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Q.By writing Einstein's photoelectric equation, explain any two observations related to the photoelectric effect.

Rajasthan RbseRajasthan Board Senior Secondary Examination 2022Subjective· 2mImportance★★★★★
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Einstein's photoelectric equation treats light as photons of energy hν; a single photon transfers all its energy to one electron, and this simple picture directly explains features of the photoelectric effect that classical wave theory could not.

Einstein's photoelectric equation:

KEmax=hν−ϕ0KE_{max} = h\nu - \phi_0

where hνh\nu is the energy of the incident photon, ϕ0\phi_0 is the work function (minimum energy needed to free an electron from the metal), and KEmaxKE_{max} is the maximum kinetic energy of the emitted photoelectron.

This equation explains, among other observations:

  1. Existence of threshold frequency (ν0\nu_0): photoemission occurs only if hν≥ϕ0h\nu \ge \phi_0, i.e. ν≥ϕ0/h=ν0\nu \ge \phi_0/h =\nu_0. Below this frequency, no photoelectrons are emitted however intense the light is, because a single photon below the threshold energy simply cannot free an electron (unlike the classical wave picture, where sufficiently intense light of any frequency was expected eventually to eject electrons). …

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