Things a Boy Should Know About Electricity: Second EditionSt. John, Thomas M. (Thomas Matthew)
Science
Things a Boy Should Know About Electricity: Second Edition
St. John, Thomas M. (Thomas Matthew)
Electricity
31. Magnetic Needles and Compasses. If a bar magnet be suspended
by a string, or floated upon a cork, which can easily be done with
the magnet made from a sewing-needle, Fig. 24, it will swing around
until its poles point north and south. Such an arrangement is called
a _magnetic needle_. In the regular _compass_, a magnetic needle is
supported upon a pivot. Compasses have been used for many centuries
by mariners and others. Fig. 25 shows an ordinary pocket compass, and
Fig. 26 a form of mariner's compass, in which the small bar magnets are
fastened to a card which floats, the whole being so mounted that it
keeps a horizontal position, even though the vessel rocks.
[Illustration: Fig. 26.]
32. Action of Magnets Upon Each Other. By making two small
sewing-needle magnets, you can easily study the laws of attraction and
repulsion. By bringing the two north poles, or the two south poles,
near each other, a repulsion will be noticed. Unlike poles attract each
other. The attraction between a magnet and iron is mutual; that is,
each attracts the other. Either pole of a magnet attracts soft iron.
In magnetizing a needle, either end may be made a north pole at will;
in fact, the poles of a weak magnet can easily be reversed by properly
rubbing it upon a stronger magnet.
=33. Theory of Magnetism.= Each little particle of a piece of steel or
iron is supposed to be a magnet, even before it touches a magnet. When
these little magnets are thoroughly mixed up in the steel, they pull in
all sorts of directions upon each other and tend to keep the steel from
attracting outside bodies. When a magnet is properly rubbed upon a bar
of steel, the north poles of the little molecular magnets of the steel
are all made to point in the same direction. As the north poles help
each other, the whole bar can attract outside bodies.
By jarring a magnet its molecules are thoroughly shaken up; in fact,
most of the magnetism can be knocked out of a weak magnet by hammering
it.
=34. Retentivity.= The power that a piece of steel has to hold
magnetism is called _retentivity_. Different kinds of steel have
different retentivities. A sewing-needle of good steel will retain
magnetism for years, and it is almost impossible to knock the magnetism
out by hammering it. Soft steel has very little retentivity, because
it does not contain much carbon. Soft iron, which contains less
carbon than steel, holds magnetism very poorly; so it is not used for
permanent magnets. A little magnetism, however, will remain in the
soft iron after it is removed from a magnet. This is called _residual
magnetism_.
=35. Heat and Magnetism.= Steel will completely lose its magnetism
when heated to redness, and a magnet will not attract red-hot iron.
The molecules of a piece of red-hot iron are in such a state of rapid
vibration that they refuse to be brought into line by the magnet.
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