X,(f) = F[x(t)] = sinc²(f) X2(f) = F[rect(t)] = sinc (f) Determine the inverse Fourier Transform of (i) X(f) = 2 tri(f) (ii) Z(f) = e-j2«f sinc(f)

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(b)
The Fourier Transform of x,(t) = tri(t) and x2(t) = rect(t) are
%3D
X,(f) = F[x(t)] = sinc²(f)
X2(f) = F[rect(t)] = sinc (f)
Determine the inverse Fourier Transform of
(i)
X(f) = 2 tri(f)
(ii)
Z(f) = e¬j2nfsinc(f)
Transcribed Image Text:(b) The Fourier Transform of x,(t) = tri(t) and x2(t) = rect(t) are %3D X,(f) = F[x(t)] = sinc²(f) X2(f) = F[rect(t)] = sinc (f) Determine the inverse Fourier Transform of (i) X(f) = 2 tri(f) (ii) Z(f) = e¬j2nfsinc(f)
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