History, Modern -- 19th century; Nineteenth century
H H H H
C——C C C
/ \ /
N CH and furfurane, O == ,
\ / \
C==C C C
H H H H
and so on. By means of conceptions such as these many interesting
compounds have been built up out of the elements which they contain;
_e.g._, urea and uric acid, constituents of urine; theobromine and
caffeine, the essential principles of cocoa and tea; alizarine and
indigo, valuable dyestuffs; and several of the alkaloids, bitter
principles contained in plants, of great medicinal value.
They have led, too, to the discovery of many brilliant colors, now
almost universally employed, to the exclusion of those less brilliant,
because less pure, derived from plants, and in one or two cases
from animals; the manufacture of gun-cotton, dynamite, and similar
high explosives; and to the development of the candle industry; the
sugar manufacture; to improvement in tanning, in brewing, and in the
preparation of gas and oils for illuminating purposes. In short, it may
be said that the industrial progress of the latter half of the century
has been due to the theoretical views of which a short sketch has just
been given.
Such formulas, however, can evidently not represent the true
constitution of matter, inasmuch as the atoms are imagined to lie
on a plane, whereas it is evident that they must occupy space
of three dimensions and possess the attributes of solidity. The
conception which led to the formulation of such views was due first
to Pasteur, in his later years director of the institute known by
his name at Paris, and more directly to LeBel and Van’t Hoff, now
professor at Berlin, independently of each other. In 1848 Pasteur
discovered that it was possible to separate the two varieties of
tartaric acid from each other; and that that one which rotated the
plane of polarized light to the right gave crystals with an extra
face, unsymmetrically disposed with regard to the other faces of the
crystal. The variety, the solution of which in water was capable of
producing left-handed rotation, also possessed a similar face, but so
placed that its reflection in a mirror reproduced the right-handed
variety. Pasteur also showed that a mixture of these acids gave
crystals not characterized by an unsymmetrically placed face; and
also that the solution was without action on polarized light. These
observations remained unexplained, until LeBel and Van’t Hoff, in
1874, simultaneously and independently devised a theory which has,
up till now, stood the test of research. It is briefly this: Imagine
two regular tetrahedra, or three-sided pyramids, standing each on its
triangular base. An idea can best be got by a model, easily made by
laying on a table three lucifer matches so as to form an equilateral
triangle, and erecting a tripod with three other matches, so that
each leg of the tripod stands on one corner of the triangle.
Public-domain text, read in full here on John Shaqi.
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