Appletons' Popular Science Monthly, November 1899: Volume LVI, No. 1Various
Science
Appletons' Popular Science Monthly, November 1899: Volume LVI, No. 1
Various
Science -- Periodicals; Technology -- Periodicals
We have said that messages had been sent by what is called wireless
telegraphy before Marconi made his experiments. These messages had
also been sent by induction, signals on one wire being received by a
parallel and distant wire. To Marconi is due the credit of greatly
extending the method by using a vertical wire. The method of using the
coherer to detect electric pulses is not due, however, to Marconi.
It is usually attributed to Branly; it had been employed, however,
by previous observers, among whom is Hughes, the inventor of the
microphone, an instrument analogous in its action to that of the
coherer. In the case of the microphone, the waves from the human voice
shake up the particles of carbon in the microphone transmitter, and
thus cause an electrical current to flow more easily through the minute
contacts of the carbon particles.
The action of the telephone transmitter, which also consists of minute
conducting particles in which a battery terminals are immersed, and
the analogous coherer is microscopic, and there are many theories to
account for their changes of resistance to electrical currents. We can
not, I believe, be far wrong in thinking that the electric force breaks
down the insulating effect of the infinitely thin layers of air between
the particles, and thus allows an electric current to flow. This action
is doubtless of the nature of an electric spark. An electric spark,
in the case of wireless telegraphy, produces magnetic and electric
lines of force in space, these reach out and embrace the circuit
containing the coherer, and produce in turn minute sparks. _Similia
similibus_--one action perfectly corresponds to the other.
The Marconi system, therefore, of what is called wireless telegraphy
is not new in principle, but only new in practical application. It had
been used to show the phenomena of electric waves in lecture rooms.
Marconi extended it from distances of sixty to one hundred feet to
fifty or sixty miles. He did this by lifting the sending-wire spark on
a lofty pole and improving the sensitiveness of the metallic filings
in the glass tube at the receiving station. He adopted a mechanical
arrangement for continually tapping the coherer in order to break up
the minute bridges formed by the cohering action, and thus to prepare
the filings for the next magnetic pulse. The system of wireless
telegraphy is emphatically a spark system strangely analogous to
flash-light signaling, a system in which the human eye with its rods
and cones in the retina acts as the coherer, and the nerve system, the
local battery, making a signal or sensation in the brain.
[Illustration: FIG. 6.--The coherer employed to receive the electric
waves. (One and a third actual size.)]
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