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Winters, Loren M. – Physics Teacher, 1991
Describes the use of a microcomputer as an intervalometer for the control and timing of several flash units to photograph high-speed events. Applies this technology to study the oscillations of a stretched rubber band, the deceleration of high-speed projectiles in water, the splashes of milk drops, and the bursts of popcorn kernels. (MDH)
Descriptors: Computer Assisted Instruction, Computers, High Schools, Light
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French, A. P. – Physics Teacher, 1993
Presents the work of Newton in thermometry and argues that it is a quite distinguished work in this area and exemplifies Newton's brilliance as an experimenter. (PR)
Descriptors: Computer Assisted Instruction, Heat, High Schools, Higher Education
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Morse, Robert A. – Physics Teacher, 1993
Describes an experimental sequence using the force probe to develop the relationship between net force and acceleration. (PR)
Descriptors: Acceleration (Physics), Computer Assisted Instruction, Educational Technology, Force
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Eng, John; Lietman, Thomas – Physics Teacher, 1994
Presents an alternative to the use of a radar to determine how fast an individual can serve a tennis ball. Equipped with a tape recorder and a Macintosh computer, students determine the velocity of a tennis ball by analyzing the sounds and echoes heard on the court. (ZWH)
Descriptors: Acoustics, Athletics, Computer Assisted Instruction, Computer Uses in Education
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Ronen, Miky; Lipman, Aharon – Physics Teacher, 1991
Proposes the V-Scope as a teaching aid to measure, analyze, and display three-dimensional multibody motion. Describes experiment setup considerations, how measurements are calculated, graphic representation capabilities, and modes of operation of this microcomputer-based system. (MDH)
Descriptors: Computer Assisted Instruction, Courseware, High Schools, Instructional Materials
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Spencer, C. D.; Seligmann, P. F. – Physics Teacher, 1992
Describes a first-year laboratory course designed to fulfill laboratory objectives of reinforcing lecture material, teaching experimental methodology, developing hands-on skills, and imparting a sense of error. The course's six segments examine: digital electronics with students building a photogate timer; error analysis; linear accelerated…
Descriptors: Acceleration (Physics), Computer Assisted Instruction, High Schools, Higher Education