Given the following circuit below, at t=0 the switch opens: + Vs Vs = 12V t=0 X. R₁ vo(t). m = L R₁ 10kΩ R2 = M R₂ 5ΚΩ L = 2mH (a) Use the differential equation method to determine the output voltage
Given the following circuit below, at t=0 the switch opens: + Vs Vs = 12V t=0 X. R₁ vo(t). m = L R₁ 10kΩ R2 = M R₂ 5ΚΩ L = 2mH (a) Use the differential equation method to determine the output voltage
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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![Given the following circuit below, at \( t = 0 \) the switch opens:
![Circuit Diagram]
### Circuit Components and Layout:
- **Voltage Source (\( V_S \))**: 12V
- **Inductor (\( L \))**: 2 mH
- **Resistors**:
- \( R_1 = 10 \, \text{k}\Omega \)
- \( R_2 = 5 \, \text{k}\Omega \)
### Circuit Description:
- The circuit includes a DC voltage source, \( V_S = 12 \, \text{V} \), connected in series with a switch.
- At \( t = 0 \), the switch opens.
- The inductor \( L \) and resistor \( R_1 \) are in parallel.
- Output voltage across \( R_1 \), denoted as \( v_0(t) \).
- Resistor \( R_2 \) is connected in the parallel branch with the inductor-resistor pair.
### Task:
(a) Use the differential equation method to determine the output voltage \( v_0(t) \).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F18732a46-4e98-4415-8a7f-90e4e404b19b%2Fbd1127d6-b210-425d-9f01-d366b7fb4847%2Fwrwpewk_processed.png&w=3840&q=75)
Transcribed Image Text:Given the following circuit below, at \( t = 0 \) the switch opens:
![Circuit Diagram]
### Circuit Components and Layout:
- **Voltage Source (\( V_S \))**: 12V
- **Inductor (\( L \))**: 2 mH
- **Resistors**:
- \( R_1 = 10 \, \text{k}\Omega \)
- \( R_2 = 5 \, \text{k}\Omega \)
### Circuit Description:
- The circuit includes a DC voltage source, \( V_S = 12 \, \text{V} \), connected in series with a switch.
- At \( t = 0 \), the switch opens.
- The inductor \( L \) and resistor \( R_1 \) are in parallel.
- Output voltage across \( R_1 \), denoted as \( v_0(t) \).
- Resistor \( R_2 \) is connected in the parallel branch with the inductor-resistor pair.
### Task:
(a) Use the differential equation method to determine the output voltage \( v_0(t) \).
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