How to become a scientist : $b Giving interesting and instructive experiments in chemistry, mechanics, acoustics and pyrotechnicsWarford, Aaron A.
Science
How to become a scientist : $b Giving interesting and instructive experiments in chemistry, mechanics, acoustics and pyrotechnics
Warford, Aaron A.
Scientific recreations
If a piece of charcoal, which is pure carbon or nearly so, be ignited,
and introduced into a jar containing oxygen or common atmospheric
air, the product will be carbonic gas only, of which we shall speak
presently. As most combustible bodies contain both carbon and hydrogen,
the result of their combination is carbonic acid and water. This is the
case with the gas used for illumination; and in order to prevent the
water so produced from spoiling goods in shops, various plans have been
devised for carrying off the water when in the state of steam. This
is generally accomplished by suspending over the burners glass bells,
communicating with tubes opening into the chimney, or passing outside
the house.
To show that oxygen, or some equivalent, is necessary for the support
of combustion, fix two or three pieces of wax-taper on flat pieces
of cork, and set them floating on water in a soup-plate, light them,
and invert over them a glass jar; as they burn, the heat produced may
perhaps at first expand the air so as to force a small quantity out of
the jar, but the water will soon rise in the jar, and continue to do so
until the tapers expire, when you will find that a considerable portion
of the air has disappeared, and what remains will no longer support
flame; that is, the oxygen has been converted partly into water, and
partly into carbonic acid gas, by uniting with the carbon and hydrogen,
of which the taper consists, and the remaining air is principally
nitrogen, with some carbonic acid; the presence of the latter may be
proved by decanting some of the remaining air into a bottle, and then
shaking some lime-water with it, which will absorb the carbonic acid
and form chalk, rendering the water quite turbid.
Nitrogen.
This gas is, as its name implies, the producer of niter, or at least
forms a portion of the nitric acid contained in niter. It is rather
lighter than atmospheric air, colorless, transparent, incapable of
supporting animal life, on which account it is sometimes called
azote--an objectionable name, as it is not a poison like many other
gases, but destroys life only in the absence of oxygen. This gas
extinguishes all burning bodies plunged into it, and does not itself
burn. It exists largely in nature, for four-fifths of the atmosphere
consists of nitrogen gas. It is also an important constituent of animal
bodies, and is found in the vegetable world.
Nitrogen may be most easily obtained for experiment by setting fire
to some phosphorus contained in a porcelain or metallic cup, placed
under a gas jar full of air, and resting on the shelf of the pneumatic
trough, or in a soup-plate filled with water.
Nitrogen combines in five different proportions with oxygen producing
five distinct chemical compounds, named respectively nitrous oxide,
nitric oxide, nitric tri-oxide, nitric tetroxide, nitric pent-oxide,
which last, united with water, forms nitric acid, now called hydric
nitrate, as nitrous acid is termed hydric nitrite.
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