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Physics demonstrations in light

Author: David Hilsen; Mike Sullivan; Physics Curriculum & Instruction (Firm)
Publisher: Bloomington, Minn. : Physics Curriculum and Instruction, ©1992.
Edition/Format:   VHS video : VHS tape   Visual material : EnglishView all editions and formats
Database:WorldCat
Summary:
A two-part program developed in an effort to give physics teachers a series of demonstrations which would supplement and enrich their physics curriculum. The program's conceptual design which relies upon the extensive use of real physical events is directed at motivating students and giving them a deeper understanding of the concepts in optics.
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Material Type: Videorecording
Document Type: Visual material
All Authors / Contributors: David Hilsen; Mike Sullivan; Physics Curriculum & Instruction (Firm)
OCLC Number: 26565112
Performer(s): Mike Sullivan.
Description: 2 videocassettes (65 min.) : sd., col. ; 1/2 in. + 1 teacher's guide (33 p. ; 28 cm.)
Details: VHS format.
Contents: Pt. 1. Demo 1. Propagation of light: determination of the speed of light (4:35 min.) --
Demo 2. Visible and infrared spectrum: white light dispersed on a spectrum recorder (3:36 min.) --
Demo 3. Inverse square law: light intensity at increasing distances (3:32 min.) --
Demo 4. Refraction/total internal reflection: light incident on a water-air interface (3:55 min.) --
Demo 5. Refraction/Schlieren image: variations in the index of refraction of air (4:35 min.) --
Demo 6. Refraction: simulation of atmospheric refraction (3:31 min.) --
Demo 7. Rayleigh scattering: blue sky and sunset simulation (3:30 min.) --
Demo 8. Laser theory: high power CO2 laser (4:05 min.)
Responsibility: written and produced by David Hilsen.

Abstract:

A two-part program developed in an effort to give physics teachers a series of demonstrations which would supplement and enrich their physics curriculum. The program's conceptual design which relies upon the extensive use of real physical events is directed at motivating students and giving them a deeper understanding of the concepts in optics.

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