21 2a Z2 b Figure 19-5 In the accompanying figure, let Z1 = 4 + j2 W, Z, = 5 + jO W, and Z. = 6 - j4 W. Determine the equivalent D impedances. Za = 15 - j11 W, Z, = 16.4 = j2.79 W, Zc = 10.5 + j6.78 W Z1 = 12 + jó W, Z2 = 15 + jO W, Z3 = 18 – j24 W Z1 = 2.14 - j1.06 W, Z2 = 2 + jO W, Z3 = 1.22 + j0.832 W Z1 = 1.33 - j0.667 W, Z2 = 1.67 + jO W, Z3 = 2 - j1.33 W

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21
Za
Z2
Figure 19-5
In the accompanying figure, let Z1 = 4 + j2 W, Zµ = 5 + jO W, and Zc = 6 – j4 W.
Determine the equivalent D impedances.
Za = 15 - j11 W, Z, = 16.4 = j2.79 W, Zc = 10.5 + j6.78 W
Z1 = 12 + jó W, Z2 = 15 + j0 W, Z3 = 18 – j24 W
%3D
Z1 = 2.14 - j1.06 W, Z2 = 2 + j0 W, Z3 = 1.22 + j0.832 W
%3D
Z1 = 1.33 - j0.667 W, Z2 = 1.67 + jO W, Z3 = 2 - j1.33 W
Transcribed Image Text:21 Za Z2 Figure 19-5 In the accompanying figure, let Z1 = 4 + j2 W, Zµ = 5 + jO W, and Zc = 6 – j4 W. Determine the equivalent D impedances. Za = 15 - j11 W, Z, = 16.4 = j2.79 W, Zc = 10.5 + j6.78 W Z1 = 12 + jó W, Z2 = 15 + j0 W, Z3 = 18 – j24 W %3D Z1 = 2.14 - j1.06 W, Z2 = 2 + j0 W, Z3 = 1.22 + j0.832 W %3D Z1 = 1.33 - j0.667 W, Z2 = 1.67 + jO W, Z3 = 2 - j1.33 W
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