a) exp\((\frac{j2nf}{t})\)
b) exp\((-\frac{j2nf}{t})\)
c) exp(j2nft)
d) exp(-j2nft)
If H(f) = \(\frac{y(t)}{x(t)}\), then for this to be true x(t) is ___________
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If H(f) = \(\frac{y(t)}{x(t)}\), then for this to be true x(t) is ___________
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