With your permission I shall henceforth employ these terms; and now it
becomes our duty to look a little more closely than we have hitherto
done into the subdivision of a string into its harmonic segments. Our
monochord with its stretched wire is before you. The scale of the
instrument is divided into 100 equal parts. At the middle point of the
wire stands the number 50; at a point almost exactly one-third of its
length from its end stands the number 33; while at distances equal to
one-fourth and one-fifth of its length from its end stand the numbers
25 and 20 respectively. These numbers are sufficient for our present
purpose. When the wire is plucked at 50 you hear its clang, rather
hollow and dull. When plucked at 33, the clang is different. When
plucked at 25, the clang is different from either of the former. As
we retreat from the centre of the string, the clang-tint becomes more
“brilliant,” the sound more brisk and sharp. What is the reason of
these differences in the sound of the same wire?
The celebrated Thomas Young, once professor in this Institution,
enables us to solve the question. He proved that when any point of a
string is plucked, all the higher tones _which require that point for
a node_ vanish from the clang. Let me illustrate this experimentally.
I pluck the point 50, and permit the string to sound. It may be
proved that the first overtone, which corresponds to a division of
the string into two vibrating parts, is now absent from the clang.
If it were present, the damping of the point 50 would not interfere
with it, for this point would be its node. But on damping the point
50 the fundamental tone is quenched, and no octave of that tone is
heard. Along with the octave its whole progeny of overtones, with rates
of vibration four times, six times, eight times—all even numbers of
times—the rate of the fundamental tone, disappear from the clang. All
these tones require that a node should exist at the centre, where,
according to the principle of Young, it cannot now be formed. Let us
pluck some other point, say 25, and damp 50 as before. The fundamental
tone is now gone, but its octave, clear and full, rings in your ears.
The point 50 in this case not being the one plucked, a node can form
there; it _has_ formed, and the two halves of the string continue
to vibrate after the vibrations of the string as a whole have been
extinguished. Plucking the point 33, the second harmonic or overtone
is absent from the clang. This is proved by damping the point 33. If
the second harmonic were on the string this would not affect it, for 33
is its node. The fundamental is quenched, but no tone corresponding to
a division of the string into three vibrating parts is now heard. The
tone is not heard because it was never there.
Public-domain text, read in full here on John Shaqi.
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