Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.Tissandier, Gaston
Science
Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.
Tissandier, Gaston
Scientific recreations
When an impulse was given the motion was carried from coin to coin,
and at length the last one in the row flew out. This is the case with
sound. The air molecules strike one upon another, and the wave of
“sound” reaches the tympanum, and thus the impression is conveyed to
the brain. We say we hear—but why we hear, in what manner the movement
of certain particles affects our consciousness, we cannot determine.
That the air is absolutely necessary to enable us to hear can readily
be proved. The experiment has frequently been made; place a bell under
the receiver of an air-pump, and we can hear it ring. But if we exhaust
the air the sound will get fainter and fainter. Similarly, as many
of us have experienced upon high mountains, sounds are less marked.
Sound diminishes in its intensity, just as heat and light do. Sound is
reflected and refracted, as are light and radiant heat. We have already
shown the effect of reflectors upon heat. Sound is caught and reflected
in the same way as light from mirrors, or as the heat waves in the
reflectors. We have what we term “sounding boards” in pulpits, and
speaking tubes will carry sound for us without loss of power. Echoes
are merely reflected sounds.
The velocity of sound is accepted as 1,100 feet in a second, which
is far inferior to the velocity of light. Fogs will retard sound,
while water will carry it. Those who have ever rowed upon a lake will
remember how easily the sound of their voices reached from boat to
boat, and Dr. Hutton says that at Chelsea, on the Thames, he heard
a person reading from a distance of a hundred and forty feet. Some
extraordinary instances could be deduced of the enormous distances
sound is said to have travelled. Guns have been heard at eighty miles
distant, and the noise of a battle between the English and Dutch, in
1672, was heard even in Wales, a distance of two hundred miles from the
scene of action.
Sound always travels with uniform velocity in the air in the same
temperature. But sound! What is the cause of it? How does it arise?
These questions can now be fully answered with reference to the
foregoing observations. Phenomena of vibration render themselves
visible by light, heat, and sound, and to arrive at some definite
ideas of sound vibrations we may compare them to waves, such as may be
produced by throwing a stone into a pond.
There are, so to speak, “standing” waves and “progressive” waves. The
former can be produced (for instance) by thrumming a fiddle-string,
and when the equilibrium of the cord is disturbed, the position of the
equilibrium is passed simultaneously by the string-waves. In water
the waves or vibrating points pass the position of equilibrium in
succession.
Public-domain text, read in full here on John Shaqi.
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