The light from a laser is shined from air (n=1) into a horizontal layer of glass (n 1.5) and then into a horizontal layer of gelatin. The incident angle of the light as it enters the glass is 58° and the refracted angle is 42 after entering the gelatin. Instructions Follow the steps below to solve the problem: 1) Draw a sketch of the situation with all physical quantities labeled. 2) Draw a fray diagram showing all the reflected and refracted rays that occur. 3) Determine the index of refraction of the gelatin.

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The light from a laser is shined from air (n=1) into a horizontal layer of glass (n= 1.5) and then
into a horizontal layer of gelatin. The incident angle of the light as it enters the glass is 58 and
the refracted angle is 42 after entering the gelatin.
Instructions
Follow the steps below to solve the problem:
1) Draw a sketch of the situation with all physical quantities labeled.
2) Draw a fray diagram showing all the reflected and refracted rays that occur.
3) Determine the index of refraction of the gelatin.
5) Evaluate all aspects of your solution.
Transcribed Image Text:The light from a laser is shined from air (n=1) into a horizontal layer of glass (n= 1.5) and then into a horizontal layer of gelatin. The incident angle of the light as it enters the glass is 58 and the refracted angle is 42 after entering the gelatin. Instructions Follow the steps below to solve the problem: 1) Draw a sketch of the situation with all physical quantities labeled. 2) Draw a fray diagram showing all the reflected and refracted rays that occur. 3) Determine the index of refraction of the gelatin. 5) Evaluate all aspects of your solution.
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