Masters of Space: Morse and the Telegraph; Thompson and the Cable; Bell and the Telephone; Marconi and the Wireless Telegraph; Carty and the Wireless Telephone — John Shaqi
Masters of Space: Morse and the Telegraph; Thompson and the Cable; Bell and the Telephone; Marconi and the Wireless Telegraph; Carty and the Wireless TelephoneTowers, Walter Kellogg
History
Masters of Space: Morse and the Telegraph; Thompson and the Cable; Bell and the Telephone; Marconi and the Wireless Telegraph; Carty and the Wireless Telephone
Towers, Walter Kellogg
Bell, Alexander Graham, 1847-1922; Carty, John J. (John Joseph), 1861-1932; Kelvin, William Thomson, Baron, 1824-1907; Marconi, Guglielmo, marchese, 1874-1937; Morse, Samuel Finley Breese, 1791-1872; Radio; Telegraph; Telegraph, Wireless; Telephone
The electro-magnet which actuated the receiving instrument in the
crude set in use by Morse in 1835 had but a few turns of thick
wire. Professor Henry, by his experiments five years earlier, had
demonstrated that many turns of small wire made the electro-magnet far
more sensitive. Morse made this improvement in his own apparatus. In
1832 Henry had devised a telegraph very similar to that of Morse by
which he signaled through a mile of wire. His receiving apparatus
was an electro-magnet, the armature of which struck a bell. Thus the
messages were read by sound, instead of being recorded on a moving
strip of paper as by Morse's system. While Henry was possibly the
ablest of American electricians at that time, he devoted himself
entirely to science and made no effort to put his devices to practical
use. Neither did he endeavor to profit by his inventions, for he
secured no patents upon them.
Professor Henry realized, in common with Morse and others, that if
the current were to be conducted over long wires for considerable
distances it would become so weak that it would not operate a
receiver. Henry avoided this difficulty by the invention of what is
known as the relay. At a distance where the current has become
weak because of the resistance of the wire and losses due to faulty
insulation, it will still operate a delicate electro-magnet with a
very light armature so arranged as to open and close a local circuit
provided with suitable batteries. Thus the recording instrument may
be placed on the local circuit and as the local circuit an opened and
closed in unison with the main circuit, the receiver can be operated.
It was the relay which made it possible to extend telegraph lines to
a considerable distance. It is not altogether clear whether Morse
adopted Henry's relay or devised it for himself. It is believed,
however, that Professor Henry explained the relay to Professor Gale,
who in turn placed it before his partner, Morse.
By 1837 Morse had completed a model, had improved his apparatus, had
secured stronger batteries and longer wires, and mastered the use
of the relay. It was in this year that the House of Representatives
ordered the Secretary of the Treasury to investigate the feasibility
of establishing a system of telegraphs. This action urged Morse to
complete his apparatus and place it before the Government. He was
still handicapped by lack of money, lack of scientific knowledge, and
the difficulty of securing necessary materials and devices. To-day the
experimenter may buy wire, springs, insulators, batteries, and almost
anything that might be useful. Morse, with scanty funds and limited
time, had to search for his materials and puzzle out the way to make
each part for himself with such crude tools as he had available. Need
we wonder that his progress was slow? Instead we should wonder that,
despite all discouragements and handicaps, he clung to his great idea
and labored on.
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