www R1 ↑ 11 R2 + V2 www Figure 5: A circuit R3 R4 Ic a Given the circuit in figure 5 with component values R₁ = 60, R₂ = 2002, R3 = 80, R4 = 40 Ω, 1₁ = 4 A, V₂ = 160 lc V. The current Ic is noted on the circuit. Node a and bare denoted on the circuit. You are free to use any methods explained in class to derive the Thevenin equivalent circuit between node a and b.

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M
R1
11
R2
ww
V2
Figure 5: A circuit
R3
M
R4
Ic
a
Given the circuit in figure 5 with component values R₁ = 60 №, R₂ = 20 N, R3 = 80 N, R4 = 40,
l₁ = 4 A, V₂ = 160 lc V. The current Ic is noted on the circuit. Node a and bare denoted on the
circuit. You are free to use any methods explained in class to derive the Thevenin equivalent
circuit between node a and b.
Transcribed Image Text:M R1 11 R2 ww V2 Figure 5: A circuit R3 M R4 Ic a Given the circuit in figure 5 with component values R₁ = 60 №, R₂ = 20 N, R3 = 80 N, R4 = 40, l₁ = 4 A, V₂ = 160 lc V. The current Ic is noted on the circuit. Node a and bare denoted on the circuit. You are free to use any methods explained in class to derive the Thevenin equivalent circuit between node a and b.
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