The Earth's BeginningBall, Robert S. (Robert Stawell)
Science
The Earth's Beginning
Ball, Robert S. (Robert Stawell)
Krakatoa (Indonesia); Nebular hypothesis
But the case is very different in that particular kind of attraction by
which the sun controls the movements of the planets. This attraction of
gravitation, as it is called, also depends on the distance between the
two bodies. But the attraction does not increase when the distance of
the two bodies increases, for the change lies the other way. The
attraction, in fact, diminishes more rapidly than the distance
increases. If the distance between the sun and a planet be doubled, then
the attraction between the two bodies is only a fourth of what the
attraction was between the two bodies in the former case. This
difference between the law of attraction as it exists in the solar
system and the law of attraction which is exemplified in our little
experiment produces a remarkable contrast in the resulting movements.
The orbit in each case is, no doubt, an ellipse, but in the case of the
tennis ball revolving round the globe the ellipse is so circumstanced
that the fixed attracting body stood at its centre, while in the case of
a planet revolving round the sun the conditions are not so simple. The
sun does not stand in the centre of the ellipse. The sun is placed at
that remarkable point of the ellipse so dear to the heart of the
geometer, which he calls the focus.
The solar system consists, first, of the great regulating orb, the sun;
then of the planets, each of which revolves in its own track round the
sun; each of these tracks is an ellipse, and all these ellipses have
this in common, that a focus in each is identical with the centre of the
sun. In other respects the ellipses may be quite different. To begin
with, they are not in the same plane, though it is most important to
notice, as we shall have to discuss more fully hereafter, that these
planes are not very much separated. The dimensions of the ellipses vary,
of course, for the different planets, and the periods that the planets
require for their several revolutions are also widely different in the
cases of the different bodies; for the greater the diameter of a
planet’s orbit, the longer is the time required for that planet to
complete a single journey round the sun. The sun presiding at the common
focus of the orbits while governing the planets by its attraction, at
the same time that it illumines them with its light and warms them by
its rays, gives the conception of the solar system.
Public-domain text, read in full here on John Shaqi.
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