5. The circuit is at steady state before the switch transitions from closed to open at time t = 0. The output of this circuit is the current through the inductor, i(t). Determine i(t) for t> 0. 9 V 3 ΚΩ ww 6 ΚΩ t = 0 5。 5 H↓i(t) 5 mA www 2 ΚΩ

Introductory Circuit Analysis (13th Edition)
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The image features a circuit diagram associated with an educational problem statement. The circuit is initially at a steady state before a switch transitions from closed to open at time \( t = 0 \). The task is to determine the current \( i(t) \) through the inductor for \( t > 0 \).

### Circuit Description:

- **Voltage Source**: A 9V source is present in the circuit.
- **Resistors**:
  - A 6 kΩ resistor and a 3 kΩ resistor are connected in series with the voltage source.
  - A 2 kΩ resistor is connected in parallel with a 5 mA current source.
- **Inductor**: A 5 H inductor is present between the branches of resistors and the current source.
- **Current Source**: A 5 mA current source is connected in parallel with a 2 kΩ resistor.
- **Switch**: A switch is positioned such that when it opens at \( t = 0 \), it changes the configuration of the circuit.

The problem asks to calculate the current \( i(t) \) that flows through the inductor after the switch has opened.
Transcribed Image Text:The image features a circuit diagram associated with an educational problem statement. The circuit is initially at a steady state before a switch transitions from closed to open at time \( t = 0 \). The task is to determine the current \( i(t) \) through the inductor for \( t > 0 \). ### Circuit Description: - **Voltage Source**: A 9V source is present in the circuit. - **Resistors**: - A 6 kΩ resistor and a 3 kΩ resistor are connected in series with the voltage source. - A 2 kΩ resistor is connected in parallel with a 5 mA current source. - **Inductor**: A 5 H inductor is present between the branches of resistors and the current source. - **Current Source**: A 5 mA current source is connected in parallel with a 2 kΩ resistor. - **Switch**: A switch is positioned such that when it opens at \( t = 0 \), it changes the configuration of the circuit. The problem asks to calculate the current \( i(t) \) that flows through the inductor after the switch has opened.
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