"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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- For the circuit in the figurea) Determine the time constant.b) Write the mathematical expression for IL, VL and VR, after the switch is closed.c) Determine IL, VL for one, three and five time constants.d) Draw the waveforms of IL, VL and VR.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:31. The waveforms x, y, and z are connected to the circuit presented in the figure below. Assuming that Q = 0 initially, determine the waveforms of Q and Q'. X y Z S Z IBI R y Q
- In the circuit below, Find the voltage across the inductor at time t = 0.000909 s. The values are V1 = 146V, R = 4.4 ohms, L =0.02 henriesThe 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
- Pls solve question by hand and matlab alsoUsing the supernode concept to determine the voltage marked v20 in the figure, the crossed wires that are not marked by a thick dot are not in physical contact.5. Suppose the following circuit is left open for a long time. 5000 22 24 V (a) What is the facial curren What is the carte II What is the ches What is the not the pos 80mF when we close thei 90s after we close the switch? dissipe the resistor 90s arter ene capacitor ons after we close the suit Close the switchi difference across the spacitor 008 after we close the switch across the resisto we close the swit 12 the potential (g) What is the energy stored in the capacitor 90s after we close the switch? (h) What is the energy dissipated by the resistor during the first 90s since the switch is closed?