1. A purely resistive circuit the current is leading by 90° with respect to voltage. 2. A purely inductive circuit the current is lag behind the voltage by 900. 3. A purely capacitive circuit the current is lead by 90° with respect to the voltage_ 4. A capacitor element stored magnetic energy. 5. An inductor element stored electrical energy. 6. Resistor elements consume power. 7. Angle between current and voltage is called power. 8. The power factor angle for a purely resistive is zero. 9. The power factor angle for a purely inductive load is -90°. 10. The power factor of a purely capacitive is leading.

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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1. A purely resistive circuit the current is leading by 90° with respect to voltage.
2. A purely inductive circuit the current is lag behind the voltage by 90°.
3. A purely capacitive circuit the current is lead by 90° with respect to the voltage.
4. A capacitor element stored magnetic energy.
5. An inductor element stored electrical energy.
6. Resistor elements consume power.
7. Angle between current and voltage is called power.
8. The power factor angle for a purely resistive is zero.
9. The power factor angle for a purely inductive load is -90°.
10. The power factor of a purely capacitive is leading.
Transcribed Image Text:1. A purely resistive circuit the current is leading by 90° with respect to voltage. 2. A purely inductive circuit the current is lag behind the voltage by 90°. 3. A purely capacitive circuit the current is lead by 90° with respect to the voltage. 4. A capacitor element stored magnetic energy. 5. An inductor element stored electrical energy. 6. Resistor elements consume power. 7. Angle between current and voltage is called power. 8. The power factor angle for a purely resistive is zero. 9. The power factor angle for a purely inductive load is -90°. 10. The power factor of a purely capacitive is leading.
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