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
Refraction of sound is caused by a wave of sound meeting another medium
of different density, just as a beam of light is refracted from water.
One sound wave imparts its motion to the new medium, and the new wave
travels in a different direction. This change is refraction. The sound
waves are refracted in different directions, according to the velocity
it can acquire in the medium. If a sound pass from water into air it
will be bent towards the perpendicular, because sound can travel faster
in water than in air. If it pass from air into water its force will
cause it to assume a less perpendicular direction, there being greater
velocity in water. The velocity in air is only 1,100 feet in a second
in our atmosphere. In water sound travels 4,700 feet in the same time.
When the wave of sound falls upon a medium parallel to the refracting
surface there is, however, no refraction—only a change of velocity, not
direction.
When sound waves are prevented from dispersing the voice can be carried
a great distance. Speaking tubes and trumpets, as well as ear trumpets,
are examples of this principle, and of the reflection of sound.
There are many very interesting experiments in connection with
Acoustics, some of which we will now impart to our readers. We shall
then find many ingenious inventions to examine,—the Audiphone,
Telephone, Megaphone, and Phonograph, which will occupy a separate
chapter. We now resume.
Amongst the experiments usually included in the course of professors
and lecturers who have a complete apparatus at their command, and
which at first appear very complicated and difficult, there are some
which can be performed with every-day articles at hand. There is no
experiment in acoustics more interesting than that of M. Lissajons,
which consists, as is well known to our scientists, of projecting upon
a table or other surface, with the aid of oxy-hydrogen light, the
vibratory curves traced by one of the prongs of a tuning-fork. We can
perform without difficulty a very similar experiment with the humble
assistance of the common knitting-needle.
Public-domain text, read in full here on John Shaqi.
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