Question 1 Consider the circuit shown below where : R₁ = 10; R₂ = 8; C = 1/8 F; L=2 H; i₁(0) = ½ A; Vc (0)=1 Determine i(t) and v(t) w P(1) R₁

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Er
Q
11:33
AA
Question 1
Consider the circuit shown below where:
bartleby.com
R₁ = 10; R₂ = 8; C = 1/8 F; L=2 H; i (0) = ½ A; Vc (0)=1
Determine i(t) and v(t)
(10) L
24 V
i(t)
Question 2
The switch in Figure below has been in position a for a long time, until t = 0s when it is
moved to position b. Determine v(t) at t > 0.
R
PO
80
www
0.25 F==
P(1) {R₂
1=0
b
0.1 F (1)
Question 3
Using the Figure below, calculate v(t), Van and V₁0 at t> 0 if v(0) = 12 V.
2
Question 4
For the circuit in Figure 2, if v = 10e" V and i = 0.2e A att > 0;
a) Find R and C
b) Determine the time constant, T
c) Calculate the initial energy in the capacitor
20
V
JL
1
Transcribed Image Text:Er Q 11:33 AA Question 1 Consider the circuit shown below where: bartleby.com R₁ = 10; R₂ = 8; C = 1/8 F; L=2 H; i (0) = ½ A; Vc (0)=1 Determine i(t) and v(t) (10) L 24 V i(t) Question 2 The switch in Figure below has been in position a for a long time, until t = 0s when it is moved to position b. Determine v(t) at t > 0. R PO 80 www 0.25 F== P(1) {R₂ 1=0 b 0.1 F (1) Question 3 Using the Figure below, calculate v(t), Van and V₁0 at t> 0 if v(0) = 12 V. 2 Question 4 For the circuit in Figure 2, if v = 10e" V and i = 0.2e A att > 0; a) Find R and C b) Determine the time constant, T c) Calculate the initial energy in the capacitor 20 V JL 1
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