Physics: Principles with Applications
Physics: Principles with Applications
6th Edition
ISBN: 9780130606204
Author: Douglas C. Giancoli
Publisher: Prentice Hall
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Question
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Chapter 28, Problem 52GP
To determine

The spacing between the bright fringes of the interference pattern produced on the screen.

Expert Solution & Answer
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Answer to Problem 52GP

  1.0μm

Explanation of Solution

Given info:

Mass of electron, m = 9.11×10-31kg

Kinetic energy, KE=45keV=45×103eV

Distance, d=2.0×10-6m

Length L=35cm=0.350m

Formula used:

From the de Broglie equation of matter the wavelength is

  λ=hp=h2m0(KE)

Where,

  λ is wavelength

  h is Planck’s constant, 6.63×1034Js

  p is photon’s momentum

  KE is Kinetic energy.

  m0 is rest mass

Calculation:

First calculate the wavelength of the electron by using the formula

  λ=hp=h2m0(KE)

  =(6.63×10-34J×s)[2(9.11×10-31kg)(45×103eV)(1.60×1019J/eV)]12=5.79×10-12m

The peaks of the interference pattern are at:

  dsinθ =nλ,n =1,2,... and the positions on the screen are y=Ltanθ

For small angles sinθtanθ

So, y=nLλd

Thus, the separation:

  Δy =d=(0.350m)(5.79×10-12m)2.0×10-6m=1.0×10-6m =1.0μm

Conclusion:

The required value is 1.0μm .

Chapter 28 Solutions

Physics: Principles with Applications

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