Example 8.2 Finding the Overdamped Natural Response of a Parallel RLC Circuit For the circuit in Fig. 8.6, v(0*) = 12 V, and i,(0*) = 30 mA. %3D 0.2 µF Vo 50 mH3, 200 N{ a) Find the initial current in each branch of the circuit. b) Find the initial value of dv/dt. Figure 8.6 A The circuit for Example 8.2. c) Find the expression for v(t). d) Sketch v(t) in the interval 0 < ts 250 ms. ||

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Author:Robert L. Boylestad
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Example 8.2 Finding the Overdamped Natural Response of a Parallel RLC Circuit
For the circuit in Fig. 8.6, v(0*) = 12 V, and
i,(0*) = 30 mA.
%3D
0.2 µF Vo 50 mH3, 200 N{
a) Find the initial current in each branch of the
circuit.
b) Find the initial value of dv/dt.
Figure 8.6 A The circuit for Example 8.2.
c) Find the expression for v(t).
d) Sketch v(t) in the interval 0 < ts 250 ms.
||
Transcribed Image Text:Example 8.2 Finding the Overdamped Natural Response of a Parallel RLC Circuit For the circuit in Fig. 8.6, v(0*) = 12 V, and i,(0*) = 30 mA. %3D 0.2 µF Vo 50 mH3, 200 N{ a) Find the initial current in each branch of the circuit. b) Find the initial value of dv/dt. Figure 8.6 A The circuit for Example 8.2. c) Find the expression for v(t). d) Sketch v(t) in the interval 0 < ts 250 ms. ||
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