Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.Tissandier, Gaston
Science
Popular Scientific Recreations: in Natural Philosphy, Astronomy, Geology, Chemistry, etc., etc., etc.
Tissandier, Gaston
Scientific recreations
Silver is more easily affected than gold, and though so white when
fused, tarnishes rapidly in contact with air. It does not oxidize, but
sulphurizes under the influence of hydro-sulphuric emanations. Silver
does not combine directly with the oxygen of the atmosphere; but under
certain conditions it can dissolve great quantities of this gas. If it
is fused in a small bone cupel, in contact with the air, and left to
cool quickly, it expands in a remarkable manner, and gives off oxygen.
[Illustration: Fig. 315.—Jupiter’s Tree.]
Nitric acid dissolves silver very easily, by causing the formation
of abundant fumes. When the solution evaporates, we perceive white
crystals forming, which are nitrate of silver. This fused nitrate of
silver takes the name of _lunar caustic_, and is employed in medicine.
Nitrate of silver is very poisonous; it possesses the singular property
of turning black under the action of the sun’s rays, and is used in
many curious operations in photography. It is also employed in the
manufacture of dyes for the hair; it is applied to white hair with
gall-nut, and under the influence of the light it turns black, and
gives the hair a very dark shade. Salts of silver in solution with
water have the property of forming a precipitate under the influence of
chlorides, such as sea salt. If a few grains of common salt are thrown
into a solution of nitrate of silver, it forms an abundant precipitate
of chloride of silver, which blackens in the light. This precipitate,
insoluble in nitric acid, dissolves very easily in ammonia.
Platinum, which is the last of the precious metals that we have to
consider, is a greyish-white colour, and like gold is only affected by
a mixture of nitric acid and hydrochloric acid. It is the heaviest of
all the ordinary metals; its density is 21·50. It is very malleable
and ductile, and can be beaten into very thin sheets, and into wires as
slender as wires of gold. Platinum wires have even been made so fine
that the eye can scarcely perceive them; these are known as Wollaston’s
invisible wires. Platinum resists the action of the most intense fire,
and we can only fuse it by means of a blow-pipe and hydro-oxide gas.
Its inalterability and the resistance it opposes to fire render it very
valuable for use in the laboratory. Small crucibles are made of it,
which are used by chemists to calcine their precipitates in analytical
operations, or to bring about reactions under the influence of a high
temperature. Platinum may be reduced to very small particles; it then
takes the form of a black powder. In this pulverulent condition it
absorbs gases with great rapidity, to such an extent that a cubic
centimetre can condense seven hundred and fifty times its own volume
of hydrogen gas. It also condenses oxygen, and in a number of cases
acts as a powerful agent. Platinum is also obtained in porous masses
(“spongy platinum”), which produce phenomena of oxidation.
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