The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
The elements of the problem are these:--The atoms[8] of several ponderable
matters exist in combination: those which are combined having strong
affinities, but having also affinities less strong for some of the
surrounding atoms that are otherwise combined. The atoms thus united, and
thus mixed among others with which they are capable of uniting, are exposed
to the undulations of a medium that is so rare as to seem imponderable.
These undulations are of numerous kinds: they differ greatly in their
lengths, or in the frequency with which they recur at any given point. And
under the influence of undulations of a certain frequency, some of these
atoms are transferred from atoms for which they have a stronger affinity,
to atoms for which they have a weaker affinity. That is to say, particular
orders of waves of a relatively imponderable matter, remove particular
atoms of ponderable matter from their attachments, and carry them within
reach of other attachments. Now the discoveries of Bunsen and Kirchoff
respecting the absorption of particular luminiferous undulations by the
vapours of particular substances, joined with Prof. Tyndall's discoveries
respecting the absorption of heat by gases, show very clearly that the
atoms of each substance have a rate of vibration in harmony with ethereal
waves of a certain length, or rapidity of recurrence. Every special kind of
atom can be made to oscillate by a special order of ethereal waves, which
are absorbed in producing its oscillations; and can by its oscillations
generate this same order of ethereal waves. Whence it appears that immense
as is the difference in density between ether and ponderable matter, the
waves of the one can set the atoms of the other in motion, when the
successive impacts of the waves are so timed as to correspond with the
oscillations of the atoms. The effects of the waves are, in such case,
cumulative; and each atom gradually acquires a momentum made up of
countless infinitesimal momenta. Note, further, that unless the members of
a chemically-compound molecule are so bound up as to be incapable of any
relative movements (a supposition at variance with the conceptions of
modern science) we must conceive them as severally able to vibrate in
unison or harmony with those same classes of ethereal waves that affect
them in their uncombined states. While the compound molecule as a whole
will have some new rate of oscillation determined by its attributes as a
whole; its components will retain their original rates of oscillation,
subject only to modifications by mutual influence. Such being the
circumstances of the case we may partially understand how the Sun's rays
can effect chemical decompositions. If the members of a diatomic molecule
stand so related to the undulations falling on them, that one is thrown
into a state of increased oscillation and the other not; it is manifest
that there must arise a tendency towards the dislocation of the two--a
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