6. If an incident photon of a wavelength 2 has scattered with an angle 8 after it collides with an electron in an atom, what is the shift in its wave length?

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5. Radiation of wavelength A = 290 nmfalls on a metal surface for
which the work function is W = 4.05 eV. What is the potential
needed to stop the most energetic photoelectrons?
6. If an incident photon of a wavelength A has scattered with an angle
e after it collides with an electron in an atom, what is the shift in
its wave length?
Transcribed Image Text:5. Radiation of wavelength A = 290 nmfalls on a metal surface for which the work function is W = 4.05 eV. What is the potential needed to stop the most energetic photoelectrons? 6. If an incident photon of a wavelength A has scattered with an angle e after it collides with an electron in an atom, what is the shift in its wave length?
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