C2. A photon having energy Eo= 0.880 MeV is scattered by a free electron initially at rest such that the scattering angle of the scattered electron is equal to that of the scattered photon as shown in the figure below. (a) Determine the scattering angles (in degree) of the photon and the electron. (b) Determine the wavelength (in nm) of the scattered photon. (c) Determine the kinetic energy (in keV) of the scattered electron. Express the values to 3 significant figures, if necessary. Figure C2

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C2. A photon having energy Eo= 0.880 MeV is scattered by a free electron initially at rest such
that the scattering angle of the scattered electron is equal to that of the scattered photon as
shown in the figure below.
(a) Determine the scattering angles (in degree) of the photon and the electron.
(b) Determine the wavelength (in nm) of the scattered photon.
(c) Determine the kinetic energy (in keV) of the scattered electron.
Express the values to 3 significant figures, if necessary.
Figure C2
Transcribed Image Text:C2. A photon having energy Eo= 0.880 MeV is scattered by a free electron initially at rest such that the scattering angle of the scattered electron is equal to that of the scattered photon as shown in the figure below. (a) Determine the scattering angles (in degree) of the photon and the electron. (b) Determine the wavelength (in nm) of the scattered photon. (c) Determine the kinetic energy (in keV) of the scattered electron. Express the values to 3 significant figures, if necessary. Figure C2
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