4.74 Determine the Thévenin equiva the terminals a, b for the circuit shown in Fig. P4.74. PSPICE ULTISIM Figure P4.74 2.5 ΚΩ + 11 100 V Σ625 Ω 5000i₁ 10-32 4kQ + v2 ≥ 6 k a b

Introductory Circuit Analysis (13th Edition)
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Publisher:Robert L. Boylestad
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Determine the Thévenin equivalent with respect to terminals a and b in the circuit attached.
5V(
+
R33 500 Ω
PSPICE
MULTISIM
4.74 Determine the Thévenin equivalent with respect to
PSPICE the terminals a, b for the circuit shown in Fig. P4.74.
MULTIGIM
Figure P4.74
2.5 ΚΩ
www
100 V Σ625 Ω
Figure P4.75
2 ΚΩ
10-3v2
5000i1
0.2iA
R, 5000
2 ΚΩ
4 ΚΩ
www
4.75 Find the Norton equivalent with respect to the ter-
minals a, b for the circuit seen in Fig. P4.75.
+
a
v26 kn
b
Transcribed Image Text:5V( + R33 500 Ω PSPICE MULTISIM 4.74 Determine the Thévenin equivalent with respect to PSPICE the terminals a, b for the circuit shown in Fig. P4.74. MULTIGIM Figure P4.74 2.5 ΚΩ www 100 V Σ625 Ω Figure P4.75 2 ΚΩ 10-3v2 5000i1 0.2iA R, 5000 2 ΚΩ 4 ΚΩ www 4.75 Find the Norton equivalent with respect to the ter- minals a, b for the circuit seen in Fig. P4.75. + a v26 kn b
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