One of our experiments throws considerable light on this question. In a
glass vessel we placed a concentrated solution of carbonate of potassium,
to which had been added 4 per cent. of a saturated solution of tribasic
potassium phosphate. Into this solution we dropped a fragment of fused
calcium chloride, and obtained a vermiform growth some 6 millimetres in
diameter. This growth was curved, at first growing upwards, then for a
short distance horizontally, and finally downwards. The upward pressure of
the solution, which was heavier than the growth, ultimately broke it at the
top of the curve, as shown at _b_, Fig. 37. The liquid contents of the
growth began to ooze out through the wound, but this after a time became
cicatrized, and the stem continued to grow obstinately downwards once more,
in opposition to the hydrostatic pressure. In consequence of this pressure
the growth is sinuous, tacking as it were from side to side like a boat
against the wind. We give three successive photographs of this growth,
which attained a length of over 10 inches. We have frequently obtained
these vermiform growths forming a series of such loops, growing upwards and
falling again many times in succession.
_Osmotic Growths in Air._--Certain of these artificial cells may be made to
grow out of the solution into the air. For this purpose we place a fragment
of CaCl_2 in a shallow flat-bottomed glass dish, just covering the fragment
with liquid. The best solution is as follows:--
Potassium carbonate, saturated solution 76 parts.
Sodium sulphate, saturated solution 20 "
Tribasic potassium phosphate, saturated solution 4 "
{128}
The calcium chloride surrounds itself with an osmotic membrane; water
penetrates into the interior of the cell thus formed, and a beautiful
transparent spherical cell is the result, the summit of which soon emerges
from the shallow liquid. The cell continues to increase by absorption of
the liquid at its base, and may grow up out of the liquid into the air for
as much as one or two centimetres.
This is a most impressive spectacle, an osmotic production, half aquatic
and half aerial, absorbing water and salts by its base, and losing water
and volatile products by evaporation from its summit, while at the same
time it absorbs and dissolves the gases of the atmosphere.
The aerial portion of an osmotic growth will sometimes become specialized
in form. The summit of the growth develops a sort of crown or cup
surrounded by a circular wall. This cup contains liquid, and continues to
grow up into the air like the stem of a plant, carrying with it the liquid
which has been absorbed by the base of the growth.
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