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Minnix, Richard B.; Carpenter, D. Rae, Jr. – Physics Teacher, 1984
Discusses a low-cost apparatus for measuring moment of inertia utilizing an interval timer, induction coil, battery eliminator, and ball bearing mounted disk. Also provides a method for demonstrating vectors using a cardboard box and a piece of string. (JM)
Descriptors: Acceleration (Physics), Demonstrations (Educational), High Schools, Physics
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Minnix, Richard B.; Carpenter, D. Rae, Jr. – Physics Teacher, 1984
Describes an apparatus which demonstrates the stability of equilibrium of multidimensional objects and helps students to understand the concept of a lever arm. Also describes an alternative to the standard black, mercury "student cell" used as a reference voltage for calibrating a slide-wire potentiometer. (JN)
Descriptors: College Science, Demonstrations (Educational), Electricity, Force
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Minnix, Richard B.; Carpenter, D. Rae, Jr., Eds – Physics Teacher, 1982
Suggestions are provided for making measurements with a Michelson interferometer (a useful tool for demonstrating the wave nature of light). By placing a lens between a television camera and interferometer, an appropriate image will be produced on a monitor. A representative photograph of TV monitor pattern is also provided. (JN)
Descriptors: College Science, Demonstrations (Educational), Higher Education, Light
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Minnix, Richard B.; Carpenter, D. Rae, Jr. – Physics Teacher, 1984
Describes an apparatus for viewing one- and two-dimensional collisions and coupled pendulums on an overhead projector. Suggested demonstrations for the two-dimensional colliding balls and for the two-dimensional coupled pendulums are provided. (JN)
Descriptors: College Science, Demonstrations (Educational), High Schools, Higher Education
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Minnix, Richard B.; Carpenter, D. Rae, Jr. – Physics Teacher, 1983
Describes inexpensive method of determining harmonic content of a repetitive signal such as a sound wave and demonstrations of the precession of a bicycle wheel and inversion shadows on the retina. Also describes a resonance demonstrator (made from scrap material) driven by a portable jigsaw. (JN)
Descriptors: Acoustics, College Science, Demonstrations (Educational), High Schools
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Carpenter, D. Rae, Jr.; Minnix, Richard B. – Physics Teacher, 1981
Provides physics teachers with comments on the value and role of demonstrations during lecture sessions. (SK)
Descriptors: College Science, Demonstrations (Educational), Higher Education, Lecture Method
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Minnix, Richard B.; Carpenter, D. Rae, Jr. – Physics Teacher, 1985
Explains: (1) use of piezoelectric film (connected to power supply and oscilloscope) to reveal force-versus-time curves of bouncing balls; (2) use of bound wood splints or meter sticks to illustrate tree or tower stability; and (3) apparatus of co-axial discs with connected linking rods and suspended bobs to simulate waves. (DH)
Descriptors: College Science, Demonstrations (Educational), Force, High Schools
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Minnix, Richard B.; Carpenter, D. Rae, Jr. – Physics Teacher, 1983
Describes a coriolis simulator which uses a carbon paper trace technique and a simple specific-heat apparatus, emphasizing instructional considerations. Also indicates that a variac and an ordinary electric drill can be used to wind coil if a lathe or coil winder are unavailable. (JN)
Descriptors: College Science, Demonstrations (Educational), Force, Heat
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Minnix, Richard B.; Carpenter, D. Rae, Jr., Eds. – Physics Teacher, 1982
Lasers are useful for demonstrating ray optics, especially in large classrooms where a well-defined, easily-viewed ray is essential. Described is a simple device that converts any laser to a projection oscilloscope (or laser spirograph). Suggestions for using the device (including demonstrating Lissajous figures and conic sections) are provided.…
Descriptors: College Science, Demonstrations (Educational), High Schools, Higher Education
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Minnix, Richard B.; Carpenter, D. Rae, Jr., Eds. – Physics Teacher, 1982
Thirteen demonstrations using a capacitor-start induction motor fitted with an aluminum disk are described. Demonstrations illustrate principles from mechanics, fluids (Bernoulli's principle), waves (chladni patterns and doppler effect), magnetism, electricity, and light (mechanical color mixing). In addition, the instrument can measure friction…
Descriptors: Acceleration (Physics), College Science, Demonstrations (Educational), Electricity