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
Sulphur becomes allotropic by the continued application of heat; that is
to say, it entirely changes its appearance and character, though it
remains chemically the same. Naturally it is yellow and brittle, but
when fused, it is a colourless pellucid fluid which by continued heat is
changed into a black tenacious substance that becomes like India rubber
or gutta percha when thrown into water. In this allotropic state it is
endowed with properties more powerful, energetic, and exalted; its
tendencies to act chemically being increased like those of ozone. That
this black tenacious substance is chemically the same with common
sulphur there can be no doubt, for when it is exposed to greater heat,
it again becomes a colourless pellucid fluid, which thrown into water
resumes the form of brittle yellow sulphur.
These new arrangements among atoms of the same kind show that the
immutability of matter is not without exceptions.
The animal kingdom is the great reservoir of phosphorus, a simple
substance that is never found uncombined. It is sparingly met with in
the vegetable kingdom, and still less in the mineral, but may be
procured abundantly from calcined bones. When pure it is colourless,
transparent, solid, extremely poisonous, and so inflammable that it must
be kept in water. In air it is in continual combustion with oxygen,
during which ozone is produced. When burnt in a current of air
phosphorus leaves a residuum consisting of two substances, of which one
is an acid, the other is red allotropic phosphorus, which has been
extensively used in the manufacture of lucifer matches, because its
fumes are not deleterious, and because it inflames less easily than
common phosphorus, to which it is reduced by heat or friction, which
generates heat.
Silicon is a simple substance, never found alone, but when forty-eight
parts of it are combined with fifty-two parts of oxygen gas it forms
rock crystal, the purest form of silica or quartz. Silica is so abundant
that it may be said to constitute the basis of the mineral world. The
sand on the sea-shore, which is the debris of quartz rocks, shows how
universally it prevails. It is even abundant in the vegetable kingdom,
giving strength to the stalks and leaves of the grasses, and may be felt
in the harshness of the beards of wheat and barley. Silicon exists in
three different states—the amorphous, which has no form; the graphic,
which takes the form of small hexagonal plates; and that of octohedral
silicon: hence this substance is dimorphous.
A singular analogy obtains between silicon and carbon: the amorphous
form of silicon corresponds to charcoal, the graphic form of silicon
corresponds to the graphic form of carbon, and the octohedral form of
silicon to the diamond; yet the chemical relations between the two
substances are very small.
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