PBL 21.1 Kamila peddles a stationary bicycle. The pedals of the bicycle are attached to a 100 turn coil of area 0.1 m2. The coil rotates at half a revolution per second and it is placed in a uniform magnetic field of 0.01 T perpendicular to the axis of rotation of the coil. What is the maximum voltage generated in the coil? a. [0.3142 V] b. A 100 turn square wire coil of area 0.04 m2 rotates about a vertical axis at 1500 rpm, as shown in Figure 21.5. The horizontal component of Earth's magnetic field at the location of the loop is 2x10 T. Calculate the maximum emf induced in the coil by Earth's field. 20.0 cm [12.57 x 10-3 V] 20.0 cm

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PBL 21.1
Kamila peddles a stationary bicycle. The pedals of the bicycle are attached to a 100
turn coil of area 0.1 m2. The coil rotates at half a revolution per second and it is
placed in a uniform magnetic field of 0.01 T perpendicular to the axis of rotation of
the coil. What is the maximum voltage generated in the coil?
a.
[0.3142 V]
b. A 100 turn square wire coil of area 0.04 m2 rotates about a
vertical axis at 1500 rpm, as shown in Figure 21.5. The
horizontal component of Earth's magnetic field at the location
of the loop is 2x10 T. Calculate the maximum emf
induced in the coil by Earth's field.
20.0 cm
[12.57 x 10-3 V]
20.0 cm
Figure 21.5
Show your work:
Transcribed Image Text:PBL 21.1 Kamila peddles a stationary bicycle. The pedals of the bicycle are attached to a 100 turn coil of area 0.1 m2. The coil rotates at half a revolution per second and it is placed in a uniform magnetic field of 0.01 T perpendicular to the axis of rotation of the coil. What is the maximum voltage generated in the coil? a. [0.3142 V] b. A 100 turn square wire coil of area 0.04 m2 rotates about a vertical axis at 1500 rpm, as shown in Figure 21.5. The horizontal component of Earth's magnetic field at the location of the loop is 2x10 T. Calculate the maximum emf induced in the coil by Earth's field. 20.0 cm [12.57 x 10-3 V] 20.0 cm Figure 21.5 Show your work:
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