Scientific American Supplement, No. 711, August 17, 1889Various
History
Scientific American Supplement, No. 711, August 17, 1889
Various
Science -- Periodicals
Modern views would seem to point that through a study of magnetic
phenomena we may take a feeble hold upon the universal ether.
Magnetism is an action or condition of that medium, and it may be that
electrical actions are the expression of molecular disturbances
brought about by ether strains or interferences. The close relations
which are shown to exist between magnetism and light tend to
strengthen such views. Indeed, it would not be too much to expect that
if the mechanics of the ether are ever worked out, we should find the
relation between sensible heat and electric currents to be as close as
that of light to magnetism, perhaps find ultimately the forms of
matter, the elements and compounds to be the more complex
manifestations of the universal medium--aggregations in stable
equilibrium. It is a difficult conception, I confess, and a most
shadowy and imperfect one, yet facts and inferences which favor such
views are not wanting.
Our science of electricity seems almost to be in the same condition
that chemistry was before the work of Lavoisier had shed its light on
chemical theory. Our store of facts is daily increasing, and
apparently disconnected phenomena are being brought into harmonious
relation. Perhaps the edifice of complete theory will not be more than
begun in our time, perhaps the building process will be a very gradual
one, but I cannot refrain from the conviction that the intelligence of
man will, if it has time, continue its advance until such a structure
exists.
I have been led to make these general allusions to electrical theory
in order to emphasize the fact that in the present paper no unraveling
of the mystery is to be attempted, but rather the presentation of some
few considerations upon a subject of absorbing interest.
The conception of Faraday in regard to the existence of lines of
magnetic force representing directions of magnetic strain or tension
in a medium has not only lost nothing of its usefulness up to the
present time, but has continually been of great service in the
understanding of magnetic phenomena. We need spend no time in showing,
as Faraday and others have done, that these lines are always closed
circuits, polarized so that the direction of the lines cannot be
reversed without reversal of the actions. Nor need we take time to
show that in any medium the lines are mutually repellent laterally if
of the same direction of polarization. Opposing this tendency to
separation or lateral diffusion of magnetic force is the strong
apparent tendency of the lines to shorten themselves in any medium.
These actions are distributed by the presentation of a better medium,
as iron instead of space or air. Lines of force will move into the
better medium, having apparently the constant tendency to diminish the
resistance in their paths.
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