In a double-slit experiment, the distance between the slits is 0.2 mm, and the distance to the screen is 150 cm. What wavelength (in nm) is needed to have the intensity at a point 1 mm from the central maximum on the screen be 80% of the maximum intensity? la. 900 b. 700 c. 500 d. 300 e. 600 ANS: A PTS: 3 DIF: Challenging
In a double-slit experiment, the distance between the slits is 0.2 mm, and the distance to the screen is 150 cm. What wavelength (in nm) is needed to have the intensity at a point 1 mm from the central maximum on the screen be 80% of the maximum intensity? la. 900 b. 700 c. 500 d. 300 e. 600 ANS: A PTS: 3 DIF: Challenging
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I already know the answer to this practice problem, and it is shown is the image. I do not know how to get to the answer though, so seeing the steps and equations would be much appreciated.

Transcribed Image Text:In a double-slit experiment, the distance between the slits is 0.2 mm, and the distance to the screen is 150 cm. What wavelength (in nm) is needed to have the intensity at a point 1 mm from the central
maximum on the screen be 80% of the maximum intensity?
la.
900
b. 700
c.
500
d. 300
e.
600
ANS: A
PTS: 3
DIF: Challenging
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