An open-circuit voltage of 240 V appears across the slip-rings of a wound-rotor in- duction motor when the rotor is locked. The stator has 6 poles and is excited by a 60 Hz source. If the rotor is driven by a variable-speed dc motor, calculate the open-circuit voltage and frequency across the slip-rings if the dc motor turns a. At 600 r/min, in the same direction as the rotating field b. At 900 r/min, in the same direction as the rotating field c. At 3600 r/min, opposite to the rotating field

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An open-circuit voltage of 240 V appears
across the slip-rings of a wound-rotor in-
duction motor when the rotor is locked.
The stator has 6 poles and is excited by a
60 Hz source. If the rotor is driven by a
variable-speed dc motor, calculate the
open-circuit voltage and frequency across
the slip-rings if the dc motor turns
a. At 600 r/min, in the same direction as
the rotating field
b. At 900 r/min, in the same direction as
the rotating field
c. At 3600 r/min, opposite to the rotating
field
Transcribed Image Text:An open-circuit voltage of 240 V appears across the slip-rings of a wound-rotor in- duction motor when the rotor is locked. The stator has 6 poles and is excited by a 60 Hz source. If the rotor is driven by a variable-speed dc motor, calculate the open-circuit voltage and frequency across the slip-rings if the dc motor turns a. At 600 r/min, in the same direction as the rotating field b. At 900 r/min, in the same direction as the rotating field c. At 3600 r/min, opposite to the rotating field
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