Snell's Law and the Law of Reflection explain how light is redirected when it encounters a surface between two media.  In the extreme, light may only reflect at a boundary, and go back into the medium it was in.  More often, some of it reflects and some goes through.  If the boundary is plane and flat, then these laws are easy to interpret.  When the boundary is curved, they describe happens at every point on the surface. One of the class types of glass is called "crown" glass, which has an index of refraction for visible light of 1.52 and is usually free of significant impurities. It was one of the first glasses discovered, and windows are made from it.  Another glass is called "flint" glass, and it has lead oxide added, which makes it heavier, more "dispersive" and colorful, and   increases its index of refraction to 1.62.        For the flint glass, the refracted ray goes through the glass to the other side.  If the glass is a parallel slab, what happens when the ray reaches the opposite side from the inside? At what angle to the surface does it exit the second surface of the glass back into air?

Physics for Scientists and Engineers with Modern Physics
10th Edition
ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter34: The Nature Of Light And The Principles Of Ray Optics
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Snell's Law and the Law of Reflection explain how light is redirected when it encounters a surface between two media.  In the extreme, light may only reflect at a boundary, and go back into the medium it was in.  More often, some of it reflects and some goes through.  If the boundary is plane and flat, then these laws are easy to interpret.  When the boundary is curved, they describe happens at every point on the surface.

One of the class types of glass is called "crown" glass, which has an index of refraction for visible light of 1.52 and is usually free of significant impurities. It was one of the first glasses discovered, and windows are made from it.  Another glass is called "flint" glass, and it has lead oxide added, which makes it heavier, more "dispersive" and colorful, and   increases its index of refraction to 1.62.        For the flint glass, the refracted ray goes through the glass to the other side.  If the glass is a parallel slab, what happens when the ray reaches the opposite side from the inside? At what angle to the surface does it exit the second surface of the glass back into air?

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