9.29 Find the impedance Zab in the circuit seen in Fig. P9.29. Express Zab in both polar and rectangu- lar form. will of Figure P9.29 TARDIDE a1 10 a. Zab be 101106080 10 Ω www -j40 Ω He wodą lupis om be <50 5Ω – –j10 Ω 2002 10 Ω j30 Ω j20 Ω

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Circuits 1 HW 6 Q10
9.29 Find the impedance Zab in the circuit seen in
Fig. P9.29. Express Zab in both polar and rectangu-
lar form.
Figure P9.29
Ω
arb 100
www
a
Onorw
Zab-
be
29
-j40 n
46
ni mwede tiupio si e
≤50
5Ω
-j10 Ω
DECIZ
20 Ω
lites
A89 9
10 Ω
| j30 Ω
j20 Ω
Transcribed Image Text:9.29 Find the impedance Zab in the circuit seen in Fig. P9.29. Express Zab in both polar and rectangu- lar form. Figure P9.29 Ω arb 100 www a Onorw Zab- be 29 -j40 n 46 ni mwede tiupio si e ≤50 5Ω -j10 Ω DECIZ 20 Ω lites A89 9 10 Ω | j30 Ω j20 Ω
9.27 The circuit in Fig. P9.27 is operating in the sinusoi-
PSPICE dal steady state. Find the steady-state expression for
vo(t) if vg = 64 cos 8000t V.
MULTISIM
Figure P9.27
Vg
+
1
31.25 nF
не
Im Ob
Σ2 ΚΩ
08
(200+
Vo
500 mH
Transcribed Image Text:9.27 The circuit in Fig. P9.27 is operating in the sinusoi- PSPICE dal steady state. Find the steady-state expression for vo(t) if vg = 64 cos 8000t V. MULTISIM Figure P9.27 Vg + 1 31.25 nF не Im Ob Σ2 ΚΩ 08 (200+ Vo 500 mH
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