Classics of modern science : $b (Copernicus to Pasteur) — John Shaqi
Classics of modern science : $b (Copernicus to Pasteur)
History
Classics of modern science : $b (Copernicus to Pasteur)
Science; Science -- History
_Robert Boyle, fourteenth child of the Earl of Cork, was born
January 25, 1627, in Munster, Ireland. He went to Eton, studied under
the rector of Stalbridge, and later traveled on the Continent under
private tutors. On the death of his father in 1644, he inherited the
manor at Stalbridge. At the age of eighteen he became associated with
the English scientific investigators at Oxford who later founded
the Royal Society, and engaged actively in physical experiments and
researches. The greatest of his achievements was his discovery of the
law of the compressibility of gases. He died December 30, 1691._
THE DISCOVERY OF THE LAW OF THE COMPRESSIBILITY OF GASES[8]
We took a long glass tube, which, by a dexterous hand and the help of a
lamp, was in such a manner crooked at the bottom, that the part turned
up was almost parallel to the rest of the tube, and the orifice of
this shorter leg of the syphon (if I may so call the whole instrument)
being hermetically sealed, the length of it was divided into inches
(each of which was subdivided into eight parts) by a straight list of
paper, which, containing those divisions, was carefully pasted all
along it. Then putting in as much quicksilver as served to fill the
arch or bended part of the syphon, that the mercury standing in a level
might reach in one leg to the bottom of the divided paper, and just
to the same height or horizontal line in the other, we took care, by
frequently inclining the tube, so that the air might freely pass from
one leg into the other by the sides of the mercury (we took, I say,
care), that the air at last included in the shorter cylinder should be
the same laxity with the rest of the air about it. This done, we began
to pour quicksilver into the longer leg of the syphon, which, by its
weight pressing up that in the shorter leg, did by degrees straighten
the included air; and continuing this pouring in of quicksilver till
the air in the shorter leg was by condensation reduced to take up but
half the space it possessed (I say possessed, not filled) before, we
cast our eyes upon the longer leg of the glass, upon which we likewise
pasted a slip of paper carefully divided into inches and parts, and we
observed, not without delight and satisfaction, that the quicksilver
in that longer part of the tube was 29 inches higher than the other.
Now that this observation does both very well agree with and confirm
our hypothesis, will be easily discerned by him that takes notice what
we teach: and Monsieur Pascal and our English friend’s [Mr. Townley’s]
experiments prove, that the greater the weight is that leans upon the
air, the more forcible is its endeavor of dilation, and consequently
its power of resistance (as other springs are stronger when bent by
greater weights). For this being considered, it will appear to agree
rarely well with the hypothesis, that as according to it the air in
that degree of density, and correspondent measure of resistance, to
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