, immersive VR experiences to both attract and engage the user. They merge scientific models and/or research field data with popular gaming engines, and present them in VR using the Oculus Rift headset. The experiences are designed to last around four minutes and follow a basic script, although a conversational tone is encouraged. SeriousGeoGames applications have been successfully exhibited at several festivals of different sizes and intended audiences, such as the national-level week-long Cheltenham Science Festival, and the local arts and cultural festival, Hull Freedom Festival. The Flash Flood! application was developed for the Natural Environment Research Council UK (NERC) Flooding from Intense Rainfall (FFIR) programme as a Knowledge Transfer (KT) tool. It was demonstrated at the 5-day NERC Into the blue Science Showcase as one of 38 stands highlighting the UK's cutting edge environmental science research. Over 5000 members of the public attended, and more than 1000 demonstrations of Flash Flood! were made, with 400 booklets handed out. The exhibit received positive feedback from users, and won third prize in a public vote for favourite stand - but this had little visible impact on online metrics of the SeriousGeoGames web presence. In terms of providing a 'positive experience' with science the application was successfully but whether it worked as a KT tool for the project is more difficult to ascertain and will be discussed. However, after positive comments and feedback from teachers, materials are also being produced to support the use of the applications in Secondary School and Sixth Form teaching (ages 11-18). This has led to two invited articles in magazines aimed at teachers and pupils. Whilst engagement post-event with the online presence of SeriousGeoGames by the general public may not be significant, this unanticipated outcome is a direct consequence of engagement with the VR applications at festivals, fairs and showcases.

  8. Education for Excellence

    ERIC Educational Resources Information Center

    Booth, Chester

    1977-01-01

    Describes projects of the Whitney, Texas, vocational agriculture students, exhibited at the Future Farmers of America Farm Mechanics Project Show (at the Heart o' Texas Fair in Waco) in several categories for livestock equipment, farm machinery, farm and yard conveniences, farm electrical projects, gates, and woodwork. (MF)

  9. Swine-to-Human Transmission of Influenza A(H3N2) Virus at Agricultural Fairs, Ohio, USA, 2012

    PubMed Central

    Nelson, Sarah W.; Page, Shannon L.; Nolting, Jacqueline M.; Killian, Mary L.; Sreevatsan, Srinand; Slemons, Richard D.

    2014-01-01

    Agricultural fairs provide an opportunity for bidirectional transmission of influenza A viruses. We sought to determine influenza A virus activity among swine at fairs in the United States. As part of an ongoing active influenza A virus surveillance project, nasal swab samples were collected from exhibition swine at 40 selected Ohio agricultural fairs during 2012. Influenza A(H3N2) virus was isolated from swine at 10 of the fairs. According to a concurrent public health investigation, 7 of the 10 fairs were epidemiologically linked to confirmed human infections with influenza A(H3N2) variant virus. Comparison of genome sequences of the subtype H3N2 isolates recovered from humans and swine from each fair revealed nucleotide identities of >99.7%, confirming zoonotic transmission between swine and humans. All influenza A(H3N2) viruses isolated in this study, regardless of host species or fair, were >99.5% identical, indicating that 1 virus strain was widely circulating among exhibition swine in Ohio during 2012. PMID:25148572

  10. Mon Océan & Moi : Network and Teamwork to Better Connect People, Science and Education

    NASA Astrophysics Data System (ADS)

    Scheurle, C.

    2016-02-01

    The project « mon océan & moi » can be described as a platform hosting several outreach activities. Some of these address non-scientific audiences in an international/national context and are specifically developed to reach out into school environments. The multidisciplinary team composed of senior and early-career scientists, science communicators and facilitators, school teachers and educators etc. shares common objectives based on (net-)work in a participatory way, so as to propose science-based dissemination with a long-term vision as well as to stimulate critical thinking, ideas and exchanges. Within this context, Internet is certainly an extremely useful tool accompanying the manifold efforts to "best" inform and communicate with the targeted audiences. However, it remains challenging to create opportunities for dialogue at the interface of science and education … and to encourage this dialogue to carry on. « mon océan & moi » covers a few successful outreach activities ("adopt a float" and "MEDITES") that involve scientists and teachers as well as students from universities and schools. Encouraged by the local school authority, these activities aim at different educational levels and suggest a continuous "workflow" combined with specific events (such as training courses, science fairs) during which particular contributions are highlighted. As their approach principally favors teamwork, the most positive outcome observed has been the creation of partnerships truly connecting the people …

  11. Peer Assessments of GPW: Infusing Fairness into Students' Assessments of Peer Contributions

    ERIC Educational Resources Information Center

    Onyia, Okey Peter; Allen, Stephanie

    2012-01-01

    This paper contains results of an empirical study that tested the efficacy and acceptability of two templates designed to fully involve students in proper and fair peer-assessments of their group project work (GPW) by providing concrete evidence of independent progressive documentation of their peers' contributions to the work-process and…

  12. Toward Fairness in Assessing Student Groupwork: A Protocol for Peer Evaluation of Individual Contributions

    ERIC Educational Resources Information Center

    Fellenz, Martin R.

    2006-01-01

    A key challenge for management instructors using graded groupwork with students is to find ways to maximize student learning from group projects while ensuring fair and accurate assessment methods. This article presents the Groupwork Peer-Evaluation Protocol (GPEP) that enables the assessment of individual contributions to graded student…

  13. Citizen Science - What's policy got to do with it? (Invited)

    NASA Astrophysics Data System (ADS)

    Shanley, L.

    2013-12-01

    Sensing capabilities, computing power, and data storage have grown rapidly and become increasingly ubiquitous. In 2012, the number of smartphones worldwide topped one billion, and it is expected to double by 2015. A growing segment of the population now has the ability to collect and share information instantly. Social media and crowdsourcing platforms help to amplify and focus online information sharing and collaboration. We have seen exiting uses of these new tools and approaches to foster broad public participation in scientific research, from classifying galaxies and collecting environmental data to collectively solving the structure of an AIDS-related enzyme through a protein-folding game. The U.S. Geological Survey (USGS), for example, is using social media and crowdsourcing to learn more about earthquakes. These techniques provide inexpensive and rapid data to augment and extend the capabilities provided by traditional monitoring techniques. A new report by the Wilson Center, Transforming Earthquake Detection and Science Through Citizen Seismology, describes these groundbreaking citizen science projects. These efforts include the Tweet Earthquake Dispatch, which uses an algorithm to provide seismologists with initial alerts of earthquakes felt around the globe via Twitter in less than two minutes. The report also examines the Quake Catcher Network, which equips the public with low-cost sensors to collect information on seismic activity, as well as Did You Feel It, which uses the Internet to survey individuals about their experiences in earthquakes, including location and extent of the damage. Projects like these, however, do not happen overnight. Citizen-based science projects at the federal level must navigate a web of practical, legal and policy considerations to make them a reality. Projects must take into account the limitations of the Privacy Act, advising people on how the information they contribute might be used and respecting fair information practices. They also must address the Paperwork Reduction Act, receiving Office of Management and Budget approval before beginning information collection. This presentation will examine many of these legal and policy issues, and provide lessons learned so that others may apply them to their unique missions. The opportunity for large-scale public contributions is great. With planning and support, citizen science could improve our scientific enterprise, facilitate greater public awareness and understanding of scientific issues, and change how the public interacts with government and the scientific community.

  14. Evaluation of American Indian Science and Engineering Society Intertribal Middle School Science and Math Bowl Project

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

    AISES, None

    The American Indian Science and Engineering Society (AISES) has been funded under a U.S. Department of Energy (DOE) grant (Grant Award No. DE-SC0004058) to host an Intertribal Middle-School Science and Math Bowl (IMSSMB) comprised of teams made up of a majority of American Indian students from Bureau of Indian Education-funded schools and public schools. The intent of the AISES middle school science and math bowl is to increase participation of American Indian students at the DOE-sponsored National Science Bowl. Although national in its recruitment scope, the AISES Intertribal Science and Math Bowl is considered a “regional” science bowl, equivalent tomore » the other 50 regional science bowls which are geographically limited to states. Most regional bowls do not have American Indian student teams competing, hence the AISES bowl is meant to encourage American Indian student teams to increase their science knowledge in order to participate at the national level. The AISES competition brings together teams from various American Indian communities across the nation. Each team is provided with funds for travel to and from the event, as well as for lodging and meals. In 2011 and 2012, there were 10 teams participating; in 2013, the number of teams participating doubled to 20. Each Science and Math Bowl team is comprised of four middle school — grades 6 through 8 — students, one alternate, and a teacher who serves as advisor and coach — although in at least two cases, the coach was not a teacher, but was the Indian Education Coordinator. Each team member must have at least a 3.0 GPA. Furthermore, the majority of students in each team must be comprised of American Indian, Alaska Native or Native Hawaiian students. Under the current DOE grant, AISES sponsored three annual middle school science bowl competitions over the years 2011, 2012 and 2013. The science and math bowls have been held in late March concurrently with the National American Indian Science and Engineering Fair (NAISEF) and EXPO at the Albuquerque, NM Convention Center. Albuquerque is also the home of the AISES national office. The AISES staff also recruits volunteers to assist with implementation of the science and math bowl event. In 2011, there were 7 volunteers; in 2012, 15 volunteers, and in 2013, 19 volunteers. Volunteers are recruited from a variety of local sources, including Sandia Laboratories, Southwest Indian Polytechnic Institute students, Department of Defense, as well as family members of AISES staff. For AISES, the goals of the Intertribal Middle School Science and Math Bowl project are to have more Native students learn science, for them to gain confidence in competing, and to reward their effort in order to motivate them to pursue studies in the sciences and engineering. For DOE, the goals of the project are to get more Native students to compete at the National Science Bowl, held in Washington, DC.« less

  15. Ocean Sciences as a Foundation for Curriculum Design

    NASA Astrophysics Data System (ADS)

    Rakhmenkulova, I.; Gorshkalev, S.; Odriozola, A.; Dominguez, A.; Greely, T.; Pyrtle, A.; Keiper, T.; Watkins, J.

    2005-05-01

    The GK-12 OCEANS program is an initiative of the National Science Foundation (NSF). This program provides marine science graduate students within the College of Marine Science, USF, weekly interactions with K-12 teachers and students in Pinellas County schools with the overall purpose of enhancing the quality and effectiveness of science teaching. The GK-12 OCEANS program provides hands-on and minds-on ocean science learning inquiries. Campbell Park Elementary is a Marine Science attractor school designed to provide a child-centered approach to learning that integrates marine science activities into the daily curriculum while meeting the required state education standards. In 2003-04 a GK-12 Fellow helped third and fourth grade teachers design new teaching curricula that integrated ocean sciences. The current 2004-04 Fellow and teachers are implementing the new curriculum, assessing feasibility and impact on students' learning. One characteristic of the new curriculum includes several field trips to local natural settings during which students have the opportunity to collect data the way scientists do, and use real scientific instruments and approaches. The information collected is then used in different activities within the classroom. These activities encourage the students to use inquiry as the basis of their learning experience, in which the application of scientific thinking and methods are keys. This process also requires the students to apply skills from other disciplines such as writing, reading, and math. Towards the end of the school year the students have the opportunity to highlight their accomplishments through two projects, 1) a hall display of different ocean zones, which includes habitat characteristics and species adaptations, and 2) a marine science experiment presented at the school science fair. The results and accomplishments from the implementation of these new curricula will be presented at the conference.

  16. Cultivating a Grassroots Aerospace Innovation Culture at NASA Ames Research Center

    NASA Technical Reports Server (NTRS)

    D'Souza, Sarah; Sanchez, Hugo; Lewis, Ryan

    2017-01-01

    This paper details the adaptation of specific 'knowledge production' methods to implement a first of its kind, grassroots event that provokes a cultural change in how the NASA Ames civil servant community engages in the creation and selection of innovative ideas. Historically, selection of innovative proposals at NASA Ames Research Center is done at the highest levels of management, isolating the views and perspectives of the larger civil servant community. Additionally, NASA innovation programs are typically open to technical organizations and do not engage non-technical organizations to bring forward innovative processes/business practices. Finally, collaboration on innovative ideas and associated solutions tend to be isolated to organizational silos. In this environment, not all Ames employees feel empowered to innovate and opportunities for employee collaboration are limited. In order to address these issues, the 'innovation contest' method was adapted to create the NASA Ames Innovation Fair, a unique, grassroots innovation opportunity for the civil servant community. The Innovation Fair consisted of a physical event with a virtual component. The physical event provided innovators the opportunity to collaborate and pitch their innovations to the NASA Ames community. The civil servant community then voted for the projects that they viewed as innovative and would contribute to NASA's core mission, making this event a truly grassroots effort. The Innovation Fair website provided a location for additional knowledge sharing, discussion, and voting. On March 3rd, 2016, the 'First Annual NASA Ames Innovation Fair' was held with 49 innovators and more than 300 participants collaborating and/or voting for the best innovations. Based on the voting results, seven projects were awarded seed funding for projects ranging from innovative cost models to innovations in aerospace technology. Surveys of both innovators and Fair participants show the Innovation Fair was successful in fostering cross-organizational collaborations, soliciting participation of non-technical innovations, and increasing employee engagement in influencing the future of NASA Ames Research Center. The grassroots component of the Innovation Fair has been bench marked by the agency as a solid foundation for increasing employee engagement in the development of game changing aerospace technology and processes in support of NASA's mission.

  17. White House Maker Faire

    NASA Image and Video Library

    2014-06-18

    The Maker Faire trailer is seen outside the rose garden during the first ever White House Maker Faire, which brings together students, entrepreneurs, and everyday citizens who are using new tools and techniques to launch new businesses, learn vital skills in science, technology, engineering, and math (STEM), and fuel the renaissance in American manufacturing, at the White House, Wednesday, June 18, 2014 in Washington. The President announced new steps the Administration and its partners are taking to support the ability of more Americans, young and old, to have to access to these tools and techniques and brings their ideas to life. Photo Credit: (NASA/Bill Ingalls)

  18. Composite Payload Fairing Structural Architecture Assessment and Selection

    NASA Technical Reports Server (NTRS)

    Krivanek, Thomas M.; Yount, Bryan C.

    2012-01-01

    This paper provides a summary of the structural architecture assessments conducted and a recommendation for an affordable high performance composite structural concept to use on the next generation heavy-lift launch vehicle, the Space Launch System (SLS). The Structural Concepts Element of the Advanced Composites Technology (ACT) project and its follow on the Lightweight Spacecraft Structures and Materials (LSSM) project was tasked with evaluating a number of composite construction technologies for specific Ares V components: the Payload Shroud, the Interstage, and the Core Stage Intertank. Team studies strived to address the structural challenges, risks and needs for each of these vehicle components. Leveraging off of this work, the subsequent Composites for Exploration (CoEx) effort is focused on providing a composite structural concept to support the Payload Fairing for SLS. This paper documents the evaluation and down selection of composite construction technologies and evolution to the SLS Payload Fairing. Development of the evaluation criteria (also referred to as Figures of Merit or FOMs), their relative importance, and association to vehicle requirements are presented. A summary of the evaluation results, and a recommendation of the composite concept to baseline in the Composites for Exploration (CoEx) project is presented. The recommendation for the SLS Fairing is a Honeycomb Sandwich architecture based primarily on affordability and performance with two promising alternatives, Hat stiffened and Fiber Reinforced Foam (FRF) identified for eventual program block upgrade.

  19. How to Successfully Survive a Mandated Project

    ERIC Educational Resources Information Center

    Ellern, Jill

    2011-01-01

    With information technologies' pervasive use within all departments and by all staff, libraries and library staff get their fair share of mandated projects. Knowing how to successfully operate in this kind of environment is important to the overall success of the library as a whole. What is meant by mandated project? A mandated project is a…

  20. Outreach to Space - A Collaborative Model for Rural Community Engagement

    NASA Astrophysics Data System (ADS)

    Schafer, Sheldon; Space Museum Collaborative, Outreach to

    2008-05-01

    Outreach to Space is a collaborative project of 11 mid-western and west coast science museums, designed to provide astronomy and space exploration content to non-traditional audiences in non-traditional venues. Members have developed a set of 12 portable, interactive astronomy exhibits that will be delivered to mostly underserved rural populations, at non-traditional venues in 2008-2009. These venues are to include county and regional fairs, and summer and fall festivals - places that attract diverse and underserved audiences. During the intervening year, the exhibits will visit groups and agencies such as Rotary clubs, Urban League after-school programs, inner city youth clubs & agencies, rural libraries, and other similar venues. The primary target audience is 5-13 year old children and their extended families that live in rural and lower-economic areas. Outreach to Space Partner Museums Alaska: The Imaginarium, Anchorage California: The Exploratorium, San Francisco Illinois: Discovery Center, Rockford Lakeview Museum, Peoria SciTech, Aurora Indiana: Children's Science Museum, Terre Haute Evansville Museum of Arts and Science Science Central, Fort Wayne Iowa: Bluedorn Imaginarium, Waterloo Science Station, Cedar Rapids Oregon: Science Works, Ashland This session will include an opportunity to interact with each of the exhibits, review the educational materials, and use the personal media player programs that have been developed to provide additional depth to the visitor experience. The exhibit development process and organizational elements of the collaborative will also be discussed. Outreach to Space is funded by a grant from the National Science Foundation's Informal Science Program.

  1. A squid-based beam current monitor for FAIR/CRYRING

    NASA Astrophysics Data System (ADS)

    Geithner, Rene; Kurian, Febin; Reeg, Hansjörg; Schwickert, Marcus; Neubert, Ralf; Seidel, Paul; Stöhlker, Thomas

    2015-11-01

    A SQUID-based beam current monitor was developed for the upcoming FAIR-Project, providing a non-destructive online monitoring of the beam currents in the nA-range. The cryogenic current comparator (CCC) was optimized for lowest possible noise-limited current resolution together with a high system bandwidth. This CCC is foreseen to be installed in the CRYRING facility (CRYRING@ESR: A study group report www.gsi.de/fileadmin/SPARC/documents/Cryring/ReportCryring_40ESR.PDF), working as a test bench for FAIR. In this contribution we present results of the completed CCC for FAIR/CRYRING and also arrangements that have been done for the installation of the CCC at CRYRING, regarding the cryostat design.

  2. Scientists Involved in K-12 Education

    NASA Astrophysics Data System (ADS)

    Robigou, V.

    2004-12-01

    The publication of countless reports documenting the dismal state of science education in the 1980s, and the Third International Mathematics and Science Study (TIMMS) report (1996) called for a wider involvement of the scientific community in K-12 education and outreach. Improving science education will not happen without the collaboration of educators and scientists working in a coordinated manner and it requires a long-term, continuous effort. To contribute effectively to K-12 education all scientists should refer to the National Science Education Standards, a set of policies that guide the development of curriculum and assessment. Ocean scientists can also specifically refer to the COSEE recommendations (www.cosee.org) that led to the creation of seven regional Centers for Ocean Sciences Education Excellence. Scientists can get involved in K-12 education in a multitude of ways. They should select projects that will accommodate time away from their research and teaching obligations, their talent, and their interest but also contribute to the education reform. A few examples of effective involvement are: 1) collaborating with colleagues in a school of education that can lead to better education of all students and future teachers, 2) acting as a resource for a national program or a local science fair, 3) serving on the advisory board of a program that develops educational material, 4) speaking out at professional meetings about the value of scientists' involvement in education, 5) speaking enthusiastically about the teaching profession. Improving science education in addition to research can seem a large, overwhelming task for scientists. As a result, focusing on projects that will fit the scientist's needs as well as benefit the science reform is of prime importance. It takes an enormous amount of work and financial and personnel resources to start a new program with measurable impact on students. So, finding the right opportunity is a priority, and stepping-in pre-existing programs to contribute right away without having to re-invent the wheel is a good approach. Education and outreach sessions are expanding at professional, scientific meetings such as AGU, and provide an excellent start for those in search of new educational experiences. Contacting a regional COSEE is also a very effective way to get involved.

  3. Showcasing the intersection between art and science

    NASA Astrophysics Data System (ADS)

    Banks, Michael

    2010-03-01

    This seemingly spooky image is not from the hit TV series Star Trek, in which crew members teleport themselves to and from their spacecraft, but rather part of the Kinetica Art Fair 2010 held in London last month, which showcased the links between science and art.

  4. 1979-1981 Vocational Education Improvement Projects.

    ERIC Educational Resources Information Center

    Connecticut State Dept. of Education, Hartford. Div. of Vocational Education.

    This brochure provides summaries of 23 exemplary, research, and curriculum projects known as the Vocational Improvement Program that share three concerns: meeting needs of underserved students, sex fairness, and excellence in vocational education. The 14 exemplary projects focus on vocational exploration and skill building in marine and related…

  5. Serious Play in Education for Social Justice--An Exploratory Study

    ERIC Educational Resources Information Center

    Wartenweiler, Thomas

    2018-01-01

    Fair Battles is a 12-week Swiss education for social justice program with the goal of sensitizing high school students about the impact of their consumer habits on society. The pedagogical concept of Fair Battles is to employ the tool of serious play to enhance students' social empathy, which then leads to service learning projects. This…

  6. AN EXAMINATION OF CITIZEN PARTICIPATION AND PROCEDURAL FAIRNESS IN LARGE-SCALE URBAN TREE PLANTING INITIATIVES IN THE UNITED STATES

    EPA Science Inventory

    This project will result in a typology of the degrees and forms of citizen participation in large-scale urban tree planting initiatives. It also will identify specific aspects of urban tree planting processes that residents perceive as fair and unfair, which will provide ad...

  7. Earth Science

    NASA Image and Video Library

    1992-07-18

    Workers at Launch Complex 17 Pad A, Kennedy Space Center (KSC) encapsulate the Geomagnetic Tail (GEOTAIL) spacecraft (upper) and attached payload Assist Module-D upper stage (lower) in the protective payload fairing. GEOTAIL project was designed to study the effects of Earth's magnetic field. The solar wind draws the Earth's magnetic field into a long tail on the night side of the Earth and stores energy in the stretched field lines of the magnetotail. During active periods, the tail couples with the near-Earth magnetosphere, sometimes releasing energy stored in the tail and activating auroras in the polar ionosphere. GEOTAIL measures the flow of energy and its transformation in the magnetotail and will help clarify the mechanisms that control the imput, transport, storage, release, and conversion of mass, momentum, and energy in the magnetotail.

  8. International Reports.

    ERIC Educational Resources Information Center

    Anderson, Nancy D.; And Others

    1994-01-01

    Three reports discuss the International Federation of Library Associations and Institutions; the Frankfurt Book Fair, focusing on electronics; and Canadian library trends, including resource sharing, technology projects, information policy, censorship, services for persons with disabilities, construction projects, and library education and…

  9. The effectiveness of the 1996 Wood Magic Science Fair as an experiential field trip

    NASA Astrophysics Data System (ADS)

    Pearson, Robert Wayne

    In response to the need for evaluating the effectiveness of the 1996 Wood Magic Science Fair (WMSF) at Mississippi State University's Forest and Wildlife Research Center/Forest Products Laboratory, two tests were developed. One test was designed for third-grade students and one for fourth-grade students who would attend the WMSF. Both tests have multiple choice answers and contained thirteen questions each. Five of the questions addressed general issues of the forest products industry that would be mentioned in an opening video but not stressed in the oral presentations of the WMSF. The students would have no active involvement in these presentations. These general issue questions represent passive involvement teaching. The eight remaining questions addressed specific information that would be stressed in the WMSF oral presentations and would allow students to actively participate in the presentations. The participation of the students in these presentations represents participatory teaching. The tests were given to the students (third and fourth grades) both before they attended the fair as a pre-test and after their attendance as a post-test with the only difference being that the multiple choice answers were arranged in a different order. Classroom teachers administered the tests to the students. The test results were evaluated for each class individually. Each question was evaluated and the results recorded in a table. The general information questions were grouped together as were the specific information questions. This grouping allowed a comparison to be made between passive and participatory learning. The results from the tests will help those making the science fair presentations evaluate their materials and methods. Statistical analysis of the results would indicate which questions had a significant change in the number of correct answers between the pre-test and post-test. This information will help the Fair planners and presenters in developing future programs.

  10. Evaluation of Colorado Learning Attitudes about Science Survey

    ERIC Educational Resources Information Center

    Douglas, K. A.; Yale, M. S.; Bennett, D. E.; Haugan, M. P.; Bryan, L. A.

    2014-01-01

    The Colorado Learning Attitudes about Science Survey (CLASS) is a widely used instrument designed to measure student attitudes toward physics and learning physics. Previous research revealed a fairly complex factor structure. In this study, exploratory and confirmatory factor analyses were conducted on data from an undergraduate introductory…

  11. ENVIRONMENTAL RESEARCH AND EDUCATION PROGRAMS: LETS GET HONEST ABOUT SCIENCE, POLICY, AND ADVOCACY

    EPA Science Inventory

    Those of us who are involved in undergraduate education should change the current situation where many, arguably most, students graduating from environmental programs have a limited appreciation of the proper role of science in ecological policy deliberations. To be fair, perhap...

  12. Gene–culture interaction and the evolution of the human sense of fairness

    PubMed Central

    Liu, Tru-Gin; Lu, Yao

    2016-01-01

    How Darwinian evolution would produce creatures with the proclivity of Darwinian generosity, most of them voluntarily giving up the immediate benefit for themselves or their genes, remains a puzzle. This study targets a problem, the origin of human sense of fairness, and uses fairness-related genes and the social manipulation of Darwinian generosity as the key variables underlying the human sense of fairness, inequity aversion, as well as their relationships within cooperation, and the anticipation foresight of the way relationships are affected by resource division, given the assumption of randomly matched partners. Here we suggest a model in which phenotype will gradually converge towards the perfect sense of fairness along with the prospect of cooperation. Later, the sense of fairness will decrease but it is never extinct. Where social manipulation of Darwinian generosity overshadows genetics, the sense of fairness could be acute to the degree of social manipulation. Above all, there still exists a threshold in the degree of social manipulation, beyond which altruism dominates selfishness in human cooperation. Finally, we propose three new directions toward more realistic scenarios stimulated by recent development of the synergy between statistical physics, network science and evolutionary game theory. PMID:27562008

  13. White House Maker Faire

    NASA Image and Video Library

    2014-06-18

    Joey Hudy demonstrates his Intel Galileo-based 10x10x10 LED Cube during the first ever White House Maker Faire which brings together students, entrepreneurs, and everyday citizens who are using new tools and techniques to launch new businesses, learn vital skills in science, technology, engineering, and math (STEM), and fuel the renaissance in American manufacturing, at the White House, Wednesday, June 18, 2014 in Washington. Photo Credit: (NASA/Bill Ingalls)

  14. A Social Contract for University-Industry Collaboration: A Case of Project-Based Learning Environment

    NASA Astrophysics Data System (ADS)

    Vartiainen, Tero

    This study determines a social contract for a form of university-industry collaboration to a project-based learning environment in close collaboration with industry. The author's previous studies on moral conflicts in a project-based learning (PjBL) environment and his 5-year engagement in the PjBL environment are used as background knowledge, and John Rawls' veil of ignorance is used as a method in the contract formulation. Fair and impartial treatment of actors is strived for with the contract which constitutes of sets of obligations for each party, students, clients, and university (instructors) in the chosen project course. With the contract fair and impartial treatment of actors is strived for and the most dilemmatic moral conflicts are tried to be avoided. The forming of the social contract is evaluated, and implications for research and collaborations in practice are offered.

  15. Climate Research by K-12 Students: Can They Do It? Will Anybody Care?

    NASA Astrophysics Data System (ADS)

    Brooks, D. R.

    2011-12-01

    Starting from the premise that engaging students in authentic science research is an activity that benefits science education in general, it is first necessary to consider whether students, in collaboration with teachers and climate scientists, can do climate-related research that actually has scientific value. A workshop held in November 2010, co-sponsored by NSF and NOAA, addressed this question. It took as its starting point this "scientific interest" test: "If students conduct a climate-related research project according to protocols designed in collaboration with climate scientists, when they get done, will any of those scientists care whether they did it or not?" If the answer to this question is "yes," then the project may constitute authentic research, but if the answer is "no," then the project may have educational value, but it is not research. This test is important because only when climate scientists (and other stakeholders interested in climate and climate change) are invested in the outcomes of student research will meaningful student research programs with sustainable support be forthcoming. The absence of climate-related projects in high-level student science fair competitions indicates that, currently, the investment and infrastructure required to support student climate research is lacking. As a result, climate science is losing the battle for the "hearts and minds" of today's best students. The critical task for student climate research is to define projects that are theoretically and practically accessible. This excludes the "big questions" of climate science, such as "Is Earth getting warmer?", but includes many observationally based projects that can help to refine our understanding of climate and climate change. The characteristics of collaborative climate research with students include: 1. carefully drawn distinctions between inquiry-based "learning about" activities and actual research; 2. an identified audience of potential stakeholders who will care about the results of the research; 3. clearly defined expectations, logistics, and outcomes for all participants. Some examples of appropriate data-based research topics include: 1. monitoring black carbon, atmospheric aerosols, and water vapor; 2. pyranometry at sufficiently high temporal resolution to study cloud patterns; 3. urban heat island and other microclimate effects; 4. monitoring benthic habitats and seafloor temperatures; 5. monitoring free-floating ocean buoys to help in the establishment of mobile marine sanctuaries; 6. monitoring surface reflectivity to generate highly localized normalized difference vegetation indices; 7. tracking habitats for vector-borne disease carriers in developing countries. Both education and science communities need to work harder to support student climate research. Educational institutions must build authentic student research into their mission statements. Scientists need to be more aware of the constraints under which teachers and their students must operate on a day-to-day basis. But, students can participate in authentic climate research if educators and scientists expect them to do real research, are honest with them about what is required to do real research, and are willing to provide persistent ongoing support.

  16. Needs-Based Training and Online Resource for Managers of Rural Festivals, Fairs, and Events

    ERIC Educational Resources Information Center

    Olson, Eric D.; Rajagopal, Lakshman

    2018-01-01

    Festivals, fairs, and events (FFEs) provide rural communities with economic and noneconomic benefits. For the project described in this article, we conducted a needs assessment of Iowa FFE managers by surveying them about the challenges they face in event management and then used the results of the assessment as the basis for training sessions…

  17. Social Support Perspectives on Programs for Parents: Lessons from the Child Survival/Fair Start Home Visiting Programs.

    ERIC Educational Resources Information Center

    Larner, Mary

    This paper discusses home visiting programs for low income parents and infants and describes five such programs known collectively as the Child Survival/Fair Start (CS/FS) projects, funded by the Ford Foundation. It describes a conceptual model which links risk factors and intervention activities to effects on mothers and children and explains how…

  18. Shuffling the Deck To Ensure Fairness in Dealing: A Commentary on Some Issues of Equity and Mathematics Education from the Perspective of the QUASAR Project.

    ERIC Educational Resources Information Center

    Silver, Edward A.

    This paper is a reaction to a plenary address, "Fairness in Dealing: Diversity, Psychology, and Mathematics Education" by Suzanne Damarin (SE 057 179). The issues of intentionality, institutional and instructional practices, identity development, and assessment are addressed in regard to the Quantitative Understanding: Amplifying Student…

  19. 25 CFR 900.129 - How do the Secretary and Indian tribe or tribal organization arrive at an overall fair and...

    Code of Federal Regulations, 2010 CFR

    2010-04-01

    ...) Prior costs to the government for similar projects adjusted for comparison to the target location...) Changes in inflation rates and market conditions, including local market conditions; (3) Cost and price... contract. The objective of the negotiations is to arrive at an amount that is fair under current market...

  20. Crunchier on the outside

    ERIC Educational Resources Information Center

    Marks, Sarah; Ranger, Emma

    2005-01-01

    The benefits of using investigation for promoting scientific skills and enhanced conceptual understanding within primary science are well documented. ISE (2000) defines investigations in primary science as "the means of carrying out a fair test to explore some of the children's own ideas on how the natural or man made world works". However, a…

  1. Increasing Student Participation in Science Fair Competitions

    ERIC Educational Resources Information Center

    Miles, Rhea

    2012-01-01

    In the summer of 2009, 22 African American middle school students in eastern North Carolina became participants in the Reach Up program to increase the number of underrepresented students participating in science-, technology-, engineering-, and mathematics-related activities. One of the goals of the program was for these students to participate…

  2. Jump Into Science

    ERIC Educational Resources Information Center

    Peterson, Carol

    2007-01-01

    This book provides information to help create a themed science fair for childen in grades 4-6. Illustrated instructions and checklists for each of the 100 plus experiments are provided, plus ideas for teachers and students to vary experiments for additional scientific discovery. The experiments are written in age-appropriate language so that…

  3. Brains Rule!: A Model Program for Developing Professional Stewardship among Neuroscientists

    ERIC Educational Resources Information Center

    Zardetto-Smith, Andrea M.; Mu, Keli; Carruth, Laura L.; Frantz, Kyle J.

    2006-01-01

    Brains Rule! Neuroscience Expositions, funded through a National Institute on Drug Abuse Science Education Drug Abuse Partnership Award, has developed a successful model for informal neuroscience education. Each Exposition is a "reverse science fair" in which neuroscientists present short neuroscience teaching modules to students. This…

  4. A Science Fair Partnership: An Active Learning Experience for Teacher Candidates

    ERIC Educational Resources Information Center

    McCarthy, Deborah Louise

    2015-01-01

    STEM (science, technology, engineering, and mathematics) education is a national instructional priority. As part of Southeastern Louisiana University's STEM Outreach Initiative, funded by a Shell Oil Company Foundation grant to raise interest in STEM-related activities, teacher candidates were given the opportunity to leave their classroom to…

  5. Project Spectrum: An Innovative Assessment Alternative.

    ERIC Educational Resources Information Center

    Krechevsky, Mara

    1991-01-01

    Project Spectrum attempts to reconceptualize the traditional linguistic and logical/mathematical bases of intelligence. Spectrum blurs the line between curriculum and assessment, embeds assessment in meaningful, real-world activities, uses "intelligence-fair" measures, emphasizes children's strengths, and recognizes the stylistic…

  6. The Power of Large Scale Partnerships to Increase Climate Awareness and Literacy Around the World

    NASA Astrophysics Data System (ADS)

    Murphy, T.; Andersen, T. J.; Wegner, K.

    2016-12-01

    The Global Learning and Observations to Benefit the Environment (GLOBE) Program is an international science and education program that connects a network of communities around the world and gives them the opportunity to participate in data collection and the scientific process, and contribute meaningfully to our understanding of the Earth system and global environment. In the last few years, there has been an infusion of energy in the program as a result of a change to a more community focus. GLOBE was one of the first attempts at a citizen science program at the K-12 level proposed on a global scale. An initial ramp-up of the program was followed by the establishment of a network of partners in countries and within the U.S. One hundred and seventeen countries have participated in the program since its establishment in 1994. These countries are divided into six regions: Africa (23 countries); Asia and Pacific (18); Europe and Eurasia (41); Latin America and Caribbean (20); Near East and North Africa (13); and North America (2). The community within these regions has reached a maturity level that allows it to organize its own science campaigns ranging from aerosols to phenology…all of which increase awareness of climate issues. In addition, some countries within the regions have established science fairs, GLOBE proved to be the impetus for these fairs. The program's partnership network provides students and teachers with a platform for learning about climate issues in their local and global environment, as well as providing scientists with a network to organize data collection and analysis campaigns. Within the U.S., over 130 educational organizations (universities, science museums, nature centers) are members of a partner network divided into six geographical areas: Northwest; Midwest; Northeast and Mid-Atlantic; Southeast; Southwest; and Pacific. For the first time ever, the U.S. held GLOBE science fairs with considerable input and support from the community, the U.S. Partner Forum members, and U.S. Country Coordinator. GLOBE students exhibited their research and learned about climate issues at these fairs. GLOBE has evolved in 20 years and its strength is the community of partners that has helped moved climate literacy forward on a global scale.

  7. Development of AN Open-Source Automatic Deformation Monitoring System for Geodetical and Geotechnical Measurements

    NASA Astrophysics Data System (ADS)

    Engel, P.; Schweimler, B.

    2016-04-01

    The deformation monitoring of structures and buildings is an important task field of modern engineering surveying, ensuring the standing and reliability of supervised objects over a long period. Several commercial hardware and software solutions for the realization of such monitoring measurements are available on the market. In addition to them, a research team at the Neubrandenburg University of Applied Sciences (NUAS) is actively developing a software package for monitoring purposes in geodesy and geotechnics, which is distributed under an open source licence and free of charge. The task of managing an open source project is well-known in computer science, but it is fairly new in a geodetic context. This paper contributes to that issue by detailing applications, frameworks, and interfaces for the design and implementation of open hardware and software solutions for sensor control, sensor networks, and data management in automatic deformation monitoring. It will be discussed how the development effort of networked applications can be reduced by using free programming tools, cloud computing technologies, and rapid prototyping methods.

  8. Science Fairs for Science Literacy

    NASA Astrophysics Data System (ADS)

    Mackey, Katherine; Culbertson, Timothy

    2014-03-01

    Scientific discovery, technological revolutions, and complex global challenges are commonplace in the modern era. People are bombarded with news about climate change, pandemics, and genetically modified organisms, and scientific literacy has never been more important than in the present day. Yet only 29% of American adults have sufficient understanding to be able to read science stories reported in the popular press [Miller, 2010], and American students consistently rank below other nations in math and science [National Center for Education Statistics, 2012].

  9. Scienza under 18 isontina: a teachers association at the extreme northern corner of the Mediterranean

    NASA Astrophysics Data System (ADS)

    Gallo, Maria Teresa; Realdon, Giulia; Candussio, Giuliana; Fabris, Sandra; Bianchet, Livia; Manià, Marinella

    2017-04-01

    How we are born: history of the group and of the project Scienza under 18 Isontina originated from a group of teachers working in a national science education project (from kindergarten to high school) run by the Italian Ministry of Education (2006-2013). In 2009 we started the first science school festival open to different school grades. In 2010 we established the association Scienza under 18 Isontina aimed at promoting science communication for the schools of our province and outside schools for citizens and other stakeholders interested in science education. Who we are We are a group of teachers and principals working with students aged 3-19 years and with their teachers. We are part of the National Scienza under 18 Association. We live and work in Monfalcone and in the nearby towns of the province of Gorizia. Monfalcone, in particular, is situated in the extreme northern corner of the Mediterranean. This town's coastal area is characterized by different business linked to the sea (a world known shipyard - Fincantieri - an important harbour, a power plant and a number of marinas), but also by coastal protected areas. Since 2010 we have built a science communication network involving local authorities (municipalities, province), institutions (universities), other NGOs and private companies. What we do  Every year we run a festival at the end of the school year (in May): in the festival students showcase their science projects in a fair or through on-stage performances. In addition, Scienza under 18 Isontina organizes exhibitions about science related topics, practical labs and workshops for classes, maths games and theatrical performances.  During the school year we organize "special events": o M'illumino di Meno (a one-day national initiative on energy saving) o Pi Day (maths games for students and teacher training in the international Pi Day) o Sustainability Week (promoted by UNESCO) o Science Cafè (informal science happenings run by high school students)  We provide teacher training: in-service professional development courses, pre-service teacher placements.  We perform practical labs and science drama activities ("Scienza under 18 Take Away") in schools and public libraries on science related topics. A special focus on the environment Given our location, we pay special attention to sea-related issues, both on the side of science education and of environmental education. In the last years we developed original activities on plastics and micro-plastics in marine environment, published in the European journal Science in school and presented in Italian and European teacher conferences. We also produced practical labs and drama activities on WEEE (Waste of Electric and Electronic Equipment) environment related problems for different student ages. Inspired by EXPO 2015, we address sustainable nutrition through conferences and school exhibits. We also run fieldwork activities in coastal wetlands of our area and celebrate World Oceans Day by means of water analyses and investigations on the beach.

  10. Towards more Global Coordination of Atmospheric Electricity Measurements (GloCAEM)

    NASA Astrophysics Data System (ADS)

    Nicoll, Keri; Harrison, Giles

    2017-04-01

    Earth's atmospheric electrical environment has been studied since the 1750s but its more recent applications to science questions around clouds and climate highlight the incompleteness of our understanding, in part due to lack of suitable global measurements. The Global Electric Circuit (GEC) sustains the near-surface fair weather (FW) electric field, which is present globally in regions which are not strongly electrically disturbed by weather or pollution. It can be measured routinely at the surface using well established instrumentation such as electric field mills. Despite the central role of lightning as a weather hazard and the potentially widespread importance of charge for atmospheric processes, research is hampered by the fragmented nature of surface atmospheric electricity measurements. This makes anything other than local studies in fortuitous fair weather conditions difficult. In contrast to detection of global lightning using satellite measurements and ground-based radio networks, the FW electric field and GEC cannot be measured by remote sensing and no similar measurement networks exist for its study. This presents an opportunity as many researchers worldwide now make high temporal resolution measurements of the FW electric field routinely, which is neither coordinated nor exploited. The GLOCAEM (Global Coordination of Atmospheric Electricity Measurements) project is currently bringing some of these experts together to make the first steps towards an effective global network for FW atmospheric electricity monitoring. A specific objective of the project is to establish the first modern archive of international FW atmospheric electric field data in close to real time to allow global studies of atmospheric electricity to be straightforwardly and robustly performed. Data will be archived through the UK Centre for Environmental Data Analysis (CEDA) and will be available for download by users from early 2018. Both 1 second and 1 minute electric field data will be archived, along with meteorological measurements (if available) for ease of interpretation of electrical measurements. Although the primary aim of the project is to provide a close to real time electric field database, archiving of existing historical electric field datasets is also planned to extend the range of studies possible. This presentation will provide a summary of progress with the GLOCAEM project.

  11. The Technology Fair: A Project-Based Learning Approach for Enhancing Problem Solving Skills and Interest in Design and Technology Education

    ERIC Educational Resources Information Center

    Mettas, Alexandros C.; Constantinou, Constantinos C.

    2008-01-01

    This paper presents an innovative way in which university education can help pre-service teachers become better problem-solvers. The central idea is to use the "Technology Fair" as a means for promoting pre-service teachers pedagogical content knowledge about technological problem solving skills. This innovation is supported with results from a…

  12. Flow Control about an Airborne Laser Turret

    DTIC Science & Technology

    1982-06-01

    that houses the laser telescope• Afterbody f=airing and f•iselage boundary layer suction were employed with porous material added when necessary to...Thesis Advisor Chairman, D partment of Aeronautics Dean of Scienci arnd Engineering 3 ABSTRACT This thesis project is the latest in a series of...that houses the laser telescope. Afterbody fairing and fuselage boundary layer suction were employed with porous material added when necessary to

  13. Potpourri.

    ERIC Educational Resources Information Center

    Science Scope, 1994

    1994-01-01

    Presents three articles that describe different ways of teaching the scientific method using cookies ("The One-Hour Science Fair"), cola ("Are All Medium Colas the Same Size"), and television ("Timing Televiewing"). (PR)

  14. The Laser Teaching Center at Stony Brook

    NASA Astrophysics Data System (ADS)

    Metcalf, Harold

    2010-03-01

    Stony Brook's Laser Teaching Center was built more than ten years ago to serve a clientele ranging from high school (HS) students to graduate students. Its construction in a formerly open hallway area was financed by donations from private corporations and foundations, and it was equipped with similar contributions. It provides a working area for laser and optics-related projects, both individual and group. Its daily operations are overseen by a highly-dedicated Ph.D. who is a department employee. It is populated by HS students doing science fair related research, including the major national contests (in which we have many finalists and semifinalists), undergraduates doing extra-credit course projects and other kinds of research activities, graduate students in a special course called ``Optics Rotation,'' and many others who come to use its facilities. All of its denizens benefit enormously by occasional prestigious visitors. Students are drawn from among our undergraduates and graduate students, NSF's WISE program, special HS summer programs, and direct application from the outside. We have an excellent record of placing our HS students in the highest ranking colleges.

  15. Constructivist Viewpoints for School Teaching and Learning in Mathematics and Science. Research Report 131.

    ERIC Educational Resources Information Center

    Ahtee, Maija, Ed.; Pehkonen, Erkki, Ed.

    This research report contains a fairly concise overview of the role of constructivism in the teaching of mathematics and science in Finland. Included papers have been grouped into three parts. The first part, "General Considerations," consists of the seven articles on theoretical considerations, social constructivism, teachers' and pupils'…

  16. NASA Report to Educators, Vol. 4, No. 3, October 1976.

    ERIC Educational Resources Information Center

    National Aeronautics and Space Administration, Washington, DC.

    This periodical presents a summary of the Viking Mission to Mars, a listing of Skylab science films with the address for additional information; a schedule of exhibits at National Aeronautics and Space Administration visitor centers; space shuttle news; announcements of International Science Fair Awards; and an annotated bibliography of meteorites…

  17. How To Build It and Keep It Working.

    ERIC Educational Resources Information Center

    Crane, H. Richard

    This book contains construction plans of exhibits that have been collected during more than 10 years, and notes for their maintenance, at the Ann Arbor (Michigan) Hands-On museum. It is a useful source of hard-to-find information for exhibit builders, science fair participants, science teachers, students, and home tinkerers. This collection…

  18. The Numbers Gap.

    ERIC Educational Resources Information Center

    Kaplan, Joel; Aronson, David

    1994-01-01

    This article discusses gender bias concerning girls in math and science classrooms and careers. It examines some of the reasons for this bias and its effects on self-esteem, and it provides examples of the preventive measures that are currently being used, including the use of girls-only math and science fairs. Gender equity legislation is also…

  19. When Child Development Meets Economic Game Theory: An Interdisciplinary Approach to Investigating Social Development

    ERIC Educational Resources Information Center

    Gummerum, Michaela; Hanoch, Yaniv; Keller, Monika

    2008-01-01

    Game theory has been one of the most prominent theories in the social sciences, influencing diverse academic disciplines such as anthropology, biology, economics, and political science. In recent years, economists have employed game theory to investigate behaviors relating to fairness, reciprocity, and trust. Surprisingly, this research has not…

  20. STEM Clubs and Science Fair Competitions: Effects on Post-Secondary Matriculation

    ERIC Educational Resources Information Center

    Sahin, Alpaslan

    2013-01-01

    As the global economic competition gets tougher, American policymakers and researchers are interested in finding ways to increase the number of students pursuing STEM (Science, Technology, Engineering, and Mathematics)-related majors in order for the United States to continue its role as an economic powerhouse. A survey study was employed to…

  1. "That's Not the Way I Was Taught Science at School!" How Preservice Primary Teachers in Abu Dhabi, United Arab Emirates Are Affected by Their Own Schooling Experiences

    ERIC Educational Resources Information Center

    Dickson, M.; Kadbey, H.

    2014-01-01

    Government schools in Abu Dhabi, as part of widescale educational reforms undertaken in the whole of the United Arab Emirates (UAE), have undergone significant change since 2007 across cycles and across subjects including science. Science had been taught historically in the UAE using fairly traditional "chalk and talk", teacher-centered…

  2. Ocean FEST and TECH: Inspiring Hawaii's Students to Pursue Ocean, Earth and Environmental Science Careers

    NASA Astrophysics Data System (ADS)

    Bruno, B. C.; Wren, J. L.; Ayau, J. F.

    2013-12-01

    Ocean TECH (Technology Expands Career Horizons) is a new initiative funded by NSF/GeoEd to stimulate interest in ocean, earth and environmental science careers - and the college majors that lead to such careers - among Hawaii's underrepresented students in grades 6-14. The Ocean TECH project features hands-on ocean science and technology and interactions with career professionals. Ocean TECH builds upon Ocean FEST (Families Exploring Science Together), a previous NSF/OEDG project aimed at teaching fun hands-on science in culturally and locally relevant ways to Hawaii's elementary school students and their families. Ocean FEST was rigorously evaluated (including cognitive pre-testing developed in partnership with external evaluators) and shown to be successful both in teaching science content and changing attitudes toward ocean, earth and environmental science careers. Over the course of the four-year grant, Ocean FEST reached 20,99 students and adults, including 636 classroom teachers and other volunteers who assisted with program delivery, most of whom were from underrepresented groups. For more info on Ocean FEST: http://oceanfest.soest.hawaii.edu/ Ocean TECH events have various formats, but common themes include: (1) Using technology as a hook to engage students in ocean, earth and environmental science. (2) Bringing middle school through community college students to college campuses, where they engage in hands-on science activities and learn about college majors. (3) Drawing direct links between the students' hands-on science activities and the research currently occurring at the UH Manoa's School of Ocean and Earth Science and Technology (SOEST), such as C-MORE and HOT research. (4) Respecting and valuing students' local knowledge and experiences. (5) Explicitly showing, through concrete examples, how becoming an ocean, earth or environmental scientist addresses would beneit Hawaii (6) Having graduate students from diverse backgrounds serve as instructors and undergraduates from diverse backgrounds serve as teaching assistants. Pre-college and community college students can more easily relate to these young role models, which can make pursuing an ocean or earth science career seem more attainable. (7) Organizing career fairs and informal career mixers, to promote one-on-one interactions between students of all ages and diverse career professionals in a range of ocean, earth and environmental science occupations. (8) Forming relationships with minority-serving recruiting organizations and programs to ensure we reach our intended audience. Through such partnerships, we have reached students from underrepresented communities in Hawai';i and throughout the Pacific.

  3. Thinking Big for 25 Years: Astronomy Camp Research Projects

    NASA Astrophysics Data System (ADS)

    Hooper, Eric Jon; McCarthy, D. W.; Benecchi, S. D.; Henry, T. J.; Kirkpatrick, J. D.; Kulesa, C.; Oey, M. S.; Regester, J.; Schlingman, W. M.; Camp Staff, Astronomy

    2013-01-01

    Astronomy Camp is a deep immersion educational adventure for teenagers and adults in southern Arizona that is entering its 25th year of existence. The Camp Director (McCarthy) is the winner of the 2012 AAS Education Prize. A general overview of the program is given in an accompanying contribution (McCarthy et al.). In this presentation we describe some of the research projects conducted by Astronomy Camp participants over the years. Many of the Camps contain a strong project-oriented emphasis, which reaches its pinnacle in the Advanced Camps for teenagers. High school students from around the world participate in a microcosm of the full arc of astronomy research. They plan their own projects before the start of Camp, and the staff provide a series of "key projects." Early in the Camp the students submit observing proposals to utilize time on telescopes. (The block of observing time is secured in advance by the staff.) The participants collect, reduce and analyze astronomical data with the help of staff, and they present the results to their peers on the last night of Camp, all in a span of eight days. The Camps provide research grade telescopes and instruments, in addition to amateur telescopes. Some of the Camps occur on Kitt Peak, where we use an ensemble of telescopes: the 2.3-meter (University of Arizona) with a spectrograph; the WIYN 0.9-meter; the McMath-Pierce Solar Telescope; and the 12-meter millimeter wave telescope. Additionally the Camp has one night on the 10-meter Submillimeter Telescope on Mt. Graham. Campers use these resources to study stars, galaxies, AGN, transiting planets, molecular clouds, etc. Some of the camper-initiated projects have led to very high level performances in prestigious international competitions, such as the Intel International Science and Engineering Fair. The key projects often contribute to published astronomical research (e.g., Benecchi et al. 2010, Icarus, 207, 978). Many former Campers have received Ph.D. degrees in astronomy and other sciences and are now faculty members, a current Hubble Fellow, the PI of a facility class instrument on an 11-meter telescope (SALT), etc.

  4. An Analysis of High School Students' Performance on Five Integrated Science Process Skills

    NASA Astrophysics Data System (ADS)

    Beaumont-Walters, Yvonne; Soyibo, Kola

    2001-02-01

    This study determined Jamaican high school students' level of performance on five integrated science process skills and if there were statistically significant differences in their performance linked to their gender, grade level, school location, school type, student type and socio-economic background (SEB). The 305 subjects comprised 133 males, 172 females, 146 ninth graders, 159 10th graders, 150 traditional and 155 comprehensive high school students, 164 students from the Reform of Secondary Education (ROSE) project and 141 non-ROSE students, 166 urban and 139 rural students and 110 students from a high SEB and 195 from a low SEB. Data were collected with the authors' constructed integrated science process skills test the results indicated that the subjects' mean score was low and unsatisfactory; their performance in decreasing order was: interpreting data, recording data, generalising, formulating hypotheses and identifying variables; there were statistically significant differences in their performance based on their grade level, school type, student type, and SEB in favour of the 10th graders, traditional high school students, ROSE students and students from a high SEB. There was a positive, statistically significant and fairly strong relationship between their performance and school type, but weak relationships among their student type, grade level and SEB and performance.

  5. State of STEM (SoSTEM) Address

    NASA Image and Video Library

    2014-01-29

    Dr. John P. Holdren, Assistant to the President for Science and Technology and Director of the White House Office of Science & Technology Policy, left, smiles along with 16-year-old Joey Hudy, a former White House Science Fair participant and self-described “Maker” at the annual White House State of Science, Technology, Engineering, and Math (SoSTEM) address, Wednesday, Jan. 29, 2014, in the South Court Auditorium in the Eisenhower Executive Office Building on the White House complex in Washington. Photo Credit: (NASA/Bill Ingalls)

  6. ALFA: The new ALICE-FAIR software framework

    NASA Astrophysics Data System (ADS)

    Al-Turany, M.; Buncic, P.; Hristov, P.; Kollegger, T.; Kouzinopoulos, C.; Lebedev, A.; Lindenstruth, V.; Manafov, A.; Richter, M.; Rybalchenko, A.; Vande Vyvre, P.; Winckler, N.

    2015-12-01

    The commonalities between the ALICE and FAIR experiments and their computing requirements led to the development of large parts of a common software framework in an experiment independent way. The FairRoot project has already shown the feasibility of such an approach for the FAIR experiments and extending it beyond FAIR to experiments at other facilities[1, 2]. The ALFA framework is a joint development between ALICE Online- Offline (O2) and FairRoot teams. ALFA is designed as a flexible, elastic system, which balances reliability and ease of development with performance using multi-processing and multithreading. A message- based approach has been adopted; such an approach will support the use of the software on different hardware platforms, including heterogeneous systems. Each process in ALFA assumes limited communication and reliance on other processes. Such a design will add horizontal scaling (multiple processes) to vertical scaling provided by multiple threads to meet computing and throughput demands. ALFA does not dictate any application protocols. Potentially, any content-based processor or any source can change the application protocol. The framework supports different serialization standards for data exchange between different hardware and software languages.

  7. Working with Teachers to Develop Fair and Reliable Measures of Effective Teaching. MET Project

    ERIC Educational Resources Information Center

    Bill & Melinda Gates Foundation, 2010

    2010-01-01

    In fall 2009, the Bill & Melinda Gates Foundation launched the Measures of Effective Teaching (MET) project to develop and test multiple measures of teacher effectiveness. The goal of the MET project is to improve the quality of information about teaching effectiveness available to education professionals within states and districts--information…

  8. Embracing the Importance of FAIR Research Products - Findable, Accessible, Interoperable, and Reusable

    NASA Astrophysics Data System (ADS)

    Stall, S.

    2017-12-01

    Integrity and transparency within research is solidified by a complete set of research products that are findable, accessible, interoperable, and reusable. In other words, they follow the FAIR Guidelines developed by FORCE11.org. Your datasets, images, video, software, scripts, models, physical samples, and other tools and technology are an integral part of the narrative you tell about your research. These research products increasingly are being captured through workflow tools and preserved and connected through persistent identifiers across multiple repositories that keep them safe. They help secure, with your publications, the supporting evidence and integrity of the scientific record. This is the direction that Earth and space science as well as other disciplines is moving. Within our community, some science domains are further along, and others are taking more measured steps. AGU as a publisher is working to support the full scientific record with peer reviewed publications. Working with our community and all the Earth and space science journals, AGU is developing new policies to encourage researchers to plan for proper data preservation and provide data citations along with their research submission and to encourage adoption of best practices throughout the research workflow and data life cycle. Providing incentives, community standards, and easy-to-use tools are some important factors for helping researchers embrace the FAIR Guidelines and support transparency and integrity.

  9. How to Teach High-School Students "How Science Really Works?"

    NASA Astrophysics Data System (ADS)

    Losiak, Anna; Students, High-School; Winiarska, Anna; Parys-Wasylkiewicz, Magdalena

    2016-04-01

    One of the largest problems in Poland (as well as in the large part of the developed world) is that people do not understand how science works. Based on what they learned at school, they think that science is an aggregation of facts that you need to learn by heart. Based on media coverage of the science topics, they think it is a collection of curiosities about the two-headed-snakes. Based on the way in which science is shown in movies and TV series, they envision science as a magic performed in a white coat with usage of colorful fluids and magic spells such as "transformative hermeneutics of quantum gravity". As a result, our societies include a large number of people who "do not believe" in evolution, think that vaccinations are causing autism and that anthropogenic global warming is a myth. This is not very surprising, given that most people never had a chance to perform a real scientific experiment. Most of people, if they are lucky, are able to see some science demonstrations in the classrooms. They are of course very useful, but it is quite clear for everyone that (if everything goes well) the demonstration can end up in one, pre-defined way. The "real" scientific experiment, as a part of the scientific process, is when the outcome is unknown until the end of the entire process. In order to teach high-school students "How Science Really Works" we have developed a project lasting one year (grant from Foundation for Polish Science 26/UD/SKILLS/2015): 1) At first students learned about scientific method, science history and performed a simple scientific experiment. 2) Later, students developed an experiment that was answering a real, unanswered scientific problem (the problem was given by the Leading Scientist). The aim of the project was to determine influence of albedo and emissivity of rock particles laying on a surface of a glacier on the rate of cryoconite holes formation. The results of this experiment can be used to better determine the rate of melting terrestrial glaciers and Martian North Polar Residual Cap. 3) Students were responsible for physically preparing scientific equipment (within a given budget). 4) Students prepared detailed procedures which were used during the experiment. The experiment was performed by the Austrian Space Forum analog astronauts during the Mars Analog Mission AMADEE-15 between 2nd and 14th of August 2015 at the Kaunertal Glacier in Austria. 5) During and after the mission students analyzed data collected during the experiment. 6) Students presented their findings during the regional science fair (Dolnoslaski Festiwal Nauki). Despite the fact the quality of the data produced during the experiment was not satisfactory, the project was a success in terms of explaining students "How Science Really Works" (e.g., how much depends on the properly designed and executed procedures).

  10. The Defense Logistics Agency Properly Awarded Power Purchase Agreements and the Army Obtained Fair Market Value for Leases Supporting Power Purchase Agreements

    DTIC Science & Technology

    2016-09-28

    Fair Market Value for Leases Supporting Power Purchase Agreements I N T E G R I T Y  E F F I C I E N C Y  A C C O U N T A B I L I T Y  E X... Market Value for Leases Supporting Power Purchase Agreements Visit us at www.dodig.mil September 28, 2016 Objective We determined whether the...Department of the Army properly awarded and obtained fair market value for leases supporting energy production projects. We conducted this audit in

  11. FAIR Fuel Act

    THOMAS, 111th Congress

    Sen. McCaskill, Claire [D-MO

    2009-07-21

    Senate - 07/21/2009 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  12. Unconscious Bias in the Classroom: Evidence and Opportunities, 2017

    ERIC Educational Resources Information Center

    Dee, T.; Gershenson, S.

    2017-01-01

    The underrepresentation of women and racial and ethnic minorities in computer science (CS) and other fields of science, technology, engineering, and math (STEM) is a serious impediment to technological innovation as well as an affront to fundamental notions of fairness and equity. These gaps emerge in the early grades and tend to persist, if not…

  13. Chemistry inside an Epistemological Community Box! Discursive Exclusions and Inclusions in Swedish National Tests in Chemistry

    ERIC Educational Resources Information Center

    Ståhl, Marie; Hussénius, Anita

    2017-01-01

    This study examined the Swedish national tests in chemistry for implicit and explicit values. The chemistry subject is understudied compared to biology and physics and students view chemistry as their least interesting science subject. The Swedish national science assessments aim to support equitable and fair evaluation of students, to concretize…

  14. CHARACTERISTICS OF THE TECHNICAL EDUCATION STUDENT.

    ERIC Educational Resources Information Center

    MILLER, AARON J.

    THE POST-HIGH SCHOOL TRAINEE SHOULD BE A HIGH SCHOOL GRADUATE OR THE EQUIVALENT. A FAIR DEGREE OF PROFICIENCY IN MATHEMATICS AND SCIENCE IS REQUIRED. IT IS REASONABLE TO EXPECT THE COMPLETION OF 2 YEARS OF HIGH SCHOOL MATHEMATICS AND 1 YEAR OF HIGH SCHOOL SCIENCE. SOME BACKGROUND IN DRAFTING AND SHOP IS DESIRABLE. THE STUDENT SHOULD BE AVERAGE OR…

  15. KSC-04pd1530

    NASA Image and Video Library

    2004-07-21

    KENNEDY SPACE CENTER, FLA. - In Hangar AE, Cape Canaveral Air Force Station, the end of the Boeing Delta fairing is covered to keep the inside clean. The fairing will encapsulate the Swift spacecraft. Swift is a first-of-its-kind, multi-wavelength observatory dedicated to the study of gamma-ray burst (GRB) science. Its three instruments will work together to observe GRBs and afterglows in the gamma-ray, X-ray and optical wavebands. Swift is part of NASA’s medium explorer (MIDEX) program being developed by an international collaboration.

  16. KSC-2012-1601

    NASA Image and Video Library

    2012-02-29

    VANDENBERG AIR FORCE BASE, Calif. -- NASA's Nuclear Spectroscopic Telescope Array NuSTAR spacecraft is wrapped in its protective cover and half of its payload fairing is behind it in processing facility 1555 at Vandenberg Air Force Base in California. Technicians are performing fairing closeout work in preparation for fairing installation around the spacecraft, which is scheduled to begin March 2. The cover protecting NuSTAR's delicate instruments will be removed prior to the fairing installation. The fairing will protect the spacecraft from the heat and aerodynamic pressure generated during ascent to orbit aboard an Orbital Sciences Pegasus XL rocket. After processing of the rocket and spacecraft are complete, they will be flown on Orbital's L-1011 carrier aircraft from Vandenberg to the Ronald Reagan Ballistic Missile Defense Test Site on the Pacific Ocean’s Kwajalein Atoll for launch. The high-energy X-ray telescope will conduct a census of black holes, map radioactive material in young supernovae remnants, and study the origins of cosmic rays and the extreme physics around collapsed stars. For more information, visit http://www.nasa.gov/nustar. Photo credit: NASA/Randy Beaudoin, VAFB

  17. The American Indian Summer Institute in Earth System Science (AISESS) at UC Irvine: A Two-Week Residential Summer Program for High School Students

    NASA Astrophysics Data System (ADS)

    Johnson, K. R.; Polequaptewa, N.; Leon, Y.

    2012-12-01

    Native Americans remain severely underrepresented in the geosciences, despite a clear need for qualified geoscience professionals within Tribal communities to address critical issues such as natural resource and land management, water and air pollution, and climate change. In addition to the need for geoscience professionals within Tribal communities, increased participation of Native Americans in the geosciences would enhance the overall diversity of perspectives represented within the Earth science community and lead to improved Earth science literacy within Native communities. To address this need, the Department of Earth System Science and the American Indian Resource Program at the University California have organized a two-week residential American Indian Summer Institute in Earth System Science (AISESS) for high-school students (grades 9-12) from throughout the nation. The format of the AISESS program is based on the highly-successful framework of a previous NSF Funded American Indian Summer Institute in Computer Science (AISICS) at UC Irvine and involves key senior personnel from the AISICS program. The AISESS program, however, incorporates a week of camping on the La Jolla Band of Luiseño Indians reservation in Northern San Diego County, California. Following the week of camping and field projects, the students spend a week on the campus of UC Irvine participating in Earth System Science lectures, laboratory activities, and tours. The science curriculum is closely woven together with cultural activities, native studies, and communication skills programs The program culminates with a closing ceremony during which students present poster projects on environmental issues relevant to their tribal communities. The inaugural AISESS program took place from July 15th-28th, 2012. We received over 100 applications from Native American high school students from across the nation. We accepted 40 students for the first year, of which 34 attended the program. The objective of the program is to introduce students to Earth System Science and, hopefully, inspire them to pursue Earth or Environmental Science degrees. Towards this end, we developed a fairly broad curriculum which will be presented here. Evaluation planning was conducted during the first quarter of 2012 during recruitment. A longitudinal database was established for the project to track college preparatory course-taking, GPA, school attendance, participation in earth science activities, and attitudes and interest in attending college and completing a degree after high school. Based on attendance during AISESS, schools and students will be selected as descriptive case studies. A pre-post design for evaluating the Summer Institute includes a survey about student background, attitudes, and knowledge about preparing to complete high school and attend college after graduation and focus groups of participants immediately after the Institute to capture qualitative data about their experiences in the field and at the University. Initial evaluation results will be presented here.

  18. The tyranny of taste: the case of organic rice in Cambodia.

    PubMed

    Thavat, Maylee

    2011-01-01

    Fair-trade and organic products are often sold at price premiums justified by smaller production volumes that are associated with greater social and environmental responsibility. The consumption of these products confers on the consumer a greater sense of morality – and usually a claim to better taste. This paper tells the story of attempts to promote organic/fair-trade rice production by de facto organic Cambodian farmers for export to North American and European markets in order to assist poor farmers to trade their way out of poverty. It demonstrates that instead of promoting sustainable agriculture and fair trade between developed and developing markets, organic/fair-trade projects may impose First World consumer ideals and tastes that are out of step with the larger realities of agrarian transition in Cambodia and the wider region of developing Southeast Asia.

  19. Maritime Liability Fairness Act

    THOMAS, 112th Congress

    Sen. Whitehouse, Sheldon [D-RI

    2011-03-16

    Senate - 03/16/2011 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  20. A Team Building Model for Software Engineering Courses Term Projects

    ERIC Educational Resources Information Center

    Sahin, Yasar Guneri

    2011-01-01

    This paper proposes a new model for team building, which enables teachers to build coherent teams rapidly and fairly for the term projects of software engineering courses. Moreover, the model can also be used to build teams for any type of project, if the team member candidates are students, or if they are inexperienced on a certain subject. The…

  1. Implementation and Outcomes of Online Self and Peer Assessment on Group Based Honours Research Projects

    ERIC Educational Resources Information Center

    Wu, Chengqing; Chanda, Emmanuel; Willison, John

    2014-01-01

    Honours research projects in the School of Civil, Environmental and Mining Engineering at the University of Adelaide are run with small groups of students working with an academic supervisor in a chosen area for one year. The research project is mainly self-directed study, which makes it very difficult to fairly assess the contribution of…

  2. Teacher Self-Knowledge: The Deeper Learning

    ERIC Educational Resources Information Center

    McIntosh, Peggy

    2015-01-01

    The National Seeking Educational Equity and Diversity (SEED) Project on Inclusive Curriculum is the nation's largest peer-led leadership development project. It engages public and private school teachers, college faculty, parents, and community leaders from all subject areas, grade levels, and geographic locations to create gender fair,…

  3. 24 CFR 886.102 - Definitions.

    Code of Federal Regulations, 2010 CFR

    2010-04-01

    ... SUPPORTIVE HOUSING FOR THE ELDERLY PROGRAM AND SECTION 811 SUPPORTIVE HOUSING FOR PERSONS WITH DISABILITIES... for Projects With HUD-Insured and HUD-Held Mortgages § 886.102 Definitions. The terms Fair Market Rent...-held purchase money mortgage; or a project for the elderly financed under section 202 of the Housing...

  4. 78 FR 22036 - Proposed Collection; Comment Request for Regulation Project

    Federal Register 2010, 2011, 2012, 2013, 2014

    2013-04-12

    ... fair market value of the underlying property before and after the donation and (2) the conservation... qualified conservation contributions (Sec. 1.170A-14). DATES: Written comments should be received on or... INFORMATION: Title: Qualified Conservation Contributions. OMB Number: 1545-0763. Regulation Project Number: TD...

  5. Bridging the Technology Readiness "Valley of Death" Utilizing Nanosats

    NASA Technical Reports Server (NTRS)

    Bauer, Robert A.; Millar, Pamela S.; Norton, Charles D.

    2015-01-01

    Incorporating new technology is a hallmark of space missions. Missions demand ever-improving tools and techniques to allow them to meet the mission science requirements. In Earth Science, these technologies are normally expressed in new instrument capabilities that can enable new measurement concepts, extended capabilities of existing measurement techniques, or totally new detection capabilities, and also, information systems technologies that can enhance data analysis or enable new data analyses to advance modeling and prediction capabilities. Incorporating new technologies has never been easy. There is a large development step beyond demonstration in a laboratory or on an airborne platform to the eventual space environment that is sometimes referred to as the "technology valley of death." Studies have shown that non-validated technology is a primary cause of NASA and DoD mission delays and cost overruns. With the demise of the New Millennium Program within NASA, opportunities for demonstrating technologies in space have been rare. Many technologies are suitable for a flight project after only ground testing. However, some require validation in a relevant or a space flight environment, which cannot be fully tested on the ground or in airborne systems. NASA's Earth Science Technology Program has initiated a nimble program to provide a fairly rapid turn-around of space validated technologies, and thereby reducing future mission risk in incorporating new technologies. The program, called In-Space Validation of Earth Science Technology (InVEST), now has five tasks in development. Each are 3U CubeSats and they are targeted for launch opportunities in the 2016 time period. Prior to formalizing an InVEST program, the technology program office was asked to demonstrate how the program would work and what sort of technologies could benefit from space validation. Three projects were developed and launched, and have demonstrated the technologies that they set out to validate. This paper will provide a brief status of the pre-InVEST CubeSats, and discuss the development and status of the InVEST program. Figure

  6. Rhode Island Fishermen's Fairness Act

    THOMAS, 113th Congress

    Sen. Reed, Jack [D-RI

    2013-04-11

    Senate - 04/11/2013 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  7. Rhode Island Fishermen's Fairness Act

    THOMAS, 112th Congress

    Sen. Reed, Jack [D-RI

    2011-07-14

    Senate - 07/14/2011 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  8. Digital TV Transition Fairness Act

    THOMAS, 111th Congress

    Sen. Sanders, Bernard [I-VT

    2009-01-07

    Senate - 01/07/2009 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  9. Fluke Fairness Act of 2013

    THOMAS, 113th Congress

    Sen. Schumer, Charles E. [D-NY

    2013-11-21

    Senate - 11/21/2013 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  10. Assessment of the CATTS Students Across Borders Program: Implications for other GK-12 Programs

    NASA Astrophysics Data System (ADS)

    Reynolds, A. C.; Regens, N. L.; Gray, F.; Hartstone, L. C.; Donovan, C.

    2005-12-01

    The Collaboration for the Advancement of Teaching Technology and Science (CATTS) is a Track 2 GK-12 program based at the University of Arizona which partners with local school districts to improve science, mathematics and technology teaching at all levels. The partnership provides students selected for the CATTS program a prestigious NSF Graduate Teaching Fellowship in K-12 Education to work with K-12 teachers as resource agents. The goals of the CATTS program are to establish sustainable partnerships with K-12 educators that integrate science, mathematics, engineering and technology research into classroom learning experiences, to create opportunities for graduate and undergraduate students to be active participants in K-12 education, and to foster effective teaching and a greater understanding of learning at all levels. One project within the CATTS program is the Students Across Borders (SAB) program. SAB, established in 2002, welcomes Hispanic and other minority high school students in their sophomore and junior years to the University of Arizona campus for a week-long, summer workshop in the natural sciences. The program is designed to nurture the Earth science interests of these students and to mentor them through the college application process. The vision of SAB is to empower students to change their fortunes by guiding them through borders that often separate them from success in higher education and careers in science. As a second component of the program, SAB sends graduate and undergraduate students (CATTS fellows) from the University into local high schools during the school year following the summer workshop to work directly with participating educators in the classroom environment. For three years, SAB has proven successful in both components of the program, as evidenced by the success of SAB alumni entering college and by the enthusiasm and continued involvement of educators in accepting fellows into their classrooms. Numerous lessons and student science fair projects have directly resulted from the CATTS/SAB presence in the classroom. However, maintaining links between goals of the summer workshop and the goals in the classroom continues to be a challenge. This poster examines the design and implementation of the SAB program, including fellows' transition from workshop to classroom, and attempts to identify areas where the linkages between the two components of the program can be strengthened. In addition, the strengths and weaknesses of the SAB program are assessed using follow-up interviews with participants and past Fellows and educators. These assessments strengthen the SAB project and the CATTS program, in general. These assessment findings have wide applicability to other educational GK-12 preparation workshops. This program is sponsored by the National Science Foundations 's Track 2 GK-12 program under grant DGE0228247.

  11. The Manchester Fly Facility: Implementing an objective-driven long-term science communication initiative.

    PubMed

    Patel, Sanjai; Prokop, Andreas

    2017-10-01

    Science communication is increasingly important for scientists, although research, teaching and administration activities tend to eat up our time already, and budgets for science communication are usually low. It appears impossible to combine all these tasks and, in addition, to develop engagement activities to a quality and impact that would make the efforts worth their while. Here we argue that these challenges are easier addressed when centering science communication initiatives on a long-term vision with a view to eventually forming outreach networks where the load can be shared whilst being driven to higher momentum. As one example, we explain the science communication initiative of the Manchester Fly Facility. It aims to promote public awareness of research using the model organism Drosophila, which is a timely, economic and most efficient experimental strategy to drive discovery processes in the biomedical sciences and must have a firm place in the portfolios of funding organisations. Although this initiative by the Manchester Fly Facility is sustained on a low budget, its long-term vision has allowed gradual development into a multifaceted initiative: (1) targeting university students via resources and strategies for the advanced training in fly genetics; (2) targeting the general public via science fairs, educational YouTube videos, school visits, teacher seminars and the droso4schools project; (3) disseminating and marketing strategies and resources to the public as well as fellow scientists via dedicated websites, blogs, journal articles, conference presentations and workshops - with a view to gradually forming networks of drosophilists that will have a greater potential to drive the science communication objective to momentum and impact. Here we explain the rationales and implementation strategies for our various science communication activities - which are similarly applicable to other model animals and other areas of academic science - and share our experiences and resources to provide ideas and readily available means to those who are actively engaging or intend to do so. Copyright © 2017 The Authors. Published by Elsevier Ltd.. All rights reserved.

  12. Harmonization based on regulatory science between scientific and commercial radio uses in a case of ultrawideband radio

    NASA Astrophysics Data System (ADS)

    Kohno, Ryuji; Iinatti, Jari; Sameshima, Keiko

    2016-12-01

    Harmonization for scientific and commercial radio uses is one of the unsolved problems in academia, industry, and regulatory bodies. The demands for commercial radio, mobile communications, and broadcasting have significantly increased over the past few decades; therefore, interference has become a major concern. There is an increasing need to prevent such interferences, for example, between commercial radio systems and other potentially sensitive radio systems such as those used for radio astronomy or studies. When discussing the fairness in resolving such conflicts, regulatory science may be a useful multidisciplinary approach as it scientifically investigates the advantages and disadvantages of a new application or technology for conflicts between different stakeholders through a mathematical analysis of risks versus benefits of the given technology. Such an analysis enables fair rules or regulations to be made. In this study, we apply the above-mentioned concept to harmonize the scientific and commercial uses of radio. After a brief introduction to regulatory science, a case study about the coexistence between ultrawideband commercial radio systems and radio astronomy is considered. Finally, a proposal by International Union of Radio Science, Japan, to the Science Council of Japan in the Cabinet Office to establish a "Center for Coexistence and Harmonization of Scientific and Commercial Uses of Radio Waves" is explained.

  13. You Can't Flush Science Outreach

    NASA Astrophysics Data System (ADS)

    Drobnes, Emilie; Mitchell, S. E.

    2008-05-01

    Did you know... that the writing on the bathroom wall isn't just graffiti anymore? Studies have shown that messages in unusual locations can have extraordinary impact. A growing number of companies and non-profit organizations are placing signage in unexpected venues, such as bathroom stalls, sporting arena seatbacks, gas stations, and diaper-changing areas. A 2003 study found that public response to promotional materials posted in restrooms was overwhelmingly positive, and respondents view these materials for up to two minutes instead of the 3 to 5 seconds they spend with traditional print marketing. Recall rates of content and messages are high, and researchers found bathroom signage to be 40% more effective than a typical print sign. It is often difficult to design effective education and outreach programs that reach a broader audience than a fairly self-selective one. Most of our events and projects ask audiences to come to us. This format inherently attracts a science-interested audience. So how do you reach the other half, those non-traditional learners, in an effective manner? Take the science to them! Help your message be more effective by "shocking” them with the science. Placing science, technology, engineering, and mathematical (STEM) content in unexpected venues makes it accessible, memorable, and likely to reach a captive audience that might not otherwise seek it out. The "Did You Know?” campaign brings STEM messages to underserved audiences through innovative placement. Bathroom stalls, movie theaters, and shopping malls are visited by thousands each day and provide a surprising and overlooked venue for outreach.

  14. Project Management Approaches for Online Learning Design

    ERIC Educational Resources Information Center

    Eby, Gulsun; Yuzer, T. Volkan

    2013-01-01

    Developments in online learning and its design are areas that continue to grow in order to enhance students' learning environments and experiences. However, in the implementation of new technologies, the importance of properly and fairly overseeing these courses is often undervalued. "Project Management Approaches for Online Learning Design"…

  15. Fulldome Video: An Emerging Technology for Education

    ERIC Educational Resources Information Center

    Law, Linda E.

    2006-01-01

    This article talks about fulldome video, a new technology which has been adopted fairly extensively by the larger, well-funded planetariums. Fulldome video, also called immersive projection, can help teach subjects ranging from geology to history to chemistry. The rapidly advancing progress of projection technology has provided high-resolution…

  16. Community Education and the Mature Worker: Training, Working, and Learning for a Brighter Future.

    ERIC Educational Resources Information Center

    Voorhees, Anita E.; Yoseloff, Darlene S.

    1989-01-01

    Describes Project RESOURCES (Retired Employee Skills Outreach Using Retirees in Continuing Employment Situations), Middlesex County College's (New Jersey) program to help people over 55 find employment. Notes project activities such as job fairs, discussion groups, information dissemination, workshops, recruitment, a job bank, and training…

  17. Intel International Science and Engineering Fair

    EPA Pesticide Factsheets

    EPA shares information about environmental protection with ISEF participants and visitors and recognizes one student whose work demonstrates a commitment to environmental sustainability and stewardship with the EPA Patrick H. Hurd Sustainability Award.

  18. Fisheries Fee Fairness Act of 2011

    THOMAS, 112th Congress

    Sen. Kerry, John F. [D-MA

    2011-06-29

    Senate - 06/29/2011 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  19. Fair Telephone Billing Act of 2013

    THOMAS, 113th Congress

    Sen. Rockefeller, John D., IV [D-WV

    2013-06-12

    Senate - 06/12/2013 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  20. Live Organisms in High School Biology

    ERIC Educational Resources Information Center

    Orlans, F. Barbara

    1972-01-01

    Reports the results of surveys of the use of animals by secondary school teachers and participants in science fairs. Recommends wider use of invertebrates and suggests sources of ideas for animal experiments. (AL)

  1. Fair Telephone Billing Act of 2012

    THOMAS, 112th Congress

    Sen. Rockefeller, John D., IV [D-WV

    2012-06-13

    Senate - 06/13/2012 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  2. Air Passenger Fairness Act of 2012

    THOMAS, 112th Congress

    Sen. Nelson, Ben [D-NE

    2012-03-26

    Senate - 03/26/2012 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  3. The chemist, that madman! How children perceive science.

    PubMed

    Luraschi, Michela; Rezzonico, Riccardo; Pellegri, Giovanni

    2012-01-01

    He is grown-up, not young, often bald, strictly male, often a chemist, wearing odd clothes and working on mysterious things, conducting projects which sometimes help save the world, sometimes harm our natural environment. He lives and works - often into the small hours - in a grey laboratory, alone, no colleagues, utterly isolated from the outside world. His 'space' looks like a laboratory equipped with test tubes, with reactive substances but also magic portions; mostly a windowless space, and any windows there are have iron bars. This is how, broadly speaking, and stereotypically, children see scientists. Chemistry and biology are the two most popular branches. Only rarely do we associate these images - which appear to be a simple figment of a child's imagination - to the problem of staff shortages in the 'MINT' sectors in Switzerland and to the shortfall in the number of women scientists. Nonetheless, some of the ideas presented in this article suggest that a child's outlook on science, fairly deep-rooted from as early as 9 or 10 years of age (and surprisingly unchanged by the time these kids reach secondary school) may have an impact on their future career choices. L'ideatorio, at Università della Svizzera italiana, is committed to counteracting this distorted view, in particular by creating particular spaces where children can meet science - not a 'crazy', but a normal and also female, science. In these spaces, chemistry is not synonymous with bad smells and pollution, but with benefits and discovery.

  4. Technician Shawn Warren carefully smoothes out the composite skin of an instrument fairing atop the

    NASA Technical Reports Server (NTRS)

    2002-01-01

    Technician Shawn Warren carefully smoothes out the composite skin of an instrument fairing atop the upper fuselage of the Altair unmanned aerial vehicle (UAV) at General Atomics Aeronautical Systems, Inc., facility at Adelanto, Calif. General Atomics Aeronautical Systems, Inc., is developing the Altair version of its Predator B unmanned reconnaissance aircraft under NASA's Environmental Research Aircraft and Sensor Technology (ERAST) project. NASA plans to use the Altair as a technology demonstrator to validate a variety of command and control technologies for UAVs, as well as demonstrate the capability to perform a variety of Earth science missions. The Altair is designed to carry an 700-lb. payload of scientific instruments and imaging equipment for as long as 32 hours at up to 52,000 feet altitude. Eleven-foot extensions have been added to each wing, giving the Altair an overall wingspan of 86 feet with an aspect ratio of 23. It is powered by a 700-hp. rear-mounted TPE-331-10 turboprop engine, driving a three-blade propeller. Altair is scheduled to begin flight tests in the fourth quarter of 2002, and be acquired by NASA following successful completion of basic airworthiness tests in early 2003 for evaluation of over-the-horizon control, detect, see and avoid and other technologies required to allow UAVs to operate safely with other aircraft in the national airspace.

  5. Best practices for allocating appropriate credit and responsibility to authors of multi-authored articles.

    PubMed

    Eggert, Lucas D

    2011-01-01

    Working in multidisciplinary teams has become a common feature of modern research processes. This situation inevitably leads to the question of how to decide on who to acknowledge as authors of a multi-authored publication. The question is gaining pertinence, since individual scientists' publication records are playing an increasingly important role in their professional success. At worst, discussions about authorship allocation might lead to a serious conflict among coworkers that could even endanger the successful completion of a whole research project. Surprisingly, there does not seem to be any discussion on the issue of ethical standards for authorship is the field of Cognitive Science at the moment. In this short review I address the problem by characterizing modern challenges to a fair system for allocating authorship. I also offer a list of best practice principles and recommendations for determining authors in multi-authored publications on the basis of a review of existing standards.

  6. OJPOT: online judge & practice oriented teaching idea in programming courses

    NASA Astrophysics Data System (ADS)

    Wang, Gui Ping; Chen, Shu Yu; Yang, Xin; Feng, Rui

    2016-05-01

    Practical abilities are important for students from majors including Computer Science and Engineering, and Electrical Engineering. Along with the popularity of ACM International Collegiate Programming Contest (ACM/ICPC) and other programming contests, online judge (OJ) websites achieve rapid development, thus providing a new kind of programming practice, i.e. online practice. Due to fair and timely feedback results from OJ websites, online practice outperforms traditional programming practice. In order to promote students' practical abilities in programming and algorithm designing, this article presents a novel teaching idea, online judge & practice oriented teaching (OJPOT). OJPOT is applied to Programming Foundation course. OJPOT cultivates students' practical abilities through various kinds of programming practice, such as programming contests, online practice and course project. To verify the effectiveness of this novel teaching idea, this study conducts empirical research. The experimental results show that OJPOT works effectively in enhancing students' practical abilities compared with the traditional teaching idea.

  7. Can Virtual Science Foster Real Skills? A Study of Inquiry Skills in a Virtual World

    ERIC Educational Resources Information Center

    Dodds, Heather E.

    2013-01-01

    Online education has grown into a part of the educational market answering the demand for learning at the learner's choice of time and place. Inquiry skills such as observing, questioning, collecting data, and devising fair experiments are an essential element of 21st-century online science coursework. Virtual immersive worlds such as Second Life…

  8. Gender Differences in the Careers of Academic Scientists and Engineers: A Literature Review. Special Report.

    ERIC Educational Resources Information Center

    Bentley, Jerome T.; Adamson, Rebecca

    The literature on women in science and engineering is extensive and addresses such issues as early education, decision to study and pursue careers in science, and how women fair in their jobs. This review used the literature on the careers of women scientists and engineers employed in academia to examine how women in these disciplines fare…

  9. Solving the Equation: The Variables for Women's Success in Engineering and Computing

    ERIC Educational Resources Information Center

    Corbett, Christianne; Hill, Catherine

    2015-01-01

    During the 2014 White House Science Fair, President Barack Obama used a sports metaphor to explain why we must address the shortage of women in science, technology, engineering, and mathematics (STEM), particularly in the engineering and computing fields: "Half our team, we're not even putting on the field. We've got to change those…

  10. Solving the Equation: The Variables for Women's Success in Engineering and Computing. Executive Summary

    ERIC Educational Resources Information Center

    Corbett, Christianne; Hill, Catherine

    2015-01-01

    During the 2014 White House Science Fair, President Barack Obama used a sports metaphor to explain why we must address the shortage of women in science, technology, engineering, and mathematics (STEM), particularly in the engineering and computing fields: "Half our team, we're not even putting on the field. We've got to change those…

  11. Polar Bear Conservation and Fairness Act of 2013

    THOMAS, 113th Congress

    Sen. Crapo, Mike [R-ID

    2013-04-25

    Senate - 04/25/2013 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  12. Intel International Science and Engineering Fair 2018

    EPA Pesticide Factsheets

    Since 2009, EPA has exhibited and shared information about environmental protection with the ISEF participants and visitors. recognizes one student whose work demonstrates a commitment to environmental sustainability and stewardship with an award.

  13. Fair Airline Industry Revenue Act of 2011

    THOMAS, 112th Congress

    Sen. Landrieu, Mary L. [D-LA

    2011-11-29

    Senate - 11/29/2011 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  14. Fairness in Admiralty and Maritime Law Act

    THOMAS, 111th Congress

    Sen. Rockefeller, John D., IV [D-WV

    2010-07-15

    Senate - 07/15/2010 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  15. Residential and Commuter Toll Fairness Act of 2011

    THOMAS, 112th Congress

    Sen. Schumer, Charles E. [D-NY

    2011-02-14

    Senate - 02/14/2011 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  16. Residential and Commuter Toll Fairness Act of 2009

    THOMAS, 111th Congress

    Sen. Schumer, Charles E. [D-NY

    2009-11-16

    Senate - 11/16/2009 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  17. 16 CFR 1116.9 - Confidentiality of reports.

    Code of Federal Regulations, 2012 CFR

    2012-01-01

    ... written request of the Chairman or Ranking Minority Member of the Committee on Commerce, Science, and... the fairness of releasing the information are the nature of the information, the fact that it is an...

  18. 16 CFR 1116.9 - Confidentiality of reports.

    Code of Federal Regulations, 2014 CFR

    2014-01-01

    ... written request of the Chairman or Ranking Minority Member of the Committee on Commerce, Science, and... the fairness of releasing the information are the nature of the information, the fact that it is an...

  19. 16 CFR 1116.9 - Confidentiality of reports.

    Code of Federal Regulations, 2010 CFR

    2010-01-01

    ... written request of the Chairman or Ranking Minority Member of the Committee on Commerce, Science, and... the fairness of releasing the information are the nature of the information, the fact that it is an...

  20. Fairness to Pet Owners Act of 2014

    THOMAS, 113th Congress

    Sen. Blumenthal, Richard [D-CT

    2014-07-31

    Senate - 07/31/2014 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  1. Fairness in Admiralty and Maritime Law Act

    THOMAS, 111th Congress

    Sen. Rockefeller, John D., IV [D-WV

    2010-08-05

    Senate - 08/05/2010 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  2. New York Fair Fishing Act of 2009

    THOMAS, 111th Congress

    Sen. Schumer, Charles E. [D-NY

    2009-04-28

    Senate - 04/28/2009 Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  3. KSC-2012-1239

    NASA Image and Video Library

    2012-02-02

    VANDENBERG AIR FORCE BASE, Calif. -- Workers unload the two halves that make up the Pegasus XL rocket's fairing that will protect the NuSTAR spacecraft during launch. Inside Orbital Science's processing facility, the fairing halves will be unwrapped and processed in a clean room environmental enclosure. The Pegasus is set to launch NASA's NuSTAR spacecraft. Once the rocket and spacecraft are processed at Vandenberg, they will be flown on the Orbital Sciences’ L-1011 carrier aircraft to the Ronald Reagan Ballistic Missile Defense Test Site at the Pacific Ocean’s Kwajalein Atoll for launch. The high-energy x-ray telescope will conduct a census for black holes, map radioactive material in young supernovae remnants, and study the origins of cosmic rays and the extreme physics around collapsed stars. For more information, visit science.nasa.gov/missions/nustar/. Photo credit: NASA/Randy Beaudoin, VAFB

  4. KSC-2012-1599

    NASA Image and Video Library

    2012-02-29

    VANDENBERG AIR FORCE BASE, Calif. -- In an environmental enclosure in processing facility 1555 at Vandenberg Air Force Base in California, Orbital Sciences technicians are performing fairing closeouts for NASA's Nuclear Spectroscopic Telescope Array NuSTAR spacecraft. The fairing will protect the spacecraft from the heat and aerodynamic pressure generated during ascent to orbit aboard an Orbital Sciences Pegasus XL rocket. After processing of the rocket and spacecraft are complete, they will be flown on Orbital's L-1011 carrier aircraft from Vandenberg to the Ronald Reagan Ballistic Missile Defense Test Site on the Pacific Ocean’s Kwajalein Atoll for launch. The high-energy X-ray telescope will conduct a census of black holes, map radioactive material in young supernovae remnants, and study the origins of cosmic rays and the extreme physics around collapsed stars. For more information, visit http://www.nasa.gov/nustar. Photo credit: NASA/Randy Beaudoin, VAFB

  5. Enhancing Project-Based Learning through Student and Industry Engagement in a Video-Augmented 3-D Virtual Trade Fair

    ERIC Educational Resources Information Center

    Lee, Mark J. W.; Nikolic, Sasha; Vial, Peter J.; Ritz, Christian H.; Li, Wanqing; Goldfinch, Tom

    2016-01-01

    Project-based learning is a widely used pedagogical strategy in engineering education shown to be effective in fostering problem-solving, design, and teamwork skills. There are distinct benefits to be gained from giving students autonomy in determining the nature and scope of the projects that they wish to undertake, but a lack of expert guidance…

  6. PREFACE: 5th DAE-BRNS Workshop on Hadron Physics (Hadron 2011)

    NASA Astrophysics Data System (ADS)

    Jyoti Roy, Bidyut; Chatterjee, A.; Kailas, S.

    2012-07-01

    The 5th DAE-BRNS Workshop on Hadron Physics was held at the Bhabha Atomic Research Centre (BARC), Mumbai from 31 October to 4 November 2011. This workshop series, supported by the Board of Research in Nuclear Sciences, Department of Atomic Energy (BRNS, DAE), Govt. of India, began ten years ago with the first one being held at BARC, Mumbai in October 2002. The second one was held at Puri in 2005, organized jointly by Institute of Physics, Bhubneswar and Saha Institute of Nuclear Physics, Kolkata. The 3rd and 4th ones took place, respectively, at Shantineketan in 2006, organized by Visva Bharati University, and at Aligarh in 2008, organized by Aligarh Muslim University, Aligarh. The aim of the present workshop was to bring together the experts and young researchers in the field of hadron physics (both experiment and theory) and to have in-depth discussions on the current research activities in this field. The format of the workshop was: a series of review lectures by various experts from India and abroad, the presentation of advanced research results by researchers in the field, and a review of major experimental programs being planned and pursued in major laboratories in the field of hadron physics, with the aim of providing a platform for the young participants for interaction with their peers. The upcoming international FAIR facility at GSI is a unique future facility for studies of hadron physics in the charm sector and hyper nuclear physics. The Indian hadron physics community is involved in this mega science project and is working with the PANDA collaboration on the development of detectors, simulation and software tools for the hadron physics programme with antiprotons at FAIR. A one-day discussion session was held at this workshop to discuss India-PANDA activities, the current collaboration status and the work plan. This volume presents the workshop proceedings consisting of lectures and seminars which were delivered during the workshop. We are thankful to the authors for giving us the manuscripts in good time. The workshop was financially supported by BRNS, DAE, GoI. We also received partial funding support from the India-FAIR coordination centre, Kolkata, for the organization of the India-PANDA discussion meeting. We acknowledge the financial support received from BRNS and DST (Department of Science and Technology). The assistance from various departments of BARC and the Homi Bhabha Centre for Science Education (HBCSE), TIFR is gratefully acknowledged. We also thank the members of the advisory committee and organizing committee and colleagues from NPD and Physics Group, BARC for their contributions. May 2012, Mumbai Bidyut Jyoti Roy A Chatterjee S Kailas Bhabha Atomic Research Centre Hadron 2011 photograph The PDF also contains a list of the workshop's committees and sponsors, photographs from the workshop and the programme of events.

  7. Study of compressed baryonic matter at FAIR: JINR participation

    NASA Astrophysics Data System (ADS)

    Derenovskaya, O.; Kurilkin, P.; Gusakov, Yu.; Ivanov, V.; Ladygin, V.; Ladygina, N.; Malakhov, A.; Peshekhonov, V.; Zinchenko, A.

    2017-11-01

    The scientific goal of the CBM (Compressed Baryonic Matter) experiment at FAIR (Darmstadt) is to explore the phase diagram of strongly interacting matter at highest baryon densities. The physics program of the CBM experiment is complimentary to the programs to be realized at MPD and BMN facilities at NICA and will start with beam derived by the SIS100 synchrotron. The results of JINR participation in the development of different sub-projects of the CBM experiment are presented.

  8. Educational Outreach by the NSF Polymers Program

    NASA Astrophysics Data System (ADS)

    Lovinger, Andrew J.

    2002-03-01

    Education and outreach have been NSF priority areas over the last few years. Reviewers of all proposals are explicitly asked to evaluate not only the "intellectual merit" of a research proposal but also its "broader impacts", including specifically "integration of research and education". The NSF Polymers Program has strongly emphasized these areas and has initiated and supported a wide variety of outreach activities designed to bring out the importance of polymeric materials to diverse communities and to encourage young students to develop interests in this area. Specific activities have included: Workshops and their broad dissemination through the media; press releases on important polymer-related developments; interviews to the scientific and popular press; outreach to Congress; establishment of widely publicized and broadly attended lecture series; funding and support of conferences, symposia, and workshops aimed at students and teachers from kindergarten to graduate school; support of web-based educational projects aimed at the general public and schoolchildren; participation in web-based "ask-the-experts" resources to answer science questions from children or the general public; and personal outreach to middle- and high-schools through talks and demonstrations on polymers and plastics, participation at science fairs, career days, etc.

  9. Power, fairness and trust: understanding and engaging with vaccine trial participants and communities in the setting up the EBOVAC-Salone vaccine trial in Sierra Leone.

    PubMed

    Enria, Luisa; Lees, Shelley; Smout, Elizabeth; Mooney, Thomas; Tengbeh, Angus F; Leigh, Bailah; Greenwood, Brian; Watson-Jones, Deborah; Larson, Heidi

    2016-11-08

    This paper discusses the establishment of a clinical trial of an Ebola vaccine candidate in Kambia District, Northern Sierra Leone during the epidemic, and analyses the role of social science research in ensuring that lessons from the socio-political context, the recent experience of the Ebola outbreak, and learning from previous clinical trials were incorporated in the development of community engagement strategies. The paper aims to provide a case study of an integrated social science and communications system in the start-up phase of the clinical trial. The paper is based on qualitative research methods including ethnographic observation, interviews with trial participants and key stakeholder interviews. Through the case study of EBOVAC Salone, the paper suggests ways in which research can be used to inform communication strategies before and during the setting up of the trial. It explores notions of power, fairness and trust emerging from analysis of the Sierra Leonean context and through ethnographic research, to reflect on three situations in which social scientists and community liaison officers worked together to ensure successful community engagement. Firstly, a section on "power" considers the pitfalls of considering communities as homogeneous and shows the importance of understanding intra-community power dynamics when engaging communities. Secondly, a section on "fairness" shows how local understandings of what is fair can help inform the design of volunteer recruitment strategies. Finally, a section on "trust" highlights how historically rooted rumours can be effectively addressed through active dialogue rather than through an approach focused on correcting misinformation. The paper firstly emphasises the value of social science in the setting up of clinical trials, in terms of providing an in depth understanding of context and social dynamics. Secondly, the paper suggests the importance of a close collaboration between research and community engagement to effectively confront political and social dynamics, especially in the context of an epidemic.

  10. How high school science-related experiences influenced science career persistence

    NASA Astrophysics Data System (ADS)

    Shaw, Andrew D.

    The events of 9/11 brought into focus two ongoing trends that were present before this tragedy and have continued since: (1) The United States needs more scientists if it is to ensure its freedoms and maintain its economy. (2) The number of scientists in the "pipeline" is declining because of the diminished presence of foreign scientists (they are wanted in their own countries), the under-representation of minorities and women, and the reduced numbers of students able and willing to take on the scholastic rigors necessary for a science or engineering degree. Though much has been written about improving science education, and numerous projects have been conducted to promote it, few education researchers have questioned the scientists themselves about the experiences, practices, and people that positively influenced them, particularly during their pre-college years. Towards this end, thirty-two scientists were interviewed in order to address four research questions: (1) How did practicing scientists' personal relationships with their science teachers influence their decision to pursue a career in science? (2) What pedagogical methods (e.g. lectures, demonstrations, "hands-on" work, problem solving, small groups) used in their high school science courses, if any, played a significant role in propelling certain students towards a career as a practicing scientist? (3) What high school science-related support structures (e.g. labs, equipment, textbooks, technology), if any, played a significant role in propelling certain students towards a career as a practicing scientist? (4) What high school science-related educational activities (e.g. science fairs, clubs, summer internships), if any, played a significant role in propelling certain students towards a career as a practicing scientist? Some of the scientists reported that they knew they were headed towards a career in science before they even entered high school, while others did not make a decision about a science career until after they had graduated from college. The prevailing conviction, however, was that the encouragement from others (though not exclusively by teachers), the excellence of teaching (regardless of pedagogical style), and the richness of science related experiences were the most influential factors in either maintaining or initiating a persistence in science towards a career.

  11. Animal Welfare Groups Press for Limits on High School Research.

    ERIC Educational Resources Information Center

    BioScience, 1979

    1979-01-01

    Discussions from the conference on "The Use of Animals in High School Biology Classes" are highlighted in this article. The list of science fair rules, which resulted from the conference, is included. (SA)

  12. Deepwater Horizon Survivors' Fairness Act

    THOMAS, 112th Congress

    Sen. Rockefeller, John D., IV [D-WV

    2011-01-25

    Senate - 12/05/2012 By Senator Rockefeller from Committee on Commerce, Science, and Transportation filed written report. Report No. 112-245. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  13. 16 CFR § 1116.9 - Confidentiality of reports.

    Code of Federal Regulations, 2013 CFR

    2013-01-01

    ... written request of the Chairman or Ranking Minority Member of the Committee on Commerce, Science, and... the fairness of releasing the information are the nature of the information, the fact that it is an...

  14. KSC-2009-1827

    NASA Image and Video Library

    2009-02-24

    VANDENBERG AIR FORCE BASE, Calif. -- NASA’s Orbiting Carbon Observatory and its Taurus booster lift off Feb. 24 from Vandenberg Air Force Base in California at 4:55 a.m. EST. A contingency was declared a few minutes later and the satellite failed to reach orbit after liftoff. Preliminary indications are that the fairing on the Taurus XL launch vehicle failed to separate. The fairing is a clamshell structure that encapsulates the satellite as it travels through the atmosphere. A Mishap Investigation Board is being set up to determine the cause of the launch failure. Photo courtesy of Orbital Sciences

  15. The Essential Role of Curricular Analyses in Comparative Studies of Mathematics Achievement: Developing "Fair" Tests

    ERIC Educational Resources Information Center

    Chavez, Oscar; Papick, Ira; Ross, Dan J.; Grouws, Douglas A.

    2010-01-01

    The purpose of this paper was to describe the process of development of assessment instruments for the Comparing Options in Secondary Mathematics: Investigating Curriculum (COSMIC) project. The COSMIC project was a three-year longitudinal comparative study focusing on evaluating high school students' mathematics learning from two distinct…

  16. 13 CFR 120.882 - Eligible Project costs for 504 loans.

    Code of Federal Regulations, 2012 CFR

    2012-01-01

    ... expansion may be refinanced and added to the expansion cost if: (1) Substantially all (85% or more) of the...). Prepayment penalties, financing fees, and other financing costs must also be added to the amount being... current fair market value of the fixed assets serving as collateral for the Refinancing Project, including...

  17. Education for Parenthood and the Schools.

    ERIC Educational Resources Information Center

    Kruger, W. Stanley

    School-related programs of the Education For Parenthood Project are described. The purpose of the project is to provide young people with knowledge and skills to enable them to be effective parents. The rationale for such a program is based on the ineffectiveness of current laissez-faire policy in the schools, as reflected by problems of child…

  18. Sustaining Parenting Education in WI

    ERIC Educational Resources Information Center

    Riley, Dave; Eisenmann, Kathleen; Gruenewald, Mary

    2004-01-01

    How can educators ensure that a good parenting program continues to be offered in the community year after year? A project in Wisconsin illustrates one way to create this sustained commitment and funding. This project has worked well, has been fairly easy and inexpensive, and has even led to new opportunities for parenting education. The project…

  19. Afterschool: Middle School and Science, Technology, Engineering and Math (STEM). MetLife Foundation Afterschool Alert. Issue Brief No. 44

    ERIC Educational Resources Information Center

    Afterschool Alliance, 2010

    2010-01-01

    The 21st Century's information economy has been creating more jobs that require not only a college education but also a fair amount of expertise in the fields of science, technology, engineering and math--collectively known as STEM. The last several decades have seen the industrial- and manufacturing-based economy shift to a service economy fueled…

  20. Community wildfire preparedness: a global state-of-the-knowledge summary of social science research

    Treesearch

    Sarah McCaffrey

    2015-01-01

    This article builds on findings from a synthesis of fire social science research that was published from 2000 to 2010 to understand what has been learned more recently about public response to wildfires. Two notable changes were immediately noted in the fairly substantial number of articles published between 2011 and 2014. First, while over 90% of the articles found in...

  1. Changes in Federal Water Project Repayment Policies Can Reduce Federal Costs.

    DTIC Science & Technology

    1981-08-07

    a reimburs - able purpose, the users should share in cost recovery. RECOMMENDATIONS To provide for equitable cost reimbursement on underutilized...Department of the Interior’s Bureau of Reclamation that do not ensure fair and timely recovery of water projects’ reimbursable costs. We made this...such costs for reimbursable project purposes and considering them in future water price determinations, agencies often reas- signed them to

  2. Building capacity in Clinical Epidemiology in Africa: experiences from Masters programmes.

    PubMed

    Young, Taryn; Naude, Celeste; Brodovcky, Tania; Esterhuizen, Tonya

    2017-02-27

    To describe and contrast programmatic offering of Clinical Epidemiology Masters programmes in Africa, to evaluate experiences of graduates and faculty, and assess if graduates are playing roles in research, practice and teaching of Clinical Epidemiology. We searched and identified relevant programmes, reviewed programmatic documentation, interviewed convenors and surveyed graduates. Participants provided informed consent, interviews with faculty were recorded and transcribed for analysis purposes, and graduates participated in an online survey. Five structured Masters programmes requiring health science professionals to complete modules and research projects were assessed. Demand for programmes was high. Graduates enjoyed the variety of modules, preferred blended teaching, and regarded assessments as fair. Graduates felt that career paths were not obvious after graduating. Despite this, some have gone on to promote and teach evidence-based health care, and conduct and disseminate research. Areas of concern raised by faculty were quality assurance; research project initiation, implementation and supervisory capacity; staff availability; funding to support implementation and lack of experiential learning. Although faced with challenges, these programmes build capacity of health professionals to practice in an evidence-informed way, and conduct rigorous research, which are central to advancing the practice of Clinical Epidemiology in Africa.

  3. The SCALE-UP Project

    NASA Astrophysics Data System (ADS)

    Beichner, Robert

    2015-03-01

    The Student Centered Active Learning Environment with Upside-down Pedagogies (SCALE-UP) project was developed nearly 20 years ago as an economical way to provide collaborative, interactive instruction even for large enrollment classes. Nearly all research-based pedagogies have been designed with fairly high faculty-student ratios. The economics of introductory courses at large universities often precludes that situation, so SCALE-UP was created as a way to facilitate highly collaborative active learning with large numbers of students served by only a few faculty and assistants. It enables those students to learn and succeed not only in acquiring content, but also to practice important 21st century skills like problem solving, communication, and teamsmanship. The approach was initially targeted at undergraduate science and engineering students taking introductory physics courses in large enrollment sections. It has since expanded to multiple content areas, including chemistry, math, engineering, biology, business, nursing, and even the humanities. Class sizes range from 24 to over 600. Data collected from multiple sites around the world indicates highly successful implementation at more than 250 institutions. NSF support was critical for initial development and dissemination efforts. Generously supported by NSF (9752313, 9981107) and FIPSE (P116B971905, P116B000659).

  4. To the Planets, Comets, and Beyond: A Vision of Sustained Collaboration

    NASA Astrophysics Data System (ADS)

    Gaboardi, M.; Grauer, M.; Humayun, M.; Dixon, P.

    2007-12-01

    Our NASA-funded, E/PO partnership, the Student-Teacher Astronomy Resource (STAR) Program, has been successful in integrating current space science knowledge, scientific inquiry, and educational practices. With our focus on the recent NASA Stardust Mission, we engage teachers, students, and the general public in timely, research-based inquiry into space science. One such component of our program is "The Solar System: To the Planets, Comets, and Beyond," a new curricula that is accessible to, and comfortable for, primary educators, many of whom were previously uncomfortable teaching space science. This achievement is the result of ongoing collaboration between a formal primary educator (Grauer), the director of educational outreach for the National High Magnetic Field Laboratory (Dixon), a cosmochemist (Humayun) and a graduate student (Gaboardi), both researchers in the geochemistry program within the NHMFL. Indicators of success in our outreach program include the following: 1- Increased public awareness of research as evidenced by local television, newspaper, and radio coverage, 2- Requests from individual teachers, schools, and school districts for workshops specific to our program, 3- Overwhelmingly positive formal and informal responses from teachers, students, and parents participating in our program, 4- Requests from high-school students for advice involving science fair projects, 5- High level of performance of Grauer's primary students in space science curricula developed as a result of collaboration, and 6- Integration of a space science component into the sustained outreach program provided by the NHMFL. We are currently collecting formal questionnaires from teachers who have participated in our 2007 workshops to explore the following further indicators of success: 1- teachers' use of our curricula, 2- teachers' comfort levels in teaching space science both before and after attending our workshop, and 3- teachers' evaluation of their own space science content knowledge before and after attending our workshop. Based on formal responses from the 2006 cohort, and informal responses from the 2007 cohort, we expect evaluations to be strongly positive.

  5. Fair Access to Science and Technology Research Act of 2013

    THOMAS, 113th Congress

    Sen. Cornyn, John [R-TX

    2013-02-14

    Senate - 02/14/2013 Read twice and referred to the Committee on Homeland Security and Governmental Affairs. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  6. 3 CFR 8402 - Proclamation 8402 of August 25, 2009. Women's Equality Day, 2009

    Code of Federal Regulations, 2010 CFR

    2010-01-01

    ... women's organizations. America has made significant progress toward becoming the fair and just society.... Underrepresented in many facets of our economic and public life, from government to boardrooms to the sciences...

  7. KSC-2013-2628

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB – Orbital Sciences engineers connect the payload fairing over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  8. KSC-2013-2642

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB – Orbital Sciences team engineers monitor the connection of the payload fairing over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  9. KSC-2013-2618

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB – Orbital Sciences team members watch as engineers connect the payload fairing over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  10. KSC-2013-2617

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB - Orbital Sciences engineers connect the payload fairing over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  11. KSC-2013-2636

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB – Orbital Sciences engineers connect the payload fairing over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  12. KSC-2013-2641

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB – Orbital Sciences engineers monitor the connection of the payload fairing over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  13. KSC-2013-2635

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB – Orbital Sciences engineers connect the payload fairing over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  14. KSC-2013-2633

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB – Orbital Sciences team members move the second half of the payload fairing before it is placed over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  15. KSC-2013-2639

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB – Orbital Sciences engineers connect the payload fairing over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  16. KSC-2013-2637

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB – Orbital Sciences engineers connect the payload fairing over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  17. KSC-2013-2630

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB – Orbital Sciences team members move the second half of the payload fairing before it is placed over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  18. KSC-2013-2626

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB – Orbital Sciences team members move the second half of the payload fairing before it is placed over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  19. KSC-2013-2616

    NASA Image and Video Library

    2013-06-11

    Orbital Sciences engineers connect the payload fairing over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  20. KSC-2013-2629

    NASA Image and Video Library

    2013-06-10

    VANDENBERG AFB – Orbital Sciences team members move the second half of the payload fairing before it is placed over NASA's IRIS spacecraft. The fairing connects to the nose of the Orbital Sciences Pegasus XL rocket that will lift the solar observatory into orbit in June. The work is taking place in a hangar at Vandenberg Air Force Base where IRIS, short for Interface Region Imaging Spectrograph, is being prepared for launch on a Pegasus XL rocket. Scheduled for launch from Vandenberg June 26, IRIS will open a new window of discovery by tracing the flow of energy and plasma through the chromospheres and transition region into the sun’s corona using spectrometry and imaging. IRIS fills a crucial gap in our ability to advance studies of the sun-to-Earth connection by tracing the flow of energy and plasma through the foundation of the corona and the region around the sun known as the heliosphere. Photo credit: NASA/Tony Vauclin

  1. KSC-2012-1600

    NASA Image and Video Library

    2012-02-29

    VANDENBERG AIR FORCE BASE, Calif. -- An Orbital Sciences technician is performing closeout work inside the fairing that will be installed around NASA's Nuclear Spectroscopic Telescope Array NuSTAR spacecraft in processing facility 1555 at Vandenberg Air Force Base in California. The fairing will protect the spacecraft from the heat and aerodynamic pressure generated during ascent to orbit aboard an Orbital Sciences Pegasus XL rocket. After processing of the rocket and spacecraft are complete, they will be flown on Orbital's L-1011 carrier aircraft from Vandenberg to the Ronald Reagan Ballistic Missile Defense Test Site on the Pacific Ocean’s Kwajalein Atoll for launch. The high-energy X-ray telescope will conduct a census of black holes, map radioactive material in young supernovae remnants, and study the origins of cosmic rays and the extreme physics around collapsed stars. For more information, visit http://www.nasa.gov/nustar. Photo credit: NASA/Randy Beaudoin, VAFB

  2. KSC-2012-1540

    NASA Image and Video Library

    2012-02-20

    VANDENBERG AIR FORCE BASE, Calif. – The fairing for NASA's Nuclear Spectroscopic Telescope Array, or NuSTAR, awaits processing in an environmental enclosure inside the Orbital Sciences processing facility at Vandenberg Air Force Base in California. The fairing will enclose and protect the spacecraft from the heat and aerodynamic pressure generated during ascent to orbit aboard an Orbital Sciences Pegasus XL rocket. After processing of the rocket and spacecraft are complete, they will be flown on Orbital's L-1011 carrier aircraft from Vandenberg to the Ronald Reagan Ballistic Missile Defense Test Site on the Pacific Ocean’s Kwajalein Atoll for launch in March. The high-energy x-ray telescope will conduct a census of black holes, map radioactive material in young supernovae remnants, and study the origins of cosmic rays and the extreme physics around collapsed stars. For more information, visit http://www.nasa.gov/nustar. Photo credit: NASA/Randy Beaudoin, VAFB

  3. Physics in the Spotlight

    NASA Astrophysics Data System (ADS)

    2000-10-01

    CERN, ESA and ESO Put Physics On Stage [1] Summary Can you imagine how much physics is in a simple match of ping-pong, in throwing a boomerang, or in a musical concert? Physics is all around us and governs our lives. The World-Wide Web and mobile communication are only two examples of technologies that have rapidly found their way from science into the everyday life. [Go to Physics On Stage Website at CERN] But who is going to maintain these technologies and develop new ones in the future? Probably not young Europeans, as recent surveys show a frightening decline of interest in physics and technology among Europe's citizens, especially schoolchildren. Fewer and fewer young people enrol in physics courses at university. The project "Physics on Stage" tackles this problem head on. An international festival of 400 physics educators from 22 European countries [2] gather at CERN in Geneva from 6 to 10 November to show how fascinating and entertaining physics can be . In a week-long event innovative methods of teaching physics and demonstrations of the fun that lies in physics are presented in a fair, in 10 spectacular performances, and presentations. Workshops on 14 key themes will give the delegates - teachers, professors, artists and other physics educators - the chance to discuss and come up with solutions for the worrying situation of disenchantment with Science in Europe. The European Science and Technology Week 2000 "Physics on Stage" is a joint project organised by the European Organisation for Nuclear Research (CERN) , the European Space Agency (ESA) and the European Southern Observatory (ESO) , Europe's leading physics research organisations. This is the first time that these three organisations have worked together in such close collaboration to catalyse a change in attitude towards science and technology education. Physics on Stage is funded in part by the European Commission and happens as an event in the European Science and Technology Week 2000, an initiative of the EC to raise public awareness of science and technology. Other partners are the European Physical Society (EPS) and the European Association for Astronomy Education (EAAE). European Commissioner Busquin to Visit Physics On Stage On Thursday, November 9, Philippe Busquin , Commissioner for Research, European Commission, Prof. Luciano Maiani , Director-General of CERN, Antonio Rodota , Director-General of ESA, Dr. Catherine Cesarsky , Director-General of ESO, and Dr. Achilleas Mitsos , Director-General of the Research DG in the European Commission, will participate in the activities of the Physics on Stage Festival. On this occasion, Commissioner Busquin will address conference delegates and the Media on the importance of Science and of innovative science and technology education. The Festival Each of the more than 400 delegates of the festival has been selected during the course of the year by committees in each of the 22 countries for outstanding projects promoting science. For example, a group of Irish physics teachers and their students will give a concert on instruments made exclusively of plumbing material, explaining the physics of sound at the same time. A professional theatre company from Switzerland stages a play on antimatter. Or two young Germans invite spectators to their interactive physics show where they juggle, eat fire and perform stunning physics experiments on stage. The colourful centrepiece of this week is the Physics Fair. Every country has its own stands where delegates show their projects, programmes or experiments and gain inspiration from the exhibits from other countries. Physics on Stage is a unique event. Nothing like it has ever happened in terms of international exchange, international collaboration and state of the art science and technology education methods. The Nobel prizewinners of 2030 are at school today. What ideas can Europe's teachers put forward to boost their interest in science? An invitation to the media We invite journalists to take part in this both politically and visually interesting event. We expect many useful results from this exchange of experience, there will a large choice of potential interview partners and of course uncountable images and impressions. Please fill in the form below and fax it back to CERN under +41 22 7850247. Go to the Webpage http://www.cern.ch/pos to find out all about Physics on Stage Festival at CERN. The main "Physics on Stage" web address is: http://www.estec.esa.nl/outreach/pos There is also a Physics On Stage webpage at ESO Notes [1] This is a joint Press Release by the European Organization for Nuclear Research (CERN) , the European Space Agency (ESA) and the European Southern Observatory (ESO). [2] The 22 countries are the member countries of at least one of the participating organisations or the European Union: Austria, Belgium, Bulgaria, the Czech Republic, Denmark, Finland, France, Germany, Greece, Hungary, Ireland, Italy, Luxembourg, the Netherlands, Norway, Poland, Portugal, the Slovak Republic, Spain, Sweden, Switzerland, United Kingdom.

  4. Group Projects: More Learning? Less Fair? A Conundrum in Assessing Postgraduate Business Education

    ERIC Educational Resources Information Center

    Nordberg, Donald

    2008-01-01

    Group projects form a large and possibly growing component of the work undertaken for assessing students for postgraduate degrees in business. Yet the assessments sources, methods and purposes result in an array of combinations that the literature on assessment fails to capture in its full complexity. This paper builds on a new framework for…

  5. Research Project on Occupational Knowledge and Sex-Role Stereotyping of Limited English-Proficiency Students. Final Report 1981-82.

    ERIC Educational Resources Information Center

    Bound Brook Board of Education, NJ.

    A research project focused on the development and use of sex-fair occupational knowledge materials with a sample of limited English-proficient students. First, researchers examined existing instructional materials from vocational education sources in order to identify materials that are written on a level appropriate for limited English-proficient…

  6. To ensure that minority-owned and women-owned businesses have a full and fair opportunity to compete in covered rail projects and contracts, and that the Federal Government does not subsidize discrimination in covered rail projects.

    THOMAS, 113th Congress

    Rep. Brown, Corrine [D-FL-5

    2014-04-09

    House - 04/10/2014 Referred to the Subcommittee on Railroads, Pipelines, and Hazardous Materials. (All Actions) Tracker: This bill has the status IntroducedHere are the steps for Status of Legislation:

  7. 33 CFR Appendix A to Part 221 - Part 16-Procedures Relating to Takeover and Relicensing of Licensed Projects

    Code of Federal Regulations, 2010 CFR

    2010-07-01

    ... include a statement showing the amount which licensee estimates would be payable if the project were to be... Federal Power Act. This statement shall include estimates of: (1) Fair value; (2) net investment; and (3... rates charged its customers, the licensee's financial condition, and taxes collected by local, State...

  8. Towards SDS (Strategic Defense System) Testing and Evaluation: A collection of Relevant Topics

    DTIC Science & Technology

    1989-07-01

    the proof of the next. 89 The Piton project is the first instance of stacking.two verified components. In 1985 Warren...Accelerated? In the long term, a vast amount of work needs to be done. Below are some miscellaneous, fairly near term projects which would seem to provide...and predictions for the current project . It provides a quantitative analysis of the environment and a model of the

  9. Design of an upgradeable 45-100 mA RFQ accelerator for FAIR

    NASA Astrophysics Data System (ADS)

    Zhang, Chuan; Schempp, Alwin

    2009-10-01

    A 325 MHz, 35 mA, 3 MeV Radio-Frequency Quadrupole (RFQ) accelerator will be operated as the first accelerating structure of the proton linac injector for the newly planned international science center Facility for Antiproton and Ion Research (FAIR) at GSI, Germany. In previous design studies, two high beam intensities, 70 and 100 mA, were used. Most recently, the design intensity has been changed to 45 mA, which is closer to the operational value. Taking advantage of the so-called New Four-Section Procedure, a new design, which is upgradable from 45 to 100 mA, has been developed for the FAIR proton RFQ. Besides the upgradability analyses, robustness studies of the new design to spatial displacements of the input beam and field errors are presented as well.

  10. Failure is an option: Reactions to failure in elementary engineering design projects

    NASA Astrophysics Data System (ADS)

    Johnson, Matthew M.

    Recent reform documents in science education have called for teachers to use epistemic practices of science and engineering researchers to teach disciplinary content (NRC, 2007; NRC, 2012; NGSS Lead States, 2013). Although this creates challenges for classroom teachers unfamiliar with engineering, it has created a need for high quality research about how students and teachers engage in engineering activities to improve curriculum development and teaching pedagogy. While framers of the Next Generation Science Standards (NRC, 2012; NGSS Lead States 2013) focused on the similarities of the practices of science researchers and engineering designers, some have proposed that engineering has a unique set of epistemic practices, including improving from failure (Cunningham & Carlsen, 2014; Cunningham & Kelly, in review). While no one will deny failures occur in science, failure in engineering is thought of in fundamentally different ways. In the study presented here, video data from eight classes of elementary students engaged in one of two civil engineering units were analyzed using methods borrowed from psychology, anthropology, and sociolinguistics to investigate: 1) the nature of failure in elementary engineering design; 2) the ways in which teachers react to failure; and 3) how the collective actions of students and teachers support or constrain improvement in engineering design. I propose new ways of considering the types and causes of failure, and note three teacher reactions to failure: the manager, the cheerleader, and the strategic partner. Because the goal of iteration in engineering is improvement, I also studied improvement. Students only systematically improve when they have the opportunity, productive strategies, and fair comparisons between prototypes. I then investigate the use of student engineering journals to assess learning from the process of improvement after failure. After discussion, I consider implications from this work as well as future research to advance our understanding in this area.

  11. Bias in Research Grant Evaluation Has Dire Consequences for Small Universities.

    PubMed

    Murray, Dennis L; Morris, Douglas; Lavoie, Claude; Leavitt, Peter R; MacIsaac, Hugh; Masson, Michael E J; Villard, Marc-Andre

    2016-01-01

    Federal funding for basic scientific research is the cornerstone of societal progress, economy, health and well-being. There is a direct relationship between financial investment in science and a nation's scientific discoveries, making it a priority for governments to distribute public funding appropriately in support of the best science. However, research grant proposal success rate and funding level can be skewed toward certain groups of applicants, and such skew may be driven by systemic bias arising during grant proposal evaluation and scoring. Policies to best redress this problem are not well established. Here, we show that funding success and grant amounts for applications to Canada's Natural Sciences and Engineering Research Council (NSERC) Discovery Grant program (2011-2014) are consistently lower for applicants from small institutions. This pattern persists across applicant experience levels, is consistent among three criteria used to score grant proposals, and therefore is interpreted as representing systemic bias targeting applicants from small institutions. When current funding success rates are projected forward, forecasts reveal that future science funding at small schools in Canada will decline precipitously in the next decade, if skews are left uncorrected. We show that a recently-adopted pilot program to bolster success by lowering standards for select applicants from small institutions will not erase funding skew, nor will several other post-evaluation corrective measures. Rather, to support objective and robust review of grant applications, it is necessary for research councils to address evaluation skew directly, by adopting procedures such as blind review of research proposals and bibliometric assessment of performance. Such measures will be important in restoring confidence in the objectivity and fairness of science funding decisions. Likewise, small institutions can improve their research success by more strongly supporting productive researchers and developing competitive graduate programming opportunities.

  12. Bias in Research Grant Evaluation Has Dire Consequences for Small Universities

    PubMed Central

    Murray, Dennis L.; Morris, Douglas; Lavoie, Claude; Leavitt, Peter R.; MacIsaac, Hugh; Masson, Michael E. J.; Villard, Marc-Andre

    2016-01-01

    Federal funding for basic scientific research is the cornerstone of societal progress, economy, health and well-being. There is a direct relationship between financial investment in science and a nation’s scientific discoveries, making it a priority for governments to distribute public funding appropriately in support of the best science. However, research grant proposal success rate and funding level can be skewed toward certain groups of applicants, and such skew may be driven by systemic bias arising during grant proposal evaluation and scoring. Policies to best redress this problem are not well established. Here, we show that funding success and grant amounts for applications to Canada’s Natural Sciences and Engineering Research Council (NSERC) Discovery Grant program (2011–2014) are consistently lower for applicants from small institutions. This pattern persists across applicant experience levels, is consistent among three criteria used to score grant proposals, and therefore is interpreted as representing systemic bias targeting applicants from small institutions. When current funding success rates are projected forward, forecasts reveal that future science funding at small schools in Canada will decline precipitously in the next decade, if skews are left uncorrected. We show that a recently-adopted pilot program to bolster success by lowering standards for select applicants from small institutions will not erase funding skew, nor will several other post-evaluation corrective measures. Rather, to support objective and robust review of grant applications, it is necessary for research councils to address evaluation skew directly, by adopting procedures such as blind review of research proposals and bibliometric assessment of performance. Such measures will be important in restoring confidence in the objectivity and fairness of science funding decisions. Likewise, small institutions can improve their research success by more strongly supporting productive researchers and developing competitive graduate programming opportunities. PMID:27258385

  13. 24 CFR 886.302 - Definitions.

    Code of Federal Regulations, 2010 CFR

    2010-04-01

    ... SUPPORTIVE HOUSING FOR THE ELDERLY PROGRAM AND SECTION 811 SUPPORTIVE HOUSING FOR PERSONS WITH DISABILITIES... Program for the Disposition of HUD-Owned Projects § 886.302 Definitions. The terms Fair Market Rent (FMR...

  14. 7 CFR 3560.154 - Tenant selection.

    Code of Federal Regulations, 2010 CFR

    2010-01-01

    ..., ethnicity, and sex of individual applicants on the basis of visual observation or surname,” and (10) Social... documented in the housing project's management plan and Affirmative Fair Housing Marketing Plan. (d...

  15. Residential and Commuter Toll Fairness Act of 2012

    THOMAS, 112th Congress

    Rep. Grimm, Michael G. [R-NY-13

    2011-03-03

    Senate - 08/02/2012 Received in the Senate and Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status Passed HouseHere are the steps for Status of Legislation:

  16. Residential and Commuter Toll Fairness Act of 2010

    THOMAS, 111th Congress

    Rep. McMahon, Michael E. [D-NY-13

    2009-10-28

    Senate - 09/29/2010 Received in the Senate and Read twice and referred to the Committee on Commerce, Science, and Transportation. (All Actions) Tracker: This bill has the status Passed HouseHere are the steps for Status of Legislation:

  17. A Teacher Professional Development Program for an Authentic Citizen-Science Program: GLOBE at Night

    NASA Astrophysics Data System (ADS)

    Walker, C. E.; Pompea, S. M.; Sparks, R.

    2009-12-01

    An authentic science research program in the classroom can take many forms as can the teacher professional development that accompanies the programs. One different approach invites educators to invoke 21st century skills with their students while focusing on a real-world issue of both local and global concern. The citizen-science program on light pollution, GLOBE at Night, has students and the general public measure the darkness of their local skies and contribute observations online to a world map. They do this by looking toward Orion for the faintest stars and matching what they see to one of seven different star maps. (For more precise measurements, digital sky-brightness meters are used.) These measurements can be compared with data from the previous 4 years, as well as with satellite data, population densities, and electrical power-usage maps. Measurements can be examined online via Google Earth or other tools and are downloadable as datasets from the website. Data from multiple locations in one city or region are especially interesting, and have been used as the basis of research in a classroom or science fair project or even to inform the development of public policy. This year, GLOBE at Night has been expanding its role in training educators on fundamental concepts and data collection to include more data analysis for a topical variety of local projects. Many on-site workshops have and are being given to teachers in grades 5 through high school. Some of the U.S. school communities created mini-campaigns that combined local students with public advocates and representatives from local city and county governments, and also collaborated with students in Wales, Canada, Romania and north-central Chile (near major observatories). Internationally, training has been given via on-line forums, telecon-powerpoint presentations, videoconferencing via Skype, and blogs. Informal educators have come from national and international networks of science, technology and nature centers, as well as amateur astronomer associations. From these various experiences, we will discuss success stories and lessons learned as well as future plans for sustainability. This work was supported by a grant from the National Science Foundation (NSF) Astronomy Division. GLOBE at Night is hosted by the National Optical Astronomy Observatory, which is operated by the Association of Universities for Research in Astronomy (AURA), Inc. under cooperative agreement with NSF.

  18. Ocean Science in a K-12 setting: Promoting Inquiry Based Science though Graduate Student and Teacher Collaboration

    NASA Astrophysics Data System (ADS)

    Lodico, J. M.; Greely, T.; Lodge, A.; Pyrtle, A.; Ivey, S.; Madeiros, A.; Saleem, S.

    2005-12-01

    The University of South Florida, College of Marine Science Oceans: GK-12 Teaching Fellowship Program is successfully enriching science learning via the oceans. Funded by the National Science Foundation, the program provides a unique opportunity among scientists and K-12 teachers to interact with the intention of bringing ocean science concepts and research to the classroom environment enhance the experience of learning and doing science, and to promote `citizen scientists' for the 21st century. The success of the program relies heavily on the extensive summer training program where graduate students develop teaching skills, create inquiry based science activities for a summer Oceanography Camp for Girls program and build a relationship with their mentor teacher. For the last year and a half, two graduate students from the College of Marine Science have worked in cooperation with teachers from the Pinellas county School District, Southside Fundamental Middle School. Successful lesson plans brought into a 6th grade Earth Science classroom include Weather and climate: Global warming, The Geologic timescale: It's all about time, Density: Layering liquids, and Erosion processes: What moves water and sediment. The school and students have benefited greatly from the program experiencing hands-on inquiry based science and the establishment of an after school science club providing opportunities for students to work on their science fair projects and pursuit other science interests. Students are provided scoring rubrics and their progress is creatively assessed through KWL worksheets, concept maps, surveys, oral one on one and classroom discussions and writing samples. The year culminated with a series of hands on lessons at the nearby beach, where students demonstrated their mastery of skills through practical application. Benefits to the graduate student include improved communication of current science research to a diverse audience, a better understanding of the perspective of teachers and their content knowledge, and experience working with children and youth. The GK-12 teacher mentor benefits include a resource of inquiry based ocean science activities and increased knowledge of current scientific ocean research. The K-12 students gain an opportunity to be engage with young passionate scientists, learn about current ocean science research, and experience inquiry based science activities relating to concepts already being taught in their classroom. This program benefits all involved including the graduate students, the teachers, the K-12 students and the community.

  19. The Comic Book Project

    ERIC Educational Resources Information Center

    Lopate, Phillip

    1976-01-01

    Describes the work and preparation--as well as the student response-- that went into the Comic Book Club in an elementary school which resulted in a student developed comic book and comic book fair. (HOD)

  20. Setting up crowd science projects.

    PubMed

    Scheliga, Kaja; Friesike, Sascha; Puschmann, Cornelius; Fecher, Benedikt

    2016-11-29

    Crowd science is scientific research that is conducted with the participation of volunteers who are not professional scientists. Thanks to the Internet and online platforms, project initiators can draw on a potentially large number of volunteers. This crowd can be involved to support data-rich or labour-intensive projects that would otherwise be unfeasible. So far, research on crowd science has mainly focused on analysing individual crowd science projects. In our research, we focus on the perspective of project initiators and explore how crowd science projects are set up. Based on multiple case study research, we discuss the objectives of crowd science projects and the strategies of their initiators for accessing volunteers. We also categorise the tasks allocated to volunteers and reflect on the issue of quality assurance as well as feedback mechanisms. With this article, we contribute to a better understanding of how crowd science projects are set up and how volunteers can contribute to science. We suggest that our findings are of practical relevance for initiators of crowd science projects, for science communication as well as for informed science policy making. © The Author(s) 2016.

  1. KSC-2013-1119

    NASA Image and Video Library

    2013-01-14

    CAPE CANAVERAL, Fla. – Workers guide a solar array fairing into place inside the processing hangar used by Space Exploration Technologies, or SpaceX, at Cape Canaveral Air Force Station, Fla. The fairing will be installed on the Dragon spacecraft undergoing launch preparations inside the hangar. The spacecraft will launch on the upcoming SpaceX CRS-2 mission. The flight will be the second commercial resupply mission to the International Space Station by SpaceX. NASA has contracted for a total of 12 commercial resupply flights from SpaceX and eight from the Orbital Sciences Corp. Photo credit: NASA/Kim Shiflett

  2. KSC-2013-1115

    NASA Image and Video Library

    2013-01-14

    CAPE CANAVERAL, Fla. – Workers guide a solar array fairing into place inside the processing hangar used by Space Exploration Technologies, or SpaceX, at Cape Canaveral Air Force Station, Fla. The fairing will be installed on the Dragon spacecraft undergoing launch preparations inside the hangar. The spacecraft will launch on the upcoming SpaceX CRS-2 mission. The flight will be the second commercial resupply mission to the International Space Station by SpaceX. NASA has contracted for a total of 12 commercial resupply flights from SpaceX and eight from the Orbital Sciences Corp. Photo credit: NASA/Kim Shiflett

  3. KSC-2013-1116

    NASA Image and Video Library

    2013-01-14

    CAPE CANAVERAL, Fla. – Workers guide a solar array fairing into place inside the processing hangar used by Space Exploration Technologies, or SpaceX, at Cape Canaveral Air Force Station, Fla. The fairing will be installed on the Dragon spacecraft undergoing launch preparations inside the hangar. The spacecraft will launch on the upcoming SpaceX CRS-2 mission. The flight will be the second commercial resupply mission to the International Space Station by SpaceX. NASA has contracted for a total of 12 commercial resupply flights from SpaceX and eight from the Orbital Sciences Corp. Photo credit: NASA/Kim Shiflett

  4. KSC-2013-1109

    NASA Image and Video Library

    2013-01-12

    CAPE CANAVERAL, Fla. – Workers guide a solar array fairing into place inside the processing hangar used by Space Exploration Technologies, or SpaceX, at Cape Canaveral Air Force Station, Fla. The fairing will be installed on the Dragon spacecraft undergoing launch preparations inside the hangar. The spacecraft will launch on the upcoming SpaceX CRS-2 mission. The flight will be the second commercial resupply mission to the International Space Station by SpaceX. NASA has contracted for a total of 12 commercial resupply flights from SpaceX and eight from the Orbital Sciences Corp. Photo credit: NASA/Kim Shiflett

  5. KSC-2013-1118

    NASA Image and Video Library

    2013-01-14

    CAPE CANAVERAL, Fla. – Workers guide a solar array fairing into place inside the processing hangar used by Space Exploration Technologies, or SpaceX, at Cape Canaveral Air Force Station, Fla. The fairing will be installed on the Dragon spacecraft undergoing launch preparations inside the hangar. The spacecraft will launch on the upcoming SpaceX CRS-2 mission. The flight will be the second commercial resupply mission to the International Space Station by SpaceX. NASA has contracted for a total of 12 commercial resupply flights from SpaceX and eight from the Orbital Sciences Corp. Photo credit: NASA/Kim Shiflett

  6. KSC-2013-1110

    NASA Image and Video Library

    2013-01-12

    CAPE CANAVERAL, Fla. – Workers guide a solar array fairing into place inside the processing hangar used by Space Exploration Technologies, or SpaceX, at Cape Canaveral Air Force Station, Fla. The fairing will be installed on the Dragon spacecraft undergoing launch preparations inside the hangar. The spacecraft will launch on the upcoming SpaceX CRS-2 mission. The flight will be the second commercial resupply mission to the International Space Station by SpaceX. NASA has contracted for a total of 12 commercial resupply flights from SpaceX and eight from the Orbital Sciences Corp. Photo credit: NASA/Kim Shiflett

  7. White House Maker Faire

    NASA Image and Video Library

    2014-06-18

    President Barack Obama delivers his remarks at the first ever White House Maker Faire, which brings together students, entrepreneurs, and everyday citizens who are using new tools and techniques to launch new businesses, learn vital skills in science, technology, engineering, and math (STEM), and fuel the renaissance in American manufacturing, at the White House, Wednesday, June 18, 2014 in Washington. The President announced new steps the Administration and its partners are taking to support the ability of more Americans, young and old, to have to access to these tools and techniques and brings their ideas to life. Photo Credit: (NASA/Bill Ingalls)

  8. The relationship between organizational justice and workplace aggression.

    PubMed

    St-Pierre, Isabelle; Holmes, Dave

    2010-05-01

    This paper is a discussion of the links between organizational justice and workplace aggression. Managers have been identified as key players in implementing and maintaining an organizational culture of trust and justice. Employees who perceive themselves to be victims of injustice may rebel, using various means to 'punish' the source of the injustice. Literature review of publications in English and French from the early 1960 to 2009, including books, was conducted. Bibliographic databases searched for journal articles were Cumulative Index to Nursing and Allied Health Literature, Current Content, EMBASE, Medline, PsycINFO and Web of Science. The work environment and roles of nursing managers have changed considerably in the last 20 years, resulting in challenging working conditions for nursing managers. These can have an impact on their ability to create a trusting and fair culture, and can mean that they themselves be considered victims of organizational injustice. The failure of many re-engineering projects has been linked to a lack of consideration of the impact of perception of justice when implementing change. In addition, perception of organizational justice has the potential to influence many organizational outcomes, such as perception of respect and trust. As justice is a founding principle of biomedical ethics, principles of justice, equity and fairness must be upheld in practice in accordance with the requirements of professional codes of ethics. The concept of justice is linked to the founding principles of biomedical ethics, and these must be upheld in order to practise in accordance with professional codes of ethics and conduct.

  9. Fostering K-12 Inquiry-based Lesson Development on Regional Water Resource Issues in Los Angeles Urban Schools through the NSF UCLA SEE-LA GK-12 program

    NASA Astrophysics Data System (ADS)

    Hogue, T. S.; Burke, M. P.; Thulsirag, V.; Daniel, J.; Moldwin, M.; Nonacs, P.

    2010-12-01

    A National Science Foundation Graduate Teaching Fellows in K- 12 Education program at UCLA (SEE-LA; http://measure.igpp.ucla.edu/GK12-SEE-LA/ ) partners UCLA faculty and graduate students (fellows) with urban middle and high school science teachers and their students to foster programs of science and engineering exploration that bring the environment of Los Angeles into the classroom. UCLA graduate fellows serve as scientists-in-residence at four partner schools to integrate inquiry-based science lessons, facilitate advancements in science content teaching, and ultimately, to improve their own science communication skills. As part of their fellowship, graduate students are required to develop inquiry-based lessons in their partner classroom. During the first two years of the project, the SEE-LA fellows have developed a range of inquiry-based activities, from invertebrate observations in an urban stream system, to water and home energy consumption surveys, to a school biodiversity investigation, to a school-wide alternative energy fair, to engineering the cleanup of environmental disasters, such as the recent oil spill in the Gulf of Mexico. Several of the current fellows have dissertation research in water resource related fields and are specifically integrating lessons specific to their research into their partner classrooms, including urban stream water quality, post-fire watershed behavior, beach water quality assessment and E. coli source tracking. This presentation will provide an overview of goals of the SEE-LA GK-12 program, development of inquiry-based water resource lessons and resulting engagement in the partner classrooms. University and local pre-college school partnerships provide an excellent opportunity to support the development of graduate student communication and teaching skills while also contributing significantly to the integration of science education into K-12 curriculum.

  10. 44 CFR 209.6 - Project eligibility.

    Code of Federal Regulations, 2012 CFR

    2012-10-01

    ... Recovery Map; (iii) Were made uninhabitable (as certified by an appropriate State or local official) by the... additional amounts for pre-event fair market value. (d) Funds available under Pub. L. 106-113 (the original...

  11. Abstracts of SIG Sessions.

    ERIC Educational Resources Information Center

    Proceedings of the ASIS Annual Meeting, 1997

    1997-01-01

    Presents abstracts of SIG Sessions. Highlights include digital collections; information retrieval methods; public interest/fair use; classification and indexing; electronic publication; funding; globalization; information technology projects; interface design; networking in developing countries; metadata; multilingual databases; networked…

  12. The Global Fund Secretariat's suspension of funding to Uganda: how could this have been avoided?

    PubMed Central

    Kapiriri, Lydia; Martin, Douglas K.

    2006-01-01

    In August 2005, the Global Fund to fight AIDS, Tuberculosis and Malaria (the Global Fund) Secretariat suspended its five grants to Uganda following a PricewaterhouseCoopers audit report that exposed gross mismanagement in the Project Management Unit. How could this have been avoided? How can other countries avoid a similar pitfall? We argue that if a legitimate and fair decision-making process were used, the suspension of funding to Uganda could have been avoided, and that this lesson should be applied to other countries. The "accountability for reasonableness" framework of relevance, publicity, revisions and enforcement would help in implementing legitimate and fair decision-making processes, which would improve effectiveness, accountability and transparency in the implementation of Global Fund programmes, preventing future suspension of funding to any Global Fund projects. PMID:16878232

  13. A Fair Go for All? The Impact of Intragroup Diversity and Diversity-Management Skills on Student Experiences and Outcomes in Team-Based Class Projects

    ERIC Educational Resources Information Center

    Shaw, James B.

    2004-01-01

    A longitudinal study of 390 students in 64 Practical Organizational Behavior Education (PROBE) project teams was conducted on the effects of intragroup diversity and student diversity-management skills. The impact of gender, age, and nationality variables on student grades, cognitive processes, perceptions of team effectiveness, and satisfaction…

  14. Mellon Conference: Panel on "Licensing, Copyright and Fair Use." The HYPATIA Project (toward an ASCAP for Academics).

    ERIC Educational Resources Information Center

    Ginsburg, Jane C.; Janklow, Morton L.

    The HYPATIA Project envisions the creation of a digital depository and licensing and tracking service for unpublished "academic" works, including working papers, other works-in-progress, lectures, and other writings that are not normally published in formal academic journals. Any academic who wishes to deposit a work will be welcome to…

  15. MSG: Microgravity Science Glovebox

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

    Baugher, C.R.; Ramachandran, N.; Roark, W.

    1996-12-31

    The capabilities of the Space Station glovebox facility is described. Tentatively scheduled to be launched in 1999, this facility called the Microgravity Sciences Glovebox (MSG), will provide a robust and sophisticated platform for doing microgravity experiments on the Space Station. It will provide an environment not only for testing and evaluating experiment concepts, but also serve as a platform for doing fairly comprehensive science investigations. Its design has evolved substantially from the middeck glovebox, now flown on Space Shuttle missions, not only in increased experiment volume but also in significant capability enhancements. The system concept, functionality and architecture are discussedmore » along with technical information that will benefit potential science investigators.« less

  16. Entry Descent and Landing Workshop Proceedings. Volume 1; Inflatable Reentry Vehicle Experiment-3 (IRVE-3) Project Overview & Instrumentation

    NASA Technical Reports Server (NTRS)

    Dillman, Robert

    2015-01-01

    Entry mass at Mars is limited by the payload size that can be carried by a rigid capsule that can fit inside the launch vehicle fairing. Landing altitude at Mars is limited by ballistic coefficient (mass per area) of entry body. Inflatable technologies allow payload to use full diameter of launch fairing, and deploy larger aeroshell before atmospheric interface, landing more payload at a higher altitude. Also useful for return of large payloads from Low Earth Orbit (LEO).

  17. How fair is access to more prestigious UK universities?

    PubMed

    Boliver, Vikki

    2013-06-01

    Now that most UK universities have increased their tuition fees to £9,000 a year and are implementing new Access Agreements as required by the Office for Fair Access, it has never been more important to examine the extent of fair access to UK higher education and to more prestigious UK universities in particular. This paper uses Universities and Colleges Admissions Service (UCAS) data for the period 1996 to 2006 to explore the extent of fair access to prestigious Russell Group universities, where 'fair' is taken to mean equal rates of making applications to and receiving offers of admission from these universities on the part of those who are equally qualified to enter them. The empirical findings show that access to Russell Group universities is far from fair in this sense and that little changed following the introduction of tuition fees in 1998 and their initial increase to £3,000 a year in 2006. Throughout this period, UCAS applicants from lower class backgrounds and from state schools remained much less likely to apply to Russell Group universities than their comparably qualified counterparts from higher class backgrounds and private schools, while Russell Group applicants from state schools and from Black and Asian ethnic backgrounds remained much less likely to receive offers of admission from Russell Group universities in comparison with their equivalently qualified peers from private schools and the White ethnic group. © London School of Economics and Political Science 2013.

  18. Chemistry inside an epistemological community box! Discursive exclusions and inclusions in Swedish National tests in Chemistry

    NASA Astrophysics Data System (ADS)

    Ståhl, Marie; Hussénius, Anita

    2017-06-01

    This study examined the Swedish national tests in chemistry for implicit and explicit values. The chemistry subject is understudied compared to biology and physics and students view chemistry as their least interesting science subject. The Swedish national science assessments aim to support equitable and fair evaluation of students, to concretize the goals in the chemistry syllabus and to increase student achievement. Discourse and multimodal analyses, based on feminist and critical didactic theories, were used to examine the test's norms and values. The results revealed that the chemistry discourse presented in the tests showed a traditional view of science from the topics discussed (for example, oil and metal), in the way women, men and youth are portrayed, and how their science interests are highlighted or neglected. An elitist view of science emerges from the test, with distinct gender and age biases. Students could interpret these biases as a message that only "the right type" of person may come into the chemistry epistemological community, that is, into this special sociocultural group that harbours a common view about this knowledge. This perspective may have an impact on students' achievement and thereby prevent support for an equitable and fair evaluation. Understanding the underlying evaluative meanings that come with science teaching is a question of democracy since it may affect students' feelings of inclusion or exclusion. The norms and values harboured in the tests will also affect teaching since the teachers are given examples of how the goals in the syllabus can be concretized.

  19. Evolution of responses to (un)fairness.

    PubMed

    Brosnan, Sarah F; de Waal, Frans B M

    2014-10-17

    The human sense of fairness is an evolutionary puzzle. To study this, we can look to other species, in which this can be translated empirically into responses to reward distribution. Passive and active protest against receiving less than a partner for the same task is widespread in species that cooperate outside kinship and mating bonds. There is less evidence that nonhuman species seek to equalize outcomes to their own detriment, yet the latter has been documented in our closest relatives, the apes. This reaction probably reflects an attempt to forestall partner dissatisfaction with obtained outcomes and its negative impact on future cooperation. We hypothesize that it is the evolution of this response that allowed the development of a complete sense of fairness in humans, which aims not at equality for its own sake but for the sake of continued cooperation. Copyright © 2014, American Association for the Advancement of Science.

  20. Examining Thai high school students' developing STEM projects

    NASA Astrophysics Data System (ADS)

    Teenoi, Kultida; Siripun, Kulpatsorn; Yuenyong, Chokchai

    2018-01-01

    Like others, Thailand education strongly focused on STEM education. This paper aimed to examine existing Thai high school students' integrated knowledge about science, technology, engineering, and mathematics (STEM) in their developing science project. The participants included 49 high school students were studying the subject of individual study (IS) in Khon Kaen wittayayon school, Khon Kaen, Thailand. The IS was provided to gradually enhance students to know how to do science project starting from getting start to do science projects, They enrolled to study the individual study of science project for three year in roll. Methodology was qualitative research. Views of students' integrated knowledge about STEM were interpreted through participant observation, interview, and students' science projects. The first author as participant observation has taught this group of students for 3 years. It found that 16 science projects were developed. Views of students' integrated knowledge about STEM could be categorized into three categories. These included (1) completely indicated integration of knowledge about science, technology, engineering, and mathematics, (2) partial indicated integration of knowledge about science, technology, engineering, and mathematics, and (3) no integration. The findings revealed that majority of science projects could be categorized as completely indicated integration of knowledge about science, technology, engineering, and mathematics. The paper suggested some ideas of enhancing students to applying STEM for developing science projects.

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