EXPERIMENT 71. Sharpen two pencils. About halfway between the
point and the other end of each pencil cut a notch all the way
around and down to the "lead," or burn a notch down by means
of the glowing resistance wire. What you call the "lead" of
the pencil is really graphite, a form of carbon. The leads of
your two pencils are almost exactly like the carbons used in
arc lights, except, of course, that they are much smaller.
Turn off the electricity both at the snap switch and at the
knife switch. Fasten the bare end of a 2-foot piece of fine
insulated wire (about No. 24) around the center of the lead in
each pencil so that you get a good contact, as shown in Figure
132. Fasten the other bare end of each wire to either side
of the open knife switch so that when this switch is open the
electricity will have to pass down one wire to the lead of one
pencil, from that to the lead of the other pencil, and from
that back through the second wire to the other side of the
knife switch and on around the circuit, as shown in Figure
133. Keep the two pencils apart and off the desk, while some
one turns on the snap switch and the "flush" switch that lets
the electricity through the resistance wire. Now bring the
pencil points together for an instant, immediately drawing
them apart about half an inch. You should get a brilliant
white arc light.
_Caution: Do not look at this brilliant arc for more than a
fraction of a second unless you look through a piece of smoked
or colored glass._
Blow out the flame when the wood catches fire. After you have
done this two or three times, the inside of the wood below the
notches will be burned out so completely that you can pull it
off with your fingers, leaving the lead bare all the way up to
the wires.
Let the class stand well back and watch the teacher do the
next part of the experiment.
Connect two heavy insulated copper wires, about No. 12, to
the sides of the knife switch just as you connected the
fine wires. But this time bring the ends of the copper wires
themselves together for an instant, then draw them apart. Hold
the ends of the wires over the zinc of the table while you do
this, as melted copper will drop from them.
[Illustration: FIG. 133. The pencil points are touched together and
immediately drawn apart.]
[Illustration: FIG. 134. A brilliant arc light is the result.]
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