Hertzian Wave Wireless TelegraphyFleming, J. A. (John Ambrose), Sir
Science
Hertzian Wave Wireless Telegraphy
Fleming, J. A. (John Ambrose), Sir
Electric waves; Telegraph, Wireless
The accomplishment of very long distances by Hertzian wave telegraphy
is, however, not merely a question of power, it is also a question of
wave-length. Having regard, however, to the possibility that the
propagation which takes place in Hertzian wave telegraphy is not that
simply of a free wave in space, but the transmission of a semi-loop of
electric strain with its feet tethered to the earth, it is quite
possible that if it were worth while to make the attempt, an ether
disturbance could be made in England sufficiently powerful to be felt
in New Zealand.
Leaving, however, these hypothetical questions and matters of pure
conjecture, we may consider some of the facts which have resulted from
Mr. Marconi's long-distance experiments. One of the most interesting
of these is the effect of daylight upon the wave propagation. In one
of his voyages across the Atlantic, when receiving signals from Poldhu
on board the S.S. _Philadelphia_, he noticed that the signals were
received by night when they could not be detected by day.[72] In these
experiments Mr. Marconi instructed his assistants at Poldhu to send
signals at a certain rate from 12 to 1 a.m., from 6 to 7 a.m., from 12
to 1 p.m., and from 6 to 7 p.m., Greenwich mean time, every day for a
week. He has stated that on board the _Philadelphia_ he did not notice
any apparent difference between the signals received in the day and
those received at night until after the vessel had reached a distance
of 500 statute miles from Poldhu. At distances of over 700 miles, the
signals transmitted during the day failed entirely, while those sent
at night remained quite strong up to 1,551 miles, and were clearly
decipherable up to a distance of 2,099 miles from Poldhu. Mr. Marconi
also noted that at distances of over 700 miles, the signals at 6 a.m.,
in the week between February 23 and March 1, were quite clear and
distinct, whereas by 7 a.m. they had become weak almost to total
disappearance. This fact led him at first to conclude that the cause
of the weakening was due to the action of the daylight upon the
transmitting aerial, and that as the sun rose over Poldhu, so the wave
energy radiated, diminished, and he suggested as an explanation the
known fact of the dissipating action of light upon a negative charge.
Public-domain text, read in full here on John Shaqi.
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