Every-day Science: Volume 6. The Conquest of NatureWilliams, Henry Smith
Science
Every-day Science: Volume 6. The Conquest of Nature
Williams, Henry Smith
Industrial arts; Machinery
About this time Otto von Guericke, the burgomaster-philosopher of
Magdeburg, in the course of his numerous experiments, had discovered
some of the properties of electricity, by rubbing a sulphur ball, and
among other things had noticed that when the ball was rubbed in a
darkened room, a faint glow of light was produced. He was aware, also,
that in some way this was connected with the generation of electricity,
but in what manner he had no conception. In the opening years of the
following century Francis Hauksbee obtained somewhat similar results
with glass globes and tubes, and made several important discoveries
as to the properties of electricity that stimulated an interest in
the subject among the philosophers of the time. Gray in England, and
Dufay in France, who became enthusiastic workers in the field, soon
established important facts regarding conduction and insulation, and
by the middle of the eighteenth century the production of an electric
spark had become a commonplace demonstration.
But until this time it had not been demonstrated that this electric
spark was actual fire, although there was no disputing the fact that
it produced light. In 1744, however, this point was settled definitely
by the German, Christian Friedrich Ludolff, who projected a spark
from a rubbed glass rod upon the surface of a bowl of ether, causing
the liquid to burst into flame. A few years later Benjamin Franklin
demonstrated with his kite and key that lightning is a manifestation of
electricity.
But neither the galvanic cell nor the dynamo had been invented at
that time, and there was no possibility of producing anything like a
sustained artificial light with the static electrical machines then
in use. It was not until the classic discovery of Galvani and the
resulting invention of the voltaic, or galvanic, cell shortly after,
that the electric light, in the sense of a sustained light, became
possible. And even then, as we shall see in a moment, such a light was
too expensive to be of any use commercially.
DAVY AND THE FIRST ELECTRIC LIGHT
As soon as Volta's great invention was made known a new wave of
enthusiasm in the field of electricity swept over the world, for the
constant and relatively tractable current of the galvanic battery
suggested possibilities not conceivable with the older friction
machines. Batteries containing large numbers of cells were devised; one
having two thousand such elements being constructed for Sir Humphry
Davy at the Royal Institution, of London. By bringing two points of
carbon, representing the two poles of the battery, close together, Davy
caused a jet of flame to play between them--not a momentary spark, but
a continuous light--a true voltaic arc, like that seen in the modern
street-light to-day.
Public-domain text, read in full here on John Shaqi.
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