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Chapter 34, Problem 9P

(a)

To determine

The speed of light in the medium of the flint glass.

(b)

To determine

The speed of light in the medium of water.

(C)

To determine

The speed of light in cubic zirconia medium.

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Use the exact values you enter to make later calculations. A ray of light strikes a flat, 2.00-cm-thick block of glass (n 1.34) at an angle of 0 = 37.6° with respect to the normal (see figure below). 2.00 cm (a) Find the angle of refraction at the top surface and the angle of incidence at the bottom surface. 27.06 O (b) Find the refracted angle at the bottom surface. 37.56 (c) Find the lateral distance d by which the light beam is shifted. 0.649 x cm (d) Calculate the speed of light in the glass. m/s (e) Calculate the time required for the light to pass through the glass block. S (f) Is the travel time through the block affected by the angle of incidence? Yes, a slightly larger angle will decrease the travel time. No Yes, a slightly larger angle will increase the travel time.
Use the exact values you enter to make later calculations. A ray of light strikes a flat, 2.00-cm-thick block of glass (n = 1.42) at an angle of 0 = 34.0° with respect to the normal (see figure below). 2.00 cm (a) Find the angle of refraction at the top surface and the angle of incidence at the bottom surface. (b) Find the refracted angle at the bottom surface. (c) Find the lateral distance d by which the light beam is shifted. cm (d) Calculate the speed of light in the glass. m/s (e) Calculate the time required for the light to pass through the glass block. (f) Is the travel time through the block affected by the angle of incidence? O No Yes, a slightly larger angle will decrease the travel time. Yes, a slightly larger angle will increase the travel time.
Problem 12:   A ray of light, emitted beneath the surface of an unknown liquid with air above it, undergoes total internal reflection as shown in the figure. Part (a)  What is the minimum index of refraction for the liquid?  Part (b)  If you assume that the above case shows the critical angle, what is its likely identification?

Chapter 34 Solutions

Bundle: Physics For Scientists And Engineers With Modern Physics, 10th + Webassign Printed Access Card For Serway/jewett's Physics For Scientists And Engineers, 10th, Multi-term

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