2. In the figure below, a laser positioned on a ship is used to communicate with a small submarine resting on the bottom of the lake, 76 m below. The laser is positioned 12 m above the surface of the water, and it strikes the water 20. m from the side of the ship. The lake water has an index of refraction of 1.33. How far (in m) horizontally is the submarine from the side of the ship? Show your calculation (watch sig figs), and be careful about what angles you are using in Snell's Law! 76 m 20 m 12 m

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2. In the figure below, a laser positioned on a ship is used to communicate with a small
submarine resting on the bottom of the lake, 76 m below. The laser is positioned 12 m above the
surface of the water, and it strikes the water 20. m from the side of the ship. The lake water has
an index of refraction of 1.33. How far (in m) horizontally is the submarine from the side of the
ship? Show your calculation (watch sig figs), and be careful about what angles you are using in
Snell's Law!
76 m
[III]
20 m-
12 m
Transcribed Image Text:2. In the figure below, a laser positioned on a ship is used to communicate with a small submarine resting on the bottom of the lake, 76 m below. The laser is positioned 12 m above the surface of the water, and it strikes the water 20. m from the side of the ship. The lake water has an index of refraction of 1.33. How far (in m) horizontally is the submarine from the side of the ship? Show your calculation (watch sig figs), and be careful about what angles you are using in Snell's Law! 76 m [III] 20 m- 12 m
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