(266.) There can be little doubt that modifications, similarly
depending on the internal structure of crystals, will be traced through
every department of physics. In that interesting one which relates
to the action of heat in expanding the dimensions of substances, a
beginning has already been made by Professor Mitscherlich. It had long
been known that all substances are dilated by heat, and no exception
to this law has been found, so long as we regard the _bulk_ of the
heated body. Thus, an iron rod when hot is both longer and thicker than
when cold; and the difference of dimension, though but trifling in
itself, is yet capable of being made sensible, and is of considerable
consequence in engineering. Thus, too, the quicksilver in a common
thermometer occupies a larger space when hot than when cold; and being
confined by the glass ball, (which also expands, but _not so much in
proportion_,) it is forced to rise in the tube. These and similar facts
had long been known; and accurate measures of the total amount of
dilatation of a variety of different bodies, under similar accessions
of heat, had been obtained and registered in tables. But no one had
suspected the important fact, that this expansion in crystallized
bodies takes place under totally different circumstances from what
obtains in uncrystallized ones. M. Mitscherlich has lately shown that
such substances expand differently in different directions, and has
even produced a case in which expansion in one direction is actually
accompanied with contraction in another. This step, the most important
beyond a doubt which has yet been made in pyrometry, can however only
be regarded as the first in a series of researches which will occupy
the next generation, and which promises to afford an abundant harvest
of new facts, as well as the elucidation of some of the most obscure
and interesting points in the doctrine of heat.
Public-domain text, read in full here on John Shaqi.
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