The Story of the HeavensBall, Robert S. (Robert Stawell)
History
The Story of the Heavens
Ball, Robert S. (Robert Stawell)
Astronomy
But now suppose that this great sphere, which we have hitherto assumed
to be at rest, is made to rotate round an axis passing through its
centre. We need not suppose that this axis is a material object, nor are
we concerned with any supposition as to how the velocity of rotation was
caused. We can, however, easily see what the consequence of the rotation
would be. The sphere would become deformed, the centrifugal force would
make the molten body bulge out at the equator and flatten down at the
poles. The greater the velocity of rotation the greater would be the
bulging. To each velocity of rotation a certain degree of bulging would
be appropriate. The molten earth thus bulged out to an extent which was
dependent upon the fact that it turned round once a day. Now suppose
that the earth, while still rotating, commences to pass from the liquid
to the solid state. The form which the earth would assume on
consolidation would, no doubt, be very irregular on the surface; it
would be irregular in consequence of the upheavals and the outbursts
incident to the transformation of so mighty a mass of matter; but
irregular though it be, we can be sure that, on the whole, the form of
the earth's surface would coincide with the shape which it had assumed
by the movement of rotation. Hence we can explain the protuberant form
of the equator of the earth, and we can appeal to that form in
corroboration of the view that this globe was once in a soft or molten
condition.
The argument may be supported and illustrated by comparing the shape of
our earth with the shapes of some of the other celestial bodies. The
sun, for instance, seems to be almost a perfect globe. No measures that
we can make show that the polar diameter of the sun is shorter than the
equatorial diameter. But this is what we might have expected. No doubt
the sun is rotating on its axis, and, as it is the rotation that causes
the protuberance, why should not the rotation have deformed the sun like
the earth? The probability is that a difference really does exist
between the two diameters of the sun, but that the difference is too
small for us to measure. It is impossible not to connect this with the
_slowness_ of the sun's rotation. The sun takes twenty-five days to
complete a rotation, and the protuberance appropriate to so low a
velocity is not appreciable.
Public-domain text, read in full here on John Shaqi.
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