The Earth's BeginningBall, Robert S. (Robert Stawell)
Science
The Earth's Beginning
Ball, Robert S. (Robert Stawell)
Krakatoa (Indonesia); Nebular hypothesis
The argument which we are here employing to deduce the nebulous origin
of our earth from the increase of temperature with increase in depth in
the earth’s crust must be cleared from an objection. It is necessary to
explain the matter fully, because it touches on a doctrine of very great
interest and importance.
That a rotating body should possess a quantity of energy in virtue of
its rotation will be familiar to anyone who has ever turned a grindstone
or watched the fly-wheel of an engine. A certain amount of work has to
be expended to set the heavy wheel into rotation, and when the machine
is called upon to do work it will yield up energy and its motion will
undergo a corresponding abatement. The heavy fly-wheel of the machine in
a rolling mill contains, in virtue of its motion, enough energy to
overcome the tremendous resistance of the materials submitted to it.
Once upon a time the earth revolved upon its axis in six hours, instead
of in the twenty-four hours which it now requires. At that time the
energy of the rotation must have been sixteenfold what it is at present.
This consideration shows that fifteen-sixteenths of the energy that the
earth originally possessed in its rotation has disappeared, and we want
to know what has become of it.
We are here entering upon a matter of some difficulty. It is connected
with that remarkable chapter in astronomy which describes the evolution
of the earth-moon system. The moon was originally a part of the earth,
for in very early times, when the earth was still in a plastic state, a
separation would seem to have taken place, by which a small piece broke
off to form the moon, which has been gradually revolving in an enlarging
orbit until it has attained the position it now occupies. A considerable
portion of the energy of the earth’s rotation has been applied to the
purpose of driving the moon out to its present path, but there is a
large remainder which cannot be so accounted for. It is well known that
the evolution of the moon has been a remarkable consequence of tidal
action. There are tides which sway to and fro in the waters on the
earth’s surface; there are tides in any molten or viscous matter that
the earth may contain, and there are even certain small tidal
displacements in the solid material of our globe. Tides of any kind will
generate friction, and friction produces heat, and the energy of the
earth’s rotation, which we have not been able to account for otherwise,
has been thus transformed into heat. Throughout the whole interior of
the earth heat has been produced by the tidal displacement of its parts.
The question therefore arises as to whether the internal heat of the
earth may not receive an adequate explanation from this tidal action,
which is certainly sufficient as to quantity. It is easy to calculate
what the total quantity of this tidal heat may have been. We know the
energy which the earth had when it rotated in six hours, and we know
Public-domain text, read in full here on John Shaqi.
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