Hertzian Wave Wireless TelegraphyFleming, J. A. (John Ambrose), Sir
Science
Hertzian Wave Wireless Telegraphy
Fleming, J. A. (John Ambrose), Sir
Electric waves; Telegraph, Wireless
Collocations of these electrons constitute the atoms of gross matter,
and we must consider that the individuality of any atom is not
determined merely by the identity of the electrons composing it, but
by the permanence of their arrangement or form. In any mass of
material substance there is probably a continual exchange of electrons
from one atom to another, and hence at any one given moment, whilst a
number of the electrons are an association forming material atoms,
there will be a further number of isolated but intermingled electrons,
which are called the free electrons. In substances which we call good
conductors, we must imagine that the free electrons have the power of
moving freely through or between the material atoms, and this movement
of the electrons constitutes a current of electricity; whilst a
superfluity of electrons of either type in any one mass of matter
constitutes what we call a charge of electricity. Hence an electrical
oscillation, which is merely a very rapid alternating current taking
place in a conductor, is on this hypothesis assumed to consist in a
rapid movement to and fro of the free electrons. We may picture to
ourselves, therefore, a rod of metal in which electrical oscillations
are taking place, as similar to an organ-pipe or siren tube in which
movements of the air particles are taking place to and fro, the free
electrons corresponding with the air particles.
Owing to the nature of the structure of an electron, it follows,
however, that every movement of an electron is accompanied by changes
in the distribution of the electric strain or ether strain taking
place throughout all surrounding space, and, as already explained,
certain very rapid movements of the electrons have the effect of
detaching closed lines of strain in the ether which move off through
space, forming, when cyclically distributed, an electric wave.
[Illustration: FIG. 3.--SIMPLE MARCONI RADIATOR. B, battery; I,
induction coil; K, signalling key; S, spark gap; A, aerial wire; E,
earth plate.]
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