During the whole process of separation of rings from the original
nebula, the nebulous matter would be abandoned in what we may call the
form of thin hoop-shaped rings, so that the equatorial region of the
nebula would be flat--as we have shown at p. 115--and when the nebula
came to be so much reduced that it could abandon no more matter through
centrifugal force, its form would be, in some measure, like that of a
rotating cylinder terminating at each end in a cap in the form of a
segment of a sphere. When explaining the formation of planetary rings,
we have seen that in the Jovian nebula the length of the flat part
would have come very soon to be nearly 1,500,000 miles, and that it
would increase rapidly. But, remembering that the flattening of the
equatorial part must have begun on the original nebula, we see that
the flat part must have increased vastly in length before it reached
Jupiter, and that by the time the residuary, or solar, nebula was
reached--which we made to be only a little over 63,000,000 miles in
diameter--the cylindrical part of it would bear no small proportion
to that diameter. Taking this form of the nebula into consideration,
and also the fact that the separation of matter from it by centrifugal
force could not always be absolutely equal all around it, the swaying
in its rotary motion produced by the all but inevitable inequality
of mass, at the two ends of the cylindrical part, and at the sides
of the segmental caps, may have been the cause of the differences in
the inclinations of the orbits of the planets to the ecliptic; and
especially of why the difference came to be so much greater in the case
of Mercury than in any of the others.
In connection with this very reasonable conclusion as to the form of
the nebula almost from the beginning, we may add that, when it ceased
to throw off rings, it would be very much in the same condition as
Saturn is at the present day. Therefore we may conclude with very great
safety, that the present form of Saturn is that of a cylinder with
segments of spheres forming the ends; and in this manner can account
for his square-shouldered appearance, which has puzzled more than one
astronomer.
Public-domain text, read in full here on John Shaqi.
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