The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
shall see the significance of this extreme readiness shown by its compounds
to undergo changes. Returning from these facts parenthetically introduced,
we have next to note that though among the diatomic compounds of the four
chief organic elements, there are a few active ones, yet the majority of
them display a smaller degree of chemical energy than the average of
diatomic compounds. Water is the most neutral of bodies: usually producing
little chemical alteration in the substances with which it combines; and
being expelled from most of its combinations by a moderate heat. Carbonic
acid is a relatively feeble acid: the carbonates being decomposed by the
majority of other acids and by ignition. The various hydro-carbons are but
narrow in the range of their comparatively weak affinities. The compounds
formed by ammonia have not much stability: they are readily destroyed by
heat, and by the other alkalies. The affinities of cyanogen are tolerably
strong, though they yield to those of the chief acids. Of the several
oxides of nitrogen, it is to be remarked that, while those containing the
smaller proportions of oxygen are chemically inert, the one containing the
greatest proportion of oxygen (nitric acid) though chemically active, in
consequence of the readiness with which one part of it gives up its oxygen
to oxidize a base with which the rest combines, is nevertheless driven from
all its combinations by a red heat.
These diatomic compounds, like their elements, are to a considerable degree
characterized by the prevalence among them of allotropism; or, as it is
more usually called when displayed by compound bodies--isomerism. Professor
Graham finds reason for thinking that a change in atomic arrangements of
this nature, takes place in water, at or near the melting point of ice. In
the various series of hydro-carbons, differing from each other only in the
ratios in which the elements are united, we find not simply isomerism but
polymerism occurring to an almost infinite extent. In some series of
hydro-carbons, as, for example, the terpenes, we find isomerism and at the
same time a great tendency to undergo polymerisation. And the relation
between cyanogen and paracyanogen is, as we saw, a polymeric one.
There is one further fact respecting these diatomic compounds of the chief
organic elements, which must not be overlooked. Those of them which form
parts of the living tissues of plants and animals (excluding water which
has a mechanical function, and carbonic acid which is a product of
decomposition) belong for the most part to one group--the
carbo-hydrates.[4] And of this group, which is on the average characterized
by comparative instability and inertness, these carbo-hydrates found in
living tissues are among the most unstable and inert.
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