Novum organon renovatum: Being the second part of the philosophy of the inductive sciencesWhewell, William
Philosophy
Novum organon renovatum: Being the second part of the philosophy of the inductive sciences
Whewell, William
Science -- Philosophy
When it was seen that botany derived so great advantages from a
systematic improvement of its language, it was natural that other
sciences, and especially classificatory sciences, should endeavour
to follow its example. This attempt was made in Mineralogy by
Werner, and afterwards further pursued by Mohs. Werner's innovations
in the descriptive language of Mineralogy were the result of great
acuteness, an intimate acquaintance with minerals, and a most
methodical spirit: and were in most respects great improvements upon
previous practices. Yet the introduction of them into Mineralogy was
far from regenerating that science, as Botany had been regenerated
by the Linnæan reform. It would seem that the perpetual {274}
scrupulous attention to most minute differences, (as of lustre,
colour, fracture,) the greater part of which are not really
important, fetters the mind, rather than disciplines it or arms it
for generalization. Cuvier has remarked[14\4] that Werner, after his
first _Essay on the Characters of Minerals_, wrote little; as if he
had been afraid of using the system which he had created, and
desirous of escaping from the chains which he had imposed upon
others. And he justly adds, that Werner dwelt least, in his
descriptions, upon that which is really the most important feature
of all, the crystalline structure. This, which is truly a definite
character, like those of Botany, does, when it can be clearly
discerned, determine the place of the mineral in a system. This,
therefore, is the character which, of all others, ought to be most
carefully expressed by an appropriate language. This task, hardly
begun by Werner, has since been fully executed by others, especially
by Romé de l'Isle, Haüy, and Mohs. All the forms of crystals can be
described in the most precise manner by the aid of the labours of
these writers and their successors. But there is one circumstance
well worthy our notice in these descriptions. It is found that the
language in which they can best be conveyed is not that of words,
but of _symbols_. The relations of space which are involved in the
forms of crystalline bodies, though perfectly definite, are so
complex and numerous, that they cannot be expressed, except in the
language of mathematics: and thus we have an extensive and recondite
branch of mathematical science, which is, in fact, only a part of
the Terminology of the mineralogist.
[Note 14\4: _Éloges_, ii. 134.]
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