(C3, CO2, PO1) (b) Solve the discrete-time Fourier transform of the signal x(n) = 4(2")u(n) and find the magnitude and phase. [Selesaikan jelmaan Fourier masa-diskret bagi isyarat x(n) = 4(2")u(n) dan carikan magnitud dan fasa.] (C3, CO2, PO1) (c) Solve the Fourier transform of f(t) = sin(wet + 0). [Selesaikan jelmaan Fourier bagi f(t) = sin(wet + 0).]

Advanced Engineering Mathematics
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ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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(C3, CO2, PO1)
(b) Solve the discrete-time Fourier transform of the signal x(n) = 4(2")u(n) and find the
magnitude and phase.
[Selesaikan jelmaan Fourier masa-diskret bagi isyarat x(n) = 4(2")u(n) dan carikan magnitud dan fasa.]
(C3, CO2, PO1)
(c)
Solve the Fourier transform of f(t) = sin(wet + 0).
[Selesaikan jelmaan Fourier bagi f(t) = sin(w.t + 0).]
Transcribed Image Text:(C3, CO2, PO1) (b) Solve the discrete-time Fourier transform of the signal x(n) = 4(2")u(n) and find the magnitude and phase. [Selesaikan jelmaan Fourier masa-diskret bagi isyarat x(n) = 4(2")u(n) dan carikan magnitud dan fasa.] (C3, CO2, PO1) (c) Solve the Fourier transform of f(t) = sin(wet + 0). [Selesaikan jelmaan Fourier bagi f(t) = sin(w.t + 0).]
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