Problem 4. With the circuit in the zero state, the input to the integrator shown in Figure 4 is = cos 2000t V. The desired output is v₂(t)=sin 2000t V. Use Laplace to select values of F and C to produce the desired output. If the capacitor had 5 V across it at t = 0, how would that affect the output? R WWWX+ V₁(s) + Figure 4: 1/Cs + V₂(s)

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==
Problem 4. With the circuit in the zero state, the input to the integrator shown in Figure 4 is
vi(t) = cos 2000t V. The desired output is v₂(t) = -sin 2000t V. Use Laplace to select values of R
and C to produce the desired output. If the capacitor had 5 V across it at t = 0, how would that
affect the output?
R
W<+
V₁(s)
+
Figure 4:
1/Cs
+
V₂(s)
Transcribed Image Text:== Problem 4. With the circuit in the zero state, the input to the integrator shown in Figure 4 is vi(t) = cos 2000t V. The desired output is v₂(t) = -sin 2000t V. Use Laplace to select values of R and C to produce the desired output. If the capacitor had 5 V across it at t = 0, how would that affect the output? R W<+ V₁(s) + Figure 4: 1/Cs + V₂(s)
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