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
Oxygen is largely distributed over our globe, both in its uncombined
state, and in union with other substances. Besides forming one-fifth of
the atmosphere, it forms eight-ninths by weight of all the water in the
ocean, rivers, and springs on the face of the whole earth. It also, in
combination with various metals, forms the various earths and minerals
of which the crust of the earth consists, so that it is the most
abundant and widely distributed substance in nature, and in combination
with other elements, forms nearly half the weight of the solid earth.
In its uncombined state it is a colorless gas, somewhat heavier than
atmospheric air, without taste or smell. It is a powerful supporter of
combustion, and is absolutely necessary for the support of animal life,
which cannot exist for any time without a free supply of this gas,
which is constantly consumed in the act of breathing and is replaced
by an equivalent portion of carbonic acid gas. The want of oxygen is
partly the cause of the oppression felt in crowded rooms, where the
air cannot be renewed so fast as is required for the number of persons
who are constantly consuming the oxygen; and if an animal be confined
under a glass jar inverted over water, it will presently die, just for
the same reason that burning tapers are extinguished under similar
circumstances.
If a jet of this gas be thrown upon a piece of charcoal, sulphur, or
almost any combustible body in a state of ignition, it will make it
burn with great vividness and rapidity.
FOOTNOTE:
[1] Some _boiling_ water should be added to the mass left in the retort
directly the gas has ceased to come away, or it will adhere to the
glass so firmly, that the retort will certainly be spoilt.
Experiment.
But by far the most intense heat, and most brilliant light, may be
produced by introducing a piece of phosphorus into a jar of oxygen.
The phosphorus may be placed in a small copper cup, with a long handle
of thick wire passing through a hole in a cork that fits the jar. The
phosphorus must first be ignited; and, as soon as it is introduced into
the oxygen, it gives out a light so brilliant that no eye can bear it,
and the whole jar appears filled with an intensely luminous atmosphere.
It is well to dilute the oxygen with about one-fourth part of common
air to moderate the intense heat which is nearly certain to break the
jar if pure oxygen is used.
Experiment.
Public-domain text, read in full here on John Shaqi.
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