Problem 4. A continuous-time periodic signal x(t) with period Thas Fourier series coefficients ax- (a) Let x₁ (t) = x(t-1). What is the fundamental frequency for x₁ (t)? If its Fourier series is by, express by in terms of a (b) Let x₂(t) = x(-t). What is the fundamental frequency for x₂(t)? If its Fourier series is C, express C in terms of a. (c) Let x3 (t) = x₂(t-1) = x(1-t), If the Fourier series coefficients are d, express d in terms of ak- (d) Let x4(t) = x(t-1) + 2x(t+1). Find its Fourier series coefficients ek in terms of ak-
Problem 4. A continuous-time periodic signal x(t) with period Thas Fourier series coefficients ax- (a) Let x₁ (t) = x(t-1). What is the fundamental frequency for x₁ (t)? If its Fourier series is by, express by in terms of a (b) Let x₂(t) = x(-t). What is the fundamental frequency for x₂(t)? If its Fourier series is C, express C in terms of a. (c) Let x3 (t) = x₂(t-1) = x(1-t), If the Fourier series coefficients are d, express d in terms of ak- (d) Let x4(t) = x(t-1) + 2x(t+1). Find its Fourier series coefficients ek in terms of ak-
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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![Problem 4. A continuous-time periodic signal x(t) with period T has Fourier series coefficients ak-
(a) Let x₁ (t) = x(t-1). What is the fundamental frequency for x₁ (t)? If its Fourier series is bk, express bk in terms of ak
(b) Let x₂ (t) = x(-t). What is the fundamental frequency for x₂ (t)? If its Fourier series is Ck, express ck in terms of ak.
(c) Let x3 (t) = x₂(t-1) = x(1-t), If the Fourier series coefficients are dk, express dk in terms of ak-
(d) Let x4 (t) = x(t-1)+2x(t+1). Find its Fourier series coefficients ek in terms of ak-
Problem 5. Find the fundamental period N (if not given) and the Fourier series coefficients for the following discrete-time signals.
(a) Period N=4. For 0 ≤ n ≤ 3, x[n] = 8[n] + 8[n-2]
(b) x[n] = {48[n-4m] +88[n-1-4m]}.
(c) x[n] = cos(n+7)
(d) [Graduate Student only] x[n] = sin(n) + 2cos (n +)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc392773b-4109-49e1-96ef-857df8bffcb8%2Fbcdfff46-7b6b-4699-87a1-ebe467c3640c%2Fykibr9h_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Problem 4. A continuous-time periodic signal x(t) with period T has Fourier series coefficients ak-
(a) Let x₁ (t) = x(t-1). What is the fundamental frequency for x₁ (t)? If its Fourier series is bk, express bk in terms of ak
(b) Let x₂ (t) = x(-t). What is the fundamental frequency for x₂ (t)? If its Fourier series is Ck, express ck in terms of ak.
(c) Let x3 (t) = x₂(t-1) = x(1-t), If the Fourier series coefficients are dk, express dk in terms of ak-
(d) Let x4 (t) = x(t-1)+2x(t+1). Find its Fourier series coefficients ek in terms of ak-
Problem 5. Find the fundamental period N (if not given) and the Fourier series coefficients for the following discrete-time signals.
(a) Period N=4. For 0 ≤ n ≤ 3, x[n] = 8[n] + 8[n-2]
(b) x[n] = {48[n-4m] +88[n-1-4m]}.
(c) x[n] = cos(n+7)
(d) [Graduate Student only] x[n] = sin(n) + 2cos (n +)
Expert Solution
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Step 1
Note: As here multiple questions are available so as per the Bartleby guideline, I am solving Problem 4.
For the solution of Problem 5 please repost it again.
Fourier series
By using the Fourier series, we convert the non-standard signal into the standard signal by the approximated process. It provides a periodic signal due to which we can find out the steady-state response of the signal.
This series help in converting the non-sinusoidal periodic function into the infinite sum of a sinusoidal function.
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