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 chemical union of different kinds of atoms and volumes of matter in
the definite proportions of whole numbers entirely changes their
character and properties, as for example the chemical combination of one
atom of hydrogen and one atom of oxygen into water. The condensation is
often unexpected and wonderful; two different liquids are often
condensed into a solid, and the result of the chemical combination of
two different gases or vapours in quantitative proportions may be solid,
liquid or aëriform, a fact which could only have been discovered by
experiment. The powers of the atoms are changed and often highly exalted
by chemical union as in ammonia, a chemical compound of three atoms of
hydrogen and one of nitrogen, which absorbs 1,195 times more radiant
heat than its constituents whether simple or mixed. During chemical
combination light and electricity are often evolved, heat always. The
quantity given out is exactly proportional to the energy of the chemical
action, and is often so great and so rapidly evolved as to produce an
explosion by the sudden expansion of the air around. Whatever the
temperature may be, which is given out during the union of the atoms,
the very same quantity of heat is requisite to dissolve their union, and
the atoms are separated in the same definite proportions in which they
were combined.
Voltaic electricity both combines and resolves substances into their
component parts, strictly according to the law of definite proportions.
It combines eight parts by weight of oxygen and one part by weight of
hydrogen into water; and again when it decomposes water, one part by
weight of hydrogen is given out at the negative pole of the battery, and
eight parts by weight at the positive or zinc pole. For an electric
current weakens or neutralizes the force of affinity in one direction
and strengthens it in the other, so that the heterogeneous atoms of the
substance under its influence have a tendency to go in different
directions and appear at opposite poles. Mr. Faraday has established as
a general law, that the quantity of electricity requisite to unite the
atoms of matter, is precisely equal to the quantity requisite to
separate the same atoms again. Electro-chemical action, or the power of
electricity to combine and separate the heterogeneous atoms of matter,
is in direct proportion to the absolute quantity of electricity that
passes in the current. Hence the superior analytical power of voltaic
over static electricity, which has enormous intensity, but is very small
in quantity. The electric current separates molecular combinations which
yield to no other means: it is the most powerful instrument of analysis;
light is the most delicate.
Public-domain text, read in full here on John Shaqi.
On Molecular and Microscopic Science, Volume 1 (of 2) — John Shaqi
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