The electrical capacity of even a small Leyden jar is surprisingly
great, and this is due to the mutual attraction between opposite
kinds of electricity. If we stick a piece of tinfoil on the centre of
each face of a pane of glass, and charge one positively and the other
negatively, the two charges attract each other through the glass;
and in fact they hold on to each other so strongly that we can get
very little electricity by touching either piece of foil. This mutual
attraction enables us to charge the two pieces of foil much more
strongly than if they were each on a separate pane, and this is the
secret of the working of the Leyden jar. If the knob of the jar is
held to the positive ball of a Wimshurst, the inside coating receives
a positive charge, which acts inductively on the outside coating,
attracting a negative charge to the inner face of the latter, and
repelling a positive charge to its outer face, and thence away through
the hand. The electricity is entirely confined to the sides of the jar,
the interior having no charge whatever.
Leyden jars are very often fitted to a Wimshurst machine as shown
at A, A, Fig. 4, and arranged so that they can be connected or
disconnected to the collecting combs as desired. When the jars are
disconnected the machine gives a rapid succession of thin sparks, but
when the jars are connected to the combs they accumulate a number of
charges before the discharge takes place, with the result that the
sparks are thicker, but occur at less frequent intervals.
It will have been noticed that the rod of a Leyden jar and the
discharging rods of a Wimshurst machine are made to terminate not in
points, but in rounded knobs or balls. The reason of this is that
electricity rapidly leaks away from points. If we electrify a conductor
shaped like a cone with a sharp point, the density of the electricity
is greatest at that point, and when it becomes sufficiently great the
particles of air near the point become electrified and repelled. Other
particles take their place, and are electrified and repelled in the
same way, and so a constant loss of electricity takes place. This may
be shown in an interesting way by fastening with wax a needle to the
knob of a Wimshurst. If a lighted taper is held to the point of the
needle while the machine is in action, the flame is blown aside by the
streams of repelled air, which form a sort of electric wind.
CHAPTER III
ELECTRICITY IN THE ATMOSPHERE
Public-domain text, read in full here on John Shaqi.
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