Newton's Law. The attraction between any two bodies is proportional
to their masses and inversely proportional to the square of the
distance that separates them. This is the concentrated form of
Newton's law. If we apply this law to two such bodies as the
sun and the earth, we can state that the sun attracts the earth,
and the earth, the sun. Furthermore, this attractive power will
depend upon the distance between these two bodies. Newton showed
that if the distance between the sun and the earth were doubled the
attractive power would be reduced not to one-half, but to one-fourth;
if trebled, the attractive power would be reduced to one-ninth. If,
on the other hand, the distance were halved, the attractive power
would be not merely twice, but four times as great. And what is true
of the sun and the earth is true of every body in the firmament, and,
as Professor Rutherford has recently shown, even of the bodies which
make up the solar system of the almost infinitesimal atom.
This mysterious attractive power that one body possesses for another is
called "gravitation," and the law which regulates the motion of bodies
when under the spell of gravitation is the law of gravitation. This
law we owe to Newton's genius.
Newton's Predecessors. We can best appreciate Newton's momentous
contribution to astronomy by casting a rapid glance over the state
of the science prior to the seventeenth century--that is, prior to
Newton's day. Ptolemy's conception of the earth as the center of the
universe held undisputed sway throughout the middle ages. In those days
Ptolemy was in astronomy what Aristotle was in all other knowledge:
they were the gods who could not but be right. Did not Aristotle say
that earth, air, fire and water constituted the four elements? Did
not Ptolemy say that the earth was the center around which the sun
revolved? Why, then, question further? Questioning was a sacrilege.
Copernicus (1473-1543), however, did question. He studied much and
thought much. He devoted his whole life to the investigation of the
movements of the heavenly bodies. And he came to the conclusion that
Ptolemy and his followers in succeeding ages had expounded views which
were diametrically opposed to the truth. The sun, said Copernicus,
did not move at all, but the earth did; and far from the earth being
the center of the universe, it was but one of several planets revolving
around the sun.
The influence of the church, coupled with man's inclination to exalt
his own importance, strongly tended against the acceptance of such
heterodox views. Among the many hostile critics of the Copernican
system, Tycho Brahe (1546-1601) stands out pre-eminently. This
conscientious observer bitterly assailed Copernicus for his
suggestion that the earth moved, and developed a scheme of his own
which postulated that the planets revolved around the sun, and planets
and sun in turn revolved around the earth.
Public-domain text, read in full here on John Shaqi.
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