Question

A current-carrying loop, made of 100 turns of a thin conducting wire, has 4 cm and 10 cm. the current in the loop is 7 a. the plane of the loop is parallel to a constant magnetic field of magnitude 0.2 T. is there any force acting on the loop? if so what are the magnetic field and direction. is there a torque on the loop? if so, what are its magnitudes and the direction? what is the maximum possible torque on the loop

Answer #1

A rectangular (20.0 cm x 55.0 cm) current loop carrying a
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1.5 T magnetic field.
(a) Label the corners of the rectangle (a, b c, and d) and
calculate the magnitude of the magnetic force on each side of the
rectangular current loop
(b) Show the magnetic force direction on each side of the
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The magnetic torque exerted on a flat current carrying loop of
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A current carrying wire is bent into a closed semi-circular loop
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A current-carrying wire is in the shape of a square of edge
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(a) What is the magnitude of the torque on the wire if there is
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(b) What is the magnitude of the torque if the field is in the
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a. A 3 m long wire carrying a current of 1. 06 Ampere forms a
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placed in a constant uniform magnetic field with a magnitude of
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A current carrying wire is in the shape of an equilateral
triangle of edge length 5.0 cm. The triangle lies in the z
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(a) What is the magnitude of the torque on the wire if it is in
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___ N·m
(b) What is the magnitude of the torque on the wire if...

A current carrying wire is in the shape of an equilateral
triangle of edge length 4 cm. The triangle lies in the z =
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1)
What is the magnitude of the torque on the wire if it is in a
region with a uniform magnetic field of magnitude 0.32 T that
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N·m
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A square conducting loop of side length a = 11 cm sits in the
xy-plane. A uniform magnetic field of strength B = 0.5 mT points
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a) Find the net force on the loop.
b) Find the torque on the loop.
c) What is the magnetic dipole moment of the current loop?
d) Find the magnitude of the force on one of the x-direction...

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