5. A flat, square coil of 20 turns that has sides of length 15.0 cm is rotating in a magnetic field of strength 0.050 T. The loop starts parallel to the field (no flux) and rotates until it is perpendicular to the field (maximum flux) in 2 s. a) What is the emf created by this motion? b) If the loop was connected to a resistor of 10 ohms, how much current would be induced? c) Which direction would it flow? Explain with RHR. W/2
5. A flat, square coil of 20 turns that has sides of length 15.0 cm is rotating in a magnetic field of strength 0.050 T. The loop starts parallel to the field (no flux) and rotates until it is perpendicular to the field (maximum flux) in 2 s. a) What is the emf created by this motion? b) If the loop was connected to a resistor of 10 ohms, how much current would be induced? c) Which direction would it flow? Explain with RHR. W/2
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
Transcribed Image Text:5. A flat, square coil of 20 turns that has sides of length 15.0 cm is rotating in a
magnetic field of strength 0.050 T. The loop starts parallel to the field (no flux)
and rotates until it is perpendicular to the field (maximum flux) in 2 s.
a) What is the emf created by this motion?
b) If the loop was connected to a resistor of 10 ohms, how much current would
be induced?
c) Which direction would it flow? Explain with RHR.
W/2
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