The tube should be filled by removing the funnel and closing the
orifice with a screw cap which comes with the apparatus. The cap E
is then removed and the tube filled in the ordinary manner. This
precaution is practiced to avoid carrying air bubbles into the tube
when filled directly through the funnel. With a little care, however,
this danger may be avoided, or should air bubbles enter they can be
easily removed by inclining the tube.
In case the solution used be not strictly pure it may still be employed
for testing the scale. Suppose, for instance, that a solution made up
in the usual way, has been made from a sample containing only 99.4 per
cent of sugar. Then in order to have this solution read 100° on the
scale the tube should be set at 201.2 millimeters, according to the
formula
200 × 100
--------- = 201.2.
99.4
By a similar calculation the position of the tube for reading any
desired degree on the scale can be determined. The importance of
controlling all parts of the scale in compensating instruments is
emphasized by the fact that a variation of only 0.016 millimeter in the
thickness of the compensating wedge will cause a change of one degree
in the reading of the instrument.
=79. Setting the Polariscope with Quartz Plates.=—Pure sugar is
not always at the command of the analyst, and it is more convenient
practically to adjust the instrument by means of quartz plates, the
sugar values of which have been previously tested for the character
of the light used. Assuming the homogeneity of a plate of quartz, the
degree of deflection which it imparts to a plane of polarized light
depends on the quality of the light, the thickness of the plate, and
the temperature.
In respect of the quality of light, red polarized rays are least, and
violet most deflected. The degree of rotation produced with any ray,
at a given temperature, is directly proportional to the thickness of
the plate. Temperature affects the rotating power of a quartz plate
in a degree highly significant from a scientific point of view and
not wholly negligible for practical purposes. The rotating power of a
quartz plate increases with the temperature and the variation may be
determined by the formula given below:[44]
The formula is applicable for temperatures between 0° and 100°. Its
values are expressed in degrees of angular measure which can be
converted into degrees of the sugar scale by appropriate factors:
_Formula.—a_ᵗ = _a_°(1 + 0.000146_t_);
in which _a_° = polarization in angular degrees at 0°, _t_ the
temperature of observation and _a_ᵗ the rotation desired.
_Example._—A quartz plate which has an angular rotation of 33° at 0°
will have a rotation at 20° of 33°.09834.
_a_ᵗ = 33(1 + 0.000146 × 20) = 33.09834.
Since in instruments using the ventzke scale one degree of the sugar
scale is equal to 0.3467 degree angular measure, the sugar value of the
quartz plate mentioned is equal to 95.47 percent; 33.09834 ÷ 0.3467 =
95.47.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account