The Principles of Chemistry, Volume IMendeleyev, Dmitry Ivanovich
Science
The Principles of Chemistry, Volume I
Mendeleyev, Dmitry Ivanovich
Argon; Chemistry; Periodic law
The quantity, therefore, of each element remains constant in all
chemical changes: a fact which may be deduced as a consequence of
the law of the indestructibility of matter, and of the conception
of elements themselves. Thus the equation expressing the law of the
indestructibility of matter acquires a new and still more important
signification. If we know the quantities of the elements which occur in
the re-acting substances, and if from these substances there proceed, by
means of chemical changes, a series of new compound substances, then the
latter will together contain the same quantity of each of the elements
as there originally existed in the re-acting substances. The essence
of chemical change is embraced in the study of how, and with what
substances, each element is combined before and after change.
In order to be able to express various chemical changes by equations,
it has been agreed to represent each element by the first or some two
letters of its (Latin) name. Thus, for example, oxygen is represented by
the letter O; nitrogen by N; mercury (hydrargyrum) by Hg; iron (ferrum)
by Fe; and so on for all the elements, as is seen in the tables on
page 24. A compound substance is represented by placing the symbols
representing the elements of which it is made up side by side. For
example, red mercury oxide is represented by HgO, which shows that it
is composed of oxygen and mercury. Besides this, the symbol of every
element corresponds with a certain relative quantity of it by weight,
called its 'combining' weight, or the weight of an atom; so that the
chemical formula of a compound substance not only designates the nature
of the elements of which it is composed, but also their quantitative
proportion. Every chemical process may be expressed by an equation
composed of the formulæ corresponding with those substances which take
part in it and are produced by it. The amount by weight of the elements
in every chemical equation must be equal on both sides of the equation,
since no element is either formed or destroyed in a chemical change.
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