3.7 Apply nodal analysis to solve for V, in the circuit of Fig. 3.56. 2 A 60 92 ww + 1 VX Σ30Ω 0.05Vx 3

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3.7 Apply nodal analysis to solve for Vx in the circuit of Figure 3.56

3.11 Find Vo and the power dissipated in all the resistors in the circuit of Figure 3.60

3.13 Using Nodal analysis , determine Vo in the circuit in Figure 3.61

 

10 V
6
Figure 3.55
For Prob. 3.6.
+
2 A4 60
Figure 3.56
For Prob. 3.7.
tv Sall
3.7 Apply nodal analysis to solve for V, in the circuit of
Fig. 3.56.
+
&
201
Vo
Figure 3.57
www
5Ω
www
&
7
ww
3.8 Using nodal analysis, find v, in the circuit of Fig. 3.57.
MIZA
6Ω
www
4Ω
60 V
MacBook Air
+51
www
◄◄
F7
+ >
1
Vx ≥3092
+
-ᏙᏙᏙ
10 S2
*
8
20 22
20 Ω
+
+
DII
F8
20 V
(
0.05Vx
5vo
9
S
DD
F9
lo
892
Figure 3.59
For Prob. 3.10.
60 V
)
0
3.11 Find V, and the power dissipated in all the resistors
in the circuit of Fig. 3.60.
Figure 3.60
For Prob. 3.11.
40 V +
Figure 3.61
www.
+
F10
12 Ω
ww
20 Ω
www
www
¹x
Vo
3.12 Using nodal analysis, determine V, in the circuit in
Fig. 3.61.
www
20 92
10 Ω
292
=
F11
12 Ω
(4
6Ω
ww
+ 11
+
4 lx
4Ω
10
24 V
F12
+
Ω
2 Vo
J
dele
Transcribed Image Text:10 V 6 Figure 3.55 For Prob. 3.6. + 2 A4 60 Figure 3.56 For Prob. 3.7. tv Sall 3.7 Apply nodal analysis to solve for V, in the circuit of Fig. 3.56. + & 201 Vo Figure 3.57 www 5Ω www & 7 ww 3.8 Using nodal analysis, find v, in the circuit of Fig. 3.57. MIZA 6Ω www 4Ω 60 V MacBook Air +51 www ◄◄ F7 + > 1 Vx ≥3092 + -ᏙᏙᏙ 10 S2 * 8 20 22 20 Ω + + DII F8 20 V ( 0.05Vx 5vo 9 S DD F9 lo 892 Figure 3.59 For Prob. 3.10. 60 V ) 0 3.11 Find V, and the power dissipated in all the resistors in the circuit of Fig. 3.60. Figure 3.60 For Prob. 3.11. 40 V + Figure 3.61 www. + F10 12 Ω ww 20 Ω www www ¹x Vo 3.12 Using nodal analysis, determine V, in the circuit in Fig. 3.61. www 20 92 10 Ω 292 = F11 12 Ω (4 6Ω ww + 11 + 4 lx 4Ω 10 24 V F12 + Ω 2 Vo J dele
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