"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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!["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](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb033ce8c-438c-48a6-b34d-15b70f40072d%2F4a5af2fb-684b-483d-a5df-941a54c7ddee%2F3yqv1zs_processed.png&w=3840&q=75)
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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.1. 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 QConsider the circuit shown in Figure Q1(d), calculate the equivalent inductance, Leq at terminal a-b. 15 μΗ 36 μΗ 10 μΗ 25 μΗ 40 μΗ Figure Q1(d)
- A series RL circuit is not switched on. In the circuit voltage source E = 12 V DC. Resistance R = 100 and inductance L = 10.0 mH. E i R L Give the answers to two decimal places. a) Give time constant Tau of circuit ms b) Calculate current after the switch k is closed at the moment t=0.2 ms. A c) Calculate current after the switch k is closed at the moment 3*Tau. AB2For the circuit below the input voltage is V1(t) flowing through the circuit. + V1 R1 6092 = 12 cos(4t) V. Determine the current C1 HH 10mF L1 300mH
- - 3. For the following circuit, L₁ = 15 mH, L₁ = 20 mH, and M=5 mH. Determine the ↓ ♫-equivalent circuit. Draw the equivalent circuit with the inductances labelled. ↓ b Ans...↓ L₁ ell M L2 N ellMy dear hand written solution is not allowed.Please answer in typing format please ASAP Please answer asap please I will like it please ASAP Please
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