Etherial waves can therefore be actually produced by direct electrical
means. I discharge here a jar, and the room is for an instant filled
with light. With light, I say, though you can see nothing. You can
see and hear the spark indeed--but that is a mere secondary
disturbance we can for the present ignore--I do not mean any secondary
disturbance. I mean the true etherial waves emitted by the electric
oscillation going on in the neighbourhood of the recoiling dielectric.
You pull aside the prong of a tuning fork and let it go: vibration
follows and sound is produced. You charge a Leyden jar and let it
discharge: vibration follows and light is excited.
It is light, just as good as any other light. It travels at the same
pace, it is reflected and refracted according to the same laws; every
experiment known to optics can be performed with this etherial
radiation electrically produced,--and yet you cannot see it. Why not?
For no fault of the light, the fault (if there be a fault) is in the
eye. The retina is incompetent to respond to these vibrations--they
are too slow. The vibrations set up when this large jar is discharged
are from a hundred thousand to a million per second, but that is too
slow for the retina. It responds only to vibrations between 400
billion and 700 billion per second. The vibrations are too quick for
the ear, which responds only to vibrations between 40 and 40,000 per
second. Between the highest audible and the lowest visible vibrations
there has been hitherto a great gap, which these electric oscillations
go far to fill up. There has been a great gap simply because we have
no intermediate sense organ to detect rates of vibration between
40,000 and 400,000,000,000,000 per second. It was therefore an
unexplored territory. Waves have been there all the time in any
quantity, but we have not thought about them nor attended to them.
It happens that I have myself succeeded in getting electric
oscillations so slow as to be audible,--the lowest I had got in 1889
were 125 per second, and for some way above this the sparks emit a
musical note; but no one has yet succeeded in directly making electric
oscillations which are visible,--though indirectly every one does it
when they light a candle.
It is easy, however, to have an electric oscillator which vibrates 300
million times a second, and emits etherial waves a yard long. The
whole range of vibrations between musical tones and some thousand
million per second, is now filled up.
With the large condensers and self-inductances employed in modern
cable telegraphy, it is easy to get a series of beautifully regular
and gradually damped electric oscillations, with a period of two or
three seconds, recorded by an ordinary signalling instrument or siphon
recorder.
Public-domain text, read in full here on John Shaqi.
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