other undisturbed, and the end of the conversation is signalled to
the operator. Every instant the call discs are dropping, the
connecting plugs are thrust into the holes, and the girls are
asking "Hullo! hullo!" "Are you there?" "Who are you?" "Have you
finished?" Yet all this constant activity goes on quietly, deftly
--we might say elegantly--and in comparative silence, for the low
tones of the girlish voices are soft and pleasing, and the harsher
sounds of the subscriber are unheard in the room by all save the
operator who attends to him.
CHAPTER VII.
ELECTRIC LIGHT AND HEAT.
The electric spark was, of course, familiar to the early
experimenters with electricity, but the electric light, as we know
it, was first discovered by Sir Humphrey Davy, the Cornish
philosopher, in the year 1811 or thereabout. With the magic of his
genius Davy transformed the spark into a brilliant glow by passing
it between two points of carbon instead of metal. If, as in figure
60, we twist the wires (+ and--) which come from a voltaic
battery, say of 20 cells, about two carbon pencils, and bring
their tips together in order to start the current, then draw them
a little apart, we shall produce an artificial or mimic star. A
sheet of dazzling light, which is called the electric arc, is seen
to bridge the gap. It is not a true flame, for there is little
combustion, but rather a nebulous blaze of silvery lustre in a
bluish veil of heated air. The points of carbon are white-hot, and
the positive is eaten away into a hollow or crater by the current,
which violently tears its particles from their seat and whirls
them into the fierce vortex of the arc. The negative remains
pointed, but it is also worn away about half as fast as the
positive. This wasting of the carbons tends to widen the arc too
much and break the current, hence in arc lamps meant to yield the
light for hours the sticks are made of a good length, and a self-
acting mechanism feeds them forward to the arc as they are slowly
consumed, thus maintaining the splendour of the illumination.
Many ingenious lamps have been devised by Serrin, Dubosq, Siemens,
Brockie, and others, some regulating the arc by clockwork and
electro-magnetism, or by thermal and other effects of the current.
They are chiefly used for lighting halls and railway stations,
streets and open spaces, search-lights and lighthouses. They are
sometimes naked, but as a rule their brightness is tempered by
globes of ground or opal glass. In search-lights a parabolic
mirror projects all the rays in any one direction, and in
lighthouses the arc is placed in the focus of the condensing
lenses, and the beam is visible for at least twenty or thirty
miles on clear nights. Very powerful arc lights, equivalent to
hundreds of thousands of candles, can be seen for 100 or 150
miles.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account