The Story of the HeavensBall, Robert S. (Robert Stawell)
History
The Story of the Heavens
Ball, Robert S. (Robert Stawell)
Astronomy
We are, therefore, compelled to make one last attempt, and still further
to subdivide the ring. It may seem rather startling to abandon entirely
the supposition that the ring is in any sense a continuous body, but
there remains no alternative. Look at it how we will, we seem to be
conducted to the conclusion that the ring is really an enormous shoal of
extremely minute bodies; each of these little bodies pursues an orbit of
its own around the planet, and is, in fact, merely a satellite. These
bodies are so numerous and so close together that they seem to us to be
continuous, and they may be very minute--perhaps not larger than the
globules of water found in an ordinary cloud over the surface of the
earth, which, even at a short distance, seems like a continuous body.
Until a few years ago this theory of the constitution of Saturn's rings,
though unassailable from a mathematical point of view, had never been
confirmed by observation. The only astronomer who maintained that he had
actually seen the rings rotate was W. Herschel, who watched the motion
of some luminous points on the ring in 1789, at which time the plane of
the ring happened to pass through the earth. From these observations
Herschel concluded that the ring rotated in ten hours and thirty-two
minutes. But none of the subsequent observers, even though they may have
watched Saturn with instruments very superior to that used by Herschel,
were ever able to succeed in verifying his rotation of these appendages
of Saturn. If the ring were composed of a vast number of small bodies,
then the third law of Kepler will enable us to calculate the time which
these tiny satellites would require to travel completely round the
planet. It appears that any satellite situated at the outer edge of the
ring would require as long a period as 13 hrs. 46 min., those about the
middle would not need more than 10 hrs. 28 min., while those at the
inner edge of the ring would accomplish their rotation in 7 hrs. 28 min.
Even our mightiest telescopes, erected in the purest skies and employed
by the most skilful astronomers, refuse to display this extremely
delicate phenomenon. It would, indeed, have been a repetition on a grand
scale of the curious behaviour of the inner satellite of Mars, which
revolves round its primary in a shorter time than the planet itself
takes to turn round on its own axis.
[Illustration: Fig. 66.--Prof. Keeler's Method of Measuring the
Rotation of Saturn's Ring.]
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