Signalling across space without wires: being a description of the work of Hertz & his successorsLodge, Oliver, Sir
Science
Signalling across space without wires: being a description of the work of Hertz & his successors
Lodge, Oliver, Sir
Electric waves; Telegraph, Wireless
An electric bell thus close to the tube is, indeed, not the best
vibrator; clockwork might do better, because the bell contains in
itself a jerky current, which produces one effect, and a mechanical
vibration, which produces an opposite effect, hence the spot of light
can hardly keep still. By lessening the vibration--say, by detaching
the bell from actual contact with the board, the electric jerks of
the intermittent current drive the spot violently up the scale;
mechanical tremor brings it down again. It must be clearly understood
that electric jerks, due to the make-and-break of an ordinary current,
are quite adequate to electrically stimulate a coherer in their
neighbourhood. It is constantly to be noticed that a coherer responds
best to excessively short sparks of a certain sharp quality.
You observe that the eye on this hypothesis is, in electrometer
language, heterostatic. The energy of vision is supplied by the
organism; the light only pulls a trigger. Whereas the organ of hearing
is idiostatic. I might draw further analogies between this arrangement
and the eye, _e.g._, about the effect of blows or disorder causing
irregular conduction and stimulation, of the galvanometer in the one
instrument, of the brain cells in the other.
A handy portable exciter of electric waves is one of the ordinary hand
electric gas-lighters, containing a small revolving doubler--_i.e._, an
inductive or replenishing machine. A coherer can feel a gas-lighter
across a lecture theatre. Minchin often used them for stimulating his
impulsion cells. I find that when held near they act a little even
when no ordinary spark occurs, plainly because of the little incipient
sparks at the brushes or tinfoil contacts inside. A Voss machine acts
similarly, giving a small deflection while working up before it sparks:
indeed, these small sparks are often more effective than bigger ones.
_Demonstration of Ordinary Holtz Machine Sparks not exciting Tube:
except by help of a polished knob._
And notice here that our model eye has a well-defined range of vision.
It cannot see waves too long for it. The powerful disturbance caused
by the violent flashes of a Holtz or Wimshurst or Voss machine it is
blind to. The loud sparks have no effect on it. They are like infra-red
radiation to the eye. If the knobs of the machine are well polished
the coherer begins to respond again, evidently by reason of some high
harmonics, due to vibrations in the terminal rods; and these are the
vibrations to which it responds when excited simply by an induction
coil. The coil should have knobs instead of points. Sparks from
points or dirty knobs hardly excite the coherer at all. But hold a
well-polished sphere or third knob between even the dirty knobs of a
Voss machine, and the coherer responds at once to the surgings got up
in that clean sphere.
Public-domain text, read in full here on John Shaqi.
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