Q1. Find the Fourier series for the function in figureQ1 (simplified as much as possible). -2 figureQ1
Q1. Find the Fourier series for the function in figureQ1 (simplified as much as possible). -2 figureQ1
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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
Transcribed Image Text:Q1. Find the Fourier series for the function in figureQ1 (simplified as much
as possible).
figureQ1
Q2. Find the Fourier transform for the function below. (simplified as much as
possible).
f(x) = { a
Q3. Using Z(n²) =
IN
z(z+1)
(Z-1)³
4
z²(z+1)
(z-1)³
Q4. Find the inverse Z-transform of f(n) by any method:
z² + 2z
(z-1)(z-2)(z-3)
Q5. Solve the difference equation ux+2 + x = 5(2x), uo = 1, ₁ = 0
9
a|x x ≤a
; |x| ≤ a
show that Z(n + 1)² =
=
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