Rough Ways Made Smooth: A series of familiar essays on scientific subjectsProctor, Richard A. (Richard Anthony)
Science
Rough Ways Made Smooth: A series of familiar essays on scientific subjects
Proctor, Richard A. (Richard Anthony)
Science
The Jablochkoff candle consists of two carbons placed side by side
(instead of one above the other in a vertical line). Thus placed,
with a slight interval between them, the carbon rods would allow the
passage of the electric current at the place of nearest approach, and
therefore of least resistance to its passage. A variable and imperfect
illumination would result. M. Jablochkoff, however, interposes between
the separate carbon rods a slip of plaster of Paris, which is a
non-conducting material. The upper points of the carbon rods are thus
the only parts at which the current can cross. They are connected by
a little bridge of carbon, which is necessary for the starting of the
light--just as in the case of the ordinary electric light, the two
carbons must, in order to start the light, be brought into contact.
When the current flows, the small bridge of carbon connecting the two
points is presently consumed, but the arc between the points is still
maintained: for the plaster becomes vitrified by the intense heat of
the two carbon points on each side, and melts down as the carbons are
consumed. If the light is in any way put out, however, a small piece of
carbon must be set again, to form a bridge between the carbon points.
Throughout the burning of the Jablochkoff candle the fused portion
of the insulating layer forms a conducting bridge between the carbon
points; and hence there is a considerable loss of electric force
(probably about thirty per cent.), which in the ordinary arrangement
would increase the intensity of the light. The great advantage of the
candle consists in the circumstance that throughout its consumption
the carbon ends are at a constant distance from each other without any
mechanical or other arrangement being necessary to maintain them in due
position.
One point should be noticed here. In the ordinary arrangement of carbon
points, the positive carbon, as we have already said, is much more
intensely heated, and consumes twice as fast as the negative carbon.
Now, if one carbon of the Jablochkoff candle were connected with the
positive, and the other with the negative pole of the battery or of a
machine, the former side would consume twice as fast as the latter, and
the two points would no longer remain at the same horizontal level,
which is essential to the proper burning of the Jablochkoff candle.
By using a machine which produces alternating currents, M. Jablochkoff
obviates this difficulty, the carbons being alternately positive and
negative (in extremely rapid succession), and therefore consuming at
the same rate.
The Jablochkoff candle lasts only about an hour and a half. But four,
six, or more candles may be used in the same globe or lantern, and
automatic arrangements adopted to cause a fresh candle to be ignited at
the moment when its predecessor is burnt out.
Public-domain text, read in full here on John Shaqi.
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