On the Connexion of the Physical SciencesSomerville, Mary
Science
On the Connexion of the Physical Sciences
Somerville, Mary
Physical sciences; Science
Newton also ascertained that a body projected (N. 20) in space (N. 21)
will move in a conic section (N. 22), if attracted by a force proceeding
from a fixed point, with an intensity inversely as the square of the
distance (N. 23); but that any deviation from that law will cause it to
move in a curve of a different nature. Kepler found, by direct
observation, that the planets describe ellipses (N. 24), or oval paths,
round the sun. Later observations show that comets also move in conic
sections. It consequently follows that the sun attracts all the planets
and comets inversely as the square of their distances from its centre;
the sun, therefore, is the centre of a force extending indefinitely in
space, and including all the bodies of the system in its action.
Kepler also deduced from observation that the squares of the periodic
times (N. 25) of the planets, or the times of their revolutions round
the sun, are proportional to the cubes of their mean distances from its
centre (N. 26). Hence the intensity of gravitation of all the bodies
towards the sun is the same at equal distances. Consequently,
gravitation is proportional to the masses (N. 27); for, if the planets
and comets were at equal distances from the sun, and left to the effects
of gravity, they would arrive at his surface at the same time (N. 28).
The satellites also gravitate to their primaries (N. 29) according to
the same law that their primaries do to the sun. Thus, by the law of
action and reaction, each body is itself the centre of an attractive
force extending indefinitely in space, causing all the mutual
disturbances which render the celestial motions so complicated, and
their investigation so difficult.
The gravitation of matter directed to a centre, and attracting directly
as the mass and inversely as the square of the distance, does not belong
to it when considered in mass only; particle acts on particle according
to the same law when at sensible distances from each other. If the sun
acted on the centre of the earth, without attracting each of its
particles, the tides would be very much greater than they now are, and
would also, in other respects, be very different. The gravitation of the
earth to the sun results from the gravitation of all its particles,
which, in their turn, attract the sun in the ratio of their respective
masses. There is a reciprocal action likewise between the earth and
every particle at its surface. The earth and a feather mutually attract
each other in the proportion of the mass of the earth to the mass of the
feather. Were this not the case, and were any portion of the earth,
however small, to attract another portion, and not be itself attracted,
the centre of gravity of the earth would be moved in space by this
action, which is impossible.
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