Tutorials in Introductory Physics
Tutorials in Introductory Physics
1st Edition
ISBN: 9780130970695
Author: Peter S. Shaffer, Lillian C. McDermott
Publisher: Addison Wesley
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Chapter 24.4, Problem 1aTH

The following are top view diagrams of solid cylinders and cubes. Assume that light travels more slowly through the objects than through the surrounding medium.

Each diagram shows a path for light that is not qualitatively correct; there is at least one flaw, perhaps more, in each diagram. Identify all flaws. Explain your reasoning.

Chapter 24.4, Problem 1aTH, The following are top view diagrams of solid cylinders and cubes. Assume that light travels more

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One well-known image of a prism is the following picture a. Given the pattern of light on the far side of the prism, is the index of refraction inside the prism higher or lower than the index of refraction outside the prism? b. List at least one thing that is wrong with this diagram given what we expect the dependence of n on the wavelength of light to be (and assuming the prism is made of a uniform material). c. List at least one thing that is right with this diagram given what we expect the dependence of n on the wavelength of light to be (and assuming the prism is made of a uniform material).
Read the following problem and solve the following questions. Show your complete solutions legibly and concisely in the space provided. A light is traveling from air into an optic fiber having an index of refraction of 1.44.                  a. Which direction should the light bend?                  b. Given a 22 degree angle of incidence on the end of the fiber, what is the angle of refraction inside the                       fiber?                 c. Make a sketch of the path of life as the media changes.
The goal of this exercise is to construct the best rectangular prism containers by a company. 1. The first container they construct will be used to ship baseballs. It will have a width of x ft, a length of (x + 6) ft and a height of (x- 2) ft. Its volume will be 455 ft 3. Write a function V for the volume of the container. Then find one possible width for the container. Explain. 2. Are there any other possible widths for the container? Explain.

Chapter 24 Solutions

Tutorials in Introductory Physics

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