ASN3 - Class Notes October 5: Difference between revisions

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<math> x(t)= \int_{-\infty} ^ {\infty} x(t')\delta_(t'-t) dt' \!</math>
<math> x(t)= \int_{-\infty} ^ {\infty} x(t')\delta_(t'-t) dt' \!</math>


THE GAME
<math> THE GAME </math>


LTI (Linear Time Invariant System)
<math> LTI (Linear Time Invariant System) </math>


Input LTI Output Reason
<math> Input LTI Output Reason</math>


<math> x(t)\longrightarrow \int_{-\infty} ^ {\infty} x(t')\delta_(t'-t) dt' \!</math>
<math> x(t)\longrightarrow \int_{-\infty} ^ {\infty} x(t')\delta_(t'-t) dt' \!</math> Superposition
<math> X(f)\longrightarrow \int_{-\infty} ^ {\infty} X(f')\delta_(f'-f) df' \!</math>
<math> X(f)\longrightarrow \int_{-\infty} ^ {\infty} X(f')\delta_(f'-f) df' \!</math> "

Revision as of 13:58, 3 December 2009

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Can we make an unperiodic signal and make it periodic by taking the limit?

note that

becomes as the limit is taken n/t becomes f

note that the defination of the delta function is

Superposition "