Inventions in the centuryDoolittle, William H. (William Henry)
History
Inventions in the century
Doolittle, William H. (William Henry)
Inventions
In 1825 Sturgeon of England bent a piece of wire into the shape of a
horse-shoe, insulated it with a coating of sealing wax, wound a fine
copper wire around it, thus making a helix, passed a galvanic current
through the helix, and thus invented the first practical electro-magnet.
But Sturgeon’s magnet was weak, and could not transmit power for more
than fifty feet. Already, however, it had been urged that Sturgeon’s
magnet could be used for telegraphic purposes, and a futile trial was
made. In the field during this decade also labored the German professors
Gauss and Weber, and Baron Schilling of Russia. In 1829 Prof. Barlow of
England published an article in which he summarised what had been done,
and scientifically demonstrated to his own satisfaction that an
electro-magnetic telegraph was impracticable, and his conclusion was
accepted by the scientific world as a fact. This was, however, not the
first nor the last time that scientific men had predicted
impracticabilities with electricity which afterwards blossomed into full
success. But even before Prof. Barlow was thus arriving at his
discouraging conclusion, Prof. Joseph Henry at the Albany Institute in
the State of New York had commenced experiments which resulted in the
complete and successful demonstration of the power of electro-magnetism
for not only telegraph purposes but for almost every advancement that
has since been had in this branch of physics. In March 1829 he exhibited
at his Institute the magnetic “spool” or “bobbin,” that form of coil
composed of tightly-wound, silk-covered wire which he had constructed,
and which since has been universally employed for nearly every
application of electro-magnetism, of induction, or of magneto-electrics.
And in the same year and in 1830 he produced those powerful magnets
through which the energy of a galvanic battery was used to lift hundreds
of tons of weight.
In view of all the facts now historically established, there can be no
doubt that previous to Henry’s experiments the means for developing
magnetism in soft iron were imperfectly understood, and that, as found
by Prof. Barlow, the electro-magnet which then existed was inapplicable
and impracticable for the transmission of power to a distance. Prof.
Henry was the first to prove that a galvanic battery of “intensity” must
be employed to project the current through a long conductor, and that a
magnet of one long wire must be used to receive this current; the first
to magnetise a piece of soft iron at a distance and call attention to
its applicability to the telegraph; the first to actually sound a bell
at a distance by means of the electro-magnet; and the first to show that
the principles he developed were applicable and necessary to the
practical operation of an effective telegraph system.
Public-domain text, read in full here on John Shaqi.
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