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Peer reviewedArchenhold, W. F.; And Others – Physics Education, 1987
Describes a new high school physics option in Great Britain which uses the model of a technological approach to the study of materials. Discusses the components of the program, including the development of a student book for independent learning and six case studies. Provides a case study about turbine blades. (TW)
Descriptors: Case Studies, Independent Study, Mechanics (Physics), Physics
Peer reviewedMaloney, David P. – Physics Education, 1984
Describes an approach to assessing the use of rules in solving problems related to Newton's third law of motion. Discusses the problems used, method of questioning, scoring of problem sets, and a general overview of the use of the technique in aiding the teacher in dealing with student's conceptual levels. (JM)
Descriptors: Acceleration (Physics), Cognitive Measurement, Cognitive Processes, College Science
Peer reviewedSeaborg, Glenn T. – Science Teacher, 1983
Reviews the historical development of the periodic table, examining major changes due to understanding of radioactivity, synthetic transmutation by bombardment, differences between transuranium elements and the lanthanide series, and the transactinide elements. Discusses the continuing work on atomic synthesis and its importance in extending our…
Descriptors: Atomic Structure, Chemical Analysis, Chemistry, High Schools
Rusczyk, Richard; Lehoczky, Sandor – 1996
This guide is designed to accompany ESPN's SportsFigures video segments which were created to enhance the interest and learning progress of high school students in mathematics, physics, and physical science. Using actual, re-enacted, or staged events, the problems presented in each of the 16 Sports Figures segments illustrate the relationship…
Descriptors: Algebra, Athletics, Educational Strategies, Energy
Yamamoto, Tosh – 1998
This report describes a comparison of the effectiveness of two types of instruction on undergraduate students' learning of the concept of force. Findings indicate that students who participated in the Integrated Freshman Year Curriculum for Science, Engineering and Mathematics improved slightly more on the Force Concept Inventory than students who…
Descriptors: Engineering Education, Experimental Curriculum, Females, Force
Peer reviewedLittle, R. N. – Physics Teacher, 1983
Describes two workshops for physics teachers in Hispaniola. Workshops demonstrated how mechanics could be developed from planetary motions and how basic mechanics concepts could be introduced through a guided discovery approach. Comments on workshop activities, organization, participant attitudes, and physics curriculum/instruction in Hispaniola…
Descriptors: Astronomy, Foreign Countries, Inservice Teacher Education, Mechanics (Physics)
Peer reviewedHenry, Dennis C. – Physics Teacher, 1982
Regrouping cars from incoming trains into blocks of cars for outgoing trains is accomplished in railroad "hump" classification yards. Discusses: hardware and software elements of such installations; physical models on which software is based; success in predicting/regulating car speeds; and results of recent research into factors…
Descriptors: Acceleration (Physics), College Science, Computer Oriented Programs, Engineering
Peer reviewedKilmister, C. W. – Physics Education, 1982
Suggests that current approaches to mechanics following Newton's laws will not improve by better presentations due to conceptual difficulties of the approaches. Offers an alternative way of setting up mechanics which avoids some of the conceptual pitfalls but still requires mathematical ability. (Author/SK)
Descriptors: College Science, Force, Higher Education, Mechanics (Physics)
Peer reviewedMold, P.; Bull, R. K. – School Science Review, 1980
Describes experiments using solid state detectors in modern physics courses. The apparatus involved is simple and inexpensive, avoiding costly electronics, and the very high efficiency of plastic detectors in particular makes them ideally suited for work with very weak radioactive sources. (Author/SK)
Descriptors: College Science, Higher Education, Laboratory Equipment, Nuclear Physics
Peer reviewedTrowbridge, David E.; McDermott, Lillian C. – American Journal of Physics, 1981
Describes a systematic investigation of the understanding of the concept of acceleration among students enrolled in a variety of introductory physics courses through individual demonstration interviews. Describes and identifies some conceptual difficulties and discusses some implications for instruction. (Author/SK)
Descriptors: Cognitive Ability, Cognitive Measurement, College Science, Concept Formation
Peer reviewedHale, D. P. – Physics Education, 1980
Describes an experiment for the use of a tilted plane as a two-dimensional uniform gravitational field to demonstrate the motion of projectiles, to determine the fundamental laws of mechanics, or to study the focusing properties of the uniform field. (SK)
Descriptors: Demonstrations (Educational), Laboratory Equipment, Laboratory Procedures, Mechanics (Physics)
Peer reviewedPriest, Joseph; Potts, Larry – Physics Teacher, 1990
The interfacing of a physical pendulum to an Apple IIe computer and the physic instruction associated with it are discussed. Laboratory procedures, software commands, and computations used in this lesson are described. (CW)
Descriptors: College Science, Computer Interfaces, Computer Uses in Education, Higher Education
Peer reviewedZollman, Dean – Physics Teacher, 1990
Discusses the design of introductory physics course for elementary education majors and nonscience majors. Describes the learning cycle used for constructing hands-on activities. Provides an example of a week's activity on energy. Presents an evaluation of the course based on examinations and the teacher's impressions. (YP)
Descriptors: College Science, Concept Formation, Course Content, Learning Processes
Peer reviewedAltshuler, Kenneth – Science Teacher, 1989
Discusses a unit on nuclear technology which is taught in a physics class. Explains the unit design, implementation process, demonstrations used, and topics of discussion that include light and optics, naturally and artificially produced sources of radioactivity, nuclear equations, isotopes and half-lives, and power-generating nuclear reactors.…
Descriptors: Curriculum Design, Decision Making, Nuclear Energy, Nuclear Physics
Peer reviewedWilliams, Julien – Mathematics in School, 1988
Describes examples of force in daily living. Discusses some examples of gravitational, internal, external, and centrifugal forces in various situations by using force vectors with diagrams. (YP)
Descriptors: Force, Mathematical Applications, Mathematical Enrichment, Mechanics (Physics)


