Letters on Astronomy: in which the Elements of the Science are Familiarly Explained in Connection with Biographical Sketches of the Most Eminent AstronomersOlmsted, Denison
Science
Letters on Astronomy: in which the Elements of the Science are Familiarly Explained in Connection with Biographical Sketches of the Most Eminent Astronomers
Olmsted, Denison
Astronomy
When we reflect that geometry is a science built upon self-evident
truths, and that all its conclusions are the result of pure
demonstration, and can admit of no controversy; when we further reflect,
that experimental evidence rests on the testimony of the senses, and we
infer a thing to be true because we actually see it to be so; it shows
us the extreme bigotry, the darkness visible, that beclouded the human
intellect, when it not only refused to admit conclusions first
established by pure geometrical reasoning, and afterwards confirmed by
experiments exhibited in the light of day, but instituted the most cruel
persecutions against the great philosopher who first proclaimed these
truths. Galileo was hated and persecuted by two distinct bodies of men,
both possessing great influence in their respective spheres,--the one
consisting of the learned doctors of philosophy, who did nothing more,
from age to age, than reiterate the doctrines of Aristotle, and were
consequently alarmed at the promulgation of principles subversive of
those doctrines; the other consisting of the Romish priesthood,
comprising the terrible Inquisition, who denounced the truths taught by
Galileo, as inconsistent with certain declarations of the Holy
Scriptures. We shall see, as we advance, what a fearful warfare he had
to wage against these combined powers of darkness.
Aristotle had asserted, that, if two different weights of the same
material were let fall from the same height, the heavier one would reach
the ground sooner than the other, in proportion as it was more weighty.
For example: if a ten-pound leaden weight and a one-pound were let fall
from a given height at the same instant, the former would reach the
ground ten times as soon as the latter. No one thought of making the
trial, but it was deemed sufficient that Aristotle had said so; and
accordingly this assertion had long been received as an axiom in the
science of motion. Galileo ventured to appeal from the authority of
Aristotle to that of his own senses, and maintained, that both weights
would fall in the same time. The learned doctors ridiculed the idea.
Galileo tried the experiment in their presence, by letting fall, at the
same instant, large and small weights from the top of the celebrated
leaning tower of Pisa. Yet, with the sound of the two weights clicking
upon the pavement at the same moment, they still maintained that the
ten-pound weight would reach the ground in one tenth part of the time of
the other, because they could quote the chapter and verse of Aristotle
where the fact was asserted. Wearied and disgusted with the malice and
folly of these Aristotelian philosophers, Galileo, at the age of
twenty-eight, resigned his situation in the university of Pisa, and
removed to Padua, in the university of which place he was elected
professor of mathematics. Up to this period, Galileo had devoted himself
chiefly to the studies of the laws of motion, and the other branches of
mechanical philosophy.
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