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
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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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

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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