1)ln a Young's double-slit experiment, both the wavelength and the slit separation are increased by 50%. What happens to the distance between two adjacent bright fringes? 2) In a Young's double-slit experiment, by how many wavelengths do the paths from the slits to the screen differ for the m = 3 and the m = 8 minima? 3) A Young's double slit has a slit separation of 1.65 x 10-5 m on which a monochromatic light beam is directed. The resultant bright fringes on a screen 1.10 m from the double slit are separated by 2.25 x 10-2 m. What is the wavelength of this beam? (1 nm = 10-9 m)

University Physics Volume 3
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ISBN:9781938168185
Author:William Moebs, Jeff Sanny
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Chapter4: Diffraction
Section: Chapter Questions
Problem 89AP: Monochromatic light of wavelength 530 nm passes through a horizontal single slit of width 1.5 m in...
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1)ln a Young's double-slit experiment, both the wavelength and the slit separation are
increased by 50%. What happens to the distance between two adjacent bright fringes?
2) In a Young's double-slit experiment, by how many wavelengths do the paths from the slits
to the
screen differ for the m = 3 and the m = 8 minima?
3) A Young's double slit has a slit separation of 1.65 x 10-5 m on which a monochromatic
light beam is directed. The resultant bright fringes on a screen 1.10 m from the double slit
are separated by 2.25 × 10-2 m. What is the wavelength of this beam? (1 nm = 10-9 m)
Transcribed Image Text:1)ln a Young's double-slit experiment, both the wavelength and the slit separation are increased by 50%. What happens to the distance between two adjacent bright fringes? 2) In a Young's double-slit experiment, by how many wavelengths do the paths from the slits to the screen differ for the m = 3 and the m = 8 minima? 3) A Young's double slit has a slit separation of 1.65 x 10-5 m on which a monochromatic light beam is directed. The resultant bright fringes on a screen 1.10 m from the double slit are separated by 2.25 × 10-2 m. What is the wavelength of this beam? (1 nm = 10-9 m)
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