The figure below is a top down view of a circular wire coil with rotating clockwise in a uniform magnetic field directed to the right. The position of the wire at t=to is shown as dotted lines, the position of the coil t=t is shown as a solid line. В to 0. A a) Label the direction of the induced current at points A and B. b) Is the magnitude of the induced current increasing, decreasing, or constant as it moves from its position at to to t? (Tip: is the loop position headed toward I = 0 or I = Imax %3D %3D at t = t?) c) Label the direction of the force on the wire at points A and B. d) Will the torque on the wire speed up or slow down the angular velocity (@) of the wire?
The figure below is a top down view of a circular wire coil with rotating clockwise in a uniform magnetic field directed to the right. The position of the wire at t=to is shown as dotted lines, the position of the coil t=t is shown as a solid line. В to 0. A a) Label the direction of the induced current at points A and B. b) Is the magnitude of the induced current increasing, decreasing, or constant as it moves from its position at to to t? (Tip: is the loop position headed toward I = 0 or I = Imax %3D %3D at t = t?) c) Label the direction of the force on the wire at points A and B. d) Will the torque on the wire speed up or slow down the angular velocity (@) of the wire?
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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![The figure below is a top down view of a circular wire coil with rotating clockwise in a
uniform magnetic field directed to the right. The position of the wire at t=to is shown
as dotted lines, the position of the coil t=t is shown as a solid line.
to
a) Label the direction of the induced current at points A and B.
b) Is the magnitude of the induced current increasing, decreasing, or constant as it
moves from its position at to to t? (Tip: is the loop position headed toward I = 0 or I = Imax
at t = t?)
c) Label the direction of the force on the wire at points A and B.
d) Will the torque on the wire speed up or slow down the angular velocity (@) of the
wire?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdd2f6e4c-2cba-43f3-85b7-cf9f5f4ff651%2Fdaaeeace-504a-47b3-be09-2efa0689c566%2F3nyel3_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The figure below is a top down view of a circular wire coil with rotating clockwise in a
uniform magnetic field directed to the right. The position of the wire at t=to is shown
as dotted lines, the position of the coil t=t is shown as a solid line.
to
a) Label the direction of the induced current at points A and B.
b) Is the magnitude of the induced current increasing, decreasing, or constant as it
moves from its position at to to t? (Tip: is the loop position headed toward I = 0 or I = Imax
at t = t?)
c) Label the direction of the force on the wire at points A and B.
d) Will the torque on the wire speed up or slow down the angular velocity (@) of the
wire?
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