It may be well to revert here to the experiment we made of putting
a cubic foot of rock, of specific gravity 13·734 in the scale of a
balance at the centre of the earth, where we saw that it could not
depress the scale one hair-breadth, and make the same experiment by
placing a cubic foot of rock of 8·8 specific gravity in the same scale,
at what we have called the region of greatest density of the earth,
that is, at 817 miles from its surface. Here, also, we shall find that
the scale is not depressed for the very same reason as in the former
case, that is because it had nowhere to be depressed to; and it might
be argued that for the same reasons advanced formerly there can be no
matter at that place, but the cases are entirely different. In the
first case, there is nearly the whole mass of the earth drawing the
matter away from the centre were it at liberty to move; whereas, in
the second case, the meeting of the two halves of the shell, at the
region where there is the greatest mass of matter, is also the meeting
place of the action of attraction in its greatest force; the place to
which matter is attracted from all sides, remains stationary, and it
is held there both by attraction and weight of superincumbent matter
or gravitation. The attraction of the whole earth acts as if it were
concentrated at its centre, but that is for external bodies. That kind
of attraction on the inner half of the shell would be far inferior to
that outwards of the outer half, owing to its greater distance and
conflicting nature, and would perturb, as we have said, but not do
away with it. The same could not occur at the centre, because it is
not the centre of the mass, that is, it is not the place where the
greatest quantity of matter existed originally, or is now to be found,
and consequently never was, nor can now ever be, the actual centre of
interior attraction.
Public-domain text, read in full here on John Shaqi.
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