he network N₁ shown below in Figure 3(a) contains a VCVS and is driven by an in- ependent current source. Using the values shown on the schematic, obtain the Nor- On's equivalent network at terminals A-B of N₁ as shown in Figure 3(b). Label each omponent of the equivalent with its correct value. how your work and explain in detail all assumptions you make. اول 20mA N₁ JN R3 R₁ 5KQ R₂ 6KQ + 3ΚΩ R4 7KQ V₂ (a) GN (b) μV₂ X B Figure 3 (a) Resistive network N₁ (b) Norton equivalent network (u=4V/V)

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The network N₁ shown below in Figure 3(a) contains a VCVS and is driven by an in-
dependent current source. Using the values shown on the schematic, obtain the Nor-
ton's equivalent network at terminals A-B of N₁ as shown in Figure 3(b). Label each
component of the equivalent with its correct value.
Show your work and explain in detail all assumptions you make.
Jg₁
20mA
N₁
JN
R3
R₁. 5KQ
R₂
www
6ΚΩ
+
3ΚΩ
R4 7KQ
V₂
(a)
GN
(b)
μV4
B
Figure 3
(a) Resistive network N₁
(b) Norton equivalent network
(μ = 4V/V)
B
Transcribed Image Text:The network N₁ shown below in Figure 3(a) contains a VCVS and is driven by an in- dependent current source. Using the values shown on the schematic, obtain the Nor- ton's equivalent network at terminals A-B of N₁ as shown in Figure 3(b). Label each component of the equivalent with its correct value. Show your work and explain in detail all assumptions you make. Jg₁ 20mA N₁ JN R3 R₁. 5KQ R₂ www 6ΚΩ + 3ΚΩ R4 7KQ V₂ (a) GN (b) μV4 B Figure 3 (a) Resistive network N₁ (b) Norton equivalent network (μ = 4V/V) B
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