The Principles of Biology, Volume 1 (of 2) — John Shaqi
The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
Further, it seems a not improbable conclusion, that this formation of large
aggregates of elementary atoms and resulting diminution of self-sustaining
power, must be accompanied by a decrease of those dimensional contrasts to
which polarity is ascribable. A sphere is the figure of equilibrium which
any aggregate of units tends to assume, under the influence of simple
mutual attraction. Where the number of units is small and their mutual
polarities are decided, this proclivity towards spherical grouping will be
overcome by the tendency towards some more special form, determined by
their mutual polarities. But it is manifest that in proportion as an
aggregate molecule becomes larger, the effects of simple mutual attraction
must become relatively greater; and so must tend to mask the effects of
polar attraction. There will consequently be apt to result in highly
compound molecules like these organic ones, containing hundreds of
elementary atoms, such approximation to the spherical form as must involve
a less distinct polarity than in simpler molecules. If this inference be
correct, it supplies us with an explanation both of the chemical inertness
of these most complex organic substances, and of their inability to
crystallize.
§ 6. Here we are naturally introduced to another aspect of our subject--an
aspect of great interest. Professor Graham has published a series of
important researches, which promise to throw much light on the constitution
and changes of organic matter. He shows that solid substances exist under
two forms of aggregation--the _colloid_ or jelly-like, and the
_crystalloid_ or crystal-like. Examples of the last are too familiar to
need specifying. Of the first may be named such instances as "hydrated
silicic acid, hydrated alumina, and other metallic peroxides of the
aluminous class, when they exist in the soluble form; with starch, dextrine
and the gums, caramel, tannin, albumen, gelatine, vegetable and animal
extractive matters." Describing the properties of colloids, Professor
Graham says:--"Although often largely soluble in water, they are held in
solution by a most feeble force. They appear singularly inert in the
capacity of acids and bases, and in all the ordinary chemical relations." *
* * "Although chemically inert in the ordinary sense, colloids possess a
compensating activity of their own arising out of their physical
properties. While the rigidity of the crystalline structure shuts out
external impressions, the softness of the gelatinous colloid partakes of
fluidity, and enables the colloid to become a medium of liquid diffusion,
like water itself." * * * "Hence a wide sensibility on the part of colloids
to external agents. Another and eminently characteristic quality of
colloids is their mutability." * * * "The solution of hydrated silicic
acid, for instance, is easily obtained in a state of purity, but it cannot
be preserved. It may remain fluid for days or weeks in a sealed tube, but
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