1. A laser with light of wavelength 632.8 nm illuminates a double slit in Young's double slit experiment. On a screen 2.00 m from the slits, interference fringes are observed that are separated by 1.0 cm. (a) Determine the angle between the zeroth and first order fringes. Express your result in both radians and degrees. (b) Determine the separation d of the two slits.

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Chapter4: Diffraction
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Problem 39P: When a monochromatic light of wavelength 430 nm incident on a double slit of slit separation 5 m,...
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1. A laser with light of wavelength
632.8 nm illuminates a double slit
in Young's double slit experiment.
On a screen 2.00 m from the slits,
interference fringes are observed
that are separated by 1.0 cm.
(a) Determine the angle between
the zeroth and first order fringes.
Express your result in both radians
and degrees.
(b) Determine the separation d of
the two slits.
Transcribed Image Text:1. A laser with light of wavelength 632.8 nm illuminates a double slit in Young's double slit experiment. On a screen 2.00 m from the slits, interference fringes are observed that are separated by 1.0 cm. (a) Determine the angle between the zeroth and first order fringes. Express your result in both radians and degrees. (b) Determine the separation d of the two slits.
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