Physics for Scientists and Engineers with Modern Physics
Physics for Scientists and Engineers with Modern Physics
10th Edition
ISBN: 9781337553292
Author: Raymond A. Serway, John W. Jewett
Publisher: Cengage Learning
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Chapter 34, Problem 37AP

(a)

To determine

The fraction of the incident intensity reflected for 589nm light normally incident on an interface between air and crown glass.

(b)

To determine

Whether the fraction of reflected light changes when the light is in the air or in the glass as it strikes the interface.

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Students have asked these similar questions
If a ray of light transitions from air into glass and we assume air has an index of refraction of n1=1.0 and θ1 is the angle of incidence, what variable should the slope of a graph of sin(θ1) as a function of sin(θ2) correspond to?
A light ray in air has an incident angle of 53.8゚ when it strikes the boundary of an unknown material. If the reflected ray is completely polarized so that the incident angle is the Brewster's angle what is the index of refraction of the unknown material? A. 1.25 B. .807 C. 1.69 D. .591 E. 1.37
Light, when incident on a given surface, presents a reflected and a refracted component. When the reflected beam is perpendicular to the refracted beam, the angle of incidence θᵢ is called Brewster's angle. If a beam of light is initially in air with index of refraction n₁ = 1 and is incident on a glass surface (index of refraction n₂ = 1.5), Brewster's angle is: a)82.9° b)36.3° c)75.4° d)62.9° e)56.3° f)45.7°

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Physics for Scientists and Engineers with Modern Physics

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