Hertzian Wave Wireless TelegraphyFleming, J. A. (John Ambrose), Sir
Science
Hertzian Wave Wireless Telegraphy
Fleming, J. A. (John Ambrose), Sir
Electric waves; Telegraph, Wireless
A closed vertical loop, A_{1}A_{2} (see Fig. 12), is formed by
erecting two parallel insulated wires vertically a few feet apart and
joining them together at the top. At the bottom these wires are
connected, with the secondary terminals of an induction coil, a
condenser, C, or Leyden jar, being bridged across the terminals and a
pair of spark balls, S, inserted in one side of the loop. It will
readily be seen that on setting the coil in action, oscillations will
take place in these vertical wires, but that if the oscillations are
simply the fundamental note of the system, then at any moment
corresponding to a current going up one side of the loop of wire there
must be a current coming down the other. Accordingly, an arrangement
of this kind, forming what is called a closed circuit, will not
radiate or radiates but very feebly. Professor Slaby found, however,
that it might be converted into a powerful radiator if we give the two
sides of the loop unequal capacity or inductance and at the same time
earth one of the lower ends of the loop, as shown in Fig. 13. By this
means it is possible to set up in the loop electrical overtones or
harmonics of the fundamental oscillation, and if we cause the system
to vibrate so as to produce its first odd harmonic, there is a
potential node at the lower end of both vertical sides of the loop, a
potential node on both vertical sides at two-thirds of the way up, and
a potential antinode at the summit of the loop; then, under these
circumstances, the closed loop of wire is in the same electrical
condition as if two simple Marconi aerials, both emitting their first
odd harmonic oscillation, were placed side by side and joined together
at the top.
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