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Nunn, John – Physics Education, 2016
A cordless mouse with an added reed switch is used as a wireless data logger to record every time the wheel of a trolley completes a revolution. The limitations of the system in terms of maximum clicking rate and spatial resolution are considered and data obtained from the descent of a trolley down a ramp at various different angles is analysed in…
Descriptors: Computer Peripherals, Computers, Computer Uses in Education, Computer Interfaces
Wadhwa, Ajay – Physics Education, 2012
Some balls which are made of high-quality rubber (an elastomeric) material, such as tennis or squash balls, could be used for the determination of an important property of such materials called resilience. Since a bouncing ball involves a single impact we call this property "rebound resilience" and express it as the ratio of the rebound height to…
Descriptors: Racquet Sports, Intervals, Time, Science Education
Peer reviewedClack, Jhules A. M.; Toepker, Terrence P. – Physics Teacher, 1990
Describes an experiment demonstrating Lenz's law by measuring a magnet falling through a copper tube compared to a nonmagnet falling. Presents diagrams and pictures showing the apparatus. (YP)
Descriptors: Computer Interfaces, Laboratory Equipment, Laboratory Experiments, Laboratory Procedures
Peer reviewedSawicki, Charles A. – Physics Teacher, 1996
Describes a simple, inexpensive system that allows students to have hands-on contact with simple experiments involving forces generated by induced currents. Discusses the use of a dynamic force sensor in making quantitative measurements of the forces generated. (JRH)
Descriptors: Computer Interfaces, Electricity, Force, Hands on Science
Peer reviewedGagne, Richard. – Physics Teacher, 1996
Presents a simple but effective experiment that uses ultrasonic transducers and some basic electronics to study the speed of sound using the Doppler effect. Eliminates the noise problems associated with most sound experiments. Discusses the theory, and describes the apparatus and procedure. (JRH)
Descriptors: Acoustics, Computer Interfaces, Higher Education, Physics
Peer reviewedGreenslade, Thomas B., Jr. – Physics Teacher, 1995
Describes an experiment that uses the ultrasonic transducer for demonstrating the Fourier components of waveshapes such as the square and triangular waves produced by laboratory function generators. (JRH)
Descriptors: Acoustics, Computer Interfaces, Higher Education, Physics
Peer reviewedPreyer, Norris W. – Physics Teacher, 1996
Presents experiments that use Microcomputer Based Laboratory (MBL) techniques to enable freshmen physics students to investigate complex systems, such as nonlinear oscillators or coupled harmonic oscillators, at a level appropriate for an independent project. (JRH)
Descriptors: Computer Interfaces, Computer Uses in Education, Experiments, Higher Education
Peer reviewedSartori, J.; And Others – American Journal of Physics, 1995
Describes hardware that enables the use of an IBM PC microcomputer as a frequency meter or a counter by using the parallel printer port. Eliminates the 16-bit time-day counter through the use of an external time base that can be conveniently set depending on the desired frequency range. (JRH)
Descriptors: Computer Interfaces, Computer Uses in Education, Higher Education, Measurement
Peer reviewedJolly, Pratibha; And Others – Physics Education, 1993
Describes a measurement system for recording the frequency response of acoustic systems. The computer interface detects the characteristic modes, their relative strengths, and resonant shapes over a broad range of frequencies. Includes experimental data for tubes and analyzes the data to determine the optimal functional form for the resonant…
Descriptors: Acoustics, Computer Interfaces, Computer Uses in Education, Experiments
Peer reviewedNicklin, R. C.; Miller, Robert – Physics Teacher, 1995
Presents three motion experiments that use magnetic switches for marking position and time involving an inclined plane, an air track, and sprinting. (JRH)
Descriptors: Computer Interfaces, Higher Education, Measurement, Mechanics (Physics)
Peer reviewedTeck-Chee, Chia – Physics Education, 1995
Describes the use of microcomputers in physics experiments to extend powers of observation, increase the accuracy of measurements taken, and obtain large amounts of high quality information, especially continuous and rapidly changing/moving data. Discusses software for interfacing a microcomputer with mechanics experiments. (JRH)
Descriptors: Computer Interfaces, Computer Uses in Education, Measurement, Mechanics (Physics)
Peer reviewedHitt, Darren L.; Lowe, Mary L. – Physics Teacher, 1996
Describes an experiment to study the motion of a rocket-propelled vehicle over the entire duration of the engine burn using a video system with a frame-by-frame playback and a Sonic Ranger for ultrasonic position movements. Enables students to study the impulse-momentum principle and the effects of a time-varying force. (JRH)
Descriptors: Computer Interfaces, Computer Uses in Education, Demonstrations (Science), Mechanics (Physics)
Peer reviewedPreston, Daryl W.; Good, R. H. – American Journal of Physics, 1996
Provides ideas and outcomes for nine computer laboratory experiments using a commercial eight-bit analog to digital (ADC) interface. Experiments cover statistics; rotation; harmonic motion; voltage, current, and resistance; ADC conversions; temperature measurement; single slit diffraction; and radioactive decay. Includes necessary schematics. (MVL)
Descriptors: Computer Interfaces, Computer Uses in Education, Electricity, Higher Education
Peer reviewedGuglielmino, Rick; Boyce, Tom – Physics Teacher, 1989
Described is a physical pendulum experiment with variable pivot as an example of maximizing computer benefits in laboratory interfacing. The laboratory procedures using spreadsheet graphics package are discussed. A diagram of the pendulum, basic formulas, and theoretical curve is provided. (YP)
Descriptors: College Science, Computer Graphics, Computer Interfaces, Laboratory Experiments
Peer reviewedSalumbides, Edcel John; Maristela, Joyce; Uy, Alfredson; Karremans, Kees – American Journal of Physics, 2002
Introduces an alternative method to determine the mechanics of a moving object that uses computer vision algorithms with a charge-coupled device (CCD) camera as a recording device. Presents two experiments, pendulum motion and terminal velocity, to compare results of the alternative and conventional methods. (YDS)
Descriptors: Computer Interfaces, Computer Uses in Education, Higher Education, Laboratory Experiments

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