The equipartition theorem states that each term in the particle's energy depending on a squared position (potential energies) or velocity (kinetic energies) contributes on average kT to the particle's total mechanical energy. Each of these terms corresponds to a degree of freedom of the gas. That is, Gm) = jer 6. By what factor do you have to increase the temperature to triple the rms speed of an ideal gas?

Physics for Scientists and Engineers
10th Edition
ISBN:9781337553278
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter20: The Kinetic Theory Of Gases
Section: Chapter Questions
Problem 45CP
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The equipartition theorem states that each term in the particle's energy depending on a squared position
(potential energies) or velocity (kinetic energies) contributes on average kT to the particle's total mechanical
energy. Each of these terms corresponds to a degree of freedom of the gas. That is,
6. By what factor do you have to increase the temperature to triple the rms speed of an ideal gas?
Transcribed Image Text:The equipartition theorem states that each term in the particle's energy depending on a squared position (potential energies) or velocity (kinetic energies) contributes on average kT to the particle's total mechanical energy. Each of these terms corresponds to a degree of freedom of the gas. That is, 6. By what factor do you have to increase the temperature to triple the rms speed of an ideal gas?
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