) Draw the component block diagram of an elementary feedback control. 2. (10 points) a) List...
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) Draw the component block diagram of an elementary feedback control. 2. (10 points) a) List the requirements to achieve basic control. (10 points) b) Define Automatic Control. 3. (20 points) a) Develop the dynamic model for this circuit. Show the steps to obtain the model including the dynamic modeling technique as studied in class. The input is Vin(t) and the output is Vo(t). (20 points) b) Find the Transfer Function of this system. Show all the steps to find the answer. Ruf 25in(t) + R₁ www R3 M Rz M с Jo (t) 4. Find the Laplace transform for the following time functions. Show all the steps to obtain the answer. (10 points) a) f(t) = 2 + 3t (10 points) b) f(t) = 4 + 3t+ 6t² + 8 (t), where & (t) is the unit impulse function ) Draw the component block diagram of an elementary feedback control. 2. (10 points) a) List the requirements to achieve basic control. (10 points) b) Define Automatic Control. 3. (20 points) a) Develop the dynamic model for this circuit. Show the steps to obtain the model including the dynamic modeling technique as studied in class. The input is Vin(t) and the output is Vo(t). (20 points) b) Find the Transfer Function of this system. Show all the steps to find the answer. Ruf 25in(t) + R₁ www R3 M Rz M с Jo (t) 4. Find the Laplace transform for the following time functions. Show all the steps to obtain the answer. (10 points) a) f(t) = 2 + 3t (10 points) b) f(t) = 4 + 3t+ 6t² + 8 (t), where & (t) is the unit impulse function
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Related Book For
Materials Science and Engineering An Introduction
ISBN: 978-0470419977
8th edition
Authors: William D. Callister Jr., David G. Rethwisch
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