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Q.Derive Einstein's Photoelectric equation. Explain photoelectric effect with help of this equation. [1 + 1 = 2]

Rajasthan RbseRajasthan Board Senior Secondary Examination 2018Subjective· 2mImportance★★★★★
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hν = W₀ + ½mv²max explains the photoelectric effect: a photon's energy minus the work function equals the electron's maximum KE.

Derivation: According to Einstein's quantum theory, radiation of frequency ν\nu consists of discrete packets (photons), each of energy E=hνE = h\nu. In the photoelectric effect one photon is completely absorbed by one electron.

Of the absorbed energy hνh\nu, a minimum amount W0W_0 (the work function) is used to free the electron from the metal surface; the remaining energy appears as the maximum kinetic energy of the emitted electron:

hν=W0+12mvmax2h\nu = W_0 + \tfrac{1}{2}mv_{max}^2

This is Einstein's photoelectric equation. Writing W0=hu0W_0 = h u_0 (threshold frequency u0 u_0) and 12mvmax2=eV0\tfrac{1}{2}mv_{max}^2 = eV_0 (stopping potential V0V_0):

eV0=hν−hu0eV_0 = h\nu - h u_0

Explanation of the photoelectric effect using this equation:

  1. Emission occurs only if hν≥W0h\nu \ge W_0, i.e. ν≥u0\nu \ge u_0 (threshold frequency) — below u0 u_0 no emission, however intense the light. …

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