a Figure 1: Refraction through a glass plate. 2. A ray is incident at 30° to (that is, relative to the surface of) a planar glass plate (n = 1.5) immersed in air (Figure 1). (a) Determine the angle that the ray will emerge from the plate. (b) Find the displacement a of the ray, if the thickness of the glass is 5 cm.
a Figure 1: Refraction through a glass plate. 2. A ray is incident at 30° to (that is, relative to the surface of) a planar glass plate (n = 1.5) immersed in air (Figure 1). (a) Determine the angle that the ray will emerge from the plate. (b) Find the displacement a of the ray, if the thickness of the glass is 5 cm.
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![a
Figure 1: Refraction through a glass plate.
2. A ray is incident at 30° to (that is, relative to the surface of) a planar glass plate (n = 1.5)
immersed in air (Figure 1). (a) Determine the angle that the ray will emerge from the plate.
(b) Find the displacement a of the ray, if the thickness of the glass is 5 cm.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F7a740af2-f591-4b8e-82e9-2aedf794a821%2F066c3273-c0a0-4f2c-89ce-9f0d2d75d98b%2Fb8rplti_processed.jpeg&w=3840&q=75)
Transcribed Image Text:a
Figure 1: Refraction through a glass plate.
2. A ray is incident at 30° to (that is, relative to the surface of) a planar glass plate (n = 1.5)
immersed in air (Figure 1). (a) Determine the angle that the ray will emerge from the plate.
(b) Find the displacement a of the ray, if the thickness of the glass is 5 cm.
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