Sears And Zemansky's University Physics With Modern Physics
Sears And Zemansky's University Physics With Modern Physics
13th Edition
ISBN: 9780321897961
Author: YOUNG, Hugh D./
Publisher: Pearson College Div
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Chapter 35, Problem 1DQ
To determine

The explanation for the change in the fringe pattern when the whole apparatus of the two-slit interference experiment set up is immersed in the nearest swimming pool.

Expert Solution & Answer
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Explanation of Solution

Formula to calculate position of mth bright fringe in air medium,

ym=Rmλod (I)

  • R is the distance from slits to screen
  • m is the order of the fringe
  • λo is the wavelength of the light in air medium
  • d is the distance between slits

Formula to calculate position of mth bright fringe in water medium,

ym'=Rmλwd (II)

  • R is the distance from slits to screen
  • m is the order of the fringe
  • λw is the wavelength of the light in water medium
  • d is the distance between slits

Divide equation (II) with equation (I),

ym'ym=(Rmλwd)(Rmλod)=λwλo

Formula to calculate the wavelength of the light in water medium,

λw=λon

  • n is the refractive index of the water

Substitute λon for λw to find ym',

ym'ym=(λon)λo=1n

Substitute 1.33 for n to find ym',

ym'ym=11.33=34ym'=3ym4

Conclusion:

Therefore, the new fringe pattern becomes 34 times the old fringe pattern as the whole apparatus is immersed in water.

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