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 appearance of Saturn is unparalleled in the system of the world; he
is surrounded by a ring even brighter than himself, which always remains
in the plane of his equator, and viewed with a very good telescope, it
is found to consist of two concentric rings, divided by a dark band. By
the laws of mechanics, it is impossible that this body can retain its
position by the adhesion of its particles alone; it must necessarily
revolve with a velocity that will generate a centrifugal force
sufficient to balance the attraction of Saturn. Observation confirms the
truth of these principles, showing that the rings rotate about the
planet in 10 1/2 hours, which is considerably less than the time a
satellite would take to revolve about Saturn at the same distance. Their
plane is inclined to the ecliptic at an angle of 31°; and in consequence
of this obliquity of position they always appear elliptical to us, but
with an eccentricity so variable as even to be occasionally like a
straight line drawn across the planet. At present the apparent axes of
the rings are as 1000 to 160; and on the 29th of September, 1832,
the plane of the rings will pass through the centre of the earth
when they will be visible only with superior instruments, and will
appear like a fine line across the disc of Saturn. On the 1st of
December in the same year, the plane of the rings will pass through
the centre of the sun.
It is a singular result of the theory, that the rings could not maintain
their stability of rotation if they were everywhere of uniform
thickness; for the smallest disturbance would destroy the equilibrium,
which would become more and more deranged, till at last they would be
precipitated on the surface of the planet. The rings of Saturn must
therefore be irregular solids of unequal breadth in the different parts
of the circumference, so that their centres of gravity do not coincide
with the centres of their figures.
Professor Struve has also discovered that the centre of the ring is not
concentric with the centre of Saturn; the interval between the outer
edge of the globe of the planet and the outer edge of the ring on one
side, is 11"·073, and on the other side the interval is 11"·288;
consequently there is an eccentricity of the globe in the ring of
0"·215.
If the rings obeyed different forces, they would not remain in the same
plane, but the powerful attraction of Saturn always maintains them and
his satellites in the plane of his equator. The rings, by their mutual
action, and that of the sun and satellites, must oscillate about the
centre of Saturn, and produce phenomena of light and shadow, whose
periods extend to many years.
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