“Let there be two needles provided of an equal Length and Bigness,
being both of them touched by the same lodestone; let the Letters of
the Alphabet be placed on the Circles on which they are moved, as the
Points of the Compass under the needle of the Mariner’s Chart. Let the
Friend that is to travel take one of these with him, first agreeing
upon the Days and Hours wherein they should confer together; at which
times, if one of them move the Needle, the other Needle, by Sympathy,
will move unto the same letter in the other instantly, though they are
never so far distant; and thus, by several Motions of the Needle to the
Letters, they may easily make up any Words or Sense which they have a
mind to express.” This is wireless telegraphy in good earnest!
The lodestone is a natural magnet. If we rub a piece of steel with a
lodestone we find that it acquires the same properties as the latter,
and in this way we are able to make any number of magnets, for the
lodestone does not lose any of its own magnetism in the process. Such
magnets are called artificial magnets. Iron is easier to magnetize than
steel, but it soon loses its magnetism, whereas steel retains it; and
the harder the steel the better it keeps its magnetism. Artificial
magnets, therefore, are made of specially hardened steel. In this
chapter we shall refer only to steel magnets, as they are much more
convenient to use than the lodestone, but it should be remembered that
both act in exactly the same way. We will suppose that we have a pair
of bar magnets, and a horse-shoe magnet, as shown in Fig. 13.
[Illustration: FIG. 13.--Horse-shoe and Bar Magnets, with Keepers.]
If we roll a bar magnet amongst iron filings we find that the filings
remain clinging to it in two tufts, one at each end, and that few or
none adhere to the middle. These two points towards which the filings
are attracted are called the poles of the magnet. Each pole attracts
filings or ordinary needles, and one or two experiments will show that
the attraction becomes evident while the magnet is still some little
distance away. If, however, we test our magnet with other substances,
such as wood, glass, paper, brass, etc., we see that there is no
attraction whatever.
Public-domain text, read in full here on John Shaqi.
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