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Q.What is Photoelectric effect ? Derive the Einstein's equation.

Jammu Kashmir JkboseJKBOSE Class 12 Annual Regular Examination 2023Subjective· 3mImportance★★★★★
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The photoelectric effect is the ejection of electrons from a metal surface by incident light above a threshold frequency; Einstein explained it by treating light as photons of energy hnu, giving hnu = phi0 + (1/2)mv_max^2 via conservation of energy.

Photoelectric effect: When light (electromagnetic radiation) of sufficiently high frequency (above a certain threshold frequency nu0, characteristic of the metal) falls on the surface of certain metals (especially alkali metals), electrons are emitted from the surface. These emitted electrons are called photoelectrons, and the phenomenon is called the photoelectric effect. Below the threshold frequency, no electrons are emitted, however high the intensity of light.

Einstein's explanation and equation: Classical wave theory of light failed to explain several observed features of the photoelectric effect (existence of a threshold frequency, instantaneous emission, KE_max independent of intensity). Einstein explained these by extending Planck's quantum hypothesis: light itself consists of discrete packets of energy called photons, each carrying energy E = h*nu (h = Planck's constant, nu = frequency of light), and a photoelectron is ejected by the absorption of a single photon by a single electron (one-to-one interaction).

When a photon of energy hnu strikes the metal surface, part of this energy, equal to the work function phi0 (= hnu0, the minimum energy needed to just free an electron from the metal surface), is used up in overcoming the attractive forces binding the electron to the metal; the remaining energy appears as the kinetic energy of the emitted electron. For the most energetic (least strongly bound) electrons, this gives the maximum kinetic energy:

By conservation of energy: Energy of incident photon = Work function + Maximum kinetic energy of photoelectron

h*nu = phi0 + KE_max …

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