The Principles of Chemistry, Volume IMendeleyev, Dmitry Ivanovich
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The Principles of Chemistry, Volume I
Mendeleyev, Dmitry Ivanovich
Argon; Chemistry; Periodic law
[49] The variation of the vapour tension of solutions has been
investigated by many. The best known researches are those of
Wüllner in Germany (1858-1860) and of Tamman in Russia (1887).
The researches on the temperature of the formation of ice from
various solutions are also very numerous; Blagden (1788),
Rüdorff (1861), and De Coppet (1871) established the beginning,
but this kind of investigation takes its chief interest from
the work of Raoult, begun in 1882 on aqueous solutions, and
afterwards continued for solutions in various other easily frozen
liquids--for instance, benzene, C_{6}H_{6} (melts at 4·96°),
acetic acid, C_{2}H_{4}O_{2} (16·75°), and others. An especially
important interest is attached to these cryoscopic investigations
of Raoult in France on the depression of the freezing point,
because he took solutions of many well-known carbon-compounds
and discovered a simple relation between the molecular weight
of the substances and the temperature of crystallisation of the
solvent, which enabled this kind of research to be applied to
the investigation of the nature of substances. We shall meet
with the application of this method later on (_see also_ Chapter
VII.), and at present will only cite the deduction arrived at
from these results. The solution of one-hundredth part of that
molecular gram weight which corresponds with the formula of a
substance dissolved (for example, NaCl = 58·5, C_{2}H_{6}O = 46,
&c.) in 100 parts of a solvent lowers the freezing point of its
solution in water 0·185°, in benzene 0·49°, and in acetic acid
O·39°, or twice as much as with water. And as in weak solutions
the depression or fall of freezing point is proportional to the
amount of the substance dissolved, it follows that the fall of
freezing point for all other solutions may be calculated from
this rule. So, for instance, the weight which corresponds with
the formula of acetone, C_{3}H_{6}O is 58; a solution containing
2·42, 6·22, and 12·35 grams of acetone per 100 grams of water,
forms ice (according to the determinations of Beckmann) at
0·770°, 1·930°, and 3·820°, and these figures show that with
a solution containing 0·58 gram of acetone per 100 of water
the fall of the temperature of the formation of ice will be
0·185°, 0·180°, and 0·179°. It must be remarked that the law of
proportionality between the fall of temperature of the formation
of ice, and the composition of a solution, is in general only
approximate, and is only applicable to weak solutions (Pickering
and others).
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