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Q.What is the effect of decrease in wavelength of incident light on the velocity of photoelectrons ?

Jammu Kashmir JkboseJKBOSE Class 12 Annual Regular Examination 2023Subjective· 1mImportance★★★★★
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A shorter wavelength means a higher-energy photon, so by Einstein's photoelectric equation the maximum kinetic energy - and hence the maximum velocity - of the emitted photoelectrons increases.

By Einstein's photoelectric equation, when light of frequency nu (wavelength lambda, with nu = c/lambda) falls on a metal surface of work function phi0, the maximum kinetic energy of an emitted photoelectron is

KE_max = hnu - phi0 = (hc/lambda) - phi0 = (1/2) m v_max^2.

Here h is Planck's constant, c the speed of light, m the electron mass. If the wavelength lambda of the incident light is decreased (keeping the metal, and hence phi0, fixed), the photon energy hc/lambda increases. Since phi0 is a fixed property of the metal, KE_max = (hc/lambda) - phi0 increases as lambda decreases.

Because KE_max = (1/2) m v_max^2, an increase in KE_max means the maximum velocity v_max of the emitted photoelectrons also increases:

v_max = sqrt[2(hc/lambda - phi0)/m].

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