A History of Science — Volume 1Williams, Henry Smith
History
A History of Science — Volume 1
Williams, Henry Smith
Science -- History
The main purpose of Hero in his preliminary thesis has to do with the
nature of matter, and recalls, therefore, the studies of Anaxagoras and
Democritus. Hero, however, approaches his subject from a purely material
or practical stand-point. He is an explicit champion of what we nowadays
call the molecular theory of matter. "Every body," he tells us, "is
composed of minute particles, between which are empty spaces less than
these particles of the body. It is, therefore, erroneous to say that
there is no vacuum except by the application of force, and that every
space is full either of air or water or some other substance. But in
proportion as any one of these particles recedes, some other follows
it and fills the vacant space; therefore there is no continuous vacuum,
except by the application of some force (like suction)--that is to
say, an absolute vacuum is never found, except as it is produced
artificially." Hero brings forward some thoroughly convincing proofs of
the thesis he is maintaining. "If there were no void places between the
particles of water," he says, "the rays of light could not penetrate the
water; moreover, another liquid, such as wine, could not spread itself
through the water, as it is observed to do, were the particles of water
absolutely continuous." The latter illustration is one the validity of
which appeals as forcibly to the physicists of to-day as it did to
Hero. The same is true of the argument drawn from the compressibility of
gases. Hero has evidently made a careful study of this subject. He
knows that an inverted tube full of air may be immersed in water without
becoming wet on the inside, proving that air is a physical substance;
but he knows also that this same air may be caused to expand to a much
greater bulk by the application of heat, or may, on the other hand,
be condensed by pressure, in which case, as he is well aware, the air
exerts force in the attempt to regain its normal bulk. But, he argues,
surely we are not to believe that the particles of air expand to
fill all the space when the bulk of air as a whole expands under the
influence of heat; nor can we conceive that the particles of normal air
are in actual contact, else we should not be able to compress the air.
Hence his conclusion, which, as we have seen, he makes general in its
application to all matter, that there are spaces, or, as he calls them,
vacua, between the particles that go to make up all substances, whether
liquid, solid, or gaseous.
Public-domain text, read in full here on John Shaqi.
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