Clerk Maxwell's electromagnetic theoryLorentz, H. A. (Hendrik Antoon)
Science
Clerk Maxwell's electromagnetic theory
Lorentz, H. A. (Hendrik Antoon)
Electromagnetic theory; Maxwell, James Clerk, 1831-1879
Maxwell relieved us of all these doubts and uncertainties. By his bold
assumption that in a non-conducting body, in a dielectric as he called
it, there can exist what is truly a motion of electricity, and that, if
this motion, the dielectric displacement, is taken into account,
electricity can always be said to move as an incompressible fluid, the
open currents and the longitudinal vibrations that were closely allied
to them were made to vanish from the scene. Further, the optical
behaviour of non-conducting substances was shown to depend on two
properties, each characterized by a physical constant, the dielectric
constant, or Faraday's specific inductive capacity, and the magnetic
permeability. It is true that the way in which these constants are
determined by the constitution of matter, by the structure of molecules
and atoms, was not considered and that, so far, they were no less
inaccessible than the ethereal density and elasticity of the old
theories, but there was this important difference that, whereas these
latter constants had no connexion with any other phenomena, the
dielectric constant and the magnetic permeability can be measured by
means of statical experiments, so that, at least in certain simple
cases, we can deduce the optical properties of a substance from wholly
different data. It was found that in the new theory the treatment of the
reflexion problem was much like that in the old one; one is led to the
two formulae which I recalled to you, if one supposes either the
dielectric constant or the magnetic permeability to be the same in the
two substances. The choice between these alternative suppositions again
entailed a decision concerning the direction of the vibrations with
respect to the plane of polarization, but the choice was not doubtful
now, as it had been ascertained experimentally that the ratios between
the magnetic permeabilities of transparent substances are little
different from unity, whereas the dielectric constants diverge to a much
greater extent. It was therefore at once established that the electric
vibrations are normal to the plane of polarization. This implies that
the magnetic vibrations are in that plane, so that, in a sense, the
contending parties both had their will.
In the case of crystals it became certain that their double refraction
is due to an inequality of the dielectric properties in different
directions.
Public-domain text, read in full here on John Shaqi.
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