The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
The molecules of any aggregate which have not a balanced arrangement,
inevitably tend towards a balanced arrangement. As before mentioned (_First
Principles_, § 100), amorphous wrought iron, when subject to continuous
jar, begins to arrange itself into crystals--its atoms assume a condition
of polar equilibrium. The particles of unannealed glass, which are so
unstably arranged that slight disturbing forces make them separate into
small groups, take advantage of that greater freedom of movement given by a
raised temperature, to adjust themselves into a state of relative rest.
During any such re-arrangement the aggregate exercises a coercive force
over its units. Just as in a growing crystal the atoms successively
assimilated from the solution, are made by the already crystallized atoms
to take a certain form, and even to re-complete that form when it is
broken; so in any mass of unstably-arranged atoms which passes into a
stable arrangement, each atom conforms to the forces exercised on it by all
the other atoms. This is a corollary from the general law of equilibration.
We saw (_First Principles_, § 170) that every change is towards
equilibrium; and that change can never cease until equilibrium is reached.
Organisms, above all other aggregates, conspicuously display this
progressive equilibration; because their units are of such kinds, and so
conditioned, as to admit of easy re-arrangement. Those extremely active
changes which go on during the early stages of evolution, imply an immense
excess of the molecular forces over those antagonist forces which the
aggregate exercises on the molecules. While this excess continues, it is
expended in growth, development, and function: expenditure for any of these
purposes being proof that part of the force constituting molecular tensions
remains unbalanced. Eventually, however, this excess diminishes. Either, as
in organisms which do not expend much energy, decrease of assimilation
leads to its decline; or, as in organisms which expend much energy, it is
counterbalanced by the rapidly-increasing reactions of the aggregate
(§ 46). The cessation of growth when followed, as in some organisms, by
death, implies the arrival at an equilibrium between the molecular forces
and those forces which the aggregate opposes to them. When, as in other
organisms, growth ends in the establishment of a moving equilibrium, there
is implied such a decreased preponderance of the molecular forces, as
leaves no surplus beyond that which is used up in functions. The declining
functional activity characteristic of advancing life, expresses a further
decline in this surplus. And when all vital movements come to an end, the
implication is that the actions of the units on the aggregate and the
reactions of the aggregate on the units are completely balanced. Hence,
while a state of rapid growth indicates such a play of forces among the
units of an aggregate as will produce active re-distribution, the
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