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
The “Electrophore,” or “_Electrophorus_,” we have already learned
to make for ourselves, as also the Leyden Jar. But we give cuts of
them. The former is very simple, and can be made by mixing two parts
of shell-lac and one of turpentine, and pouring the mixture upon a
metal plate. If this be rubbed with a cat’s skin when dry, and a metal
cover with a glass handle be placed upon it, it will be found that the
positive and negative electricity are collected on the lower and upper
surfaces of the plate respectively, and can be drawn away with a spark
as before, and made use of.
[Illustration: Fig. 209.—Electrophorus.]
The Leyden Jar requires a little more detailed description, as it is
to it we are indebted for our Battery. It is a common glass bottle or
jar, coated both inside and out with tinfoil nearly as high as the
shoulder, _a_ _a_. The mouth should be firmly closed with a bung of
wood, _g_ _g_; a hole should be bored in the bung, through which a
brass rod is tightly pushed. The rod, too, is topped by a brass knob,
and a brass chain is attached to the other extremity. The interior of
the tinfoil receives positive electricity, and the exterior negative
when the jar is charged from the “Electrophorus.” To discharge the jar
and create a _shock_ it is necessary to put one hand on the outside,
and the other on the knob of the jar. A brilliant spark and a severe
shock will result if the jar has been fully charged. It is as well to
be cautious when trying this experiment. The effect of the shock may be
felt by any number of persons joining hands, if one at one end of the
row, and one at the other end, touch the knob and the outside of the
jar simultaneously.
[Illustration: Fig. 210.—The Leyden Jar.]
This electric discharge is lightning in miniature, and it is to
Benjamin Franklin that the world is indebted for the discovery. The
philosopher was greatly interested in the science of Electricity and,
having retired from business, he devoted himself to the consideration
of thunderstorms. He wrote a treatise to show that points drew off
electricity, and that electricity and lightning were similar. He urged
that metallic rods might be attached to ships and buildings, so that
during thunderstorms, or at other times, the electricity might be
harmlessly carried into the ground. This suggestion he made without
being able to explain _why_ points did carry off electricity without
a spark. The reason is because there is no place to store it; it runs
away at once, without having time to collect, as in a ball.
Public-domain text, read in full here on John Shaqi.
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