and all the arrangements by which it is made more lasting, steady,
economical and automatic, it is no more nor less than this. _The
difference between heat and electricity is only a difference in the
rates of vibration of their molecules._ Whatever the theory as to
molecules, or essence, or actual nature and origin, the practical fact
that heat and light are the results of the circumstances described above
remains. This has long been known, and the question remained how to
produce an adequate current economically. The result was the machine we
know as the Dynamo.
The first electric light was very brief and brilliant and was made by
accident. Sir Humphrey Davy, in 1809, in pulling apart the two ends of
wires attached to a battery of two thousand small cells, the most
powerful generator that had been made to that time, produced a brief and
brilliant spark, the result of momentarily _imperfect contact._
Every such spark, produced since then innumerable times by accident, is
an example of electric lighting. There are now in use in the United
States some two million arc lights and nearly double that number of
incandescent.
There are two principal systems of electric lighting; one is by actually
burning away the ends of carbon-points in the open air. This is the
"arc." The other is by heating to a white heat a filament of carbon, or
some substance of high resistance, in a glass bulb from which the air
has been exhausted. This is the "incandescent."
[Illustration: THE INCANDESCENT LIGHT]
In the arc light the current passes across an _imperfect contact_,
and this imperfection consists in a gap of about one-sixteenth of an
inch between the extremities of two rods of carbon carrying a current.
This small gap is a place of bad conduction and of the piling up of
atoms, producing heat, burning, light. In the body of the lamp there are
appliances for the automatic holding apart of the two points of the
carbon, and the causing of them to continually creep together, yet never
touch. Many devices have been contrived to this end. With all theories
and reasons well known, and all effects accurately calculated, upon this
small arrangement depends the practical utility of the arc light. The
best arrangement is the invention of Edison, and is controlled most
ingeniously by the current itself, acting through the increased
difficulty of its passage when the two carbon-points are too far apart,
and the increased ease with which it flows when they are too near
together. The current, in leaping the small gap between the
carbon-points, takes a _curved_ path, hence the name "arc" light.
In passing from the positive to the negative carbon it carries small
particles of incandescent carbon with it, and consequently the end of
the positive carbon is hollowed out, while the end of the negative is
built up to a point.
Public-domain text, read in full here on John Shaqi.
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