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Physics & Astronomy
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Physics for Scientists and Engineers
Quiz 13: Interference and Diffraction
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Question 61
Multiple Choice
The pattern of light and dark fringes formed in Young's double-slit experiment is due to
Question 62
Multiple Choice
The graphs are plots of relative intensities of various diffraction patterns versus the sine of the angle from the central maximum. The graph that represents the diffraction pattern from the widest single slit is
Question 63
Multiple Choice
Five coherent sources are used to produce an interference pattern. The phasor diagram shown could be used to calculate the intensity of the
Question 64
Multiple Choice
The interference and diffraction envelopes of a double slit are shown separately but to the same scale in the figure. For this arrangement, the number of fringes in the second diffraction maximum is
Question 65
Multiple Choice
Which of the phasor diagrams shows the first minimum for five equally spaced in-phase sources?
Question 66
Multiple Choice
Two slits of width a = 0.020 mm are separated by a distance d = 0.05 mm and illuminated by light of wavelength
λ
\lambda
λ
= 500 nm. The number of bright fringes seen in the central maximum is
Question 67
Multiple Choice
In dealing with the diffraction pattern of a single slit, we are usually interested in the location of the first minimum in light intensity because
Question 68
Multiple Choice
The bending of light around an obstacle such as the edge of a slit is called
Question 69
Multiple Choice
Suppose you observe fifteen bright fringes in the central maximum of a double-slit interference pattern. If you know that the separation of the slits d = 0.01 mm, you can conclude that the width of each slit is
Question 70
Multiple Choice
Light of wavelength 650 nm is incident on a slit of width 25.0 µm. At what angle is the second diffraction minimum observed?
Question 71
Multiple Choice
The fringes are the result of
Question 72
Multiple Choice
Suppose you observe nineteen bright fringes in the central maximum of a double-slit interference pattern. If you know that the separation of the slits d = 0.06 mm, you can conclude that the width of each slit is