A slit 0.370 mm wide is illuminated by parallel rays of light that have a wavelength of 600 nm. The diffraction pattern is observed on a screen that is 1.40 m from the slit. The intensity at the center of the central maximum (0 = 0°) is Ip. M Review Part A What is the distance on the screen from the center of the central maximum to the first minimum? mm

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Homework 14- Interference and Diffraction
Problem 36.54
9 of 11
A slit 0.370 mm wide is illuminated by parallel rays of light
that have a wavelength of 600 nm. The diffraction pattern is
observed on a screen that is 1.40 m from the slit. The
intensity at the center of the central maximum (0 =0°) is Io-
Review Constaa
Part A
What is the distance on the screen from the center of the central maximum to the first minimum?
να ΑΣφ
y1 =
mm
Submit
Request Answer
Part B
? ((Hint Your equation
What is the distance on the screen from the center of the central maximum to the point where the intensity has fallen to
for B cannot be solved analytically You must use trial and error or solve it graphically.)
mm
4:08 PM
12/3/2020
O Type here to search
home
deiste
prt sc
backspace
Transcribed Image Text:Homework 14- Interference and Diffraction Problem 36.54 9 of 11 A slit 0.370 mm wide is illuminated by parallel rays of light that have a wavelength of 600 nm. The diffraction pattern is observed on a screen that is 1.40 m from the slit. The intensity at the center of the central maximum (0 =0°) is Io- Review Constaa Part A What is the distance on the screen from the center of the central maximum to the first minimum? να ΑΣφ y1 = mm Submit Request Answer Part B ? ((Hint Your equation What is the distance on the screen from the center of the central maximum to the point where the intensity has fallen to for B cannot be solved analytically You must use trial and error or solve it graphically.) mm 4:08 PM 12/3/2020 O Type here to search home deiste prt sc backspace
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