Shown in the figure below is a generator being used to power a resistor. The generator consists of a loop with 230 coils spinning at a frequency of 56 Hz in a magnetic field of 6.9e-03 Tesla. Each loop of the coil is shaped like a circle with a radius of 0.23 meters. The resistor has a resistance of 5.63 Ohms. N Loops R Radius B Tesla f Hz Generator Determine all the following: • The PEAK voltage produced by the generator, VPEAK = ww Volts Volts • The RMS voltage produced by the generator, VRMS = The PEAK current, IPEAK Amps The RMS current, IRMS = Amps • The average power dissipated by the resistor, P = Watts

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Shown in the figure below is a generator being used to power a resistor. The generator consists of a loop with 230 coils spinning at a frequency of 56 Hz in a magnetic
field of 6.9e-03 Tesla. Each loop of the coil is shaped like a circle with a radius of 0.23 meters. The resistor has a resistance of 5.63 Ohms.
N Loops
R Radius
B Tesla
f Hz
Generator
Determine all the following:
• The PEAK voltage produced by the generator, VPEAK =
ww
Volts
Volts
• The RMS voltage produced by the generator, VRMS =
The PEAK current, IPEAK
Amps
The RMS current, IRMS =
Amps
• The average power dissipated by the resistor, P =
Watts
Transcribed Image Text:Shown in the figure below is a generator being used to power a resistor. The generator consists of a loop with 230 coils spinning at a frequency of 56 Hz in a magnetic field of 6.9e-03 Tesla. Each loop of the coil is shaped like a circle with a radius of 0.23 meters. The resistor has a resistance of 5.63 Ohms. N Loops R Radius B Tesla f Hz Generator Determine all the following: • The PEAK voltage produced by the generator, VPEAK = ww Volts Volts • The RMS voltage produced by the generator, VRMS = The PEAK current, IPEAK Amps The RMS current, IRMS = Amps • The average power dissipated by the resistor, P = Watts
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