(1) Use the circuit in Exercise 2 to conduct AC analysis. (2) Modify the AC voltage source Move the mousepointer to the

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answerhappygod
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(1) Use the circuit in Exercise 2 to conduct AC analysis. (2) Modify the AC voltage source Move the mousepointer to the

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1 Use The Circuit In Exercise 2 To Conduct Ac Analysis 2 Modify The Ac Voltage Source Move The Mousepointer To The 1
1 Use The Circuit In Exercise 2 To Conduct Ac Analysis 2 Modify The Ac Voltage Source Move The Mousepointer To The 1 (113.59 KiB) Viewed 39 times
The circuit-related is attached
Want to know how I can get the filter and the transfer function
of the filter. which means the answer needed from the results
column.
Thank You
(1) Use the circuit in Exercise 2 to conduct AC analysis. (2) Modify the AC voltage source Move the mousepointer to the voltage source. Right-click mousekey, Small signal AC analysis (AC) >> AC Amplitude: AC, AC Phase: 1 >> OK. (3) Start AC analysis Click Simulate >> Edit Simulation Cmd >> AC Analysis >> Type of sweep: Linear, Number of points: 10k, Start frequency: 1 and Stop frequency: 500 >> OK Place .ac lin 10k 1 500 symbol on the schematic. Click Simulate >> Run (4) View the frequency spectrum Move the mouse pointer to the voltage source positive terminal. A symbol of voltage probe will be shown. Click on it, the frequency spectrum of voltage source V(n001) will be shown on the scope display. Move the mouse pointer to the top of the capacitor. A symbol of voltage probe will be shown. Click on it, the frequency spectrum of voltage across the capacitor V(v_r3) will be shown on the scope display. Results Record the simulation results. Plot the frequency and phase response of the circuit (i.e. gain and phase plots) What type of filter did you build? Derive the transfer function of the filter showing that the simulation results agree with the theoretical analysis.

R1 V_R2 20 V1 C1 47 SINE(O 15 50) tran 0 0.101m
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