Scientific American Supplement, No. 470, January 3, 1885Various
Science
Scientific American Supplement, No. 470, January 3, 1885
Various
Science -- Periodicals
The experiments of Despretz and Regnault had shown that the scope of
Mariotte's law (that the volume of gases increases or diminishes inversely
as the pressure upon them) was limited, and that its limits were different
with different substances. Andrews confirmed the observations of these
investigators, and extended them. Compressing carbonic acid at 13° C. (55°
Fahr.), he found that the rate of diminution in volume increased more
rapidly than Mariotte's law demanded, and at a progressive rate. At fifty
atmospheres the gas all at once assumed the liquid form, became very
dense, and fell to the bottom of the vessel, where it remained separated
from its vapor by a clearly defined surface, like that which distinguishes
water in the air. Experimenting in the same way with the gas at a higher
temperature (21° C. or 70° Fahr.), he found that the same result was
produced, but more slowly; and it seemed to be heralded in advance by a
more rapid diminution in volume previous to the beginning of the change,
which continued after the process had been accomplished; as if an
anticipatory preparation for the liquid state were going on previous to
the completion of the change. Performing the experiment again at 32° C.
(90° Fahr.), the anticipatory preparation and the after-continuation of
the contraction were more marked, and, instead of a separate and distinct
liquid, wavy and mobile striæ were perceived on the sides of the vessel as
the only signs of a change of state which had not yet been effected. At
temperatures above 32° C. (90° Fahr.), there were neither striæ nor
liquefaction, but there seemed to be a suggestion of them, for, under a
particular degree of pressure, the density of the gas was augmented, and
its volume diminished at an increasing rate. The temperature of 32° C.
(90° Fahr.) is, then, a limit, marking a division between the temperatures
which permit and those which prevent liquefaction; it is the critical
point, at which is defined the separation, for carbonic acid, between two
very distinct states of matter. Below this point, the particular matter
may assume the aspect of a liquid; above it, the gas cannot change its
appearance, but enters into the opposite constitution from that of a
liquid.
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