6.32 The four capacitors in the circuit in Fig. P6.32 are con- nected across the terminals of a black box at t = 0. The resulting current i, for t> 0 is known to be = -5e-50 mA. If va(0) = -20 V, v(0) = -30 V and v(0) = 250V, find the following for t≥ 0: (a) vz(t). (b) va(t), (c) ve(t), (d) va(t), (e) i₁(t), and (f) i₂(t). 1200 nF 4 μF €800 nF HE 2 μF 1=0 Vz Black box
6.32 The four capacitors in the circuit in Fig. P6.32 are con- nected across the terminals of a black box at t = 0. The resulting current i, for t> 0 is known to be = -5e-50 mA. If va(0) = -20 V, v(0) = -30 V and v(0) = 250V, find the following for t≥ 0: (a) vz(t). (b) va(t), (c) ve(t), (d) va(t), (e) i₁(t), and (f) i₂(t). 1200 nF 4 μF €800 nF HE 2 μF 1=0 Vz Black box
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Transcribed Image Text:6.32 The four capacitors in the circuit in Fig. P6.32 are con-
nected across the terminals of a black box at t = 0.
The resulting current i, for t> 0 is known to be
= -5e-50 mA.
in =
If va(0) = -20 V, v(0) = -30 V and v(0) = 250V,
find the following for t≥ 0: (a) vz(t). (b) va(t),
(c) ve(t), (d) va(t), (e) i₁(t), and (f) i₂(t).
1200 nF
4 μF
€800 nF
HE
2 μF
1=0
Vz
Black
box
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