The Boy's Playbook of Science: Including the Various Manipulations and Arrangements of Chemical and Philosophical Apparatus Required for the Successful Performance of Scientific Experiments in Illustration of the Elementary Branches of Chemistry and Natural PhilosophyPepper, John Henry
Science
The Boy's Playbook of Science: Including the Various Manipulations and Arrangements of Chemical and Philosophical Apparatus Required for the Successful Performance of Scientific Experiments in Illustration of the Elementary Branches of Chemistry and Natural Philosophy
Pepper, John Henry
Science -- Juvenile literature
To return to our first experiment with the gunpowder: take sulphur,
place some in an iron ladle, heat it over a gas flame till it catches
fire, then ascend a ladder, and pour it gently, from the greatest height
you can reach, into a pail of warm water: if this experiment is
performed in a darkened room a magnificent and continuous stream of fire
is obtained, of a blue colour, without a single break in its whole
length, provided the ladle is gradually inclined and emptied. The
substance that drops into the warm water is no longer yellow and hard,
but is red, soft, and plastic; it is still sulphur, though it has taken
a new form, because that element is dimorphous ([Greek: _dis_] twice,
and [Greek: _morphê_] a form), and, Proteus-like, can assume two forms.
Take another ladle, and melt some nitre in it at a dull red heat, then
add a small quantity of sulphur, which will burn as before; and now,
after waiting a few minutes, repeat the same experiment by pouring the
liquid from the steps through the air into water; observe it no longer
flames, and the substance received into the water is not red and soft
and plastic, but is white, or nearly so, and rapidly dissolves away in
the water. The sulphur has united with the oxygen of the nitre and
formed sulphuric acid, which combines with the potash and forms sulphate
of potash; here, then, oxygen, sulphur, and potassium, have united and
formed a salt in which the separate properties of the three bodies have
completely disappeared; to prove this, it is only necessary to dissolve
the sulphate of potash in water, and after filtering the solution, or
allowing it to settle, till it becomes quite clear and bright, some
solution of baryta may now be added, when a white precipitate is thrown
down, consisting of sulphate of baryta, which is insoluble in nitric or
other strong acids. The behaviour of a solution of sulphate of potash
with a nitrate of baryta may now be contrasted with that of the elements
it contains; on the addition of sulphur to a solution of nitrate of
baryta no change whatever takes place, because the sulphur is perfectly
insoluble. If a stream of oxygen gas is passed from a bladder and jet
through the same test, no effect is produced; the nitrate of baryta has
already acquired its full proportion of oxygen, and no further addition
has any power to change its nature; finally, if a bit of the metal
potassium is placed in the solution of nitrate of baryta it does not
sink, being lighter than water, and it takes fire; but this is not in
any way connected with the presence of the test, as the same thing will
happen if another bit of the metal is placed in water--it is the oxygen
of the latter which unites rapidly with the potassium, and causes it to
become so hot that the hydrogen, escaping around the little red-hot
globules, takes fire; moreover, the fact of the combustion of the
potassium under such circumstances is another striking proof of the
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