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Showing 1 to 15 of 180 results Save | Export
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Zwicker, Earl, Ed. – Physics Teacher, 1988
Shows how a baseball having a built-in clock can be used for measuring ceiling height. Suggests other questions to investigate. (YP)
Descriptors: Acceleration (Physics), Demonstrations (Educational), Gravity (Physics), Mechanics (Physics)
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Osipov, Y. – Quantum, 1992
Traces cosmogonic history of solar system from Laplace's hypothesis of revolving gas nebulae, to Newton's two-body problem with its mathematical impossibility of gravitational capture, to the isosceles three-body problem of Schmidt and Sitnikov with its notion of partial capture, and finally to the total capture model of Alexeyev verified by the…
Descriptors: Enrichment Activities, Gravity (Physics), Higher Education, Instructional Materials
Gartrell, Jack E., Jr. – 1992
This document contains a series of six modules which illustrate selected concepts of mechanics with hands-on activities and audiovisual materials. Following the modules is a collection of readings which give detailed explanations of the concepts presented in the activities. A guide for teachers and workshop leaders is provided for use in planning…
Descriptors: Acceleration (Physics), Force, Hands on Science, Learning Activities
Helms, Harry – Science Probe, 1991
Examines the everywhere-observable phenomena of waveforms, and how waves transport energy across a distance within some given medium. Discusses how waves are described, what happens when waves meet, the specifics of standing waves and echoes, and an introduction to Fourier analysis. (JJK)
Descriptors: Physics, Science Education, Secondary Education, Secondary School Science
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Kazachkov, Alexander; Kryuchkov, Dmitriy; Willis, Courtney; Moore, John C. – Physics Teacher, 2006
Classroom experiments on atmospheric pressure focus largely on demonstrating its existence, often in a most impressive way. A series of amusing physics demonstrations is widely known and practiced by educators teaching the topic. However, measuring the value of atmospheric pressure(P[subscript atm]) is generally done in a rather mundane way,…
Descriptors: Physics, Measurement, Measurement Techniques, Demonstrations (Educational)
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Sumners, Carolyn; Jones, Howard L. – Science and Children, 1983
Discusses the science of roller coasters, relating gravity, potential/kinetic energy, inertia, and centripetal force to the various parts of the ride, providing tips on linking classroom discussions to field trips. Includes sample student activity sheet and source for additional units using amusement park rides/playground activities to teach…
Descriptors: Acceleration (Physics), Elementary School Science, Elementary Secondary Education, Energy
Goodsell, David; And Others – CSTA Journal, 1995
Describes an activity to give students experience with the variables and forces impacting a moving body on an inclined plane by observing a ball as it rolls down an inclined PVC pipe of fixed length. Includes a student worksheet. (MKR)
Descriptors: Force, Laboratory Experiments, Mechanics (Physics), Motion
Alshibli, Khalid – 2002
This publication presents a science activity and instructional information on the mechanics of granular materials, interparticle friction and geometric interlocking between particles which is a fundamental concept in many fields like in the study of earthquakes. This document describes the Mechanics of Granular Materials (MGM) experiments which…
Descriptors: Earth Science, Gravity (Physics), High Schools, Physics
Reihman, Thomas C. – 1973
This learning module is concerned with the temperature field, the heat transfer rates, and the coolant pressure drop in typical high temperature gas-cooled reactor (HTGR) fuel assemblies. As in all of the modules of this series, emphasis is placed on developing the theory and demonstrating its use with a simplified model. The heart of the module…
Descriptors: College Science, Computer Programs, Engineering, Engineering Education
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Abrikosov, A. A. – Quantum, 1992
Looks at one phase of the water cycle; the formation of drops in cooling water vapor. Examines the influence of surface shape on the equilibrium of the liquid and gas phases. Discusses the mathematical formulas that model the phenomenon. (MDH)
Descriptors: Energy, High Schools, Higher Education, Mathematical Formulas
Dube, Peter – 1983
The Zimbabwe Secondary School Science Project (ZIM-SCI) developed student study guides, corresponding teaching guides, and science kits for a low-cost science course which could be taught during the first 2 years of secondary school without the aid of qualified teachers and conventional laboratories. This ZIM-SCI study guide presents activities…
Descriptors: Acceleration (Physics), Energy, Force, General Science
Reihman, Thomas C. – 1973
This learning module is concerned with the temperature field, the heat transfer rates, and the coolant pressure drop in typical pressurized water reactor (PWR) fuel assemblies. As in all of the modules of this series, emphasis is placed on developing the theory and demonstrating its use with a simplified model. The heart of the module is the PWR…
Descriptors: College Science, Computer Programs, Engineering, Engineering Education
Reihman, Thomas C. – 1973
This learning module is concerned with the temperature field, the heat transfer rates, and the coolant pressure drop in typical liquid metal fast breeder reactor (LMFBR) fuel assemblies. As in all of the modules of this series, emphasis is placed on developing the theory and demonstrating the use with a simplified model. The heart of the module is…
Descriptors: College Science, Computer Programs, Engineering, Engineering Education
Alshibli, Khalid – 2002
This publication presents a science activity and instructional information on mechanics of granular materials, interparticle friction and geometric interlocking between particles which is a fundamental concept in many fields like earthquakes. The activity described in this document focuses on the principal strength of granular materials,…
Descriptors: Earth Science, Gravity (Physics), Intermediate Grades, Junior High Schools
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Onega, Ronald J. – 1973
The objective of the Reactor Dynamics Module, RD-1, is to obtain the kinetics equation without feedback and solve the kinetics equations numerically for one to six delayed neutron groups for time varying reactivity insertions. The computer code FUMOKI (Fundamental Mode Kinetics) will calculate the power as a function of time for either uranium or…
Descriptors: College Science, Computer Programs, Engineering, Engineering Education
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