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Nussbaum, Allen – American Journal of Physics, 1979
Presents a ray-tracing procedure based on some ideas of Herzberger and the matrix approach to geometrical optics. This method, which can be implemented on a programmable pocket calculator, applies to any conic surface, including paraboloids, spheres, and planes. (Author/GA)
Descriptors: College Science, Higher Education, Light, Mathematical Applications
Peer reviewed Peer reviewed
van der Merwe, J. P. – American Journal of Physics, 1980
Describes how certain concepts basic to electron optics may be introduced to undergraduate physics students by calculating trajectories of charged particles through electrostatic fields which can be evaluated on minicomputers with a minimum of programing effort. (Author/SA)
Descriptors: College Science, Computer Assisted Instruction, Computer Programs, Curriculum Development
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Olson, Donald; And Others – Physics Teacher, 1990
Discusses making a computer-simulated rainbow using principles of physics, such as reflection and refraction. Provides BASIC program for the simulation. Appends a program illustrating the effects of dispersion of the colors. (YP)
Descriptors: College Science, Computer Simulation, Computer Uses in Education, Higher Education
Peer reviewed Peer reviewed
Davis, J. F.; Greenslade, T. B., Jr. – Physics Teacher, 1991
A model of the phenomenon of the desert mirage is presented using Snell's Law and simple programing techniques. Optical trajectories predicted by the model are illustrated. (CW)
Descriptors: College Science, Computation, Computer Assisted Instruction, Higher Education
Peer reviewed Peer reviewed
Pizarro, Antonio – Journal of Computers in Mathematics and Science Teaching, 1989
Provides a listing of a software graphics program that investigates the law of reflection and Snell's law of refraction. Written in BASIC for the Apple II personal computer. (MVL)
Descriptors: Computer Graphics, Computer Simulation, Computer Software, Computer Uses in Education