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Peer reviewedWeinstock, Harold – Journal of College Science Teaching, 1983
Discusses development of a multi-media learning center at Illinois Institute of Technology, focusing on strategy used to obtain National Science Foundation funding and the center's operation. The latter includes hardware, location and physical layout, courseware, public relations, staffing, student use, and future endeavors. Also provides an…
Descriptors: Chemistry, College Mathematics, College Science, Computer Oriented Programs
Ford, Bruce – Classroom Computer News, 1983
Microcomputer-based instrumentation packages enable computers to collect continuous analog data, convert data to digital form for processing, and display results on monitor. Discusses classroom advantages of these packages, describes one package for teaching harmonic motion, and provides a list of currently available packages (including vendor and…
Descriptors: College Science, Computer Oriented Programs, Computer Programs, Electronic Equipment
Peer reviewedBloom, Justin L.; Asano, Shinsuke – Science, 1981
Describes the history of, and research activities and current problems at Tsukuba Science City, Japan's new municipal complex of research laboratories and educational facilities. About 30 percent of Japan's government research laboratories, as well as Tsukuba University, are located in the complex. (JN)
Descriptors: College Science, Engineering Education, Foreign Countries, Government Role
Peer reviewedPhysics Today, 1981
Discusses implications of the recent actions of Federal agencies, through export control regulations, to control the open exchange of scientific ideas. Reactions of the National Academy of Sciences and several professional physics organizations are described. Impact on foreign students and publication is also discussed. (CS)
Descriptors: Academic Freedom, College Science, Communism, Electronics
Peer reviewedClayton, Glen T.; And Others – American Journal of Physics, 1982
Describes the format and lists course content of a university-based workshop for elementary school teachers who require additional training because they may lack experience in performing experiments, demonstrations, and observations related to physics in elementary science courses. (Author/SK)
Descriptors: Course Content, Course Descriptions, Elementary Education, Elementary School Science
Peer reviewedFraknoi, Andrew – Mercury, 1981
Presents NASA astronomy publications by subject: Earth; Moon; Mercury and Venus; Mars; Jupiter and Saturn; Planets (general); Comets, Meteors, and Asteroids; Sun; Astronomy from Various NASA Missions; Miscellaneous Astrophysics; Telescopes and Instrumentation; and Extra-Terrestrial Life. Includes listing of NASA Technical Conference Proceedings…
Descriptors: Aerospace Technology, Astronomy, College Science, Earth Science
Moriera, M. A. – Assessment in Higher Education, 1979
David Ausubel's learning theory was used as a framework for the content organization of an experimental Personalized System of Instruction (PSI) course in physics. Evaluation suggests that the combination of PSI as a method of instruction and Ausubel's theory for organization might result in better learning outcomes. (Author/JMD)
Descriptors: College Science, Concept Teaching, Course Content, Course Organization
Peer reviewedViennot, L. – European Journal of Science Education, 1979
Investigates spontaneous reasoning of 709 French, Belgian, and British students in elementary dynamics using the relations between force, energy and motion as the study topic. Students were selected from the last year at secondary school to the third year at university. (HM)
Descriptors: Abstract Reasoning, College Science, Educational Research, Higher Education
Peer reviewedCreasey, D. J. – Physics Education, 1981
Summarizes the history of underwater acoustics and describes related research studies and teaching activities at the University of Birmingham (England). Also includes research studies on transducer design and mathematical techniques. (SK)
Descriptors: Acoustics, Audio Equipment, College Science, Course Descriptions
Peer reviewedKautz, Allan D. – American Journal of Physics, 1980
Describes an experimental setup which allows the student to investigate the resonance characteristics of a vibrating plate using a small, circular steel plate clamped around its perpiphery. (HM)
Descriptors: College Science, College Students, Electricity, Higher Education
Peer reviewedMillar, R. H. – Comparative Education, 1981
Comparing the secondary physics courses developed by West Germany's Institute for Science Education (IPN) with similar British curriculum projects, the author argues that the differences in style, content, and reception of these curriculums are related to the social locations of the British teachers and the German academics who devised them.…
Descriptors: Adoption (Ideas), Comparative Education, Curriculum Design, Curriculum Development
Curtis, D.; Goodwin, R. D. – SASTA Journal, 1980
Described are experiments used in the "Physical Science and Man" course at Hartley CAE which enable determinations of efficiencies of two energy conversion processes, namely, electricity into heat and burning gas to produce heat. Activities for comparing the processes are suggested. (DS)
Descriptors: College Science, Electricity, Energy, Fuel Consumption
Peer reviewedPhysics Today, 1979
This is a set of recommendations concerning maximum teaching loads of physics teachers at high schools, two-year and four-year colleges. (Author/SA)
Descriptors: Budgets, College Science, Curriculum Development, Higher Education
Lyublinskaya, Irina – NCSSSMST Journal, 1996
A mathematical preview program in physics was developed at the Arkansas School for Mathematics and Sciences to introduce students to mathematical concepts, then use these as tools in physics while concurrently studying them in mathematics. The topics and time frame for the mathematical preview in calculus-based physics courses is presented, along…
Descriptors: Calculus, Course Organization, Curriculum Development, Educational Change
Peer reviewedHoover, Barbara G. – Science and Children, 1998
Describes several science activities designed around the upcoming Winter Olympics ice skating events which demonstrate the scientific principles behind the sport. Students learn that increasing the pressure on ice will lead to the ice melting, the principle involved in the spinning swing, and the technology of skates and skating outfits. (PVD)
Descriptors: Athletic Equipment, Demonstrations (Science), Elementary Education, Hands on Science


