though resisted by friction, these particles, instead of at once
transmitting the rotary motion of the cells on one side of them to the
cells on the other side, would at first, on account of the inertia of
the cells, begin to move themselves with a motion of translation
opposite to that of the primary current, and the motion would only
gradually be destroyed by the frictional resistance and the molecular
vortices on the other side made to revolve with their full velocity. A
similar effect, but in the opposite direction, would take place if the
primary current ceased, the vortices not stopping all at once if there
were any possibility of their continuing in motion. The imaginary
medium thus serves for the production of induced currents.
The mechanical forces between currents and magnets and between
currents and currents, as well as between magnets and currents, were
accounted for by the tension and pressure produced by the molecular
vortices. When currents are flowing in the same direction in
neighbouring conductors, the vortices in the space between them are
urged in opposite directions by the two currents, and remain almost at
rest; the lateral pressure exerted by those on the outside of the
conductors is thus unbalanced, and the conductors are pushed together
as though they attracted each other. When the currents flow in
opposite directions in parallel conductors, they conspire to give a
greater velocity to the vortices in the space between them, than to
those outside them, and are thus pushed apart by the pressure due to
the rotation of the vortices, as though they repelled each other. In a
similar way, the actions of magnets on conductors conveying currents
may be explained. The motion of a conductor across a series of lines
of magnetic force may squeeze together and lengthen the threads of
vortices in front, and thus increase their speed of rotation, while
the vortices behind will move more slowly because allowed to contract
axially and expand transversely. The velocity of the vortices thus
being greater on one side of the wire than the other, a current must
be induced in the wire. Thus the current induced by the motion of a
conductor in a magnetic field may be accounted for.
This conception of a medium was given by Maxwell, not as a theory, but
to show that it was possible to devise a _mechanism_ capable, in
imagination at least, of producing all the phenomena of electricity
and magnetism. "According to our theory, the particles which form the
partitions between the cells constitute the matter of electricity. The
motion of these particles constitutes an electric current; the
tangential force with which the particles are pressed by the matter of
the cells is electro-motive force; and the pressure of the particles
on each other corresponds to the tension or potential of the
electricity."
Public-domain text, read in full here on John Shaqi.
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