Marvels of Scientific Invention: An Interesting Account in Non-Technical Language of the Invention of Guns, Torpedoes, Submarine Mines, Up-to-Date Smelting, Freezing, Colour Photography, and Many Other Recent Discoveries of ScienceCorbin, Thomas W.
Science
Marvels of Scientific Invention: An Interesting Account in Non-Technical Language of the Invention of Guns, Torpedoes, Submarine Mines, Up-to-Date Smelting, Freezing, Colour Photography, and Many Other Recent Discoveries of Science
Corbin, Thomas W.
Inventions
Then, antennæ can be so constructed that messages can be received with
most readiness from one particular direction. In others, they can be
received from any direction, but the direction can be discovered. This,
it will be easy to see, is of great value to ships in a fog.
Antennæ made with a short vertical part and a long horizontal part
radiate best in the direction away from which their horizontal part
points. This is of great advantage in stations which are built specially
to communicate with other particular stations. In such cases the antenna
is carefully built, so as to point in the required direction. Such
antennæ also receive more readily those signals which come from the
direction away from which they are pointing.
Reference has been made already to the interesting fact that wireless
communication is easier at night than in the daytime. That is probably
because of the "ionisation" of the atmosphere by the action of sunlight.
Along with the visible sunlight there comes to us from the sun a
quantity of light known as "ultra-violet," since it makes its effect
known in the spectrum of sunlight beyond the violet, which is the limit
of visibility at one end of the spectrum. We cannot see it but it
affects photographic plates powerfully. It has energetic chemical
powers, and it has the ability to make the air more conductive than it
is ordinarily. Comparatively little of it penetrates our atmosphere, but
it must exercise a good deal of influence a little higher up. Now
readers will remember that the process by which electro-magnetic waves
are propagated is checked when the waves strike a conductor. The energy
in the waves is then employed in causing currents in the conductor
instead of forming more waves. And so partially conductive air forms a
partial barrier to the waves. The effect is not appreciable in the case
of the tiny waves of light and heat, but it is in the case of the long
"wireless waves." Everyone has seen the waves of an advancing tide
coming up a sandy beach, and has noticed how the dry sand (a good
conductor of water) sucks up and destroys the foremost ripples. In like
manner are the wireless waves "sucked up" by the partially conductive
atmosphere. But the effect of the ultra-violet light does not last long,
and so, at night-time, it disappears. Therefore messages can be sent
better at night than by day.
Public-domain text, read in full here on John Shaqi.
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