The result of these differences (which are essentially
_phase_-differences) between the two sexes in regard to the velocity
of growth and to the rate of change of that velocity, is to cause the
_ratio_ between the weights of the two sexes to fluctuate in a somewhat
complicated manner. At birth the baby-girl weighs on the average nearly
10 per cent. less than the boy. Till about two years old she tends to
gain upon him, but she then loses again until the age of about five;
from five she gains for a few years somewhat rapidly, and the girl of
ten to twelve is only some 3 per cent. less in weight than the boy. The
boy in his teens gains {71} steadily, and the young woman of twenty
is nearly 15 per cent. lighter than the man. This ratio of difference
again slowly diminishes, and between fifty and sixty stands at about
12 per cent., or not far from the mean for all ages; but once more as
old age advances, the difference tends, though very slowly, to increase
(Fig. 6).
[Illustration: Fig. 6. Percentage ratio, throughout life, of female
weight to male; from Quetelet’s data.]
While careful observations on the rate of growth in other animals are
somewhat scanty, they tend to show so far as they go that the general
features of the phenomenon are always much the same. Whether the animal
be long-lived, as man or the elephant, or short-lived, like horse or
dog, it passes through the same phases of growth[101]. In all cases
growth begins slowly; it attains a maximum velocity early in its
course, and afterwards slows down (subject to temporary accelerations)
towards a point where growth ceases altogether. But especially in the
cold-blooded animals, such as fishes, the slowing-down period is very
greatly protracted, and the size of the creature would seem never
actually to reach, but only to approach asymptotically, to a maximal
limit.
The size ultimately attained is a resultant of the rate, and of {72}
the duration, of growth. It is in the main true, as Minot has said,
that the rabbit is bigger than the guinea-pig because he grows the
faster; but that man is bigger than the rabbit because he goes on
growing for a longer time.
――――――――――
In ordinary physical investigations dealing with velocities, as for
instance with the course of a projectile, we pass at once from the
study of acceleration to that of momentum and so to that of force; for
change of momentum, which is proportional to force, is the product of
the mass of a body into its acceleration or change of velocity. But we
can take no such easy road of kinematical investigation in this case.
The “velocity” of growth is a very different thing from the “velocity”
of the projectile. The forces at work in our case are not susceptible
of direct and easy treatment; they are too varied in their nature and
too indirect in their action for us to be justified in equating them
directly with the mass of the growing structure.
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