WHAT HAPPENS WHEN AN ARC IS FORMED. What happens when you form an
electric arc is this: As you draw the two ends of the pencils apart,
only a speck of the lead in each touches the other. The electricity
passing for an instant through the last speck at the end of the pencil
makes it so hot that it turns to vapor. The vapor will let electricity
go through it, and makes a bridge from one pencil point to the other.
But the vapor gets very hot, because it has a rather high resistance.
This heat vaporizes more carbon and makes more vapor for the
electricity to pass through, and so on. The electricity passing
through the carbon vapor makes it white hot, and that is what causes
the brilliant glow. Regular arc lights are made exactly like this
experimental one, except that the carbons used are much bigger and are
made to stand the heat better than the small carbons in your pencil.
Carbon is one of those substances that turn directly from a solid to
a gas without first melting. That is one reason why it is used for arc
lights. But copper melts when it becomes very hot, as you saw when you
made an arc light with the copper wires. So copper cannot be used for
practical arc lights.
FIRES CAUSED BY ARCS. There is one extremely important point about
this experiment with arcs: most fires that result from defective
wiring are caused by the forming of arcs. You see, if two wires touch
each other while the current is passing and then move apart a little,
an arc is formed. And you have seen how intensely hot such an arc is.
Two wires rubbing against each other, or a wire not screwed tightly to
its connection, can arc. A wire broken, but with its ends close enough
together to touch and then go apart, can cause an arc. And an arc is
very dangerous in a house if there is anything burnable near it.
Wires should never be just twisted together and then bound with tape
to form a joint. Twisted wires sometimes break and sometimes come
loose; then an arc forms, and the house catches fire. Good wiring
always means soldering every joint and screwing the ends of the wires
tightly into the switches or sockets to which they lead.
[Illustration: FIG. 135. An arc lamp. The carbons are much larger than
the carbons in the pencils, and the arc gives an intense light.]
KEEPING ARCS FROM FORMING. Well-wired houses have the wires brought
in through iron pipes, called _conduits_, and the conduits are always
grounded; so if an arc should form anywhere along the line, the house
would be protected by an iron conduit and if one of the loose ends of
wire came in contact with the conduit, the current would rush to the
ground through it, blowing out a fuse. The next section tells about
the purpose of fuses.
Public-domain text, read in full here on John Shaqi.
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