At Woolsthorpe, in the year 1666, Newton's attention appears to have
been concentrated upon the subject of gravitation. Whatever may be
the extent to which we accept the more or less mythical story as to
how the fall of an apple first directed the attention of the
philosopher to the fact that gravitation must extend through space,
it seems, at all events, certain that this is an excellent
illustration of the line of reasoning which he followed. He argued
in this way. The earth attracts the apple; it would do so, no matter
how high might be the tree from which that apple fell. It would then
seem to follow that this power which resides in the earth by which it
can draw all external bodies towards it, extends far beyond the
altitude of the loftiest tree. Indeed, we seem to find no limit to
it. At the greatest elevation that has ever been attained, the
attractive power of the earth is still exerted, and though we cannot
by any actual experiment reach an altitude more than a few miles
above the earth, yet it is certain that gravitation would extend to
elevations far greater. It is plain, thought Newton, that an apple
let fall from a point a hundred miles above this earth's surface,
would be drawn down by the attraction, and would continually gather
fresh velocity until it reached the ground. From a hundred miles it
was natural to think of what would happen at a thousand miles, or at
hundreds of thousands of miles. No doubt the intensity of the
attraction becomes weaker with every increase in the altitude, but
that action would still exist to some extent, however lofty might be
the elevation which had been attained.
It then occurred to Newton, that though the moon is at a distance of
two hundred and forty thousand miles from the earth, yet the
attractive power of the earth must extend to the moon. He was
particularly led to think of the moon in this connection, not only
because the moon is so much closer to the earth than are any other
celestial bodies, but also because the moon is an appendage to the
earth, always revolving around it. The moon is certainly attracted
to the earth, and yet the moon does not fall down; how is this to be
accounted for? The explanation was to be found in the character of
the moon's present motion. If the moon were left for a moment at
rest, there can be no doubt that the attraction of the earth would
begin to draw the lunar globe in towards our globe. In the course of
a few days our satellite would come down on the earth with a most
fearful crash. This catastrophe is averted by the circumstance that
the moon has a movement of revolution around the earth. Newton was
able to calculate from the known laws of mechanics, which he had
himself been mainly instrumental in discovering, what the attractive
power of the earth must be, so that the moon shall move precisely as
we find it to move. It then appeared that the very power which makes
an apple fall at the earth's surface is the power which guides the
moon in its orbit.
Public-domain text, read in full here on John Shaqi.
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