Physics
Physics
5th Edition
ISBN: 9781260487008
Author: GIAMBATTISTA, Alan
Publisher: MCGRAW-HILL HIGHER EDUCATION
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Chapter 27, Problem 85P
To determine

The wavelengths of incident and scattered x-rays.

Expert Solution & Answer
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Answer to Problem 85P

The wavelengths of incident and scattered x-rays are 171pm and 176pm.

Explanation of Solution

Write the relation for the Compton shift in wavelength of x-ray.

  λλ=hmec(1cosθ)                                                                                            (1)

Here, λ is wavelength of the scattered x-ray, λ is wavelength of the incident x-ray, h is Planck’s constant, me is mass of the electron, c is speed of the x-ray photon, and θ is scattering angle.

The term h/mec in equation (1) is called Compton wavelength has the value of 2.426pm.

Rearrange equation (1) for the wavelength of the scattered x-ray.

  λ=λhmec(1cosθ)                                                                                            (2)

Write the relation for the kinetic energy of the electron.

  Ke=EE                                                                                                              (3)

Here, Ke is kinetic energy of the electron, E is kinetic energy of incident x-ray photon, and E is kinetic energy of scattered x-ray photon.

The change in kinetic energy of the x-ray photon is the kinetic energy of the electron.

Substitute hc/λ for E and hc/λ for E in equation (3) and simplify.

  Ke=hcλhcλKehc=1λ1λ                                                                                                           (4)

Substitute equation (2) in (4) to find λ.

  Kehc=1[λhmec(1cosθ)]1λ

Substitute 2.426pm for h/mec and 180° for θ, 0.20keV for Ke, 1240eVnm for hc to find λ.

  (0.20keV)(103eV1keV)(1240eVnm)(103pmnm)=1[λ(2.426pm)(1cos180°)]1λλ2(4.852pm)λ=3.008×104pm2λ2(4.852pm)λ3.008×104pm2=0                            (5)

Solve the quadratic equation in (5) to find λ.

  λ=(4.852pm)±(4.852pm)2(4)(1)(3.008×104pm2)(2)(1)=176pm,171pm

The value of wavelength of scattered x-ray photon is 176pm and the negative solution is not taken into account due to the wavelength never be negative.

Rewrite equation (2) for the wavelength of the incident x-ray photon.

  λ=λhmec(1cosθ)

Substitute 2.426pm for h/mec and 180° for θ, and 176pm for λ to find λ.

  λ=(176p)m(2.426pm)(1cos180°)=171pm

Thus, the wavelength of the incident x-ray photon is 171pm.

Conclusion:

Therefore, the wavelengths of incident and scattered x-rays are 171pm and 176pm.

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Chapter 27 Solutions

Physics

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