6. For the circuit in Figure 6, calculate the average, reactive and complex power delivered by the source, and the element connected in parallel with the source that will give a power factor = 0.9 leading. 5 cos 3t V + ΙΩ 352 1 H Figure 6: Power factor correction at 0.9 leading

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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6. For the circuit in Figure 6, calculate the average, reactive and complex power delivered
by the source, and the element connected in parallel with the source that will give a
power factor = 0.9 leading.
5 cos 3t
V
152
35
1 H
Figure 6: Power factor correction at 0.9 leading
HE
Transcribed Image Text:SOLVE STEP BY STEP IN DIGITAL FORMAT XXXXXX 6. For the circuit in Figure 6, calculate the average, reactive and complex power delivered by the source, and the element connected in parallel with the source that will give a power factor = 0.9 leading. 5 cos 3t V 152 35 1 H Figure 6: Power factor correction at 0.9 leading HE
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The capacitor is an important passive component of electrical energy which is used in electrical engineering. it provides reactive power to the system and is used for Power factor correction. It is used to convert pulsating DC into constant DC . It is used to increase /decrease the response of the system.

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