Faraday, Michael, 1791-1867; Physicists -- Great Britain -- Biography
Faraday's theoretic views on this subject have not received general
acceptance, but they drove him to experiment, and experiment with him
was always prolific of results. By suitable arrangements he placed a
metallic sphere in the middle of a large hollow sphere, leaving a space
of something more than half an inch between them. The interior
sphere was insulated, the external one uninsulated. To the former he
communicated a definite charge of electricity. It acted by induction
upon the concave surface of the latter, and he examined how this act of
induction was effected by placing insulators of various kinds between
the two spheres. He tried gases, liquids, and solids, but the solids
alone gave him positive results. He constructed two instruments of the
foregoing description, equal in size and similar in form. The interior
sphere of each communicated with the external air by a brass stem ending
in a knob. The apparatus was virtually a Leyden jar, the two coatings of
which were the two spheres, with a thick and variable insulator between
them. The amount of charge in each jar was determined by bringing
a proof-plane into contact with its knob and measuring by a torsion
balance the charge taken away. He first charged one of his instruments,
and then dividing the charge with the other, found that when air
intervened in both cases the charge was equally divided. But when
shellac, sulphur, or spermaceti was interposed between the two spheres
of one jar, while air occupied this interval in the other, then he found
that the instrument occupied by the 'solid dielectric' takes more than
half the original charge. A portion of the charge was absorbed by
the dielectric itself. The electricity took time to penetrate the
dielectric. Immediately after the discharge of the apparatus, no trace
of electricity was found upon its knob. But after a time electricity was
found there, the charge having gradually returned from the dielectric
in which it had been lodged. Different insulators possess this power
of permitting the charge to enter them in different degrees. Faraday
figured their particles as polarized, and he concluded that the force of
induction is propagated from particle to particle of the dielectric from
the inner sphere to the outer one. This power of propagation possessed
by insulators he called their 'Specific Inductive Capacity.'
Public-domain text, read in full here on John Shaqi.
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