It may well be doubted whether any joy experienced by mortals is more
genuine than that which rewards the successful searcher after natural
truths. Every science-worker, be his efforts ever so humble, will be
able to sympathise with the enthusiastic delight of Kepler when at
last, after years of toil, the glorious light broke forth, and that
which he considered to be the greatest of his astonishing laws first
dawned upon him. Kepler rightly judged that the number of days which
a planet required to perform its voyage round the sun must be
connected in some manner with the distance from the planet to the
sun; that is to say, with the radius of the planet's orbit, inasmuch
as we may for our present object regard the planet's orbit as
circular.
Here, again, in his search for the unknown law, Kepler had no
accurate dynamical principles to guide his steps. Of course, we now
know not only what the connection between the planet's distance and
the planet's periodic time actually is, but we also know that it is a
necessary consequence of the law of universal gravitation. Kepler,
it is true, was not without certain surmises on the subject, but they
were of the most fanciful description. His notions of the planets,
accurate as they were in certain important respects, were mixed up
with vague ideas as to the properties of metals and the geometrical
relations of the regular solids. Above all, his reasoning was
penetrated by the supposed astrological influences of the stars and
their significant relation to human fate. Under the influence of
such a farrago of notions, Kepler resolved to make all sorts of
trials in his search for the connection between the distance of a
planet from the sun and the time in which the revolution of that
planet was accomplished.
It was quite easily demonstrated that the greater the distance of the
planet from the sun the longer was the time required for its
journey. It might have been thought that the time would be directly
proportional to the distance. It was, however, easy to show that
this supposition did not agree with the fact. Finding that this
simple relation would not do, Kepler undertook a vast series of
calculations to find out the true method of expressing the
connection. At last, after many vain attempts, he found, to his
indescribable joy, that the square of the time in which a planet
revolves around the sun was proportional to the cube of the average
distance of the planet from that body.
Public-domain text, read in full here on John Shaqi.
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