R1 X1 = 6 N %3D 4Ω R2 E = 100 V Z 0° (’U ZT R3 Xc Calculate the total impedance ZT • Compute I Find the total power factor Calculate I, & I2 Find the average power delivered of the circuit


R1<br>X1 = 6 N<br>%3D<br>4Ω<br>R2<br>E = 100 V Z 0° (’U<br>ZT<br>R3<br>Xc<br>Calculate the total impedance ZT<br>• Compute I<br>Find the total power factor<br>Calculate I, & I2<br>Find the average power delivered of the circuit<br>

Extracted text: R1 X1 = 6 N %3D 4Ω R2 E = 100 V Z 0° (’U ZT R3 Xc Calculate the total impedance ZT • Compute I Find the total power factor Calculate I, & I2 Find the average power delivered of the circuit
R3<br>= 8 N X1, = 3 N<br>ZT<br>I3<br>+<br>R2<br>E = 200 V Z 0°<br>R1<br>10 N<br>Xc<br>9Ω<br>4 N<br>Compute I<br>Find I,, I2 & I3<br>Verify Kirchhoff's current law<br>Find the total impedance of the circuit<br>ll<br>

Extracted text: R3 = 8 N X1, = 3 N ZT I3 + R2 E = 200 V Z 0° R1 10 N Xc 9Ω 4 N Compute I Find I,, I2 & I3 Verify Kirchhoff's current law Find the total impedance of the circuit ll

Jun 11, 2022
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