White light goes through a diffraction grating with 15,747 slits per meter. The interference pattern formed on a screen 12.6 m away is a series of bright lines, each line shows the colors spread out. What is the distance between the blue (400.0 nm) and red ( 700.0 nm) for the m = 1 line. You may %3D use the small angle approximation. Give your answer in meters.
White light goes through a diffraction grating with 15,747 slits per meter. The interference pattern formed on a screen 12.6 m away is a series of bright lines, each line shows the colors spread out. What is the distance between the blue (400.0 nm) and red ( 700.0 nm) for the m = 1 line. You may %3D use the small angle approximation. Give your answer in meters.
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![White light goes through a diffraction grating with 15,747 slits per meter.
The interference pattern formed on a screen 12.6 m away is a series of
bright lines, each line shows the colors spread out. What is the distance
between the blue (400.0 nm) and red ( 700.0 nm) for the m = 1 line. You may
%3D
use the small angle approximation. Give your answer in meters.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa6c7567d-58c6-4bf3-9754-2479989ac934%2Fd5fb8b2f-9bf4-4811-891f-5e94ae739344%2F4qp9675.jpeg&w=3840&q=75)
Transcribed Image Text:White light goes through a diffraction grating with 15,747 slits per meter.
The interference pattern formed on a screen 12.6 m away is a series of
bright lines, each line shows the colors spread out. What is the distance
between the blue (400.0 nm) and red ( 700.0 nm) for the m = 1 line. You may
%3D
use the small angle approximation. Give your answer in meters.
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