9. Show the Complex Fourier Integral Transform (Fourier transform) of the function defined below f(t) = {4 (4 for 0 < t < 1 elsewhere is given by A etw/2 sin () where A is an expression to be determined where the use of any trigonometric or exponential identities needs to be clearly shown and derived.
9. Show the Complex Fourier Integral Transform (Fourier transform) of the function defined below f(t) = {4 (4 for 0 < t < 1 elsewhere is given by A etw/2 sin () where A is an expression to be determined where the use of any trigonometric or exponential identities needs to be clearly shown and derived.
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
Transcribed Image Text:9. Show the Complex Fourier Integral Transform (Fourier transform) of the function
defined below
f(t) = {4
(4 for 0 < t < 1
elsewhere
is given by A etw/2 sin () where A is an expression to be determined where the use of
any trigonometric or exponential identities needs to be clearly shown and derived.
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