On Molecular and Microscopic Science, Volume 1 (of 2)Somerville, Mary
History
On Molecular and Microscopic Science, Volume 1 (of 2)
Somerville, Mary
Matter -- Constitution; Microscopy; Natural history
Thus it is evident that the tension of the ether in these experiments
was continually diminished by the 0·2 of an inch, consequently its
quantity was continually diminished by its 1/150th part, accompanied by
a corresponding decrease in the deflections of the needle. The final
result of this process showed that the radiation of an amount of vapour
in the tube possessing a tension of less than the thousand millionth of
an atmosphere is perfectly measurable. The temperature imparted to this
infinitesimal quantity of matter did not exceed 0·75 of a centesimal
degree. The molecules which constituted this intensely attenuated
vapour, though inconceivable, had as true an existence as the suns which
constitute the star-dust of the nebulæ. ‘A platinum wire raised to
whiteness in a vacuum by an electric current, becomes comparatively cold
in a second after the current has been interrupted; yet that wire, while
ignited, was the repository of an immense amount of mechanical force.
What has become of this? It has been conveyed away by a substance so
attenuated that its very existence must for ever remain an hypothesis.
But here is matter that we can weigh, measure, taste, and smell; that we
can reduce to a tenuity which, though expressible by numbers, defeats
the imagination to conceive of it. Still we see it competent to arrest
and originate quantities of force which on comparison with its own mass
are almost infinite, a small fraction of this force causing the double
needle of the galvanometer to swing through considerable arcs. When we
find ponderable matter producing these effects, we have less difficulty
in investing the luminiferous ether with those mechanical properties
which have long excited the interest and wonder of all who have
reflected upon the circumstances involved in the undulatory theory of
light.’
The dynamical principle was next applied to determine the radiation of a
gas through itself; or through any other gas having the same period of
vibration. For that purpose Mr. Tyndall made use of the hollow cylinder
49·4 inches long already mentioned, closed at both ends by plates of
rock-salt, and divided internally into two chambers by a movable plate
of the same substance. All sources of heat being dispensed with, the
chamber next the voltaic pile contained the gas which was to act as an
absorber, and the more remote as a radiator.
Public-domain text, read in full here on John Shaqi.
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