In a photoelectric effect experiment, monochromatic light of frequency (where ) illuminates a sodium metal surface, causing the emission of photoelectrons with a maximum kinetic energy and producing a saturation photoelectric current . If the intensity of the incident light is quadrupled while maintaining the frequency constant, what are the new values of the maximum kinetic energy of the photoelectrons and the saturation photoelectric current?
- The maximum kinetic energy remains , and the saturation current becomes .Cevap
- BThe maximum kinetic energy becomes , and the saturation current remains .
- CThe maximum kinetic energy becomes , and the saturation current becomes .
- DThe maximum kinetic energy remains , and the saturation current remains .
Cevap
The maximum kinetic energy remains , and the saturation current becomes .
According to Einstein's photoelectric theory, light intensity corresponds to the rate of photon arrival. Quadrupling the intensity quadruples the number of photons striking the surface per second, thereby quadrupling the rate of emitted photoelectrons and resulting in a saturation current of . However, individual photon energy depends strictly on frequency (). Because frequency remains constant, the maximum kinetic energy of the photoelectrons remains unchanged at .
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Anahtar Kavram
Independence of photoelectron kinetic energy from light intensity and direct proportionality of photoelectric current to light intensity.