On Molecular and Microscopic Science, Volume 1 (of 2) — John Shaqi
On Molecular and Microscopic Science, Volume 1 (of 2)Somerville, Mary
History
On Molecular and Microscopic Science, Volume 1 (of 2)
Somerville, Mary
Matter -- Constitution; Microscopy; Natural history
The metals derived from non-alkaline earths are glucinum, yttrium,
thorinum, zirconium, and aluminium, which is the only one of any
interest: it is now becoming a very useful metal. It combines readily
with oxygen to form clay. The ruby, sapphire, and oriental topaz are
merely coloured varieties of corundum, which is nothing but crystallised
clay. Rubidium, cæsium, and thallium were discovered by spectrum
analysis.
The avidity of some of these metals for oxygen is quite remarkable:
potassium and rubidium inflame when they touch ice or cold water; they
decompose the water and combine with its oxygen. Calcium becomes
luminous in warm water, and burns with intense light when heated to
redness; but a magnesium wire burns with such intense brilliancy that it
has been employed for photography, and will probably become useful for
household purposes, as two ounces and a half of magnesium wire when
burnt give a light equal to that of twenty pounds’ weight of stearine
candles.
The metals whose oxides are not reducible by heat without the aid of
some form of carbon include nearly all the useful metals. They are all
polyatomic, that is, they combine with other elements in the number of
atoms varying from two to eight, and are divided into seven groups in
regard to this property. For instance, zinc, copper, and cadmium are
diatomic. Zinc is invaluable as a source of electric light and heat in
the voltaic battery, and its vapour burns brilliantly. Copper is one of
the most useful of metals, while cadmium is of no value at all. Nickel,
cobalt, and uranium form the triatomic group; they are remarkable for
their complex spectra. Nickel is usually an ingredient in meteorites;
cobalt is employed in pigments and in sympathetic inks; and the oxide of
uranium is used to stain glass, and gives it some very peculiar
properties, as will be shown. The precious metals have a feeble affinity
for oxygen at any temperature, and their oxides are decomposed by heat
alone, and sometimes even by the undulations of light.
Metals are excellent conductors of heat, but they vary exceedingly in
that respect; both theory and experiment prove that the best conductors
are invariably the worst radiators. In fact those atoms which transfer
the greatest amount of motion to the ethereal medium, that is, which
radiate most powerfully, are the least competent to communicate motion
to each other, that is, to conduct with facility. Silver and copper are
the best conductors of heat, but the worst radiators. These two metals
are the best conductors of electricity, but it is influenced by
temperature; for MM. Matthiessen and Von Bose’s experiments have proved
that all pure metals in a solid state vary in conducting power to the
same extent between zero and 100° Cent., and that the alkaline metals
conduct electricity better when heated than when cold.
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