P10.3 Determine the Fourier series coefficients for the three periodic sequences shown in Figures P10.3-1 to P10.3-3. Since these three sequences all have the same nonzero values over one period, we suggest that you first determine an expression for the envelope of the Fourier series coefficients and then sample this envelope at the appropriate spacings in each case. (a) x₁ [n] 1 III....IL...III... 6 0 Figure P10.3-1 n

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Determine the Fourier series coefficients for the three periodic sequences shown in Figures P10.3-1 to P10.3-3. Since these three sequences all have the same nonzero values over one period, we suggest that you first determine an expression for the envelope of the Fourier series coefficients and then sample this envelope at the appropriate spacings in each case. 

 

Signals and Systems
P10-2
(b)
(c)
x₂ [n]
[11
-1 0 1
1
x3 [n]
-1 0 1
Figure P10.3-2
alle
III.
12
III
60
Figure P10.3-3
n
n
Transcribed Image Text:Signals and Systems P10-2 (b) (c) x₂ [n] [11 -1 0 1 1 x3 [n] -1 0 1 Figure P10.3-2 alle III. 12 III 60 Figure P10.3-3 n n
P10.3
Determine the Fourier series coefficients for the three periodic sequences shown in
Figures P10.3-1 to P10.3-3. Since these three sequences all have the same nonzero
values over one period, we suggest that you first determine an expression for the
envelope of the Fourier series coefficients and then sample this envelope at the
appropriate spacings in each case.
(a)
IIIII...III..
6
1
-1 0 1
Figure P10.3-1
n
Transcribed Image Text:P10.3 Determine the Fourier series coefficients for the three periodic sequences shown in Figures P10.3-1 to P10.3-3. Since these three sequences all have the same nonzero values over one period, we suggest that you first determine an expression for the envelope of the Fourier series coefficients and then sample this envelope at the appropriate spacings in each case. (a) IIIII...III.. 6 1 -1 0 1 Figure P10.3-1 n
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