Problem 7-2. For the circuit shown in figure P7-2, find v₁ (0-), vc(0+), vc(∞), i(0¯), i(0¹), i(∞), and di/dt|t=0+. and i(t) for t≥ 0+. Assume that the switch has been in its starting position for a long time before moving at t = 0. v₁(0*), v₁ (∞), vc (0¯), Determine v₁ (t), vc(t) + 12V( 0.8 mH t = 0 X. 0.5 μF 320 ww + VL(t) vc(t) i(t) 64Ω.
Problem 7-2. For the circuit shown in figure P7-2, find v₁ (0-), vc(0+), vc(∞), i(0¯), i(0¹), i(∞), and di/dt|t=0+. and i(t) for t≥ 0+. Assume that the switch has been in its starting position for a long time before moving at t = 0. v₁(0*), v₁ (∞), vc (0¯), Determine v₁ (t), vc(t) + 12V( 0.8 mH t = 0 X. 0.5 μF 320 ww + VL(t) vc(t) i(t) 64Ω.
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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Transcribed Image Text:Problem 7-2. For the circuit shown in
v₁(0*), v₁ (∞), vc (0¯),
Determine v₁ (t), vc(t)
figure P7-2, find v₁ (0-),
vc(0+), vc(∞), i(0¯), i(0¹), i(∞), and di/dt|t=0+.
and i(t) for t≥ 0+. Assume that the switch has been in
its starting position for a long time before moving at t = 0.
+
12V(
0.8 mH
t = 0
X.
0.5 μF
320
ww
+
VL(t)
vc(t)
i(t)
64Ω.
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Step 1: Summarize the data.
VIEWStep 2: Determine all the currents and voltages at t = 0-.
VIEWStep 3: Determine all the currents and voltages at t = 0+.
VIEWStep 4: Determine all the currents and voltages at t = infinity.
VIEWStep 5: Determine the generalized expression of VC(t).
VIEWStep 6: Determine the expression of VC(t).
VIEWStep 7: Determine the expression of VL(t) and i(t).
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