A#06 - (a) Find the differential equation. (b) Find the...

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Assignment #06 ECSE-2410 Signals & Systems - Spring 2009 Due Tue 02/03/09 1(20). Find the step response (in closed form) of [ ] [ ] [ ] n x n y n y 2 1 3 1 = using classical techniques ( i.e , homogeneous and particular solutions.) 2(30). Solve [] [] [ ] [ ] n u n n y n y + = δ 1 2 1 , zero initial conditions, by means of (a) Table of iterations, as done in class. (Find terms [ ] . 4 , 3 , 2 , 1 , 0 , = n n y ) (b) Classical techniques (express solution in closed form here.) 3(20). For the circuit shown,
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Unformatted text preview: (a) Find the differential equation. (b) Find the impulse response, . ( ) t h 1 = C 1 = R ( ) t x ( ) t y + + 4(30). Find the impulse response of [ ] [ ] [ ] [ ] 1 1 2 1 + = n x n x n y n y by means of (a) Table of iterations, as done in class. (Find terms, [ ] . 4 , 3 , 2 , 1 , , = n n y ) (b) Classical techniques (express solution in closed form here.) Simplify....
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