The Study of Elementary Electricity and Magnetism by Experiment: Containing Two Hundred Experiments Performed with Simple, Home-made ApparatusSt. John, Thomas M. (Thomas Matthew)
Science
The Study of Elementary Electricity and Magnetism by Experiment: Containing Two Hundred Experiments Performed with Simple, Home-made Apparatus
(C) Move the compass quickly about the pole, the circuit
being closed, and note action of needle. Compare result with
directions taken by particles of iron filings in Exp. 163.
(D) Reverse the direction of the current through the coil and
test the nature of the pole at the top.
[Illustration: Fig. 128.]
[Illustration: Fig. 129.]
_=405. Horseshoe Electromagnets.=_ Fig. 128 shows a simple form of
electromagnet with two coils which have a bent piece of iron as a core
for both. The coils have to be wound on by hand in this form. As this
is troublesome, the coils are generally wound on two separate cores
which are joined by a _yoke_ (§ 406), which takes the place of the
curved part in Fig. 128. The separate coils can be quickly made with
a "winder" and joined to suit. (See Apparatus Book, Chapter IX, for
Home-made Electromagnets.) Fig. 129 shows a top view of a home-made
experimental horseshoe electromagnet. The coils are joined by an iron
strap, called the _yoke_, which is screwed to a wooden base. A strip of
iron placed above the magnets to be attracted by them, when the current
passes, is called the _armature_. (See Telegraph Sounders.)
_=406. Use of Yoke.=_ It has been explained (§ 82) why horseshoe
magnets are, in general, better than straight ones. The same is true
of electromagnets; there are two poles to attract, and two to induce.
The lines of force pass through the yoke on their way from one core to
the other, and this reduces the resistance to them. The strength of
the horseshoe magnet would be greatly reduced if the lines of force
were obliged to pass through two air spaces instead of one; in fact, if
there were no yoke we should have simply two straight magnets. The yoke
should be made of soft iron.
[Illustration: Fig. 130.]
[Illustration: Fig. 131.]
=407. Experimental Magnets= are quickly joined to a tin base
(No. 94), which has 3 holes punched in, through which screws
can be put to hold the cores in place. Fig. 127 shows plan of
tin. Fig. 130 shows how removable cores are fastened to the
base, the coils being on the spools, and Fig. 131 shows how
home-made coils on bolts can be used. The coils on bolts should
be wound as directed in Apparatus Book, Chapter X. The tin base
also serves as the yoke.
_Removable Cores._ Fig. 130. These are of soft iron (No. 92,
93). In one end of each is a hole for the screws, S. Part of
the tin has been cut away in the Fig. The copper washer, C W,
should be used. (See § 408.) Connectors are fastened to the
ends of the coils (§ 226-230).
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