The Principles of Chemistry, Volume IMendeleyev, Dmitry Ivanovich
Science
The Principles of Chemistry, Volume I
Mendeleyev, Dmitry Ivanovich
Argon; Chemistry; Periodic law
three hydrates of the above composition for this salt.
[65 bis] Sodium acetate (C_{2}H_{3}O_{2}Na,3H_{2}O) melts at 58°, but
re-solidifies only on contact with a crystal, otherwise it
may remain liquid even at 0°, and may be used for obtaining a
constant temperature. According to Jeannel, the latent heat
of fusion is about 28 calories, and according to Pickering
the heat of solution 35 calories. When melted this salt boils
at 123°--that is, the tension of the vapour given off at that
temperature equals the atmospheric pressure.
It is most important to recognise in respect to the water of
crystallisation that its ratio to the quantity of the substance with
which it is combined is always a constant quantity. However often we
may prepare copper sulphate, we shall always find 36·14 p.c. of water
in its crystals, and these crystals always lose four-fifths of their
water at 100°, and one-fifth of the whole amount of the water contained
remains in the crystals at 100°, and is only expelled from them at a
temperature of about 240°. What has been said about crystals of copper
sulphate refers also to crystals of every other substance, which contain
water of crystallisation. It is impossible in any of these cases to
increase either the relative proportion of the salt or of the water,
without changing the homogeneity of the substance. If once a portion of
the water be lost--for instance, if once efflorescence takes place--a
mixture is obtained, and not a homogeneous substance, namely a mixture
of a substance deprived of water with a substance which has not yet lost
water--_i.e._ decomposition has already commenced. This constant ratio
is an example of the fact that in chemical compounds the quantity of
the component parts is quite definite; that is, it is an example of the
so-called _definite chemical compounds_. They may be distinguished from
solutions, and from all other so-called indefinite chemical compounds,
in that at least one, and sometimes both, of the component parts may be
added in a large quantity to an indefinite chemical compound, without
destroying its homogeneity, as in solutions, whilst it is impossible
to add any one of the component parts to a definite chemical compound
without destroying the homogeneity of the entire mass. Definite
chemical compounds only decompose at a certain rise in temperature;
on a lowering in temperature they do not, at least with very few
exceptions, yield their components like solutions which form ice or
compounds with water of crystallisation. This leads to the assumption
that solutions contain water as water,[66] although it may sometimes
be in a very small quantity. Therefore solutions which are capable
of solidifying completely (for instance, crystallo-hydrates capable
of melting) such as the compound of 84-1/2 parts of sulphuric acid,
H_{2}SO_{4}, with 15-1/2 parts of water, H_{2}O, or H_{2}SO_{4},H_{2}O
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