In a photoelectric effect experiment, monochromatic light with a frequency greater than the threshold frequency of a cesium metal emitter is directed at the surface. If the intensity of the incident light is doubled while keeping its frequency constant, which of the following statements is correct?
- The rate of emitted photoelectrons doubles, but their maximum kinetic energy remains unchanged.Cevap
- BBoth the maximum kinetic energy of the photoelectrons and the rate of emission double.
- CThe maximum kinetic energy doubles, while the rate of photoelectron emission remains unchanged.
- DThe maximum kinetic energy increases, but the rate of photoelectron emission decreases.
Cevap
The rate of emitted photoelectrons doubles, but their maximum kinetic energy remains unchanged.
According to Einstein's photoelectric equation, , the maximum kinetic energy of emitted photoelectrons depends strictly on the frequency of incident light and the work function of the metal emitter. Doubling light intensity at constant frequency increases the number of incident photons per second, which proportionally doubles the number of photoelectrons ejected per second (photoelectric current) without affecting their kinetic energy.
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Anahtar Kavram
Independence of photoelectron kinetic energy from light intensity