Using Figure 5 in the lab manual ( especially the right half of the figure), derive an equation for nprism in terms of theta z. 0," e₁ 45° n, n₂>n₁ A B 45° n₁n₂>n₁ 0₂ C B Fig. 5. Double application of Snell's law in a prism (left) and total internal reflection when 0₁ = 0₂.
Using Figure 5 in the lab manual ( especially the right half of the figure), derive an equation for nprism in terms of theta z. 0," e₁ 45° n, n₂>n₁ A B 45° n₁n₂>n₁ 0₂ C B Fig. 5. Double application of Snell's law in a prism (left) and total internal reflection when 0₁ = 0₂.
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![Using Figure 5 in the lab manual (
especially the right half of the figure),
derive an equation for nprism in terms
of theta z.
0₁
0₁
Ф
A
45°
n₁n₂>n₂
A
B
45°
n₁n₂>n₁
0₂
C
B
Fig. 5. Double application of Snell's law in a prism (left) and total internal reflection when 0₁ = 0₂.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F332cb682-b68b-4832-b236-5dd17a1fd83c%2F398485e3-d7b5-4dbd-84d0-2f0f163f476a%2Fhpcf1q_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Using Figure 5 in the lab manual (
especially the right half of the figure),
derive an equation for nprism in terms
of theta z.
0₁
0₁
Ф
A
45°
n₁n₂>n₂
A
B
45°
n₁n₂>n₁
0₂
C
B
Fig. 5. Double application of Snell's law in a prism (left) and total internal reflection when 0₁ = 0₂.
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