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tut 4a SE

# tut 4a SE - o(s/V i(s for each of the operational amplifier...

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EET 309 – Control System Eng Universiti Malaysia Perlis (UniMAP) TUTORIAL 4a 1. Write the differential equation for the system below. 2. Write the differential equation that is mathematically equivalent to the block diagram below. Assume that r ( t ) = 3 t 3 . 3. A system is described by the following differential equation: ( 29 t r x dt dx dt x d = + + 3 2 2 2 With the initial conditions 1 ) 0 ( = x , 1 ) 0 ( - = x . Show a block diagram of the system, giving its transfer function and all pertinent inputs and outputs. 4. Find the transfer function, G ( s ) = V 0 ( s )/ V i ( s ), for each network below. 5. Fi n d the transfer functions, G ( s ) = V L ( s )/ V ( s ), for each of the networks below. 3 2 3 7 3 4 2 2 3 4 5 6 2 3 4 5 + + + + + + + + + s s s s s s s s s R ( s ) C ( s ) 2 5 4 2 3 1 5 2 2 3 4 5 2 3 4 + + + + + + + + + s s s s s s s s s R ( s ) C ( s ) 1

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EET 309 – Control System Eng Universiti Malaysia Perlis (UniMAP) 6. Find the transfer function, G(s) = V

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Unformatted text preview: o (s)/V i (s), for each of the operational amplifier circuits below. 7. Find the transfer function, G ( s ) = X 1 ( s )/ F ( s ), for the translation mechanical system below. EET 309 – Control System Eng Universiti Malaysia Perlis (UniMAP) 8. Find the transfer function, G ( s ) = X 2 ( s )/ F ( s ), for the translation mechanical system below. 9. Find the transfer function, G ( s ) = X 2 ( s )/ F ( s ), for the translation mechanical system below. (Hint: Place a zero mass at x 2 ( t )). EET 309 – Control System Eng Universiti Malaysia Perlis (UniMAP) 10. Find the transfer function, G(s) = X 1 (s)/F(s) as figure below....
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tut 4a SE - o(s/V i(s for each of the operational amplifier...

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