Scientific American Supplement, No. 358, November 11, 1882Various
Science
Scientific American Supplement, No. 358, November 11, 1882
Various
Science -- Periodicals
Small graphite crucibles with covers, as shown in section, in Fig. 2,
serve to guard against losing the ball, to handle it by when hot, and to
protect it against loss of heat during transmission from the fire to the
pyrometer. To guard against overturning the crucibles, moulded firebrick
should be provided to receive them, two crucibles being put into one
brick, in the same exposure, whenever great accuracy is desired, each
serving as a check on the other, and their mean being likely to be more
nearly correct than either one if they differ. The firebrick cover
is occasionally useful to retard cooling, if, by reason of local
obstructions, some little delay is unavoidable in transferring the
balls from the fire to the water of the pyrometer. With convenient
arrangements, this may be done in three seconds. After observing the
temperature of the water, make ready for the immersion of the heat
carrier by raising the agitator until a space of only about 1.5 of an
inch is left between its rim and the cover. An instant before putting
in the heat carrier--"pouring" it from the crucible--lift the cover and
agitator both together, so that the rim of the latter is level with the
sloping top of the instrument. The agitator then receives the hot ball
without shock, and no harm is done. If the ball goes below the agitator,
it is likely to injure the bottom of the cup. If, on taking the
temperature of the water before the immersion of the heat carrier, any
change is observed, either rising or falling, the direction and rate of
such change, and the exact interval of time between the last recorded
observation and the immersion, should be noted, in order to determine
the exact temperature of the water at the instant of immersion. The
temperature of the water will continue to rise as long as the heat
carrier gives out heat faster than the cell loses it. The rise will grow
gradually slower until it ceases, and the maximum can be very accurately
determined. Examples of the mode of using the tables, and of determining
the true temperature of the heat carrier at the instant of immersion
from the observations with the instrument, are given in the table on
pages 170 and 171 of this Journal for September. A method of using the
tables, by which a closer approximation to the true temperature may be
reached, will be pointed out in a subsequent article.
[Illustration: Fig. 2.]
DETERMINATION OF THE CALORIFIC CAPACITY OF THE METALS OF THE PYROMETER,
in terms of water, i.e., in British thermal units.
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