The Romance of Modern Invention: Containing Interesting Descriptions in Non-technical Language of Wireless Telegraphy, Liquid Air, Modern Artillery, Submarines, Dirigible Torpedoes, Solar Motors, Airships, &c. &c.Williams, Archibald
Science
The Romance of Modern Invention: Containing Interesting Descriptions in Non-technical Language of Wireless Telegraphy, Liquid Air, Modern Artillery, Submarines, Dirigible Torpedoes, Solar Motors, Airships, &c. &c.
Williams, Archibald
Inventions
The pencil is at the junction of two small bars CC’, which are hinged
at their other end to the levers AA’. Any motion of the pencil is
transmitted by CC’ to AA’, and by them to the arms LL’, the
extremities of which, two very small brushes ZZ’, sweep along the
quadrants RR’. This is the first point to observe, that the position
of the pencil decides on which sections of the quadrants these little
brushes rest, and consequently how much current is to be sent to the
distant station. The quadrants are known technically as rheostats, or
current-controllers. Each quadrant is divided into 496 parts,
separated from each other by insulating materials, so that current can
pass from one to the other only by means of some connecting wire. In
our illustration only thirteen divisions are given, for the sake of
clearness. The dark lines represent the insulation. WW’ are the very
fine wire loops connecting each division of the quadrant with its
neighbours. If then a current from the battery B enters the rheostat
at division 1 it will have to pass through all these wires before it
can reach division 13. The current always enters at 1, but the point
of departure from the rheostat depends entirely upon the position of
the brushes Z or Z’. If Z happens to be on No. 6 the current will pass
through five loops of wire, along the arm L, and so through the main
wire to the receiving station; if on No. 13, through twelve loops.
[Illustration: THE TELAUTOGRAPH]
Before going any further we must have clear ideas on the subject of
electrical resistance, upon which the whole system of the telautograph
is built up. Electricity resembles water in its objection to flow
through small passages. It is much harder to pump water through a
half-inch pipe than through a one-inch pipe, and the longer the pipe
is, whatever its bore, the more work is required. So then, two things
affect resistance--_size_ of pipe or wire, and _length_ of pipe or
wire.
The wires WW’ are very fine, and offer very high resistance to a
current; so high that by the time the current from battery B has
passed through all the wire loops only one-fifteenth or less of the
original force is left to traverse the long-distance wire.
The rheostats act independently of one another. As the pencil moves
over the transmitting paper, a succession of currents of varying
intensity is sent off by each rheostat to the receiving station.
Public-domain text, read in full here on John Shaqi.
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