You hold an elliptical wire loop in the same two-dimensional x-y plane as a very long wire of constant current in the positive y-direction (as in the image above). The semi-major axis of

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HINT: For both halves of this problem, make sure to consider the stronger magnetic field closer to the wire.
The current will go around the loop
COUNTER-CLOCKWISE, and the
magnetic force will pull the loop
TOWARDS the wire. (In the positive X
direction)
The current will go around the loop
COUNTER-CLOCKWISE, but there will
be NO NET FORCE on the loop due to
magnetism.
The current will go around the loop
CLOCKWISE, but there will be NO NET
FORCE on the loop due to magnetism.
There will be NO CURRENT through
the loop of wire.
The current will go around the loop
CLOCKWISE, and the magnetic force
will pull the loop TOWARDS the wire.
(In the positive X direction)
The current will go around the loop
COUNTER-CLOCKWISE, and the
magnetic force will push the loop
AWAY FROM the wire. (In the negative
X direction)
The current will go around the loop
CLOCKWISE, and the magnetic force
will push the loop AWAY FROM the
wire. (In the negative X direction)
Transcribed Image Text:The current will go around the loop COUNTER-CLOCKWISE, and the magnetic force will pull the loop TOWARDS the wire. (In the positive X direction) The current will go around the loop COUNTER-CLOCKWISE, but there will be NO NET FORCE on the loop due to magnetism. The current will go around the loop CLOCKWISE, but there will be NO NET FORCE on the loop due to magnetism. There will be NO CURRENT through the loop of wire. The current will go around the loop CLOCKWISE, and the magnetic force will pull the loop TOWARDS the wire. (In the positive X direction) The current will go around the loop COUNTER-CLOCKWISE, and the magnetic force will push the loop AWAY FROM the wire. (In the negative X direction) The current will go around the loop CLOCKWISE, and the magnetic force will push the loop AWAY FROM the wire. (In the negative X direction)
You hold an elliptical wire loop in
the same two-dimensional x-y
plane as a very long wire of
constant current in the positive
y-direction (as in the image
above). The semi-major axis of
the loop is aligned with the "x-
axis" and the semi-minor axis of
the loop is aligned with the "y-
axis". You then move the loop of
wire in the 'negative x-direction'
(away from the wire). As you do,
what is the direction of current
through the loop and the
direction of the magnetic force
on the loop due to that current?
Transcribed Image Text:You hold an elliptical wire loop in the same two-dimensional x-y plane as a very long wire of constant current in the positive y-direction (as in the image above). The semi-major axis of the loop is aligned with the "x- axis" and the semi-minor axis of the loop is aligned with the "y- axis". You then move the loop of wire in the 'negative x-direction' (away from the wire). As you do, what is the direction of current through the loop and the direction of the magnetic force on the loop due to that current?
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