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In Question 3 and 4, what is the net power absorbed by each circuit over a complete cycle ? Explain your answer. |
Answer» <html><body><p></p>Solution :`P = E_(<a href="https://interviewquestions.tuteehub.com/tag/v-722631" style="font-weight:bold;" target="_blank" title="Click to know more about V">V</a>) I_(v) cos phi` <br/> In a pure inductor, phase difference between alternating <a href="https://interviewquestions.tuteehub.com/tag/voltage-1447811" style="font-weight:bold;" target="_blank" title="Click to know more about VOLTAGE">VOLTAGE</a> and current is `phi = 90^(@)` <br/> `:. P = E_(v) I_(v) cos 90^(@) =` Zero. <br/> In Q.4 `P = E_(v) I_(v) cos phi` <br/> In a pure capacitor, phase difference between alternating voltage and current is `phi = 90^(@)` <br/> `:. P = E_(v) I_(v) cos 90^(@) =` Zero <br/> Infact, in both the cases, power spent in one <a href="https://interviewquestions.tuteehub.com/tag/half-1014510" style="font-weight:bold;" target="_blank" title="Click to know more about HALF">HALF</a> <a href="https://interviewquestions.tuteehub.com/tag/cycle-942437" style="font-weight:bold;" target="_blank" title="Click to know more about CYCLE">CYCLE</a> is retrieved in <a href="https://interviewquestions.tuteehub.com/tag/hte-2718409" style="font-weight:bold;" target="_blank" title="Click to know more about HTE">HTE</a> other half cycle.</body></html> | |