History for ready reference, Volume 2, El Dorado to GreavesLarned, J. N. (Josephus Nelson)
History
History for ready reference, Volume 2, El Dorado to Greaves
Larned, J. N. (Josephus Nelson)
History -- Dictionaries
"The European philosophers kept on groping. At the end of five
years [after Oersted's discovery], one of them reached an
obstacle which he made up his mind was so entirely
insurmountable, that it rendered the electric telegraph an
impossibility for all future time. This was [1825] Mr. Peter
Barlow, fellow of the Royal Society, who had encountered the
question whether the lengthening of the conducting wire would
produce any effect in diminishing the energy of the current
transmitted, and had undertaken to resolve the problem. ... 'I
found [he said] such a considerable diminution with only 200
feet of wire as at once to convince me of the impracticability
of the scheme.' ... The year following the announcement of
Barlow's conclusions, a young graduate of the Albany (N. Y.)
Academy--by name Joseph Henry--was appointed to the
professorship of mathematics in that institution. Henry there
began the series of scientific investigations which is now
historic. ... Up to that time, electro-magnets had been made
with a single coil of naked wire wound spirally around the
core, with large intervals between the strands. The core was
insulated as a whole: the wire was not insulated at all.
Professor Schweigger, who had previously invented the
multiplying galvanometer, had covered his wires with silk.
Henry followed this idea, and, instead of a single coil of
wire, used several. ... Barlow had said that the gentle
current of the galvanic battery became so weakened, after
traversing 200 feet of wire, that it was idle to consider the
possibility of making it pass over even a mile of conductor
and then affect a magnet.
{773}
Henry's reply was to point out that the trouble lay in the way
Barlow's magnet was made. ... Make the magnet so that the
diminished current will exercise its full effect. Instead of
using one short coil, through which the current can easily
slip, and do nothing, make a coil of many turns; that
increases the magnetic field: make it of fine wire, and of
higher resistance. And then, to prove the truth of his
discovery, Henry put up the first electro-magnetic telegraph
ever constructed. In the academy at Albany, in 1831, he
suspended 1,060 feet of bell-wire, with a battery at one end
and one of his magnets at the other; and he made the magnet
attract and release its armature. The armature struck a bell,
and so made the signals. Annihilating distance in this way was
only one part of Henry's discovery. He had also found, that,
to obtain the greatest dynamic effect close at hand, the
battery should be composed of a very few cells of large
surface, combined with a coil or coils of short coarse wire
around the magnet,--conditions just the reverse of those
necessary when the magnet was to be worked at a distance. Now,
he argued, suppose the magnet with the coarse short coil, and
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