The Boy's Playbook of Science: Including the Various Manipulations and Arrangements of Chemical and Philosophical Apparatus Required for the Successful Performance of Scientific Experiments in Illustration of the Elementary Branches of Chemistry and Natural PhilosophyPepper, John Henry
Science
The Boy's Playbook of Science: Including the Various Manipulations and Arrangements of Chemical and Philosophical Apparatus Required for the Successful Performance of Scientific Experiments in Illustration of the Elementary Branches of Chemistry and Natural Philosophy
Pepper, John Henry
Science -- Juvenile literature
The element boron may be obtained by placing some pure boracic acid and
some small bits of potassium in a tube together, and applying the flame
of a spirit-lamp, a glow of heat takes place, and when the tube is cold
the potash may be washed away, and the boron remains as a dark brownish
powder somewhat resembling carbon. M. St. Claire Deville and Wöhler have
lately made some important discoveries with respect to this element, and
disproved the statement that it is uncrystallizable. Their researches
prove it to be producible under three forms and of various colours, such
as honey-yellow and garnet-red, the crystals in some cases being like
diamonds of the purest water--_i.e._, limpid and transparent. A new
combination of aluminium and boron is stated to possess the most
remarkable properties. It is harder than the diamond, and in the state
of powder will cut and drill rubies, and even the diamond itself, with
more facility than diamond powder. Deville and Wöhler incline to the
belief that the diamond is dimorphous, and capable (in conditions yet to
be described) of assuming the same forms as boron. At a high
temperature, boron, like titanium, absorbs _nitrogen_ only from the
atmosphere, and rejects the oxygen. (Query, may not some of those
remarkably hard black diamonds prove to be boron?)
SILICON.
Symbol, Si; combining proportion, 21.3.
The great Berzelius was the first to obtain this element in 1823.
Silicon in the pure state is a dark brown powder; if ignited at a very
high temperature it assumes a chocolate colour, which is supposed to be
the allotropic condition, because it no longer burns when heated
moderately in oxygen or air, and is not attacked by hydrofluoric acid.
[Page 162] The most interesting combination of silicon is the teroxide
called silicic acid, silica (SiO_{3}). Silicon is next to oxygen so far
as regards its plentifulness, and is found in the state of silica in
nearly every mineral, but especially in rock crystal, quartz, flint,
sand, jasper, agate, and tripoli. It is largely used in the manufacture
of glass, and a most useful "soluble glass" is obtained by melting
together in a crucible fifteen parts of sand, ten parts of carbonate of
potash, and one part of charcoal.
Cold water merely washes away the excess of alkali, and after this is
done the powdered soluble glass may be boiled with water in the
proportion of one of the former with five of the latter, when it
gradually dissolves; the solution may be evaporated to a thick pasty
fluid, which looks like jelly when cool, and on exposure to the air in
thin films changes to a transparent, colourless, brittle, but not hard
glass. Wood, cotton, and linen fabrics are rendered less combustible
when coated with this glass, which excludes the oxygen of the air, and
it has lately been employed to fill up the porous and capillary openings
in stone exposed to the atmosphere, and is stated to be very efficacious
as a preservative of the stone in some cases.
SULPHUR.
Public-domain text, read in full here on John Shaqi.
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