Hertzian Wave Wireless TelegraphyFleming, J. A. (John Ambrose), Sir
Science
Hertzian Wave Wireless Telegraphy
Fleming, J. A. (John Ambrose), Sir
Electric waves; Telegraph, Wireless
At the time when the Wehnelt break was first introduced, great
interest was excited in it, and the technical journals in 1899 were
full of discussions as to the theory of its operation.[13] The general
facts concerning the Wehnelt break are that the electrolyte must be
dilute sulphuric acid in the proportion of one of acid to five or ten
of water. The large lead plate must be the cathode or negative pole,
and the anode or positive pole must be a platinum wire, about a
millimetre in diameter, and projecting one or two millimetres from the
pointed end of a porcelain, glass or other acid-proof insulating tube.
The aperture through which the platinum wire works must be so tight
that acid cannot enter, yet it is desirable that the platinum wire
should be capable of being projected more or less from the aperture by
means of an adjusting screw. The glass vessel which contains these two
electrodes should be of considerable size, holding, say, a quart of
fluid, and it is better to include this vessel in a larger one in
which water can be placed to cool the electrolyte, as the latter gets
very warm when the break is used continuously. If such an electrolytic
cell has a continuous electromotive force applied to it tending to
force a current through the electrolyte from the platinum wire to the
lead plate, we can distinguish three stages in its operation, which
are determined by the electromotive force and the inductance in the
circuit. First, if the electromotive force is below sixteen or twenty
volts, then ordinary and silent electrolysis of the liquid proceeds,
bubbles of oxygen being liberated from the platinum wire and hydrogen
set free against the lead plate. If the electromotive force is raised
above twenty-five volts, then if there is no inductance in the
circuit, the continuous flow of current proceeds, but if the circuit
of the electrolyte possesses a certain minimum inductance, the
character of the current flow changes, and it becomes intermittent,
and the cell acts as an interrupter, the current being interrupted
from 100 to 2,000 times per second, according to the electromotive
force and the inductance of the circuit. Under these conditions, the
cell produces a rattling noise and a luminous glow appears round the
tip of the platinum wire. Thus, in a particular case, with an
inductance of 0·004 millihenry in the circuit of a Wehnelt break, no
interruption of the circuit took place, but with one millihenry of
inductance in the circuit, and with an electromotive force of 48
volts, the current became intermittent at the rate of 930 per second,
and by increasing the voltage to 120 volts, the intermittency rose to
1,850 a second.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account