The Energy System of Matter: A Deduction from Terrestrial Energy PhenomenaWeir, James, active 1883-1912
Science
The Energy System of Matter: A Deduction from Terrestrial Energy Phenomena
Weir, James, active 1883-1912
Force and energy
In the earth is found an example of a planetary body of spheroidal form
pursuing a clearly defined orbit in space and at the same time rotating
with absolutely uniform velocity about a central axis within itself. The
structural details of its surface and the general distribution of
material thereon will be more or less familiar to the reader, and it is
not, therefore, proposed to dwell on these features here. Attention may
be drawn, however, to the fact that a very large proportion of the
surface of the earth is a liquid surface. Of all the material familiar
to us from terrestrial experience there is none which enters into the
composition of the earth's crust in so large a proportion as water. In
the free state, or in combination with other material, water is found
everywhere. In the liquid condition it is widely distributed. Although
the liquid or sea surface of the planet extends over a large part of
the whole, the real water surface, that is, the _wetted_ surface, if we
except perhaps a few desert regions, may be said to comprise practically
the entire surface area of the planet. And water is found not only on
the earth's crust but throughout the gaseous atmospheric envelope. The
researches of modern chemistry have revealed the fact that the
atmosphere by which the earth is surrounded is not only a mixture of
gases, but an exceedingly complex mixture. The relative proportions of
the rarer gases present are, however, exceedingly small, and their
properties correspondingly obscure. Taken broadly, the atmosphere may be
said to be composed of air and water (in the form of aqueous vapour) in
varying proportion. The former constituent exists as a mixture of oxygen
and nitrogen gases of fairly constant proportion over the entire surface
of the globe. The latter is present in varying amount at different
points according to local conditions. This mixture of gaseous
substances, forming the terrestrial atmosphere, resides on the surface
of the planet and forms, as already described (§ 34), a column or
envelope completely surrounding it; the quantity of gaseous material
thus heaped up on the planetary surface is such that it exerts almost
uniformly over that surface the ordinary atmospheric pressure of
approximately 14·7 lb. per sq. inch. It is advisable, also, at this
stage to point out and emphasise the fact that the planetary atmosphere
must be regarded as essentially a material portion of the planet itself.
Although the atmosphere forms a movable shell or envelope, and is
composed of purely gaseous material, it will still partake of the same
complete orbital and rotatory axial motion as the solid core, and will
also be subjected to the same external and internal influences of
gravitation. Such are the general planetary conditions. Let us now turn
to the particular phenomena of axial revolution.
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