(10%) Problem 9: Light of wavelength is incident on a single slit of width W= 8.6 µm. On a screen placed a distance L = 0.44 m behind the slit the first dark fringe is located at a distance of D= 0.028 m from the central bright fringe. 50% Part (a) Find the expression for the wavelength, 2, incident on the slit. λ = W sin(atan ( ✓ Correct! ▷ A 50% Part (b) Calculate the value of λ, in nanometers.

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Author:Raymond A. Serway, John W. Jewett
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Chapter38: Diffraction Patterns And Polarization
Section: Chapter Questions
Problem 38.13P
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(10%) Problem 9: Light of wavelength is incident on a single slit of width W = 8.6 µm. On a screen placed a distance L = 0.44 m behind the slit the first dark
fringe is located at a distance of D = 0.028 m from the central bright fringe.
▷
✓ 50% Part (a) Find the expression for the wavelength, λ, incident on the slit.
λ = W sin(atan
(²) ✓ Correct!
50% Part (b) Calculate the value of λ, in nanometers.
λ=
Grade Summary
Deductions
Detentin1
Transcribed Image Text:(10%) Problem 9: Light of wavelength is incident on a single slit of width W = 8.6 µm. On a screen placed a distance L = 0.44 m behind the slit the first dark fringe is located at a distance of D = 0.028 m from the central bright fringe. ▷ ✓ 50% Part (a) Find the expression for the wavelength, λ, incident on the slit. λ = W sin(atan (²) ✓ Correct! 50% Part (b) Calculate the value of λ, in nanometers. λ= Grade Summary Deductions Detentin1
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