Every-day Science: Volume 6. The Conquest of NatureWilliams, Henry Smith
Science
Every-day Science: Volume 6. The Conquest of Nature
Williams, Henry Smith
Industrial arts; Machinery
Having thus outlined the conditions under which the muscular machine
performs its work, we have now to consider briefly the external
mechanisms with the aid of which muscular energy is utilized.
Of course, the simplest application of this power, and the one
universally employed in the animal world is that in which a direct
push or pull is given to the substance, the position of which it
is desired to change. We have already pointed out that there is no
essential difference between pushing and pulling. The fact receives
another illustration in considering the muscular mechanism. We speak
of pushing when we propel something away from a body, of pulling when
we draw something toward it, yet, as we have just seen, each can be
accomplished merely through the contraction of a set of muscles, acting
on differently disposed levers. All the bodily activities are reducible
to such muscular contractions, and the diversified movements in which
the organism constantly indulges are merely due to the large number and
elaborate arrangement of the bony levers upon which these muscles are
operated.
We may well suppose that the primitive man continued for a long
period of time to perform all such labors as he undertook without
the aid of any artificial mechanism; that is to say, without having
learned to gain any power beyond that which the natural levers
of his body provided. A brief observation of the actions of a
man performing any piece of manual labor will, however, quickly
demonstrate how ingeniously the bodily levers are employed, and how
by shifting positions the worker unconsciously makes the most of a
given expenditure of energy. By bending the arms and bringing them
close to the body, he is able to shorten his levers so that he can
lift a much greater weight than he could possibly raise with the arms
extended. On the other hand, with the extended arm he can strike a
much more powerful blow than with the shorter lever of the flexed
arm. But however ingenious the manipulation of the natural levers, a
full utilization of muscular energy is possible only when they are
supplemented with artificial aids, which constitute primitive pieces of
machinery.
These aids are chiefly of three types, namely, inclined planes,
friction reducers, and levers. The use of the inclined plane was very
early discovered and put into practise in chipped implements, which
took the form of the wedge, in such modifications as axes, knives, and
spears of metal. All of these implements, it will be observed, consist
essentially of inclined planes, adapted for piercing relatively soft
tissues of wood or flesh, and hence serving purposes of the greatest
practical utility.
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