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Peer reviewedBremner, J. Gavin; And Others – Journal of Experimental Child Psychology, 1994
Tested children 18 months to 4 years for their ability to relocate a hidden object after self-produced movement around an array of 4 locations. Children encountered no specific difficulty in coordinating dimensions, or they solved the task without recourse to such a system. They also appeared to change strategy when the problem requires more…
Descriptors: Age Differences, Early Childhood Education, Motion, Orientation
Peer reviewedSlaughter, Michael G. – Science Teacher, 1991
Describes an activity that helps motivate students to learn motion equations by allowing them to observe and analyze their own sports performances. (ZWH)
Descriptors: Athletics, Equations (Mathematics), Mathematics Education, Mechanics (Physics)
Peer reviewedThompson, D. – Physics Teacher, 1993
Uses a blackboard eraser to illustrate solutions to three problems commonly posed to students. The problems are determining (1) the frictional force acting on a stationary body; (2) the maximum acceleration a truck can have without sliding a tray of eggs sitting on the truck bed; and (3) the distance a horizontally thrown object will travel. (MDH)
Descriptors: Force, Instructional Materials, Mechanics (Physics), Motion
Peer reviewedBrueningsen, Christopher A. – Physics Teacher, 1993
Studies magnetic oscillation using an air track. Ceramic magnets are attached to the cart and also are used as dampeners in place of the springs. The resulting oscillations are fairly sinusoidal and is a good example of simple harmonic motion. (MVL)
Descriptors: Computer Uses in Education, Magnets, Mechanics (Physics), Motion
Peer reviewedKotkin, G. L. – Quantum, 1998
Presents the plans for y-suspension, coupled, and double pendula and explains in detail why they move as they do. The mathematics that describes the motion is examined. (DDR)
Descriptors: Educational Strategies, Hands on Science, Higher Education, Laboratory Equipment
Peer reviewedvan den Berg, Ed; Bonifacio, Nestor; Embalzado, Renante; Ravelo, Mike – Physics Teacher, 1999
Describes a safe but qualitative alternative to an experiment in which bullets are shot into wooden blocks from below, with some bullets hitting the blocks in the center and others off-center. Explains why the off-center blocks reach greater heights in spite of the fact that the bullet's energy is divided between translational and rotational…
Descriptors: Energy, Higher Education, Mechanics (Physics), Motion
Peer reviewedWard, Gilbert H. – Physics Teacher, 1999
Explains the strange effect a crosswind has on motion. (WRM)
Descriptors: Force, High Schools, Higher Education, Kinetics
Peer reviewedCanderle, Luis H. – Physics Teacher, 1999
Proposes that introductory physics courses extend the analysis of one-dimensional motion to a more sophisticated level. Gives four experimental setups and graphical analysis of the distance, velocity, and acceleration in the vertical and horizontal directions. (WRM)
Descriptors: Acceleration (Physics), Graphs, Higher Education, Kinetics
Peer reviewedPietrocola, Mauricio; Zylbersztajn, Arden – International Journal of Science Education, 1999
Reports on the extent to which the Principle of Relativity was employed by students when dealing with various phenomena. Concludes that the Principle of Relativity is not used as an heuristic tool in students' answers, and that the situations presented were not regarded as "problematic" by the students, who primarily used interpretive…
Descriptors: Foreign Countries, Higher Education, Mechanics (Physics), Misconceptions
Peer reviewedWarwick, Paul – Primary Science Review, 2000
Presents some elementary-level science activities that can be used to study moving and falling objects. Provides background information on motion and force for elementary teachers. (WRM)
Descriptors: Elementary Education, Force, Gravity (Physics), Knowledge Base for Teaching
Peer reviewedWilliams, H. Thomas – American Journal of Physics, 1999
Contends that the large vocabulary used for precise purposes in physics contains many words that have related but potentially confusing meanings in everyday usage. Analyzes the treatment of Newton's Laws of Motion in several well-known introductory textbooks for evidence of inconsistent language use. Makes teaching suggestions. (Contains 11…
Descriptors: Definitions, Higher Education, Language Patterns, Mechanics (Physics)
Peer reviewedHiley, M. J.; Yeadon, M. R. – Physics Education, 2001
Models the motion of a gymnast around the high bar first as swinging around a rigid rod, then more accurately when the rod is considered to be elastic. Also considers how the gymnast should best move his hips. (Author/ASK)
Descriptors: Elementary Secondary Education, Exercise Physiology, Mathematical Models, Motion
Peer reviewedCaton, Randall; Otts, Charlotte – American Biology Teacher, 1999
Describes an activity in which students construct relationships between their leg lengths, stride lengths, and movements in order to estimate the speeds of the dinosaurs that made various fossilized tracks. (WRM)
Descriptors: Biology, Biomechanics, Dinosaurs, Elementary Secondary Education
Peer reviewedCharoenkul, Niran; Wheeler, David; Dejasvanong, Chanwit – Physics Teacher, 1999
Describes an experience as passengers in a car that traveled around the "Wall of Death" during a country fair show. Explains the physics behind riding vehicles around the Wall. Finds that cars don't need to lean, motorcycles must lean, and people should lean to avoid nausea while traveling around the Wall. (WRM)
Descriptors: Biology, Force, Gravity (Physics), Higher Education
Rutherford, M. D.; Pennington, Bruce F.; Rogers, Sally J. – Journal of Autism and Developmental Disorders, 2006
Visual perception may be a developmental prerequisite to some types of social understanding. The ability to perceive social information given visual motion appears to develop early. However, children with autism have profound deficits in social cognitive function and may fail to see social motion in the same way that typically developing children…
Descriptors: Motion, Geometric Concepts, Visual Perception, Developmental Disabilities

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