The circuit given in the figure below is continuously sinusoidal and the element values in the circuit are e (t) = 2Cos (t + 90) volts, C = 1F, L = 2H, R1 = 1Ω, R2 = 2Ω. a) Find the Thevenin equivalent of the circuit in the form V = ZThI + VTh, viewed from the A-B ends looking left. b) Maximum active power is desired to be transferred to the Zload impedance connected to A-B terminals. What should be the Zload impedance? Calculate the maximum active power transferred to the load for this impedance value.

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The circuit given in the figure below is continuously sinusoidal and the element values in the circuit are e (t) = 2Cos (t + 90) volts, C = 1F, L = 2H, R1 = 1Ω, R2 = 2Ω.
a) Find the Thevenin equivalent of the circuit in the form V = ZThI + VTh, viewed from the A-B ends looking left.
b) Maximum active power is desired to be transferred to the Zload impedance connected to A-B terminals. What should be the Zload impedance? Calculate the maximum active power transferred to the load for this impedance value.

R1
Ib=5 Ic
R2
+
+
Zyük
e(t)
V
'Ic
Transcribed Image Text:R1 Ib=5 Ic R2 + + Zyük e(t) V 'Ic
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