A balanced star-connected load as shown in the figure draws a total power of 12 kW. Calculate: i. The phase voltage 10 Ω ii. The line current drawn iii. The apparent power 520 V 50 Hz iv. The load...


A balanced star-connected load as shown in the figure draws a total power<br>of 12 kW. Calculate:<br>i. The phase voltage<br>10 Ω<br>ii. The line current drawn<br>iii. The apparent power<br>520 V<br>50 Hz<br>iv. The load power factor<br>L<br>10 Ω<br>10 Ω<br>wwim<br>v. The load inductance (L)<br>

Extracted text: A balanced star-connected load as shown in the figure draws a total power of 12 kW. Calculate: i. The phase voltage 10 Ω ii. The line current drawn iii. The apparent power 520 V 50 Hz iv. The load power factor L 10 Ω 10 Ω wwim v. The load inductance (L)

Jun 11, 2022
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