e following: . For the circuit in Figure 2, if switch moves from 1 to 2 at t = 0, use the circuit to find 2 1 802 ww 1=0- 0.25 H 0.5 Ω + 4 V 1 F Figure 2 + 1. Find all initial conditions v(0) i(0), dv(0)/dt where i(0) is the current through the inductor. 2. Find v(t) across the capacitor, for t > 0. 3. Find the ic(t) across the capacitor.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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e following:
. For the circuit in Figure 2, if switch moves from 1 to 2 at t = 0, use the circuit to find
2
1
802
ww
1=0-
0.25 H
0.5 Ω
+
4 V
1 F
Figure 2
+
1. Find all initial conditions v(0) i(0), dv(0)/dt where i(0) is the current through the
inductor.
2. Find v(t) across the capacitor, for t > 0.
3. Find the ic(t) across the capacitor.
Transcribed Image Text:e following: . For the circuit in Figure 2, if switch moves from 1 to 2 at t = 0, use the circuit to find 2 1 802 ww 1=0- 0.25 H 0.5 Ω + 4 V 1 F Figure 2 + 1. Find all initial conditions v(0) i(0), dv(0)/dt where i(0) is the current through the inductor. 2. Find v(t) across the capacitor, for t > 0. 3. Find the ic(t) across the capacitor.
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