The increase in the rate of vibrations here observed is ruled by a
definite law; the number of vibrations executed at a given time is
inversely proportional to the square of the length of the vibrating
rod. You hear the sound of this strip of brass, two inches long, as
the fiddle-bow is passed over its end. Making the length of the strip
one inch, the sound is the double octave of the last one; the rate of
vibration is augmented four times. Thus, by doubling the length of the
vibrating strip, we reduce its rate of vibration to one-fourth; by
trebling the length, we reduce the rate of vibration to one-ninth; by
quadrupling the length, we reduce the vibrations to one-sixteenth, and
so on. It is plain that, by proceeding in this way, we should finally
reach a length where the vibrations would be sufficiently slow to
be counted. Or, it is plain that, beginning with a long strip whose
vibrations could be counted, we might, by shortening, not only make the
strip sound, but also determine the rates of vibration corresponding to
its different tones. Supposing we start with a strip 36 inches long,
which vibrates once in a second, the strip reduced to 12 inches would,
according to the above law, execute 9 vibrations a second; reduced to
6 inches, it would execute 36, to 3 inches, 144; while, if reduced to
1 inch in length, it would execute 1,296 vibrations in a second. It is
easy to fill the spaces between the lengths here given, and thus to
determine the rate of vibration corresponding to any particular tone.
This method was proposed and carried out by Chladni.
A musical instrument may be formed of short rods. Into this common
wooden tray a number of pieces of stout iron wire of different lengths
are fixed, being ranged in a semicircle. When the fiddle-bow is passed
over the series, we obtain a succession of very pleasing notes. A
competent performer could certainly extract very tolerable music from a
sufficient number of these iron pins. The iron fiddle (_violon de fer_)
is thus formed. The notes of the ordinary musical box are also produced
by the vibrations of tongues of metal fixed at one end. Pins are fixed
in a revolving, cylinder, the free ends of the tongues are lifted by
these pins and then suddenly let go. The tongues vibrate, their length
and strength being so arranged as to produce in each particular case
the proper rapidity of vibration.
Public-domain text, read in full here on John Shaqi.
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