The Boy's Playbook of Science: Including the Various Manipulations and Arrangements of Chemical and Philosophical Apparatus Required for the Successful Performance of Scientific Experiments in Illustration of the Elementary Branches of Chemistry and Natural PhilosophyPepper, John Henry
Science
The Boy's Playbook of Science: Including the Various Manipulations and Arrangements of Chemical and Philosophical Apparatus Required for the Successful Performance of Scientific Experiments in Illustration of the Elementary Branches of Chemistry and Natural Philosophy
Pepper, John Henry
Science -- Juvenile literature
By contact, the magnetic power is transferred from the magnet to a piece
of unmagnetized steel, and it is stated that the highest magnetizing
effect is that produced by the simple method of Jacobi. A horse-shoe
magnet has its poles brought in contact with the intended poles of
another bar of steel, likewise bent in the form of a horse-shoe, and by
[Page 209] drawing the feeder over the unmagnetized horse-shoe in the
direction of the arrow in the cut, and when it reaches the curve,
bringing it back again to the same place, say at least twelve times, and
after turning the whole over without separating the poles, and repeating
the same operation on the other side likewise twelve times, the steel is
then powerfully magnetized; and it is said that a horse-shoe of one
pound weight may be thus charged so as to sustain twenty-six and a half
pounds, and that by the old method of magnetizing it would only have
sustained about twenty-two pounds. (Fig. 198.)
_Fifth Experiment._
If the horse-shoe magnet is placed on a sheet of paper, and some iron
filings are dusted between the poles, a very beautiful series of curves
are formed, called the magnetic curves, which indicate the constant
passage of the magnetic power from pole to pole.
_Sixth Experiment._
The magnetic force exerted by a horse-shoe-shaped piece of soft iron,
surrounded with many strands of covered copper wire in short lengths, is
extremely powerful (Fig. 199), and enormous weights have been supported
by an electro-magnet when connected with a voltaic battery. Supposing a
man were dressed in complete armour, he might be held by an
electro-magnet, without the power of disengaging himself, thus realizing
the fairy story of the bold knight who was caught by a rock of
loadstone, and, in full armour, detained by the unfriendly magician.
[Illustration: Fig. 199. A. Powerful electro-magnet supporting a great
weight. B. The battery.]
[Page 210]
_Seventh Experiment._
When a piece of soft iron is held sufficiently near one of the poles of
a powerful magnet, it becomes by _induction_ endowed with magnetic
poles, and will support another bit of soft iron, such as a nail,
brought in contact with it. When the magnet is removed, the inductive
action ceases, and the soft iron loses its magnetic power. This
experiment affords another example of the connexion between the
phenomena of electricity and magnetism. It is in consequence of the
inductive action of the magnetism of the earth that all masses of iron,
especially when they are perpendicular, are found to be endowed with
magnetic polarity; hence the reaction of the iron in ships upon the
compasses, which have to be corrected and adjusted before a voyage, or
else serious errors in steering the vessel would occur, and there is no
doubt that many shipwrecks are due to this cause. No other metals beside
iron, steel, nickel, cobalt, and possibly manganese, can receive or
retain magnetism after contact with a magnet.
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