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Q.Explain the effect of potential on photoelectric current with the help of its figure.

Nagaland NbseNagaland Board of School Education 2020Subjective· 2mImportance★★★★★
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Photocurrent saturates at large positive collector potential (all photoelectrons collected) and drops to zero at the negative stopping potential V0V_0, independent of intensity but dependent on frequency.

In the photoelectric-effect experiment, light of a fixed frequency and intensity falls on an emitter plate inside an evacuated tube, ejecting photoelectrons with a range of kinetic energies (up to a maximum KmaxK_{max}). A variable potential difference is applied between the emitter and a collector plate, and the resulting photoelectric current is measured as this potential is varied.

Effect of positive (accelerating) potential: As the collector is made increasingly positive with respect to the emitter, more of the emitted photoelectrons (even those emitted sideways or with low energy) are attracted to and collected by the collector, so the photocurrent increases with potential. Beyond a certain positive potential, all photoelectrons emitted per second are being collected, and the current becomes constant no matter how much further the potential is increased — this maximum current is called the saturation current. Increasing the light intensity (at fixed frequency) increases the saturation current, since more photons eject more photoelectrons per second.

Effect of negative (retarding) potential: If instead the collector is made negative with respect to the emitter, the field opposes the photoelectrons' motion. Only those photoelectrons with kinetic energy large enough to overcome this retarding potential energy reach the collector, so the current decreases as the magnitude of the negative potential increases. At a particular negative potential called the stopping potential V0V_0, even the most energetic photoelectrons (those with KmaxK_{max}) are just turned back, and the photocurrent drops to exactly zero: …

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