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A red laser from the physics lab is marked as producing 632.8-nm light. When light from this laser falls on two closely spaced slits, an int
Question
A red laser from the physics lab is marked as producing 632.8-nm light. When light from this laser falls on two closely spaced slits, an interference pattern formed on a wall several meters away has bright red fringes spaced 6.00 mm apart near the center of the pattern. When the laser is replaced by a small laser pointer, the fringes are 6.19 mm apart. What is the wavelength of light produced by the pointer?
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Physics
5 years
2021-08-06T12:04:27+00:00
2021-08-06T12:04:27+00:00 1 Answers
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Answers ( )
Answer:
The wavelength is
Explanation:
From the question we are told that
The wavelength of the red laser is
The spacing between the fringe is
The spacing between the fringe for smaller laser point is
Generally the spacing between the fringe is mathematically represented as
Here
is the distance to the screen
and d is the distance of the slit separation
Now for both laser red light light and small laser point D and d are same for this experiment
So
=>
Where
is the wavelength produced by the small laser pointer
So
=>