44. Show that, by Kirchhoff s Voltage Law (Sec. 2.9), the currents in the network in Fig. 153 are obtained from the system Li + R(i, - i2) = v(t) %3D R(i, - i) + =D 0. I Solve this system, assuming that R 10 , L 20 H, C 0.05 F. v = 20 V, i(0) = %3D 0. iz(0) = 2 A. %3D %3D i2 R. 153. Network in Problem 44

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Author:Robert L. Boylestad
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44. Show that, by Kirchhoff s Voltage Law (Sec. 2.9), the
currents in the network in Fig. 153 are obtained from
the system
Li + R(i, - i2) = v(1)
R(i2 – i) +iz = 0.
I Solve this system, assuming that R 10, I. 20 H,
C 0.05 F. v = 20 V, i(0) = .
%3D
0. iz(0) = 2
%3D
R
C
Fig. 153. Network in Problem 44
Transcribed Image Text:44. Show that, by Kirchhoff s Voltage Law (Sec. 2.9), the currents in the network in Fig. 153 are obtained from the system Li + R(i, - i2) = v(1) R(i2 – i) +iz = 0. I Solve this system, assuming that R 10, I. 20 H, C 0.05 F. v = 20 V, i(0) = . %3D 0. iz(0) = 2 %3D R C Fig. 153. Network in Problem 44
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