Q3. For the circuit show below: -0.01F 160: i(t) + 30 V 4H 30 V Answer the following (5 marks for each section): a) Derive a second order differential equation in terms of i(t) fort>0.

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Pls help ASAP. The subject is Electric Networks 

Q3.
For the circuit show below:
82
ww
-0.01F
162
i(t)
30 V
4H
+
30 V
Answer the following (5 marks for each section):
a) Derive a second order differential equation in terms of i(t) for t> 0.
Transcribed Image Text:Q3. For the circuit show below: 82 ww -0.01F 162 i(t) 30 V 4H + 30 V Answer the following (5 marks for each section): a) Derive a second order differential equation in terms of i(t) for t> 0.
Expert Solution
Step 1

ELECTRICAL NETWORK:

When addressing a circuit problem or constructing a balanced circuit, the word "network" is the most commonly used term. A network does not have to be a closed circuit; an open circuit can also be referred to as a network. As a result, all networks are not circuits (for example, an open circuit cannot be referred to as a circuit but may be referred to as a network), and all circuits can be referred to as networks. Node, branch, loop, and mesh are the four circuit names that may be used to identify an electrical network.

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