1H 21, m Di(t) 0.5F a ZLO In the above circuit, i, (t) = 8cos (2t) A. Do the following 3 parts. A. Determine the Thevenin equivalent circuit seen by the load, ZLO in the phasor domain by finding i) the Thevenin equivalent phasor voltage, Vrhi ii) the Thevenin equivalent impedance, ZTh B. Determine the value for the load impedance, ZLO, so that maximum average power is delivered to the load. C. Determine the maximum average power that can be delivered to the load, Pave,max.

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1H
21,
ell
+
i,(t)
0.5F
a
ZLO
In the above circuit, i, (t) = 8cos (2t) A. Do the following 3 parts.
A. Determine the Thevenin equivalent circuit seen by the load, ZLO in the phasor domain
by finding
i) the Thevenin equivalent phasor voltage, Vrhi
ii) the Thevenin equivalent impedance, ZTh.
B. Determine the value for the load impedance, ZLO, so that maximum average power is
delivered to the load.
C. Determine the maximum average power that can be delivered to the load, Pave,max
Transcribed Image Text:1H 21, ell + i,(t) 0.5F a ZLO In the above circuit, i, (t) = 8cos (2t) A. Do the following 3 parts. A. Determine the Thevenin equivalent circuit seen by the load, ZLO in the phasor domain by finding i) the Thevenin equivalent phasor voltage, Vrhi ii) the Thevenin equivalent impedance, ZTh. B. Determine the value for the load impedance, ZLO, so that maximum average power is delivered to the load. C. Determine the maximum average power that can be delivered to the load, Pave,max
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