The Principles of Chemistry, Volume IIMendeleyev, Dmitry Ivanovich
Science
The Principles of Chemistry, Volume II
Mendeleyev, Dmitry Ivanovich
Argon; Chemistry; Periodic law
^b The majority of the salts of the gadolinite and cerite metals
are colourless, but those of didymium and erbium are
rose-coloured, the salts of the higher oxide of cerium, CeX_{4},
yellow, of the higher oxide of terbium, yellow, &c. Thus, the
first metals obtained from gadolinite were yttrium, giving
colourless, and erbium, giving rose-coloured, salts. Afterwards it
was found that the salts of erbium of former investigators
contained numerous colourless salts of scandium, ytterbium, &c.,
so that a coloration sometimes indicates the presence of a small
impurity, as was long known to be the case in minerals, and
therefore this point of distinction cannot be considered
trustworthy.
^c In a solid state and in solutions, the salts of didymium,
samarium, holmium, &c., give characteristic absorption spectra, as
we pointed out in Chapter XIII., and this naturally is connected
with the colour of these salts. The most important point is, that
those metals which do not give an absorption spectrum--for
example, lanthanum, yttrium, scandium, and ytterbium--may be
obtained free from didymium, samarium, and the other metals giving
absorption spectra, because the presence of the latter may be
easily recognised by means of the spectroscope, whilst the
presence of the former in the latter cannot be distinguished, and
therefore the purification of the former can be carried further
than that of the latter. We may further remark that the
sensitiveness of the spectrum reaction for didymium is so great
that it is possible with a layer of solution half a metre thick to
recognise the presence of 1 part of didymium oxide (as salt) in
40,000 parts of water. Cossa determined the presence of didymium
(together with cerium and lanthanum) in apatites, limestones,
bones, and the ashes of plants by this method. The main group of
dark lines of didymium correspond with wave-lengths of from 580 to
570 millionths mm.; and the secondary to about 520, 730, 480, &c.
The chief absorption bands of samarium are 472-486, 417, 500, and
559. Besides which, Crookes applied the investigation of the
spectra of the phosphorescent light which is emitted by certain
earths in an almost perfect vacuum, when an electric discharge is
passed through it, to the discovery and characterisation of these
rare metals. But it would seem that the smallest admixture of
other oxides (for example, bismuth, uranium) so powerfully
influences these spectra that the fundamental distinctions of the
oxides cannot be determined by this method. Besides which, the
spectra obtained by the passage of sparks through solutions or
powders of the salts are determined and applied to distinguishing
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