The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
brief contests with prey. Such other exertion as is, at intervals, needful
for moving from place to place, is rendered small by the small difference
between the animal's specific gravity and that of water. Thus the crocodile
expends in muscular action an amount of force that is insignificant
compared with the force commonly expended by land-animals. Hence its
habitual assimilation is diminished much less than usual by habitual waste;
and beginning with an excessive disproportion between the two, it is quite
possible for the one never quite to lose its advance over the other while
life continues. On looking closer into such cases as this and that of the
pike, which is similarly cold-blooded, similarly lies in wait, and is
similarly able to obtain larger and larger kinds of prey as it increases in
size; we discover a further reason for this absence of a definite limit. To
overcome gravitative force the creature has not to expend a muscular power
that is large at the outset, and increases as the cubes of its dimensions:
its dense medium supports it. The exceptional continuance of growth
observed in creatures so circumstanced, is therefore perfectly explicable.
§ 46a. If we go back upon the conclusions set forth in the preceding
section, we find that from some of them may be drawn instructive
corollaries respecting the limiting sizes of creatures inhabiting different
media. More especially I refer to those varying proportions between mass
and stress from which, as we have seen, there results, along with
increasing size, a diminishing power of mechanical self-support: a relation
illustrated in its simplest form by the contrast between a dew-drop, which
can retain its spheroidal form, and the spread-out mass of water which
results when many dew-drops run together. The largest bird that flies (the
argument excludes birds which do not fly) is the Condor, which reaches a
weight of from 30 to 40 lbs. Why does there not exist a bird of the size of
an elephant? Supposing its habits to be carnivorous, it would have many
advantages in obtaining prey: mammals would be at its mercy. Evidently the
reason is one which has been pointed out--the reason that while the weight
to be raised and kept in the air by a bird increases as the cubes of its
dimensions, the ability of its bones and muscles to resist the strains
which flight necessitates, increases only as the squares of the dimensions.
Though, could the muscles withstand any tensile strain they were subject
to, the power like the weight might increase with the cubes, yet since the
texture of muscle is such that beyond a certain strain it tears, it results
that there is soon reached a size at which flight becomes impossible: the
structures must give way. In a preceding paragraph the limit to the size of
flying creatures was ascribed to the greater physiological cost of the
energy required; but it seems probable that the mechanical obstacle here
pointed out has a larger share in determining the limit.
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