3. The diagram below shows a rectangular 35.0-turn coil of wire with W=3.71 cm and L= 4.21 cm that carries a current of i= 5.39 A clockwise. The coil is in a uniform magnetic field so that the plane of the coil makes an angle of = 60.5° with the magnetic field. The coil is hinged along the y axis. The magnitude of the magnetic field is 1.07 T. Draw: 16 LAIL + O -Z y 0 L Given: Task: Find 7 Physics: Solve: a. above. hinge line W Calculate the magnitude of the torque acting on the coil in the configuration

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3. The diagram below shows a rectangular 35.0-turn coil of wire with W=3.71 cm and L=
4.21 cm that carries a current of i= 5.39 A clockwise. The coil is in a uniform magnetic field so that
the plane of the coil makes an angle of = 60.5° with the magnetic field. The coil is hinged along the
y axis. The magnitude of the magnetic field is 1.07 T.
Draw:
Given:
Task: Find 7
Physics:
Solve:
Z
La p
y
0
L
a.
above.
hinge line
W
Calculate the magnitude of the torque acting on the coil in the configuration
Transcribed Image Text:3. The diagram below shows a rectangular 35.0-turn coil of wire with W=3.71 cm and L= 4.21 cm that carries a current of i= 5.39 A clockwise. The coil is in a uniform magnetic field so that the plane of the coil makes an angle of = 60.5° with the magnetic field. The coil is hinged along the y axis. The magnitude of the magnetic field is 1.07 T. Draw: Given: Task: Find 7 Physics: Solve: Z La p y 0 L a. above. hinge line W Calculate the magnitude of the torque acting on the coil in the configuration
b.
Determine the direction of the torque on the wire coil. Circle best Response.
(1) Same direction as current.
(2) Opposite direction as current.
(3) Negative x direction.
(4) Positive y direction.
(5) Negative y direction.
Transcribed Image Text:b. Determine the direction of the torque on the wire coil. Circle best Response. (1) Same direction as current. (2) Opposite direction as current. (3) Negative x direction. (4) Positive y direction. (5) Negative y direction.
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