Fragments of Science: A Series of Detached Essays, Addresses, and Reviews. V. 1-2Tyndall, John
Science
Fragments of Science: A Series of Detached Essays, Addresses, and Reviews. V. 1-2
Tyndall, John
Chemistry; Physics; Science
But it appears to me that through the whole of these researches an
oversight has run, the mere mention of which will show what caution is
essential in the operations of experimental philosophy; while an
experiments or two will make clear wherein the oversight consists.
Filling a brightly polished metal cube with boiling water, I determine
the quantity of heat emitted by two of the bright surfaces. As a
radiator of heat one of them far transcends the other. Both surfaces
appear to be metallic; what, then, is the cause of the observed
difference in their radiative power? Simply this: one of the surfaces
is coated with transparent gum, through which, of course, is seen the
metallic lustre behind; and this varnish, though so perfectly
transparent to luminous rays, is as opaque as pitch, or lamp-black, to
non-luminous ones. It is a powerful emitter of dark rays; it is also
a powerful absorber. While, therefore, at the present moment, it is
copiously pouring forth radiant heat itself, it does not allow a
single ray from the metal behind to pass through it. The varnish
then, and not the metal, is the real radiator.
Now Melloni, and Masson, and Courtépée experimented thus: they mixed
their powders and precipitates with gum-water, and laid them, by means
of a brush, upon the surfaces of a cube like this. True, they saw
their red powders red, their white ones white, and their black ones
black, but they saw these colours _through the coat of varnish which
surrounded every particle_. When, therefore, it was concluded that
colour had no influence on radiation, no chance had been given to it
of asserting its influence; when it was found that all chemical
precipitates radiated alike, it was the radiation from a varnish,
common to them all, which showed the observed constancy. Hundreds,
perhaps thousands, of experiments on radiant heat have been performed
in this way, by various enquirers, but the work will, I fear, have to
be done over again. I am not, indeed, acquainted with an instance in
which an oversight of so trivial a character has been committed by so
many able men in succession, vitiating so large an amounts of
otherwise excellent work. Basing our reasonings thus on demonstrated
facts, we arrive at the extremely probable conclusion that the
envelope of the particles, and not the particles themselves, was the
real radiator in the experiments just referred to. To reason thus,
and deduce their more or less probable consequences from experimental
facts, is an incessant exercise of the student of physical science.
But having thus followed, for a time, the light of reason alone
through a series of phenomena, and emerged from them with a purely
intellectual conclusion, our duty is to bring that conclusion to an
experimental test. In this way we fortify our science.
Public-domain text, read in full here on John Shaqi.
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