The photoelectrons ejected in the photoelectric effect seem to appear instantaneously, without any observed time delay (even with light of very low intensity). In classical physics, the energy of the electromagnetic wave is spread out uniformly over the surface of the metal. In this scenario, calculate the amount of time needed for 1.0 eV of energy to be absorbed by an atom in a metal located 1.0 m away from a 1.0 Watt light bulb. (Hint: take the area of the atom to be 1.0 Å 2)

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter28: Quantum Physics
Section: Chapter Questions
Problem 17P
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The photoelectrons ejected in the photoelectric effect seem to appear instantaneously, without any observed time delay (even with light of very low intensity). In classical physics, the energy of the electromagnetic wave is spread out uniformly over the surface of the metal. In this scenario, calculate the amount of time needed for 1.0 eV of energy to be absorbed by an atom in a metal located 1.0 m away from a 1.0 Watt light bulb. (Hint: take the area of the atom to be 1.0 Å 2)

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