The electric light is now used for signalling and advertising by
night in a variety of ways. Incandescent lamps inside a
translucent balloon, and their light controlled by a current key,
as in a telegraph circuit, so as to give long and short flashes,
according to the Morse code, are employed in the army. Signals at
sea are also made by a set of red and white glow-lamps, which are
combined according to the code in use. The powerful arc lamp is
extremely useful as a "search light," especially on men of war and
fortifications, and it has also been tried in signalling by
projecting the beam on the clouds by way of a screen, and
eclipsing it according to a given code.
In 1879, Professor Graham Bell, the inventor of the speaking
telephone, and Mr Summer Tamter, brought out an ingenious
apparatus called the photophone, by which music and speech were
sent along a beam of light for several hundred yards. The action
of the photophone is based on the peculiar fact observed in 1873
by Mr J E Mayhew, that the electrical resistance of crystalline
selenium diminishes when a ray of light falls upon it. Figure 91
shows how Bell and Tamter utilised this property in the telephone.
A beam of sun or electric light, concentrated by a lens L, is
reflected by a thin mirror M, and after traversing another lens L,
travels to the parabolic reflector R, in the focus of which there
is a selenium resistance in circuit with a battery S and two
telephones T T'. Now, when a person speaks into the tube at the
back of the mirror M, the light is caused to vibrate with the
sounds, and a wavering beam falls on the selenium, changing its
resistance to the current. The strength of the current is thus
varied with the sonorous waves, and the words spoken by the
transmitter are heard in the telephones by the receiver. The
photophone is, however, more of a scientific toy than a practical
instrument.
Becquerel, the French chemist, found that two plates of silver
freshly coated with silver from a solution of chloride of silver
and plunged into water, form a voltaic cell which is sensitive to
light. This can be seen by connecting the plates through a
galvanometer, and allowing a ray of light to fall upon them. Other
combinations of the kind have been discovered, and Professor
Minchin, the Irish physicist, has used one of these cells to
measure the intensity of starlight.
Public-domain text, read in full here on John Shaqi.
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