The below interference/diffraction pattern for two slits is observed on a screen that is 1.5 meters from the slits. Here, red light with a wavelength of 700 nm (7.0x107 m) that is normally incident on these slits yields this pattern. + 9 mm 4 mm Using the locations of interference maxima (e.g., the m=2 maxima lies 4.0 mm from the center of the pattern), determine the distance between these two slits (in millimeters).

University Physics Volume 3
17th Edition
ISBN:9781938168185
Author:William Moebs, Jeff Sanny
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Chapter4: Diffraction
Section: Chapter Questions
Problem 32P: The width of the central peak in a single-slit diffraction pattern is 5.0 mm. The wavelength of the...
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The below interference/diffraction pattern for two slits is observed on a screen that is 1.5 meters
from the slits. Here, red light with a wavelength of 700 nm (7.0x107 m) that is normally incident
on these slits yields this pattern.
+
+
9 mm
4 mm
Using the locations of interference maxima (e.g., the m=2 maxima lies 4.0 mm from the center of
the pattern), determine the distance between these two slits (in millimeters).
Transcribed Image Text:The below interference/diffraction pattern for two slits is observed on a screen that is 1.5 meters from the slits. Here, red light with a wavelength of 700 nm (7.0x107 m) that is normally incident on these slits yields this pattern. + + 9 mm 4 mm Using the locations of interference maxima (e.g., the m=2 maxima lies 4.0 mm from the center of the pattern), determine the distance between these two slits (in millimeters).
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