James Clerk Maxwell and Modern PhysicsGlazebrook, Richard
History
James Clerk Maxwell and Modern Physics
Glazebrook, Richard
Maxwell, James Clerk, 1831-1879; Physics -- History
In a paper in the _Philosophical Magazine_ for 1858 Waterston gives an
account of his own paper of 1846 in the following terms:--“Mr. Herapath
unfortunately assumed heat or temperature to be represented by the
simple ratio of the velocity instead of the square of the velocity,
being in this apparently led astray by the definition of motion
generally received, and thus was baffled in his attempts to reconcile
his theory with observation. If we make this change in Mr. Herapath’s
definition of heat or temperature--viz., that it is proportional
to the vis-viva or square velocity of the moving particle, not to
the momentum or simple ratio of the velocity--we can without much
difficulty deduce not only the primary laws of elastic fluids, but also
the other physical properties of gases enumerated above in the third
objection to Newton’s hypothesis. [The paper from which the quotation
is taken is on ‘The Theory of Sound.’] In the Archives of the Royal
Society for 1845–46 there is a paper on ‘The Physics of Media that
consist of perfectly “Elastic Molecules in a State of Motion,”’ which
contains the synthetical reasoning on which the demonstration of these
matters rests.... This theory does not take account of the size of the
molecules. It assumes that no time is lost at the impact, and that if
the impacts produce rotatory motion, the vis viva thus invested bears
a constant ratio to the rectilineal vis viva, so as not to require
separate consideration. It does, also, not take account of the probable
internal motion of composite molecules; yet the results so closely
accord with observation in every part of the subject as to leave no
doubt that Mr. Herapath’s idea of the physical constitution of gases
approximates closely to the truth.”
In his introduction to Waterston’s paper (Phil. Trans., 1892) Lord
Rayleigh writes:--“Impressed with the above passage, and with the
general ingenuity and soundness of Waterston’s views, I took the first
opportunity of consulting the Archives, and saw at once that the memoir
justified the large claims made for it, and that it marks an immense
advance in the direction of the now generally received theory.”
In the first section of the paper Waterston’s great advance consisted
in the statement that the mean square of the kinetic energy of each
molecule measures the temperature.
According to this we are thus to put in the pressure equation--½ _m_
_v_² = T, the temperature, and we have at once--_p_ V = ⅔ N · T.
Now this equation expresses, as we know, the laws of Boyle and Gay
Lussac.
Public-domain text, read in full here on John Shaqi.
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