In the circuit shown in Figure 10.22, find the Norton equivalent current In and the Norton equivalent impedance Zn between terminals a and b. R₁ 902 8120⁰ V Zc -j12 2 R₂ 652 a b

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In the circuit shown in Figure 10.22, find the Norton equivalent
current In and the Norton equivalent impedance Zn between
terminals a and b.
R₁
992
8120⁰ V
Zc
-j1292
R₂
602
Figure 10.22
O a. In = 2.95-j1.49 A, Zn = 7.76 - j4.32 0
O b. In = 5.95-j1.49 A, Zn = 13.76-j4.32 02
O c. In = 3.95-j1.49 A, Zn = 9.76-j4.32 0
O d. In = 4.95-j1.49 A, Zn = 11.76 - j4.32 02
a
b
Transcribed Image Text:In the circuit shown in Figure 10.22, find the Norton equivalent current In and the Norton equivalent impedance Zn between terminals a and b. R₁ 992 8120⁰ V Zc -j1292 R₂ 602 Figure 10.22 O a. In = 2.95-j1.49 A, Zn = 7.76 - j4.32 0 O b. In = 5.95-j1.49 A, Zn = 13.76-j4.32 02 O c. In = 3.95-j1.49 A, Zn = 9.76-j4.32 0 O d. In = 4.95-j1.49 A, Zn = 11.76 - j4.32 02 a b
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