The photoelectric effect is the emission of electrons from a metal when light falls on it. The maximum kinetic energy of the electrons is the photon energy less the work function of the metal. A counter-electrode placed near the surface can pick up the photoelectric current. a) The work function of copper is 4.65 eV. Calculate the maximum kinetic energy in eV of the electrons if a copper surface is illuminated with 200 nm UV light. b) If the counter-electrode is charged to +10 V, what will be the maximum kinetic energy of electrons arriving on it? What negative voltage would cut the photocurrent to zero?
The photoelectric effect is the emission of electrons from a metal when light falls on it. The maximum kinetic energy of the electrons is the photon energy less the work function of the metal. A counter-electrode placed near the surface can pick up the photoelectric current. a) The work function of copper is 4.65 eV. Calculate the maximum kinetic energy in eV of the electrons if a copper surface is illuminated with 200 nm UV light. b) If the counter-electrode is charged to +10 V, what will be the maximum kinetic energy of electrons arriving on it? What negative voltage would cut the photocurrent to zero?
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Transcribed Image Text:The photoelectric effect is the emission of electrons from a metal when light falls on it. The
maximum kinetic energy of the electrons is the photon energy less the work function of the
metal. A counter-electrode placed near the surface can pick up the photoelectric current.
a) The work function of copper is 4.65 eV. Calculate the maximum kinetic energy in eV of the
electrons if a copper surface is illuminated with 200 nm UV light.
b) If the counter-electrode is charged to +10 V, what will be the maximum kinetic energy of
electrons arriving on it? What negative voltage would cut the photocurrent to zero?
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