If a rectangular loop of wire with single turn is placed between the two poles poles of a magnet, with the dimensions w = 0.30 m and L = 1.2 m, and carries a current / = 1.5 A ( clockwise). The magnetic field due to the magnet is uniform and of magnitude 0.90 T. The loop rotates in the magnetic field. What is the magnitude of maximum torque acting on the wire due to the magnetic field? N 0.49 N.m 0.40 N·m 0.88 N.m O 0.83 N.m 1.27 N.m B W C L D S

Principles of Physics: A Calculus-Based Text
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Chapter23: Faraday’s Law And Inductance
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Problem 28P: A magnetic field directed into the page changes with time according to B = 0.030 0t2 + 1.40, where B...
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If a rectangular loop of wire with a single turn is placed between the two poles of a magnet, with the dimensions \( w = 0.30 \, \text{m} \) and \( L = 1.2 \, \text{m} \), and carries a current \( I = 1.5 \, \text{A} \) (clockwise). The magnetic field due to the magnet is uniform and of magnitude \( 0.90 \, \text{T} \). The loop rotates in the magnetic field. What is the magnitude of maximum torque acting on the wire due to the magnetic field?

Diagram:
- The diagram shows a rectangular loop labeled ABCD located between two poles of a magnet labeled N (north) and S (south).
- The width of the loop is represented by \( w \) and the length by \( L \).

Options:
- \( 0.49 \, \text{N} \cdot \text{m} \)
- \( 0.40 \, \text{N} \cdot \text{m} \)
- \( 0.88 \, \text{N} \cdot \text{m} \)
- \( 0.83 \, \text{N} \cdot \text{m} \)
- \( 1.27 \, \text{N} \cdot \text{m} \)
Transcribed Image Text:If a rectangular loop of wire with a single turn is placed between the two poles of a magnet, with the dimensions \( w = 0.30 \, \text{m} \) and \( L = 1.2 \, \text{m} \), and carries a current \( I = 1.5 \, \text{A} \) (clockwise). The magnetic field due to the magnet is uniform and of magnitude \( 0.90 \, \text{T} \). The loop rotates in the magnetic field. What is the magnitude of maximum torque acting on the wire due to the magnetic field? Diagram: - The diagram shows a rectangular loop labeled ABCD located between two poles of a magnet labeled N (north) and S (south). - The width of the loop is represented by \( w \) and the length by \( L \). Options: - \( 0.49 \, \text{N} \cdot \text{m} \) - \( 0.40 \, \text{N} \cdot \text{m} \) - \( 0.88 \, \text{N} \cdot \text{m} \) - \( 0.83 \, \text{N} \cdot \text{m} \) - \( 1.27 \, \text{N} \cdot \text{m} \)
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