The Earth's BeginningBall, Robert S. (Robert Stawell)
Science
The Earth's Beginning
Ball, Robert S. (Robert Stawell)
Krakatoa (Indonesia); Nebular hypothesis
We represent the movement in the adjoining figure. If A is started off
with an initial velocity in the direction A T, the attraction of S will,
however, make itself felt, even though A cannot move directly towards S.
The body will not be allowed to travel along A T; it will be forced to
swerve by the attraction of S; it will move from P to Q, gradually
getting nearer to S. To enter into the details of the movement would
require rather more calculation than it would be convenient to give
here. Even though S is much more massive than A, we may suppose that the
path which A follows is so great that the diameter of the globe S is
quite insignificant in comparison with the diameter of the orbit which
the smaller body describes. We shall thus regard both A and S as
particles, and Kepler’s well-known law, to which we so often refer,
tells us that A will revolve around S in that beautiful figure which the
mathematician calls an ellipse. For our present purpose we are
particularly to observe that the movement is restricted to a plane. The
plane in which A moves depends entirely on the direction in which it was
first started. The body will always continue to move in the same plane
as that in which its motion originally commenced. This plane is
determined by the point S and the straight line in which A was
originally projected. It is essential for our argument to note that A
will never swerve from its plane so long as there are not other forces
in action beside those arising from the mutual attractions of A and S.
The ordinary perturbations of one body by the action of others need not
here concern us.
The case we have supposed will, of course, include that of the movement
of a planet round the sun. The planet is small and represented by the
body A, which revolves round the great body S, which stands for the sun.
However the motion of the planet may actually have originated, it moves
just as if it had received a certain initial impulse, in consequence of
which it started into motion, and thus defined a certain plane, to which
for all time its motion would be restricted.
Public-domain text, read in full here on John Shaqi.
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