casual hook were the not very remote cause of the greatest advancements
and discoveries of modern civilization.
Yet the mystery is not yet entirely explained. In the study of
electricity we are accustomed to accept demonstrated facts as we find
them. When it is asked _how_ a battery acts, what produces the
mysterious current, the only answer that can now be given is that it is
_by the conversion of the energy of chemical affinity into the energy
of electrical vibrations_. Many mixtures produce heat. The
explanation can be no clearer than that for electricity. Electricity and
heat are both _forms of energy_, and, indeed, are so similar that
one is almost synonymous with the other. The enquiry into the original
sources of energy, latent but present always, will, when finally
answered, give us an insight into mysteries that we can only now infer
are reserved for that hereafter, here or elsewhere, which it is part of
our nature to believe in and hope for. The theory of electrical
vibrations is explained elsewhere as the only tenable one by which to
account for electrical action. One may also ask how fire burns, or,
rather, why a burning produces what we call "heat," and the actual
question cannot be answered. The action of fire in consuming fuel, and
the action of chemicals in consuming metals, are similar actions. They
each result in the production of a new form of energy, and of energy in
the form of vibrations. In the action of fire the vibrations are
irregular and spasmodic; in electricity they are controlled by a certain
rhythm or regularity. Between heat and electricity there is apparently
only this difference, and they are so similar, and one is so readily
converted into the other, that it is a current scientific theory that
one is only a modified form of the other. Many acute minds have
reflected upon the problem of how to convert the latent energy of coal
into the energy of electricity without the interposition of the steam
engine and machinery. There apparently exist reasons why the problem
will never be solved. There is no intelligence equal to answering the
question as to precisely where the heat came from, or how it came, that
instantly results upon the striking of a common match. It was
_evolved_ through friction. The means were necessary. Friction, or
its precise equivalent in energy, must occur. The result is as strange,
and in the same manner strange, as any of the phenomena of electricity.
Precisely here, in the beginning of the study of these phenomena, the
student should be warned that an attitude of wonder or of awe is not one
of enquiry. The demonstrations of electricity are startling chiefly for
three reasons: newness, silence, and inconceivable rapidity of action.
Let one hold a wire in one's hand six or eight inches from the end, and
then insert that end into the flame of a gas-jet. It is as old as human
experience that that part of the wire which is not in the flame finally
grows hot, and burns one's fingers.
Public-domain text, read in full here on John Shaqi.
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