Answer the following question. A. 1.33 When the r-ray of MeV collides with electrons and scatters at 60°, Find the energy and wavelength of the scattered electrons. B. Find the maximum kinetic energy a recoil electron can have in the scattering of r-rays of 1.33 MeV and outermost electrons. C. Find the energy of the scattered photon, the angle of the repulsion electron, and the energy of the repulsion electron when the r-ray of 1 MeV is scattered at 90°.

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Answer the following question.
A. 1.33 When the r-ray of MeV collides with
electrons and scatters at 60°,
Find the energy and wavelength of the scattered
electrons.
B. Find the maximum kinetic energy a recoil
electron can have in the scattering of r-rays of 1.33
MeV and outermost electrons.
C. Find the energy of the scattered photon, the
angle of the repulsion electron, and the energy of
the repulsion electron when the r-ray of 1 MeV is
scattered at 90°.
Transcribed Image Text:Answer the following question. A. 1.33 When the r-ray of MeV collides with electrons and scatters at 60°, Find the energy and wavelength of the scattered electrons. B. Find the maximum kinetic energy a recoil electron can have in the scattering of r-rays of 1.33 MeV and outermost electrons. C. Find the energy of the scattered photon, the angle of the repulsion electron, and the energy of the repulsion electron when the r-ray of 1 MeV is scattered at 90°.
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