A uniform magnetic field B = 1.8 T points in the +x direction. A square loop with sides of length d = 20 cm, N=12 turns, and current / = 0.85 A/turn pivots without friction around a pin about the z-axis as shown in the figure below. (The z-axis points out of the page in the left hand panel.) d y B 8 D с I D kg Submit d x z Side View of Loop Plan View of Loop A mass M is hung from one side of the loop (C or D), and the loop is in equilibrium when it makes an angle of 30° with respect to the x-z plane. Determine the size of the mass. Enter a positive number if it is hung from C and a negative number if it is hung from D. M =

Glencoe Physics: Principles and Problems, Student Edition
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Author:Paul W. Zitzewitz
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Chapter26: Electromagnetism
Section26.1: Interactions Of Electric And Manetic Fields And Matter
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LOOP TORQUE BASE
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Square Current Loop
A uniform magnetic field B = 1.8 T points in the +x direction. A square
loop with sides of length d = 20 cm, N=12 turns, and current / = 0.85
A/turn pivots without friction around a pin about the z-axis as shown in
the figure below. (The z-axis points out of the page in the left hand panel.)
d
y
B
K
8
X
D
kg Submit
d
X
z
Side View of Loop
Plan View of Loop
A mass M is hung from one side of the loop (C or D), and the loop is in
equilibrium when it makes an angle of 30° with respect to the x-z plane.
Determine the size of the mass. Enter a positive number if it is hung from
C and a negative number if it is hung from D. M =
Transcribed Image Text:LOOP TORQUE BASE Welcome to this IE. You may navigate to any page you've seen already using the IE tab on the right. Square Current Loop A uniform magnetic field B = 1.8 T points in the +x direction. A square loop with sides of length d = 20 cm, N=12 turns, and current / = 0.85 A/turn pivots without friction around a pin about the z-axis as shown in the figure below. (The z-axis points out of the page in the left hand panel.) d y B K 8 X D kg Submit d X z Side View of Loop Plan View of Loop A mass M is hung from one side of the loop (C or D), and the loop is in equilibrium when it makes an angle of 30° with respect to the x-z plane. Determine the size of the mass. Enter a positive number if it is hung from C and a negative number if it is hung from D. M =
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