In the circuit below, a constant voltage source of 8 V is applied at t = 0. Find all branch voltages and branch currents at t = = 0+ and at t = ∞, given that i₁₁ (0¯) = 2 A and v₁₁ (0¯) = 2 V. 10 V + L1 R1 R3 R2 C1 R₁ R₂ R3 = = = L₁ = 2H C₁ = 1F = 2Ω
In the circuit below, a constant voltage source of 8 V is applied at t = 0. Find all branch voltages and branch currents at t = = 0+ and at t = ∞, given that i₁₁ (0¯) = 2 A and v₁₁ (0¯) = 2 V. 10 V + L1 R1 R3 R2 C1 R₁ R₂ R3 = = = L₁ = 2H C₁ = 1F = 2Ω
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Transcribed Image Text:In the circuit below, a constant voltage source of 8 V is applied at \( t = 0 \). Find all branch voltages and branch currents at \( t = 0^+ \) and at \( t = \infty \), given that \( i_{L1}(0^-) = 2 \, \text{A} \) and \( v_{C1}(0^-) = 2 \, \text{V} \).
**Circuit Description:**
- The circuit consists of the following components:
- A voltage source of 10 V connected in series with:
- Inductor \( L1 \)
- Resistor \( R1 \)
- Resistor \( R3 \)
- Resistor \( R2 \), connected in parallel with Capacitor \( C1 \)
**Component Values:**
- \( R_1 = R_2 = R_3 = 2 \, \Omega \)
- \( L_1 = 2 \, \text{H} \)
- \( C_1 = 1 \, \text{F} \)
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