A-B-C of ElectricityMeadowcroft, Wm. H. (William Henry)
Science
A-B-C of Electricity
Meadowcroft, Wm. H. (William Henry)
Electricity
The wires from the dynamo carrying the electricity are connected in the
socket, one wire with the screw thread into which the screw-ring fits,
and the other with a button which the button on the lamp touches when
the lamp is screwed into the socket. Thus we have a connected path for
the current to travel in, or, as it is termed, a _complete circuit_.
You will notice that in the incandescent lamp the electricity does
not need to jump, as it does in the arc-light, because we give it one
continuous line to travel in.
In order, however, to get the current to do work for us, we put some
resistance in its path, which it must overcome in order to travel back
to the dynamo. The resistance in an incandescent lamp is the U-shaped
carbon strip (or, as it is called, "filament"). This charcoal filament
has so much greater resistance than the wires that it opposes, or
resists, the passage of the electricity through it; but the electricity
_must_ go through, and, as it is strong enough to force its way, it
overcomes this resistance and passes on through the carbon to the wire
at the other end. You see it is a struggle between the carbon and the
electricity, the current being determined to go on and the carbon
trying to keep it back; and, in the end, the electricity, being the
stronger, gets the best of it; but the struggle has been so hard that
the carbon has been raised to a white heat, or incandescence, and so
gives out a beautiful light, which continues as long as the current of
electricity flows.
You will remember that in the arc-light the carbons are slowly consumed
and new ones must be put in. If the carbon in the incandescent light
were consumed, it would not last many minutes, because it is only about
the size of a horsehair. Now, you will naturally inquire why this fine
strip is not burned up when it is raised to so high a heat. Well, we
will tell you.
You know that if you light a match and let it burn the wood will all be
consumed. But did you ever light a match, put it into a small bottle,
and put the cork in? If you never did, do so now as an experiment, and
you will see that the match will keep lighted for an instant and then
go out without consuming the wood.
The reasons for this are very simple. In order to burn anything up
entirely it is absolutely necessary to have the gas called oxygen
present, and, as the air you live in contains a very large amount of
oxygen, there is more than sufficient in your room to cause the wood
of the match to be entirely consumed after it is lighted. But there is
such a small quantity of oxygen in the bottle that it is not enough to
keep the fire going in the match, and, consequently, it will not burn
up the wood.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account