The actual movement of the sand toward the nodal lines may be studied
by clogging the sand with a semi-fluid substance. When gum is
employed to retard the motion of the particles, the curves which
they individually describe are very clearly drawn upon the plates. M.
Strehlke has sketched these appearances, and from him the patterns A,
B, C, Fig. 73, are borrowed.
[Illustration: FIG. 73.]
[Illustration: FIG. 74.]
[Illustration: FIG. 75.]
[Illustration: FIG. 76.]
An effect of vibrating plates which long perplexed experimenters is
here to be noticed. When with the sand strewed over a plate a little
fine dust is mingled, say the fine seed of lycopodium, this light
substance, instead of collecting along the nodal lines, forms little
heaps at the places of most violent motion. It is heaped at the four
corners of the plate, Fig. 74, at the four sides of the plate, Fig. 75,
and lodged between the nodal lines of the plate, Fig. 76. These three
figures represent the three states of vibration illustrated in Figs.
64, 65, and 66. The dust chooses in all cases the place of greatest
agitation. Various explanations of this effect had been given, but it
was reserved for Faraday to assign its extremely simple cause. The
light powder is entangled by the little whirlwinds of air produced by
the vibrations of the plate: it cannot escape from the little cyclones,
though the heavier sand particles are readily driven through them.
When, therefore, the motion ceases, the light powder settles down at
the places where the vibration was a maximum. In vacuo no such effect
is observed: here all powders, light and heavy, move to the nodal lines.
§ 11. _Vibration of Bells: Means of rendering them visible_
[Illustration: FIG. 77.]
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