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Q.(a) Write Einstein's photoelectric equation.

(1)
(b) Using this equation show that, "photoelectric emission is not possible if the frequency of incident radiation is less than threshold frequency". (2)
Kerala DhseKerala DHSE Plus Two Board 2021Subjective· 3mImportance★★★★★
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Einstein's photoelectric equation gives the maximum kinetic energy of an emitted electron as hν−ϕ0h\nu - \phi_0; if this is negative (ν below threshold), emission simply cannot happen.

  1. Einstein's photoelectric equation: hν=ϕ0+Kmaxh\nu = \phi_0 + K_{max} where hνh\nu is the energy of the incident photon, ϕ0\phi_0 is the work function of the metal (minimum energy needed to free an electron from the surface), and Kmax=12mvmax2K_{max} = \frac{1}{2}mv_{max}^2 is the maximum kinetic energy of the emitted photoelectron.
  2. Showing no emission below threshold frequency: Rearranging the equation for the maximum kinetic energy: Kmax=hν−ϕ0K_{max} = h\nu - \phi_0 The work function can also be written as ϕ0=hν0\phi_0 = h\nu_0, where ν0\nu_0 is the threshold frequency of the metal (the minimum photon frequency that can just barely free an electron, with zero left-over kinetic energy). So: Kmax=hν−hu0=h(ν−u0)K_{max} = h\nu - h u_0 = h(\nu- u_0) If the incident frequency ν\nu is less than the threshold frequency ν0\nu_0, then (ν−ν0)(\nu-\nu_0) is negative, which would make KmaxK_{max} negative. But kinetic energy can never be negative — a photoelectron cannot have "negative" kinetic energy. …

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