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
=391. Directions.= (A) Arrange as in Fig. 122, so that the axis
of the coil will lie in the E and W line. Place O C about 2 in.
from the E end of the coil. Press one lever of C R so that the
current will pass around the coil for an instant in a clockwise
direction; that is, so that it will enter the coil at O E. Note
the action of the needle. If the needle is not affected move it
nearer the coil and press the lever again. Get clearly in mind
the connections, the direction in which the N end of the needle
is deflected, etc. Is the E end of the coil a N or a S pole?
(B) Reverse the current through the coil. What effect has it
upon the polarity of the E end of the coil?
(C) Place O C at the west end of the coil and repeat (A) and
(B).
(D) Place O C in various positions about the coil and note the
action of the needle when the current passes. Does this coil
act like a magnet, having poles, magnetic field, etc.?
[Illustration: Fig. 123.]
_=392. Polarity of Coils.=_ It is evident from Exps. 153 and 154 that
a coiled conductor has poles, magnetic field, etc., when a current
passes, and that it strongly resembles a magnet, even though no
iron enters into its construction. We may say that the coil becomes
magnetized by the electric current. Fig. 123 shows a right handed coil
or helix of wire, the current passing as shown by the small arrows.
The left-hand end is a S pole because the current passes around it in
a clockwise direction. When you face the right-hand end of the coil the
current is seen to pass around it in an anti-clockwise direction; this
produces a N pole. As the N pole of the magnetic needle is attracted
toward the S pole of the coil, it is clear that the lines of force pass
through the inside of the coil as shown by the large arrows. They then
curve through the air and return to the S pole as with magnets.
=EXPERIMENT 155. To test the attracting and "sucking" power of
a magnetized coil or helix.=
_Apparatus._ The coil, battery, etc., used in Exp. 154, Fig.
122; a sewing-needle.
[Illustration: Fig. 124.]
=393. Directions.= (A) Arrange the coil, etc., as described in
Exp. 154. The coil need not lie in the E and W line, however,
and a key may be used instead of the current reverser.
(B) Magnetize the needle so that its point will be a N pole.
(C) Tie a thread about the center of the magnetized needle,
hold the thread in the hand so that the S pole of the needle
will swing freely at the hole at the right-hand end of the coil
(Fig. 124). If the current passes as directed, the right-hand
end of the coil will be a N pole. What happens to the needle
when the key is pressed for an instant.
(D) Change the needle to the left end of the coil and repeat.
(E) Try a nail, pen, iron, etc., instead of the needle.
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.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account