Consider the circuit shown. F ind a. , (t) 2, 1be mA () v, 3 3H 6 H b. V, (F)

Introductory Circuit Analysis (13th Edition)
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Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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**Problem Statement:**

Consider the circuit shown. Find:

a. \( i_2(t) \)

b. \( V_1(t) \)

**Circuit Description:**

- The circuit includes an exponential current source \( 6e^{-2t} \, \text{mA} \).
- It has two inductors: 
  - The first inductor is labeled with a voltage \( V_1 \), and its inductance is \( 3 \, \text{H} \) with current \( i_1 \) passing through it downward.
  - The second inductor has an inductance of \( 6 \, \text{H} \) with current \( i_2 \) passing through it downward.
- The components are connected in a parallel configuration with the current source.
Transcribed Image Text:**Problem Statement:** Consider the circuit shown. Find: a. \( i_2(t) \) b. \( V_1(t) \) **Circuit Description:** - The circuit includes an exponential current source \( 6e^{-2t} \, \text{mA} \). - It has two inductors: - The first inductor is labeled with a voltage \( V_1 \), and its inductance is \( 3 \, \text{H} \) with current \( i_1 \) passing through it downward. - The second inductor has an inductance of \( 6 \, \text{H} \) with current \( i_2 \) passing through it downward. - The components are connected in a parallel configuration with the current source.
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