7. For a resistance split-phase motor, the effective impedance of the main and auxiliary windings under locked rotor conditions are given as follows: Effective Effective Resistance Reactance Main winding Auxiliary winding 42 7.52 7.52 If the line voltage is 120 V, calculate: a. The magnitude of Ia and I: b. The phase angle between Ia and I; c. The line current IL; d. The power factor under locked-rotor conditions.

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter12: Power System Controls
Section: Chapter Questions
Problem 12.11P
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7. For a resistance split-phase motor, the effective impedance of the main and
auxiliary windings under locked rotor conditions are given as follows:
Effective
Effective
Resistance
Reactance
Main winding
Auxiliary winding
42
7.52
7.52
If the line voltage is 120 V, calculate:
a. The magnitude of Ia and I:
b. The phase angle between Ia and I;
c. The line current IL;
d. The power factor under locked-rotor conditions.
Transcribed Image Text:7. For a resistance split-phase motor, the effective impedance of the main and auxiliary windings under locked rotor conditions are given as follows: Effective Effective Resistance Reactance Main winding Auxiliary winding 42 7.52 7.52 If the line voltage is 120 V, calculate: a. The magnitude of Ia and I: b. The phase angle between Ia and I; c. The line current IL; d. The power factor under locked-rotor conditions.
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