soft metal, not necessarily at a distance.
We know that an electric current in one wire can induce a
transient current in a neighbouring wire, and the fact has been
utilised in the United States by Phelps and others to send
messages from moving trains. The signal currents are intermittent,
and when they are passed through a conductor on the train they
excite corresponding currents in a wire run along the track, which
can be interpreted by the hum they make in a telephone.
Experiments recently made by Mr. W. H. Preece for the Post Office
show that with currents of sufficient strength and proper
apparatus messages can be sent through the air for five miles or
more by this method of induction.
We come now to the submarine telegraph, which differs in many
respects from the overland telegraph. Obviously, since water and
moist earth is a conductor, a wire to convey an electric current
must be insulated if it is intended to lie at the bottom of the
sea or buried underground. The best materials for the purpose yet
discovered are gutta-percha and india-rubber, which are both
flexible and very good insulators.
The first submarine cable was laid across the Channel from Dover
to Calais in 1851, and consisted of a copper strand, coated with
gutta-percha, and protected from injury by an outer sheath of hemp
and iron wire. It is the general type of all the submarine cables
which have been deposited since then in every part of the world.
As a rule, the armour or sheathing is made heavier for shore water
than it is for the deep sea, but the electrical portion, or
"core," that is to say, the insulated conductor, is the same
throughout.
The first Atlantic cable was laid in 1858 by Cyrus W. Field and a
company of British capitalists, but it broke down, and it was not
until 1866 that a new and successful cable was laid to replace it.
Figure 51 represents various cross-sections of an Atlantic cable
deposited in 1894.
The inner star of twelve copper wires is the conductor, and the
black circle round it is the gutta-percha or insulator which keeps
the electricity from escaping into the water. The core in shallow
water is protected from the bites of teredoes by a brass tape, and
the envelope or armour consists of hemp and iron wire preserved
from corrosion by a covering of tape and a compound of mineral
pitch and sand.
Public-domain text, read in full here on John Shaqi.
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