Interference effects are produced at point P on a screen as a result of direct rays from a 470-nm source and reflected rays off a mirror, as shown in the figure below. If the source is L-150 m to the left of the screen and h= 2.00 cm above the mirror, find the distance y (in millimeters) to the first dark band above the mirror.
Interference effects are produced at point P on a screen as a result of direct rays from a 470-nm source and reflected rays off a mirror, as shown in the figure below. If the source is L-150 m to the left of the screen and h= 2.00 cm above the mirror, find the distance y (in millimeters) to the first dark band above the mirror.
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
Transcribed Image Text:Interference effects are produced at point P on a screen as a result of direct rays from a 470-nm source and reflected rays off a mirror, as shown in the figure below.
If the source is L-150 m to the left of the screen and h=2.00 cm above the mirror, find the distance y (in millimeters) to the first dark band above the mirror.
x
Enter a number differs from the correct answer by more than 10%. Double check your calculations. mm
Screen
Mirror
n
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