A current-carrying wire is bent into the shape of a square of sides L = 8 cm and is placed in the xy plane. It carries a current I = 2.8A. What is the torque on the wire if there is a uniform magnetic field of 0.2 T (1) in the z direction, and (2) in the x direction?
A current-carrying wire is bent into the shape of a square of sides L = 8 cm and is placed in the xy plane. It carries a current I = 2.8A. What is the torque on the wire if there is a uniform magnetic field of 0.2 T (1) in the z direction, and (2) in the x direction?
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![Problem 26-55:
A current-carrying wire is bent into the shape of a square of sides L = 8 cm and is placed in the xy plane. It
carries a current I = 2.8A. What is the torque on the wire if there is a uniform magnetic field of 0.2 T (1) in the z
direction, and (2) in the x direction?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6e7015ac-a48d-4df7-9776-6c97ec000235%2F389362b5-7ce6-435f-8188-d6f5ab347979%2Fv0vna4hr_processed.png&w=3840&q=75)
Transcribed Image Text:Problem 26-55:
A current-carrying wire is bent into the shape of a square of sides L = 8 cm and is placed in the xy plane. It
carries a current I = 2.8A. What is the torque on the wire if there is a uniform magnetic field of 0.2 T (1) in the z
direction, and (2) in the x direction?
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