English prose literature; Exposition (Rhetoric); Readers -- Science
Another property is essential in a lever: it must be rigid; otherwise it
will bend, and power will be lost. Now, if the foot were a rigid lever,
there would be missing two of its most useful qualities. It could no
longer act as a spring or buffer to the body, nor could it adapt its
sole to the various kinds of surfaces on which we have to tread or
stand. Nature, with her usual ingenuity, has succeeded in combining
those opposing qualities--rigidity, suppleness, and elasticity or
springiness--by resorting to her favorite device, the use of muscular
engines. The arch is necessarily constructed of a number of bones which
can move on each other to a certain extent, so that the foot may adapt
itself to all kinds of roads and paths. It is true that the bones of the
arch are loosely bound together by passive ties or ligaments, but as
these cannot be lengthened or shortened at will, Nature had to fall back
on the use of muscular engines for the maintenance of the foot as an
arched lever. Some of these are shown in Fig. 8. The foot, then, is a
lever of a very remarkable kind; all the time we stand or walk, its
rigidity, its power to serve as a lever, has to be maintained by an
elaborate battery of muscular engines all kept constantly at work. No
wonder our feet and legs become tired when we have to stand a great
deal. Some of these engines, the larger ones, are kept in the leg, but
their tendons or piston cords descend below the ankle-joint to be fixed
to various parts of the arch, and thus help to keep it up (Fig. 8).
Within the sole of the foot has been placed an installation of seventeen
small engines, all of them springing into action when we stand up, thus
helping to maintain the foot as a rigid yet flexible lever.
Public-domain text, read in full here on John Shaqi.
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