Michael Faraday: Third Edition, with PortraitGladstone, J. H. (John Hall)
Science
Michael Faraday: Third Edition, with Portrait
Gladstone, J. H. (John Hall)
Faraday, Michael, 1791-1867
Long ago there was a Portable Gas Company, which made oil-gas and
condensed it into a liquid. This liquid Faraday examined in 1824, and
he found the most important constituent of it to be a light volatile
oil, which he called bicarburet of hydrogen. The gas company, I
presume, came to an end; but what of the volatile liquid? Obtained
from coal-tar, and renamed Benzine or Benzol, it is now prepared on
a large scale, and used as a solvent in some of our industrial arts.
But other chemists have worked upon it, and torturing it with nitric
acid, they have produced nitrobenzol--a gift to the confectioner and
the perfumer. And by attacking this with reducing agents there was
called into existence the wondrous base aniline,--wondrous indeed when
we consider the transformations it underwent in the hands of Hofmann,
and the light it was made to throw on the internal structure of organic
compounds. Faraday used sometimes to pay a visit to the Royal College
of Chemistry, and revel in watching these marvellous reactions. But
aniline was of use to others besides the theoretical chemist. Tortured
by fresh appliances, this base gave highly-coloured bodies which it was
found possible to fix on cotton as well as woollen and silken fabrics,
and thence sprang up a large and novel branch of industry, while our
eyes were delighted with the rich hues of mauve and magenta, the Bleu
de Paris, and various other "aniline dyes."
Everyone who is at all acquainted with the habits of electricity knows
that the most impassable of obstacles is the air, while iron bolts
and bars only help it in its flight: yet, if an electrified body
be brought near another body, with this invisible barrier between
them, the electrical state of the second body is disturbed. Faraday
thought much over this question of "induction," as it is called,
and found himself greatly puzzled to comprehend how a body should
act where it is not. At length he satisfied himself by experiment
that the interposed obstacle is itself affected by the electricity,
and acquires an electro-polar state by which it modifies electric
action in its neighbourhood. The amount varies with the nature of the
substance, and Faraday estimated it for such dielectrics as sulphur,
shellac, or spermaceti, compared with air. He termed this new property
of matter "specific inductive capacity," and figured in his own mind
the play of the molecules as they propagated and for a while retained
the force. Now, these very recondite observations were opposed to
the philosophy of the day, and they were not received by some of the
leading electricians, especially of the Continent, while those who
first tried to extend his experiments blundered over the matter.
However, the present Professor Sir William Thomson, then a student at
Cambridge, showed that while Faraday's views were rigorously deducible
from Coulomb's theory, this discovery was a great advance in the
philosophy of the subject. When submarine telegraph wires had to be
Public-domain text, read in full here on John Shaqi.
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