(a) A CIRCUIT HAS IN SERIES AN ELECTROMOTIVE FORCE 40 V CONSTANT, A 10 Q RESISTOR AND A 0.2 H INDUCTOR. IF THE INITIAL CURRENT IS ZERO, CALCULATE THE CURRENT AT TIME t> 0. (b) THE SAME STATEMENT WITH E= 150 COS (200 t). ANSWER: I = 4(1 – e-50 t)
(a) A CIRCUIT HAS IN SERIES AN ELECTROMOTIVE FORCE 40 V CONSTANT, A 10 Q RESISTOR AND A 0.2 H INDUCTOR. IF THE INITIAL CURRENT IS ZERO, CALCULATE THE CURRENT AT TIME t> 0. (b) THE SAME STATEMENT WITH E= 150 COS (200 t). ANSWER: I = 4(1 – e-50 t)
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Please answer both subparts.
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![(a) A CIRCUIT HAS IN SERIES AN ELECTROMOTIVE FORCE
40 V CONSTANT, A 10 Q RESISTOR AND A 0.2 H INDUCTOR. IF THE
INITIAL CURRENT IS ZERO, CALCULATE THE CURRENT AT TIME t> 0.
(b) THE SAME STATEMENT WITH E= 150 COS (200 t).
ANSWER:
I = 4(1 – e-50 t)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F82e58edc-e1fa-4579-90a9-0c56ae3a66ce%2F46887568-61e8-4edc-ab63-c18362840cf8%2Fddf3f6_processed.jpeg&w=3840&q=75)
Transcribed Image Text:(a) A CIRCUIT HAS IN SERIES AN ELECTROMOTIVE FORCE
40 V CONSTANT, A 10 Q RESISTOR AND A 0.2 H INDUCTOR. IF THE
INITIAL CURRENT IS ZERO, CALCULATE THE CURRENT AT TIME t> 0.
(b) THE SAME STATEMENT WITH E= 150 COS (200 t).
ANSWER:
I = 4(1 – e-50 t)
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