_Cryoscopy._--The usual method employed for the determination of the
molecular concentration and osmotic pressure of a solution is by
cryoscopy--the measurement of its temperature of congelation. A very
sensitive thermometer is used, the scale of which extends over only 5deg
and is divided into hundredths of a degree. The liquid under examination is
placed in a test tube, in which the bulb of the thermometer is plunged, and
this is supported in a second tube with an air space all round it. The
whole is then suspended to the under side of the cover of the refrigerating
vessel, which may be cooled either by filling it with a freezing mixture,
or by the evaporation of ether. During the whole of the operation the
liquid is agitated by a mechanical stirrer. The first step is to determine
the freezing point of distilled water. As the water cools the mercury
gradually descends in the stem of the thermometer till it reaches a point
below the zero mark at 0deg C. As soon as ice begins to form the mercury
rises, at first rapidly and then more slowly, reaches a maximum, and
finally descends again. This maximum reading is the true point of
congelation. The inner tube is then emptied, care being taken to leave a
few small ice crystals to serve as centres of congelation for the
subsequent experiment, thus avoiding supercooling of the solution. The
process is then repeated with the solution under examination. The
difference between {22} the two freezing points is the required "lowering
of the freezing point."
Cryoscopy is the method most used in biological research to determine
molecular concentration. It has, however, some grave defects. It
necessitates several cubic centimetres of the liquid under examination. It
gives us the constants of the solution at the temperature of freezing,
which is far below that of life. Organic liquids are easily altered and are
extremely sensible to minute differences of temperature, cryoscopy
therefore gives us no information as to the constitution of solutions under
normal conditions. It is desirable to have some other method of determining
molecular concentration and the other interdependent constants at the
normal temperature of life. A much better method, were it possible, would
be the direct determination of the vapour tension of the solutions under
normal conditions of temperature and pressure.
_Molecular Lowering of the Freezing Point._--For every substance whose
solution is not ionized and therefore does not conduct electricity, the
lowering of the freezing point is the same, viz. 1.85deg C. for each
gramme-molecule of the solute per litre of the solution.
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