Darwiniana : Essays — Volume 02Huxley, Thomas Henry
Science
Darwiniana : Essays — Volume 02
Huxley, Thomas Henry
Darwin, Charles, 1809-1882; Evolution (Biology)
The plant gathers these inorganic materials together and makes them up into
its own substance. The animal eats the plant and appropriates the
nutritious portions to its own sustenance, rejects and gets rid of the
useless matters; and, finally, the animal itself dies, and its whole body
is decomposed and returned into the inorganic world. There is thus a
constant circulation from one to the other, a continual formation of
organic life from inorganic matters, and as constant a return of the matter
of living bodies to the inorganic world; so that the materials of which our
bodies are composed are largely, in all probability, the substances which
constituted the matter of long extinct creations, but which have in the
interval constituted a part of the inorganic world.
Thus we come to the conclusion, strange at first sight, that the MATTER
constituting the living world is identical with that which forms the
inorganic world. And not less true is it that, remarkable as are the powers
or, in other words, as are the FORCES which are exerted by living beings,
yet all these forces are either identical with those which exist in the
inorganic world, or they are convertible into them; I mean in just the same
sense as the researches of physical philosophers have shown that heat is
convertible into electricity, that electricity is convertible into
magnetism, magnetism into mechanical force or chemical force, and any one
of them with the other, each being measurable in terms of the other,--even
so, I say, that great law is applicable to the living world. Consider why
is the skeleton of this horse capable of supporting the masses of flesh and
the various organs forming the living body, unless it is because of the
action of the same forces of cohesion which combines together the particles
of matter composing this piece of chalk? What is there in the muscular
contractile power of the animal but the force which is expressible, and
which is in a certain sense convertible, into the force of gravity which it
overcomes? Or, if you go to more hidden processes, in what does the process
of digestion differ from those processes which are carried on in the
laboratory of the chemist? Even if we take the most recondite and most
complex operations of animal life--those of the nervous system, these of
late years have been shown to be--I do not say identical in any sense with
the electrical processes--but this has been shown, that they are in some
way or other associated with them; that is to say, that every amount of
nervous action is accompanied by a certain amount of electrical disturbance
in the particles of the nerves in which that nervous action is carried on.
In this way the nervous action is related to electricity in the same way
that heat is related to electricity; and the same sort of argument which
demonstrates the two latter to be related to one another shows that the
nervous forces are correlated to electricity; for the experiments of M.
Public-domain text, read in full here on John Shaqi.
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