a) Determine I(s) [Hint: use mesh-current method] b) Compute the values lim i(t) and lim i(t) [Hint: use the initial- and final-value theorems] t→0 c) Determine if the results obtained in (b) agree with the known circuit behavior (Hint: when t → 0 the circuit's voltages and currents approach constant values; hence, you can analyze the circuit behavior under DC conditions to double-check the result obtained in b)).

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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Consider the following circuit, where
the voltage source v,(t) = u(t) implements a step function
the dependent current source operates with B = 1n-1
Additionally, there is no energy stored in the circuit for t <0 seconds.
Bvo(t)
1H
1Ω
100아
Į i(t)
Vg(t)
1F:
vat)
+
a) Determine I(s) [Hint: use mesh-current method]
b) Compute the values lim i(t) and lim i(t) [Hint: use the initial- and final-value theorems]
t→0
c) Determine if the results obtained in (b) agree with the known circuit behavior (Hint: when t → 0
the circuit's voltages and currents approach constant values; hence, you can analyze the circuit
behavior under DC conditions to double-check the result obtained in b)).
Transcribed Image Text:Consider the following circuit, where the voltage source v,(t) = u(t) implements a step function the dependent current source operates with B = 1n-1 Additionally, there is no energy stored in the circuit for t <0 seconds. Bvo(t) 1H 1Ω 100아 Į i(t) Vg(t) 1F: vat) + a) Determine I(s) [Hint: use mesh-current method] b) Compute the values lim i(t) and lim i(t) [Hint: use the initial- and final-value theorems] t→0 c) Determine if the results obtained in (b) agree with the known circuit behavior (Hint: when t → 0 the circuit's voltages and currents approach constant values; hence, you can analyze the circuit behavior under DC conditions to double-check the result obtained in b)).
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