From these comparatively gross, but by no means unbeautiful, mechanical
vibrations, we pass to those of a sounding string. In the experiments
with our monochord, when the wire was to be shortened, a movable bridge
was employed, against which the wire was pressed so as to deprive the
point resting on the bridge of all possibility of motion. This strong
pressure, however, is not necessary. Placing the feather-end of a
goose-quill lightly against the middle of the string, and drawing a
violin-bow over one of its halves, the string yields the octave of the
note yielded by the whole string. The mere _damping_ of the string at
the centre, by the light touch of the feather, is sufficient to cause
the string to divide into two vibrating segments. Nor is it necessary
to hold the feather there throughout the experiment: after having
drawn the bow, the feather may be removed; the string will continue
to vibrate, emitting the same note as before. We have here a case
exactly analogous to that in which the central point of our stretched
India-rubber tube was damped, by encircling it with the finger and
thumb as in Fig. 39 (1). Not only did the half plucked aside vibrate,
but the other half vibrated also. We can, in fact, reproduce, with
the vibrating string, every effect obtained with the tube. This,
however, is a point of such importance as to demand full experimental
illustration.
To prove that when the centre is damped, and the bow drawn across one
of the halves of the string, the other half vibrates, I place across
the middle of the untouched half a little rider of red paper. Damping
the centre and drawing the bow, the string shivers, and the rider is
overthrown, Fig. 41.
[Illustration: FIG. 41.]
[Illustration: FIG. 42.]
When the string is damped at a point which cuts off one-third of its
length, and the bow drawn across the shorter section, not only is this
section thereby thrown into vibration, but the longer section divides
itself into two ventral segments with a node between them. This is
proved by placing small riders of red paper on the ventral segments,
and a rider of blue paper at the node. Passing the bow across the short
segment you observe a fluttering of the red riders, and now they are
completely tossed off, while the blue rider which crosses the node is
undisturbed, Fig. 42.
[Illustration: FIG. 43.]
Damping the string at the end of one-fourth of its length, the bow is
drawn across the shorter section; the remaining three-fourths divide
themselves into three ventral segments, with two nodes between them.
This is proved by the unhorsing of the three riders placed astride
the ventral segments, the two at the nodes keeping their places
undisturbed, Fig. 43.
[Illustration: FIG. 44.]
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