Find the steady-state current i̟ (t) (in amperes) in an LRC - series 1 Р circuit when L = h, R = 20, C = 0.001f, and zh, E(t) = 200sin(60t) + 500cos(40t)V. i_(t) =
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- H.w. Derive a second order DE for the curvent i(t) tigure (4). as skown in RThe point form of Ampere law is given by: Select one: O a. Curi(H) = J O b. Curl(B) = I OC Curl(V) = I Od. Curl(D) = Jgoogle.com/forms/d/e/1FAlpQLScF2Wzu92iVI-tEM2nxdhqXrGdR460G4QCTxaUZZeC678PqTg/formResponse مطلوب /06 *:The potential at point P due to Q1 and Q2 is Q, = 1x10-12C 0.5 m 0.5 m Qz = 1x10-12C %3D 50 cm 0.01797 V Ov O -0.01271 V O 0.01271 V O Insert PIC F10 F11 F12 F6 F7 FB Backspace 9 € P Enter H
- The following circuit corresponds to: Time left 0:51:55 Ic(s)→ of 2/s Vc( ) + 2/s O a. a 2F capacitor with an initial voltae v. (0)= 2V a 2F capacitor with an initial voltae v. (0)= 0.5V c a 0.5F capacitor with an initial voltae v. (0 ) = 2V a0.5F capacitor with an initial voltae v. (0 )= 0.5V d. e None of the other answers O Type here to searchDifferentiate between a C.T. and P.T. Discuss the theory of a P.T with phasor diagrams. Derive an expression for actual transformation ratio, ratio error, and phasor angle error of a P.T. Please answer it in detail. thank youBy Differential equations An electromotive force of 100 volts is applied to an RC series circuit, in which the resistance is 50 ohms and the capacitance is 0.002 farads. Determine the load q(t) of the capacitor, if q(0) = 5C. Find the current i(t). Pls dont skip any steps even on the integrals
- Question 17) Read the question carefully and make your solutions. According to the figure given below, Find the steady-state expressions for the currents and in the circuit in figure when Vg=200cos(800t). 8002 240 mH 400 mH 400 mH M 100 QA First and second quadrant chopper is supplied from a 240 V de source. The load consists of a 102 resistance in series with a 20mH inductance. The chopper operates with M-0.7 and at 1.2kHz. Find: a. The quadrant of operation b. Vo,de c. Io,de d. Can the chopper operate in the second quadrant? justify your answer e. The on-time and off-time of the modulating switch f. Output current ripple factor g. The average and RMS current the passes through S1.Calculate the steady state currents flowing through inductors L₁ and L₂ and the steady state voltage across capacitor C in the circuit L₁ mm Vs = 20 V L₁ = 4 mH R₁ = 1 A R₂ = 3 L₂= 7 mH C = 6 4F shown below: Ri wwwww HH C
- Diferential Equations, pls dont skip steps on the integrals and everything thank you A 12 volt battery is connected to a series circuit in which the inductor is 12 henry and the resistance is 10 ohms. Determine the current i, if the initial current is zero.How to represent imaginary numbers in time? It's a dude about BIBO stability if I have poles like this? Y it is imaginary and X the real ones..7500*IR5 + 10000*IR4 + 0 = 12 V...........1 7500*IR5 +0+ 4300*IE = 11.3 V........2 IR5 IR40.005*IE = ............. Solve the above equation to get the answer of IR5, IR4 AND IE below show the step by step solution to get the final answer below. IR5 = 0.69 MA IR4 = 0.683 mA E= = 1.425 mA.