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Q.Define the term 'threshold frequency' in photoelectric emission.

CBSECBSE Class XII Board 2020Subjective· 1mImportance★★★★★
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Threshold frequency is the minimum frequency of incident radiation required to eject electrons from a metal surface; below it, no photoelectric emission occurs regardless of intensity.

The photoelectric effect reveals that light behaves as a stream of energy packets (photons), each carrying energy E=hνE = h\nu, where hh is Planck's constant and ν\nu is the frequency. When light strikes a metal surface, electrons absorb these photons. But here's the key insight: an electron needs a certain minimum energy—called the work function ϕ0\phi_0—to escape the attractive forces binding it to the metal.

If the photon energy is less than this work function, the electron simply cannot break free. No matter how many low-energy photons you throw at the surface (high intensity but low frequency), none will cause emission. This is fundamentally different from classical wave theory, which predicted that any frequency should work if you just made the light bright enough.

The threshold frequency ν0\nu_0 is precisely the frequency at which the photon energy equals the work function:

hν0=ϕ0h\nu_0 = \phi_0

Below this frequency, hν<ϕ0h\nu < \phi_0, and photoelectric emission is impossible. Above it, the excess energy (hν−ϕ0)(h\nu - \phi_0) appears as the kinetic energy of the ejected electron.

ν0=ϕ0h\nu_0 = \frac{\phi_0}{h} …

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