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Atkin, Keith – Physics Education, 2020
In this paper it is demonstrated how the free, and easily downloadable, software package called SMath Studio can be used to set up a model of alpha-particle scattering. The basic physics of the motion of an alpha-particle in the nuclear coulomb field is used to produce a simple stepwise computer algorithm which, in conjunction with a novel set of…
Descriptors: Computer Software, Physics, Science Instruction, Mathematics Instruction
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Schibuk, Elizabeth – Science Teacher, 2015
This article describes a nuclear chemistry unit on the Manhattan Project, a research effort that led to the development of the world's first nuclear weapons during World War II. The unit is appropriate for an introductory high school chemistry or physics course and takes from four to six weeks. The unit poses this essential question: "Over…
Descriptors: Science Instruction, Secondary School Science, High Schools, Chemistry
Johnson, Carla C., Ed.; Walton, Janet B., Ed.; Peters-Burton, Erin E., Ed. – NSTA Press, 2019
What if you could challenge your 11th graders to figure out the best response to a partial meltdown at a nuclear reactor in fictional Gammatown, USA? With this volume in the "STEM Road Map Curriculum Series," you can! "Radioactivity" outlines a journey that will steer your students toward authentic problem solving while…
Descriptors: Grade 11, High School Students, STEM Education, Nuclear Energy
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Kagan, David T. – Physics Teacher, 1984
Describes three computer programs which operate on Apple II+ microcomputers: (1) a menu-driven graph drawing program; (2) a simulation of the Millikan oil drop experiment; and (3) a program used to study the half-life of silver. (Instructions for obtaining the programs from the author are included.) (JN)
Descriptors: College Science, Computer Simulation, Computer Software, Graphs
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Campbell, Peter – Physics Education, 2003
Energy policies are under review everywhere, as the world tries to meet targets for reducing climate change despite continuing population growth. A major change in energy patterns is needed, with the critical period for transition predictably happening when young people currently at school are in their middle years of their lives. This article…
Descriptors: Population Growth, Climate, Nuclear Energy, Energy
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Golab-Meyer, Zofia – Physics Teacher, 1991
Uses the teaching method of models or analogies, specifically the model called "Piekara's chair," to show how teaching classical mechanics can familiarize students with the notion of energy levels in atomic physics. (MDH)
Descriptors: Energy, Mechanics (Physics), Models, Nuclear Energy
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Kauffman, George B. – Journal of College Science Teaching, 1985
Examines scientific discoveries which underlie the atomic bomb and its technological development in the United States during World War II. Changing views, super-weapon development, early American efforts, production/dropping the bombs, and the Oppenheimer case are considered. (DH)
Descriptors: College Science, Higher Education, Nuclear Energy, Nuclear Physics
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Kauffman, George B. – Journal of College Science Teaching, 1985
Part I (SE 537 587) briefly reviewed the scientific discoveries underlying the atomic bomb and its technological development. This part examines the implications of these events for science education. Areas considered include the nuclear arms race, nuclear winter, the Strategic Defense Initiative, and others. (DH)
Descriptors: College Science, Disarmament, Higher Education, Nuclear Energy
International Atomic Energy Agency, Vienna (Austria). – 1983
Radiolabelled pesticides are used: in studies involving improved formulations of pesticides, to assist in developing standard residue analytical methodology, and in obtaining metabolism data to support registration of pesticides. This manual is designed to give the scientist involved in pesticide research the basic terms and principles for…
Descriptors: College Science, Laboratory Procedures, Laboratory Safety, Nuclear Energy
Amann, George – AAPT Press (BK), 2005
The key to learning is student involvement! This American Association of Physics Teachers/Physics Teaching Resource Agents (AAPT/PTRA) manual presents examples of two techniques that are proven to increase student involvement in your classroom. Based on the "5E" model of learning, exploratories are designed to get your students excited about the…
Descriptors: Practicums, Thermodynamics, Optics, Teaching Methods
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Solomon, Joan – Physics Education, 1989
Describes some research studies, contents of a videotape, students' discussion of nuclear power and other educational aspects of the topic. Ten references are listed. (YP)
Descriptors: Attitudes, Controversial Issues (Course Content), Foreign Countries, Nuclear Energy
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Dukes, Robert J., Jr.; Strauch, Katina – Physics Teacher, 1984
Analyzes trends in physics teaching represented by papers presented at American Association of Physics Teachers' annual meetings. Major topics examined for the period from summer 1971 through summer 1983 include: Piagetian studies; personalized system of instruction; media; energy and environment; astronomy; and computer-oriented topics. (JN)
Descriptors: Astronomy, College Science, Computer Oriented Programs, Educational Media
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Kibble, Bob – Physics Education, 1991
Discussed are some areas of overlap between physics and astronomy. Topics include solar power, fusion reactions, atmospheric refraction, solar spectrum, Doppler effects, Hubble constant, quasars, redshift and the expanding universe, sunspots, sundial construction, solar spectroscopes, the moon, optics, wave theory, the history of science,…
Descriptors: Astronomy, Laboratory Equipment, Light, Nuclear Energy
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Atwood, Charles H.; Sheline, R. K. – Journal of Chemical Education, 1989
Some of the topics that might be included in a nuclear chemistry section are explored. Offers radioactivity, closed shells in nuclei, energy of nuclear processes, nuclear reactions, and fission and fusion as topics of interest. Provided are ideas and examples for each. (MVL)
Descriptors: Chemical Nomenclature, Chemical Reactions, Chemistry, College Science
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Kinderman, Jesusa Valdez – Physics Teacher, 1992
Describes a computer simulation of the Compton effect designed to lead students to discover (1) the relationship of the electron's final kinetic energy to its angle of scattering and (2) the relationship between the scattering angles of the outgoing electron and photon. (MDH)
Descriptors: Computer Assisted Instruction, Computer Simulation, Discovery Learning, Energy
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