The marvellous development of telegraphy within the last generation has
called into existence a great variety of receiving instruments, each
admirable in its way. The Hughes, or the Stock Exchange instruments, for
instance, print the message in Roman characters; the sounders strike it
out on stops or bells of different tone; the needle instruments indicate
it by oscillations of their needles; the Morse daubs it in ink on paper,
or embosses it by a hard style; while Bain's electro-chemical receiver
stains it on chemically prepared paper. The Meyer-Baudot and the
Quadruple receive four messages at once and record them separately;
while the harmonic telegraph of Elisha Gray can receive as many as
eight simultaneously, by means of notes excited by the current in eight
separate tuning forks.
But all these instruments have one great drawback for delicate work,
and, however suitable they may be for land lines, they are next to
useless for long cables. They require a certain definite strength of
current to work them, whatever it may be, and in general it is
very considerable. Most of the moving parts of the mechanism are
comparatively heavy, and unless the current is of the proper strength to
move them, the instrument is dumb, while in Bain's the solution requires
a certain power of current to decompose it and leave the stain.
In overland lines the current traverses the wire suddenly, like a
bullet, and at its full strength, so that if the current be sufficiently
strong these instruments will be worked at once, and no time will be
lost. But it is quite different on submarine cables. There the current
is slow and varying. It travels along the copper wire in the form of
a wave or undulation, and is received feebly at first, then gradually
rising to its maximum strength, and finally dying away again as slowly
as it rose. In the French Atlantic cable no current can be detected
by the most delicate galvanoscope at America for the first tenth of
a second after it has been put on at Brest; and it takes about half
a second for the received current to reach its maximum value. This
is owing to the phenomenon of induction, very important in submarine
cables, but almost entirely absent in land lines. In submarine cables,
as is well known, the copper wire which conveys the current is insulated
from the sea-water by an envelope, usually of gutta-percha. Now the
electricity sent into this wire INDUCES electricity of an opposite kind
to itself in the sea-water outside, and the attraction set up between
these two kinds 'holds back' the current in the wire, and retards its
passage to the receiving station.
Public-domain text, read in full here on John Shaqi.
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