The scale fixed to the barometer is divided into inches, tenths, and
half-tenths, so that each division on this scale is equal to 0.050 inch.
The small movable scale or vernier attached to the instrument enables
the observer to take more accurate readings; it is moved by a rack and
pinion. Twenty-four spaces on the fixed scale correspond to twenty-five
spaces on the vernier; hence each space on the fixed scale is larger than
a space on the vernier by the twenty-fifth part of 0.050 inch, which is
0.002. Every long line on the vernier (marked 1, 2, 3, 4, and 5) thus
corresponds to 0.010 inch. If the lower edge of the vernier coincides
with a line on the fixed scale, and the upper edge with the twenty-fourth
division of the latter higher up, the reading is at once supplied by
the fixed scale as in A (Fig. 5), where it is 29.500 inches. If this
coincidence does not take place, then read off the division on the fixed
scale, above which the lower edge of the vernier stands. In B (Fig. 5)
this is 29.750 inches. Next look along the vernier until one of its lines
is found to coincide with a line on the fixed scale. In B this will be
found to be the case with the second line above the figure “2.” The
reading of the barometer is therefore:—
On fixed scale 29.750
On vernier (12 × .002) .024
------
Correct reading 29.774
Should two lines on the vernier be in equally near agreement with two on
the fixed scale, then the intermediate value should be adopted.
5. Lower the mercury in the cistern by turning the screw at the bottom
until the surface is well below the ivory point; this is done to prevent
the collection of impurities on the surface about the point.
The transport of barometers requires very great care in order to prevent
the introduction of air into the tube or the fracture of the tube by
the impact of the mercury against the top. To reduce the risk of these
accidents, the barometer must be carried with the tube quite _full of
mercury_, and in an inverted position, at least with the cistern end kept
higher than the top of the tube. The flexible cistern of the Fortin type
of barometer allows of it being screwed up tight so as to fill the tube
and close the lower end of it. In case of breakage, the operation of
fitting a new tube is not very difficult, but unless the tube has been
carried out ready filled with mercury, this cannot well be attempted. In
order to drive out the film of air adhering to the glass on the inside,
it is necessary, after filling the tube, to raise its temperature to
the boiling-point of mercury. No one should attempt either to fill or
to change a barometer tube unless he has had practice in doing so under
expert supervision beforehand.
Public-domain text, read in full here on John Shaqi.
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