Astronomy: The Science of the Heavenly BodiesTodd, David P. (David Peck)
History
Astronomy: The Science of the Heavenly Bodies
Todd, David P. (David Peck)
Astronomy
Why the laws of Kepler should be true, Kepler himself was unable to say.
Nor could anyone else in that day answer these questions: (1) The
planets move in orbits that are elliptical not circular--why should they
move in an imperfect curve, rather than the perfect one in which it had
always been taught that they moved? (2) Why should our planet vary its
velocity at all, and travel now fast, now slow; especially why should
the speed so vary that the line of varying length, joining the planet to
the sun, always passes over areas proportional to the time of describing
them? And (3) Why should there be any definite relation of the distances
of planets from the sun to their times of revolution about him? Why
should it be exactly as the cube of one to the square of the other?
We must remember that the Copernican system itself was not yet, in the
beginning of the seventeenth century, accepted universally; and the
great minds of that period were most concerned in overturning the
erroneous theory of Ptolemy.
The next step in logical order was to find a basic explanation of the
planetary motions, and Descartes and his theory of vortices are worthy
of mention, among many unsuccessful attempts in this direction.
Descartes was a brilliant French philosopher and mathematician, but his
hypothesis of a multitude of whirlpools in the ether, while ingenious in
theory, was too vague and indefinite to account for the planetary
motions with any approach to the precision with which the laws of Kepler
represented them.
Another great astronomer whose labors helped immensely in preparing the
way for the signal discoveries that were soon to come was Huygens, a man
of versatility as natural philosopher, mechanician, and astronomical
observer. Huygens was born thirteen years before the death of Galileo,
and to the discovery of the laws of motion by the latter Huygens added
researches on the laws of action of centrifugal forces. Neither of them,
however, appeared to see the immediate bearing on the great general
problem of celestial motions in its true light, and it was reserved for
another generation, and an astronomer of another country, to make the
one fundamental discovery that should explain the whole by a single
simple law.
CHAPTER XIII
NEWTON AND MOTION
"How is it that you are able to make these great discoveries?" was once
asked of Sir Isaac Newton, _facile princeps_ of all philosophers, and
the discoverer of the great law of universal gravitation.
"By perpetually thinking about them," was Newton's terse and
illuminating reply. He had set for himself the definite problem of
Kepler's laws: why is it that they are true, and is there not some
single, general law that will embody all the circumstances of the
planetary motions?
Public-domain text, read in full here on John Shaqi.
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