"In circuit 2, suppose (0) = 10 V. Find the value of C such that at t = 0.1s, v. (0.1s) = 10e-¹ V." 20 ΚΩΣ vc(t) Figure 2: Circuit 1
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- Ex. 296. Figure 295 is a unit step response of a standard 2nd-order transfer function (wn^2 / (s^2 + 2*zeta*wn*s + wn^2). The TF in std- poly form is (C / (s^2 + As + B)). в, and C. Determine A, ans:3The circuit in Figure has been connected for a long time. If the battery is disconnected, how does it take the capacitor to discharge to 1/20 of its initial voltage? Take R₁ = 2.00 Q, R₂=4.00 Q, R3-7.00 Q, R4 = 2.00 Q and C= 5.00 uF and ε = 14.0 V. (Your result must be in us. Include 2 digit after the decimal point and maximum of 2% of error is accepted in your answer.) E R₂ R₂ BARefer to the circuit of Figure Find V when the controlling current I is the following: a. 20 MAZ0° b. 50 MAZ-180° c. 60 MAZ60° R = 1 KΩ 601 25 ΚΩ + 5 kΩ V
- For the circuit below with input voltage V1, a step function of magnitude 15 volts at time t=0, find the transient response voltage across the resistor R2 and plot the results: (Provide your calculations and reasoning for your answer.) L1 200mH C1 50u R2 100 V1 = 0 V2 = 15 TD = 0 TR = 1n TF = 1n PW = .5 PER = V1Using the provided circuit information, determine RT(Q). Is E=10 V = 10mA ww R1 1kQ 12 = 90mA www R2Please answer the questions on the figure!