A light traveling in air is partially reflected on the air-water interface and enters the water with an angle of incidence of 51°. The index of refraction of water is nwater 1.33. Assume that the lengths shown in the figure are AB=14 cm, BE =5 cm, EF =14 cm, DG =14 cm, and that the depth of the water is d = 47 cm.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Problem 1
For all parts of the below question, fill in the empty boxes with your answer (YOUR ANSWER MUST BE
ONLY A NUMBER; DO NOT WRITE UNITS; DO NOT WRITE LETTERS). Choose the correct unit for your
answers from the drop-down multiple-choice menu list available next to your answer.
A light traveling in air is partially reflected on the air-water interface and enters the water with an angle
of incidence of 51°. The index of refraction of water is nwater 1.33. Assume that the lengths shown in
the figure are AB=14 cm, BE =5 cm, EF =14 cm, DG =14 cm, and that the depth of the water is
d=47 cm.
Incident
A
a)
units.
OPL Reflected 1
b)
0₁ =
c)
units.
e)
and G).
8=
B
m
m
C
Reflected 1
F
Calculate the optical path length of the light labeled Reflected 1 in the above figure, in SI
rad
D
Reflected 2
G
m
nair
Calculate the transmission angle of the light when it enters water at point B.
nwater
Calculate the optical path length of the light labeled Reflected 2 in the above figure, in SI
OPL Reflected 2
d)
The wavelength of the incident light is 592 nm. Find the optical path difference of these two
reflected lights at the finishing line (points F and G).
A=
Find the relative phase difference of these two reflected lights at the finishing line (points F
Transcribed Image Text:Problem 1 For all parts of the below question, fill in the empty boxes with your answer (YOUR ANSWER MUST BE ONLY A NUMBER; DO NOT WRITE UNITS; DO NOT WRITE LETTERS). Choose the correct unit for your answers from the drop-down multiple-choice menu list available next to your answer. A light traveling in air is partially reflected on the air-water interface and enters the water with an angle of incidence of 51°. The index of refraction of water is nwater 1.33. Assume that the lengths shown in the figure are AB=14 cm, BE =5 cm, EF =14 cm, DG =14 cm, and that the depth of the water is d=47 cm. Incident A a) units. OPL Reflected 1 b) 0₁ = c) units. e) and G). 8= B m m C Reflected 1 F Calculate the optical path length of the light labeled Reflected 1 in the above figure, in SI rad D Reflected 2 G m nair Calculate the transmission angle of the light when it enters water at point B. nwater Calculate the optical path length of the light labeled Reflected 2 in the above figure, in SI OPL Reflected 2 d) The wavelength of the incident light is 592 nm. Find the optical path difference of these two reflected lights at the finishing line (points F and G). A= Find the relative phase difference of these two reflected lights at the finishing line (points F
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