Meteorology; or, Weather ExplainedM'Pherson, J. G. (John Gordon)
Science
Meteorology; or, Weather Explained
M'Pherson, J. G. (John Gordon)
Meteorology
I shall now give you a general idea of the apparatus. Into a common glass
flask of carafe shape, and flat-bottomed, of 30 cubic inches capacity, are
passed two small tubes, at the end of one of which is attached a small
square silver table, 1 inch in length. A little water having been
inserted, the flask is inverted, and the table is placed exactly 1 inch
from the inverted bottom, so that the contents of air right above the
table are 1 cubic inch. This observing table is divided into 100 equal
squares, and is highly polished, with the burnishing all in one direction,
so that during the observations it appears dark, when the fine
mist-particles glisten opal-like with the reflected light in order that
they may be more easily counted. The tube to which the silver table is
attached is connected with two stop-cocks, one of which can admit a small
measured portion of the air to be examined. The other tube in the flask is
connected with an air-pump of 10 cubic inches capacity. Over the flask is
placed a covering, coloured black in the inside. In the top of this cover
is inserted a powerful magnifying glass, through which the particles on
the silver table can be easily counted. A little to the side of this
magnifier is an opening in the cover, through which light is concentrated
on the table.
To perform the experiment, the air in the flask is exhausted by the
air-pump. The flask is then filled with filtered air. One-tenth of a cubic
inch of the air to be examined is then introduced into the flask, and
mixed with the 30 cubic inches of dustless air. After one stroke of the
air-pump, this mixed air is made to occupy an additional space of 10 cubic
inches; and this rarefying of the air so chills it that condensation of
the water-vapour takes place on the dust-particles. The observer, looking
through the magnifying-glass upon the silver table, sees the
mist-particles fall like an opal shower on the table. He counts the number
on a single square in two or three places, striking an average in his
mind. Suppose the average number upon a single square were five, then on
the whole table there would be 500; and these 500 particles of dust are
those which floated invisibly in the cubic inch of mixed air right above
the table. But, as there are 40 cubic inches of mixed air in the flask and
barrel, the number of dust-particles in the whole is 20,000. That is,
there are 20,000 dust-particles in the same quantity of common air
(one-tenth of a cubic inch) which was introduced for examination. In other
words, a cubic inch of the air contained 200,000 dust-particles--nearly a
quarter of a million.
The day I used the instrument we counted 4,000,000 of dust-particles in a
cubic inch of the air outside of the room, due to the quantity of smoke
from the passing trains. Dr. Aitken has counted in 1 cubic inch of air
immediately above a Bunsen flame the fabulous number of 489,000,000 of
dust-particles.
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.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account