It is easy to elicit the overtones of tuning-forks. Here, for example,
is our old series, vibrating respectively 256, 320, 384, and 512
times in a second. In passing from the fundamental tone to the first
overtone of each you notice that the interval is vastly greater
than that between the fundamental tone and the first overtone of a
stretched string. From the numbers just mentioned we pass at once to
1,600, 2,000, 2,400, and 3,200 vibrations a second. Chladni’s numbers,
however, though approximately correct, are not always rigidly verified
by experiment. A pair of forks, for example, may have their fundamental
tones in perfect unison and their overtones discordant. Two such forks
are now before you. When the fundamental tones of both are sounded, the
unison is perfect; but when the first overtones of both are sounded,
they are not in unison. You hear rapid “beats,” which grate upon the
ear. By loading one of the forks with wax, the two overtones may be
brought into unison; but now the fundamental tones produce loud beats
when sounded together. This could not occur if the first overtone
of each fork was produced by a number of vibrations exactly 6-1/4
times the rate of its fundamental. In a series of forks examined by
Helmholtz, the number of vibrations of the first overtone varied from
5·6 to 6·6 times that of the fundamental.
Starting from the first overtone, and including it, the rates of
vibration of the whole series of overtones are as the squares of the
numbers 3, 5, 7, 9, etc. That is to say, in the time required by the
first overtone to execute 9 vibrations, the second executes 25, the
third 49, the fourth 81, and so on. Thus the overtones of the fork rise
with far greater rapidity than those of a string. They also vanish more
speedily, and hence adulterate to a less extent the fundamental tone by
their admixture.
§ 6. _Chladni’s Figures_
The device of Chladni for rendering these sonorous vibrations visible
has been of immense importance to the science of acoustics. Lichtenberg
had made the experiment of scattering an electrified powder over an
electrified resin-cake, the arrangement of the powder revealing the
electric condition of the surface. This experiment suggested to Chladni
the idea of rendering sonorous vibrations visible by means of sand
strewed upon the surface of the vibrating body. Chladni’s own account
of his discovery is of sufficient interest to justify its introduction
here:
Public-domain text, read in full here on John Shaqi.
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