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Q.(A) Work function of a metal is the

(a) energy required by an electron to get absorbed in the metal surface.
(b) minimum energy required by an electron to escape from the metal surface.
(c) energy required by an electron to be retained in the metal surface.
(d) maximum energy required by an electron to escape from the metal surface. (Score : ½)
(B) Write Einstein's Photo-Electric Equation and explain the terms in it. (Scores : 1½)
(C) All Photo electrons are not emitted with the same energy as the incident photons. Why ? (Score : 1)
Kerala DhseKerala DHSE Plus Two Board 2015Subjective· 3mImportance★★★★★
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Einstein's photoelectric equation, KEmax = hν − φ₀, explains why photoelectron energies form a spread up to a maximum rather than a single value.

(A) The work function is (b) the minimum energy required by an electron to escape from the metal surface — it is the energy binding the most weakly held (surface) electron to the metal.

(B) Einstein's Photoelectric Equation

When a photon of energy hν strikes a metal surface, it is absorbed by a single electron. Part of this energy (φ₀, the work function) is used to free the electron from the metal; the rest appears as the electron's kinetic energy:

KEmax = hν − φ₀

where h = Planck's constant, ν = frequency of incident light, φ₀ = work function of the metal (= hν₀, ν₀ being the threshold frequency), and KEmax = maximum kinetic energy of the emitted photoelectron.

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