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Answer in Brief · Q7

Q.Can microwaves be used in the experiment on photoelectric effect?

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No, microwaves cannot ordinarily be used to observe the photoelectric effect. A photon's energy is E=hνE=h\nu, and microwaves have a very LOW frequency compared to visible or ultraviolet light -- typically in the range of 10910^9 to 101110^{11} Hz, compared to visible light's roughly 101410^{14}-101510^{15} Hz. This makes a microwave photon's energy extremely small, typically of the order of only 10−510^{-5} to 10−310^{-3} eV.\n\nFor the photoelectric effect to occur at all, the incident photon's energy must be at least equal to the metal's work function ϕ0\phi_0, which is typically several electron-volts (see Table 14.1: 2.3-5.1 eV for common metals) -- many orders of magnitude LARGER than a single microwave photon's energy. Since a photon can only transfer the whole of its own energy in one collision (it cannot 'add up' with other photons to knock out a single electron), a beam of microwave radiation, however intense, simply cannot supply enough energy PER PHOTON to overcome any ordinary metal's work function, so no photoelectrons would be emitted. [!ANSWER] No, microwave photons are too low in energy to overcome any metal's work function.

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