On the Connexion of the Physical SciencesSomerville, Mary
Science
On the Connexion of the Physical Sciences
Somerville, Mary
Physical sciences; Science
The rotation of the earth, which determines the length of the day, may
be regarded as one of the most important elements in the system of the
world. It serves as a measure of time, and forms the standard of
comparison for the revolutions of the celestial bodies, which, by their
proportional increase or decrease, would soon disclose any changes it
might sustain. Theory and observation concur in proving that, among the
innumerable vicissitudes which prevail throughout creation, the period
of the earth’s diurnal rotation is immutable. The water of rivers,
falling from a higher to a lower level, carries with it the velocity due
to its revolution with the earth at a greater distance from the centre;
it will therefore accelerate, although to an almost infinitesimal
extent, the earth’s daily rotation. The sum of all these increments of
velocity, arising from the descent of all the rivers on the earth’s
surface, would in time become perceptible, did not nature, by the
process of evaporation, raise the waters back to their sources, and
thus, by again removing matter to a greater distance from the centre,
destroy the velocity generated by its previous approach; so that the
descent of rivers does not affect the earth’s rotation. Enormous masses
projected by volcanoes from the equator to the poles, and the contrary,
would indeed affect it, but there is no evidence of such convulsions.
The disturbing action of the moon and planets, which has so powerful an
effect on the revolution of the earth, in no way influences its
rotation. The constant friction of the trade winds on the mountains and
continents between the tropics does not impede its velocity, which
theory even proves to be the same as if the sea, together with the
earth, formed one solid mass. But, although these circumstances be
insufficient, a variation in the mean temperature would certainly
occasion a corresponding change in the velocity of rotation. In the
science of dynamics it is a principle in a system of bodies or of
particles revolving about a fixed centre, that the momentum or sum of
the products of the mass of each into its angular velocity and distance
from the centre is a constant quantity, if the system be not deranged by
a foreign cause. Now, since the number of particles in the system is the
same whatever its temperature may be, when their distances from the
centre are diminished, their angular velocity must be increased, in
order that the preceding quantity may still remain constant. It follows,
then, that, as the primitive momentum of rotation with which the earth
was projected into space must necessarily remain the same, the smallest
decrease in heat, by contracting the terrestrial spheroid, would
accelerate its rotation, and consequently diminish the length of the
day. Notwithstanding the constant accession of heat from the sun’s rays,
geologists have been induced to believe, from the fossil remains, that
the mean temperature of the globe is decreasing.
Public-domain text, read in full here on John Shaqi.
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