Part A] The Laplace transform of the source voltage Part B] The reflection coefficient at the source Part C] The reflection coefficient at the interface, p12

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Problem #1:
For the following circuit, please solve and show work for the following:
*THIS IS A CASCADED TRANSMISSION LINE PROBLEM*
Part A] The Laplace transform of the source voltage
Part B] The reflection coefficient at the source
Part C] The reflection coefficient at the interface, p12
Part D] The transmission coefficient at the interface, T12
Part E] The reflection coefficient at the interface, p21
Part F] The transmission coefficient at the interface, T21
Part G] The reflection coefficient at the load
Part H] The transmission coefficient at the load
Part I] The voltage "flow diagram" - KEEP IN MIND THAT THIS CIRCUIT HAS CASCADED TRANSMISSION LINES!
Part J] Find Vin(s), then use inverse Laplace transform to find vin(t)
Part K] Find Vout(s), then use inverse Laplace transform to find vout(t)
75
30PF
to,- Son
Zoz50L
150
F100
3.bult)
bns
2ns
Transcribed Image Text:Problem #1: For the following circuit, please solve and show work for the following: *THIS IS A CASCADED TRANSMISSION LINE PROBLEM* Part A] The Laplace transform of the source voltage Part B] The reflection coefficient at the source Part C] The reflection coefficient at the interface, p12 Part D] The transmission coefficient at the interface, T12 Part E] The reflection coefficient at the interface, p21 Part F] The transmission coefficient at the interface, T21 Part G] The reflection coefficient at the load Part H] The transmission coefficient at the load Part I] The voltage "flow diagram" - KEEP IN MIND THAT THIS CIRCUIT HAS CASCADED TRANSMISSION LINES! Part J] Find Vin(s), then use inverse Laplace transform to find vin(t) Part K] Find Vout(s), then use inverse Laplace transform to find vout(t) 75 30PF to,- Son Zoz50L 150 F100 3.bult) bns 2ns
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