On the Connexion of the Physical SciencesSomerville, Mary
Science
On the Connexion of the Physical Sciences
Somerville, Mary
Physical sciences; Science
109,830 years for the major axis of the earth’s orbit to accomplish a
sidereal revolution (N. 68), that is, to return to the same stars; and
20,984 years to complete its tropical revolution (N. 69), or to return
to the same equinox. The difference between these two periods arises
from a retrograde motion in the equinoctial point, which meets the
advancing axis before it has completed its revolution with regard to the
stars. The major axis of Jupiter’s orbit requires no less than 200,610
years to perform its sidereal revolution, and 22,748 years to accomplish
its tropical revolution from the disturbing action of Saturn alone.
A variation in the excentricity of the disturbed planet’s orbit is an
immediate consequence of the deviation from elliptical curvature, caused
by the action of the disturbing force. When the path of the body, in
proceeding from its perihelion to its aphelion, is more curved than it
ought to be from the effect of the disturbing forces, it falls within
the elliptical orbit, the excentricity is diminished, and the orbit
becomes more nearly circular; when that curvature is less than it ought
to be, the path of the planet falls without its elliptical orbit
(N. 66), and the excentricity is increased; during these changes, the
length of the major axis is not altered, the orbit only bulges out, or
becomes more flat (N. 70). Thus the variation in the excentricity arises
from the same cause that occasions the motion of the apsides (N. 67).
There is an inseparable connection between these two elements: they vary
simultaneously, and have the same period; so that, whilst the major axis
revolves in an immense period of time, the excentricity increases and
decreases by very small quantities, and at length returns to its
original magnitude at each revolution of the apsides. The terrestrial
excentricity is decreasing at the rate of about 40 miles annually; and,
if it were to decrease equably, it would be 39,861 years before the
earth’s orbit became a circle. The mutual action of Jupiter and Saturn
occasions variations in the excentricity of both orbits, the greatest
excentricity of Jupiter’s orbit corresponding to the least of Saturn’s.
The period in which these vicissitudes are accomplished is 70,414 years,
estimating the action of these two planets alone; but, if the action of
all the planets were estimated, the cycle would extend to millions of
years.
Public-domain text, read in full here on John Shaqi.
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