Great Facts: A Popular History and Description of the Most Remarkable Inventions During the Present CenturyBakewell, Frederick C. (Frederick Collier)
History
Great Facts: A Popular History and Description of the Most Remarkable Inventions During the Present Century
Bakewell, Frederick C. (Frederick Collier)
Inventions
The excellent insulation obtained by means of gutta percha covered
wires has caused a return to the original plan of burying the wires in
trenches in the ground. The British and Submarine Telegraph Company
make all their communications by that means; the number of coated wires
required being enclosed in iron tubes, and laid in the ground along
the common roads. That plan is, however, attended with considerable
disadvantages. In the first place, the cost of the coated copper wire
is more than quadruple that of galvanized iron wire; and though copper,
compared with iron, offers only one-seventh part the resistance to the
transmission of electricity, yet the thin wire employed is scarcely
equal in conducting power to the galvanized iron wire usually supported
on posts. The quantity of electricity transmitted is therefore less,
and the comparative intensity of it is greater.
Another difficulty attending the use of insulated wires buried in the
ground arises from a very peculiar condition of electrical conduction,
that could scarcely have been anticipated. The wire, coated with
gutta percha, and surrounded externally with water or with moist
earth, becomes an elongated Leyden jar; the gutta percha representing
the glass, the wire the inside coating, and the water the conducting
surface outside. Thus, when electricity is transmitted through such a
medium, a portion of the charge is retained after connection with the
battery has been broken. This effect increases with the length of the
wire and the intensity of the current; and it materially interferes
with the working of many telegraph instruments. In some experiments
with the copying telegraph at the Gutta Percha Works in the City Road,
it was found that through a circuit of 50 miles of wire immersed in
water, the mark made by electro-chemical decomposition on paper had
a tendency to become continuous; so that instead of ceasing to mark,
when the varnish interrupted the current, a line was drawn continuously
on the paper, though the stronger marks where the current passed were
sufficient to make the writing legible. The retention of the charge
was also shown still more remarkably by the explosion of gunpowder by
the electricity retained in the wire half a minute after connection
with the battery had been broken. It is owing to the retention of the
electricity by the wire that the slowness with which the messages
through the Atlantic cable were transmitted is to be attributed, and
not to the length of the cable. The rate of one word a minute was the
average speed of transmission when the first messages were sent through
the wire. The effect of the _retardation_ of the electric current is
comparatively insignificant and were it not for the peculiar action of
the surrounding water, the messages might have been transmitted twelve
times faster than they were.
Public-domain text, read in full here on John Shaqi.
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