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Exercise:
A red laser beam is diffracted on a double slit with dO slit separation. The diffraction pattern is observed on a screen LO from the double slit. The distance between the textsuperscriptth and the textsuperscriptth maximum is measured to be aO. Calculate the wavelength of the red laser light.

Solution:
Asing the angle for the textsuperscripth maximum is small the condition for the m-th maximum is fraca_mell m fraclambdad It follows for the wavelength lambda laF fracd times am times L la approx resultlaP- Without the small angle approximation the condition for the maximum is sin alpha_m sinleft arctanleftfraca_mell right right m fraclambdad It follows for the wavelength lambda laexF fracdm sinleft arctanleft fracaL right right laex approx resultlaexP- which is in good agreement with the approximate solution. vspacemm The accepted value for a Helium-Neon laser is laaccO.
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Exercise:
A red laser beam is diffracted on a double slit with dO slit separation. The diffraction pattern is observed on a screen LO from the double slit. The distance between the textsuperscriptth and the textsuperscriptth maximum is measured to be aO. Calculate the wavelength of the red laser light.

Solution:
Asing the angle for the textsuperscripth maximum is small the condition for the m-th maximum is fraca_mell m fraclambdad It follows for the wavelength lambda laF fracd times am times L la approx resultlaP- Without the small angle approximation the condition for the maximum is sin alpha_m sinleft arctanleftfraca_mell right right m fraclambdad It follows for the wavelength lambda laexF fracdm sinleft arctanleft fracaL right right laex approx resultlaexP- which is in good agreement with the approximate solution. vspacemm The accepted value for a Helium-Neon laser is laaccO.
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diffraction, double slit, interference
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(1, default)
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Language
ENG (English)
Type
Calculative / Quantity
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