.2 (b) Figure Q.2 (b) shows an electrical circuit where the switch S has been closed for a very long time. It is then opened when t = 0. (i) Calculate the initial condition of v-(0~) and i(0-). (. (ii) Use a Laplace Transform method to calculate i(t) for t = 0+ (. (iii) Proof the answer in (i) using the Initial Value Theorem. R = 32 i(t) t = 0 + C = 5 mF R2 = 2 0 10 V Figure 0.2 (b)
.2 (b) Figure Q.2 (b) shows an electrical circuit where the switch S has been closed for a very long time. It is then opened when t = 0. (i) Calculate the initial condition of v-(0~) and i(0-). (. (ii) Use a Laplace Transform method to calculate i(t) for t = 0+ (. (iii) Proof the answer in (i) using the Initial Value Theorem. R = 32 i(t) t = 0 + C = 5 mF R2 = 2 0 10 V Figure 0.2 (b)
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Please I need the answer as soon as possible pleeeeeeeaasse
![Q.2 (b) Figure Q.2 (b) shows an electrical circuit where the switch S has been closed for
a very long time. It is then opened when t = 0.
(i) Calculate the initial condition of v-(0-) and i(0-).
(.
(ii) Use a Laplace Transform method to calculate i(t) for t = 0+
(iii) Proof the answer in (i) using the Initial Value Theorem.
(.
TM
i(t)
R = 32
t = 0
S
R2 = 22
C = 5 mF
TI
10 V
TM
Figure 0.2 (b)
10](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fdaca2cd4-0e28-4016-bed3-ce0b672ccf61%2F3c7c67ad-a93c-42e9-b0bf-54b375bcbf30%2Fyii4d3s_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Q.2 (b) Figure Q.2 (b) shows an electrical circuit where the switch S has been closed for
a very long time. It is then opened when t = 0.
(i) Calculate the initial condition of v-(0-) and i(0-).
(.
(ii) Use a Laplace Transform method to calculate i(t) for t = 0+
(iii) Proof the answer in (i) using the Initial Value Theorem.
(.
TM
i(t)
R = 32
t = 0
S
R2 = 22
C = 5 mF
TI
10 V
TM
Figure 0.2 (b)
10
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