Using the following informations: Determine the magnetizing reactance at 60 Hz of the induction motor referred to the stator. (in ohms per phase)

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Using the following informations:

Determine the magnetizing reactance at 60 Hz of the induction motor referred to the stator. (in ohms per phase)

Given the following information: (Note: Values were determined for operations at 60 Hz.)
Three-Phase Induction Motor A
Stator resistance: 0.24 ohms per phase
Stator reactance: 0.50 ohms per phase
Rotor resistance referred to the stator: 0.15 ohms per phase
Rotor reactance referred to the stator: 0.27 ohms per phase
Magnetizing reactance: 50 ohms per phase
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With an additional information, given a three-phase wye-connected wound-rotor induction motor:
DC Resistance Test
Input de voltage: 12 V
Input current: 50 A
ac-dc resistance ratio: 1.2
Locked-Rotor Test
Input voltage: 40 V
Input power: 900 W
Input line current: 32 A
Frequency: 15 Hz
No-Load Test
Input voltage: 240 V
Input power: 400 W
Input line current: 8 A
Frequency: 60 Hz
Transcribed Image Text:Given the following information: (Note: Values were determined for operations at 60 Hz.) Three-Phase Induction Motor A Stator resistance: 0.24 ohms per phase Stator reactance: 0.50 ohms per phase Rotor resistance referred to the stator: 0.15 ohms per phase Rotor reactance referred to the stator: 0.27 ohms per phase Magnetizing reactance: 50 ohms per phase - With an additional information, given a three-phase wye-connected wound-rotor induction motor: DC Resistance Test Input de voltage: 12 V Input current: 50 A ac-dc resistance ratio: 1.2 Locked-Rotor Test Input voltage: 40 V Input power: 900 W Input line current: 32 A Frequency: 15 Hz No-Load Test Input voltage: 240 V Input power: 400 W Input line current: 8 A Frequency: 60 Hz
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