The classical adiabatic constancy of PVγ for an ideal gas as a quantum mechanical occurrence
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Date
2010
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Abstract
In this paper, a connection between the long lasting macroscopic classical laws of gases and the quantum mechanical description of non-interacting particles confined in a box was found, thus constituting an ideal gas. In such a gas, the motion of each individual molecule can be considered to be independent of all other molecules, and the macroscopic parameters of an ideal gas, mainly, pressure P and temperature T, can be defined as simple average quantities based on individual motions of all molecules in consideration. It is shown that for an ideal gas enclosed in a macroscopic box of volume V constant V, the constant γ appearing in the classical law of adiabatic expansion law, that is, PVγ = can be derived based on quantum mechanics. Physical implications of the result we disclose are discussed. © 2010 Academic Journals.
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Adiabatic transformation, Kinetic theory of gases, Quantum mechanics
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5
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Source
International Journal of Physical Sciences
Volume
5
Issue
10
Start Page
1524
End Page
1529