Hertzian Wave Wireless TelegraphyFleming, J. A. (John Ambrose), Sir
Science
Hertzian Wave Wireless Telegraphy
Fleming, J. A. (John Ambrose), Sir
Electric waves; Telegraph, Wireless
Other ways of adjusting the quantity of the filings to the width of
the gap have been devised. Sometimes one of the plugs is made movable.
In other cases, such as the tubes devised by M. Blondel and Sir Oliver
Lodge, there is a pocket in the glass receptacle to hold square
filings, from which more or less can be shaken into the gap.
An interesting question, which we have not time to discuss in full, is
the cause of the initial coherence of the metallic filings in a Branly
tube. It does not seem to be a simple welding action due to heat, and
it certainly takes place with a difference of potential, which is very
far indeed below that which we know is required to produce a spark. On
the other hand, it seems to be proved that in a Banly tube, when acted
upon by electric waves, chains of metallic particles are produced. The
effect is not peculiar to electric waves. It can be accomplished by
the application of any high electromotive force. Thus Branly found
that coherence may be produced by the application of an electromotive
force of twenty or thirty volts, operating through a very high water
resistance, and thus precluding the passage of any but an excessively
small current. Again, the coherence seems to take place in some cases
when metallic particles are immersed in a liquid, or even in a solid,
insulator. Processor Branly has, therefore, preferred to speak of
masses of metallic granules as _radio-conductors_, and Professor Bose
has divided substances into positive and negative, according as the
operation of electromotive force is to increase the coherence of the
particles or to decrease it.
It has been asserted that for every particular Branly tube, there is a
critical electromotive force, in the neighbourhood of two or three
volts which causes the tube to break down and pass instantly from a
non-conductive to a conductive condition, and that this critical
electromotive force may become a measure of the utility of the tube
for telegraphic purposes. Thus, C. Kinsley (_Physical Review_, Vol.
XII., p. 177, 1901) has made measurements of this supposed critical
potential for different "coherers," and subsequently tested the same
as receivers at a wireless telegraph station of the U.S.A. Signal
Corps. The average of twenty-four experiments gave in one case 2·2
volts as the breaking down potential of one of these coherers or
Branly tubes, 3·8 volts for a second and 5·5 volts for the third.
These same instruments, tested as telegraphic kumascopes, showed that
the first of the three was most sensitive.
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