A Preliminary Dissertation on the Mechanisms of the HeavensSomerville, Mary
Science
A Preliminary Dissertation on the Mechanisms of the Heavens
Somerville, Mary
Celestial mechanics
The oblate form of the celestial bodies indicates rotatory motion, and
this has been confirmed, in most cases, by tracing spots on their
surfaces, whence their poles and times of rotation have been determined.
The rotation of Mercury is unknown, on account of his proximity to the
sun; and that of the new planets has not yet been ascertained. The sun
revolves in twenty-five days ten hours, about an axis that is directed
towards a point half way between the pole star and Lyra, the plane of
rotation being inclined a little more than 70° to that on which the
earth revolves. From the rotation of the sun, there is every reason to
believe that he has a progressive motion in space, although the
direction to which he tends is as yet unknown; but in consequence of the
reaction of the planets, he describes a small irregular orbit about the
centre of inertia of the system, never deviating from his position by
more than twice his own diameter, or about seven times the distance of
the moon from the earth.
The sun and all his attendants rotate from west to east on axes that
remain nearly parallel to themselves in every point of their orbit, and
with angular velocities that are sensibly uniform. Although the
uniformity in the direction of their rotation is a circumstance hitherto
unaccounted for in the economy of Nature, yet from the design and
adaptation of every other part to the perfection of the whole, a
coincidence so remarkable cannot be accidental; and as the revolutions
of the planets and satellites are also from west to east, it is evident
that both must have arisen from the primitive causes which have
determined the planetary motions.
The larger planets rotate in shorter periods than the smaller planets
and the earth; their compression is consequently greater, and the action
of the sun and of their satellites occasions a nutation in their axes,
and a precession of their equinoxes, similar to that which obtains in
the terrestrial spheroid from the attraction of the sun and moon on the
prominent matter at the equator. In comparing the periods of the
revolutions of Jupiter and Saturn with the times of their rotation, it
appears that a year of Jupiter contains nearly ten thousand of his days,
and that of Saturn about thirty thousand Saturnian days.
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