If we keep the plate carefully protected from all disturbing influences,
after some ten to twenty minutes we shall see the coloured particles
returning on their path, and the centre of {79} the drop becoming more and
more black. Each line of force becomes segmented into granules, which
gradually increase in size, and approach nearer to one another and to the
centre of the drop, until it assumes the mulberry appearance shown in the
photograph (Fig. 19).
[Illustration: FIG. 20.--Seven similar drops of Indian ink diffusing in a
salt solution. Two minutes after introducing the drops.]
If we sow a number of drops of Indian ink in regular order on the surface
of a salt solution, we obtain most beautiful patterns formed by the mutual
repulsion of the drops. Figs. 20, 21, and 22 represent the successive
aspects of seven drops of Indian ink thus sown on a layer of salt solution,
and kept undisturbed long enough to allow of their evolution. Fig. 20 shows
the aspect after two minutes, when the diffusion is almost complete. In
Fig. 21, photographed after fifteen {80} minutes, the colouring matter has
almost entirely reunited to form separate granulations; whilst in Fig. 22,
taken after thirty minutes, these granulations are rearranged to form an
agglomeration around the centre of each drop.
[Illustration: FIG. 21.--The same drops 15 minutes later, showing the
granulation appearance.]
The following experiment, which is more difficult, will show the cohesive
attraction of one drop for another. A plate of glass is adjusted absolutely
horizontal, and covered as before with a layer of salt solution. On this we
sow a number of drops of the same salt solution coloured with Indian ink.
The drops must be of exactly the same concentration as the salt medium, so
as to avoid any difference of osmotic pressure between the drops and the
medium, otherwise the drops would not remain intact but would diffuse into
the solution. Since under these conditions the liquid of the medium around
the drops is perfectly symmetrical and homogeneous, it cannot exercise any
influence on the liquid of the drops.
[Illustration: FIG. 22.--The same drops after 30 minutes. The granulations
have agglomerated at the centre of the drops.]
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