Determine V₁(s), Z₁ (s), Z₂(s) and the transfer function (Vout/Vin) for the electrical system given and input below, if R1 = 6 k and C1 = 55 μF .. Vin R1 www Using the following concept: v₁ (1) = v₁ (1) voltage divider Z₁(s) Z₁ (s) + Z₂ (s) V₁(s) = Z₁(s) = Z₂(s) = VOUT VIN IC1A V. (s) = V₁(s) V. (s) = (1 + Z₂(S))V,(s) Z₁(s) Ω 10 k www Ω C2 Fig 3.12 47 UF V;(s) WHI V₁(s) Z₁(s) Vout WWW + Z₂(s) Vo(s)
Determine V₁(s), Z₁ (s), Z₂(s) and the transfer function (Vout/Vin) for the electrical system given and input below, if R1 = 6 k and C1 = 55 μF .. Vin R1 www Using the following concept: v₁ (1) = v₁ (1) voltage divider Z₁(s) Z₁ (s) + Z₂ (s) V₁(s) = Z₁(s) = Z₂(s) = VOUT VIN IC1A V. (s) = V₁(s) V. (s) = (1 + Z₂(S))V,(s) Z₁(s) Ω 10 k www Ω C2 Fig 3.12 47 UF V;(s) WHI V₁(s) Z₁(s) Vout WWW + Z₂(s) Vo(s)
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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Question
![Determine V₁(s), Z₁ (s), Z₂(s) and the transfer function (Vout/Vin) for the electrical system given and input
below, if R1 = 6 k and C1 = 55 μF ..
Vin
R1
www
Using the following concept:
v₁ (1) = v₁ (1)
voltage divider
Z₁(s)
Z₁ (s) + Z₂ (s)
V₁(s) =
Z₁(s) =
Z2 (s) =
VOUT
VIN
IC1A
V. (s) = V₁(s)
V. (s) = (1 + Z₂(S))V,(s)
Z₁(s)
Ω
10 k
www
Ω
C2
Fig 3.12
47 UF
V,(s)
WWW.
V₁(s)
Z₁(s)
Vout
WWW
+
Z₂(s)
V.(s)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6aeef3d1-aa8c-4ddf-80f2-1958f6053a0c%2F2dad917d-a2ae-4bc5-948a-1ed4c458f444%2F775y028_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Determine V₁(s), Z₁ (s), Z₂(s) and the transfer function (Vout/Vin) for the electrical system given and input
below, if R1 = 6 k and C1 = 55 μF ..
Vin
R1
www
Using the following concept:
v₁ (1) = v₁ (1)
voltage divider
Z₁(s)
Z₁ (s) + Z₂ (s)
V₁(s) =
Z₁(s) =
Z2 (s) =
VOUT
VIN
IC1A
V. (s) = V₁(s)
V. (s) = (1 + Z₂(S))V,(s)
Z₁(s)
Ω
10 k
www
Ω
C2
Fig 3.12
47 UF
V,(s)
WWW.
V₁(s)
Z₁(s)
Vout
WWW
+
Z₂(s)
V.(s)
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