Hi can some one do the following problems I have an assignment not out of a text book so no way to verify my solutions and its weighted alot for the class thanks.
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Hi can some one do the following problems I have an assignment not out of a...
Problem 1. For the circuit below, given a value foris 2.5Au(-t) solve for R1 so that the initial capacitor voltage v(0) İs-10V Ri 20 mH 5Ω Problem 2. Circle one: The type of response for v() for t>0 would be classified as Over Damped Critically Damped Under Damped Problem 3. What is the form of the solution for v() for t>0 (form of solution Table 9.1)? Problem 4. What is the initial inductor current iL(0) in Amperes? iL(0)- Problem 5....
Hi, please I need all the answer to these questions. with correct results. I will give you thumbs up, thanks. Chapter 7, Problem 7.089 (a) In the network in the accompanying figure, find i(t) for t> 0 (b) If vc1(0) 15 V, calculate vc2(0-) ci(C) i(t) + + 0.2 F 15e ut)v ) 0.8 F Please round all numbers to 3 significant digits. (a) it) Click to use Flash A (b) Vc2(0 V exact number, no tolerance Policy| 2000-2019 John...
just do question 26 and 30 and show all your work (a) Select R so that 26. For the cincuit of Fig. 943,.40 30u-) m v(0+) 6 V. (b) Compute (2 ms). (c) Determine the settling time of the capacitor voltage. (d) Is the inductor current settling time the same as your answer to part (c)? 27. The current source in Fig. 9.43 is id) = 101(1-1) μ A. (a) Select Ri such that iLO")-2 μΑ. Compute L at t-500...
Derive the ODE for the RLC circuit provided using Kirchoff's voltage and current laws. Indicate the order of the equation and what conditions are required for a unique and completely defined solution to existing. You should solve for the voltage across the capacitor as the output, y(t), due to the excitation of the input voltage, x(t), and the initial conditions, y(0) = c0 and y'(0)=c1. Compute the homogeneous solution to the ordinary differential equation for unknown values of R, L...
use MATLAB functions to solve this problem The current, i, in a series RLC circuit when the switch is closed at t 0 can be determined from the solution of the V 2nd-order ODE to v t-0 d2i ndi 1 where R, L, and c are the resistance of the resistor, the inductance of the inductor, and the capacitance of the capacitor, respectively. (a) Solve the equation for i in terms of L, R, C, and t, assuming that at...
Engineering circuit analysis by Hayt 8th edition question 27 and figure 9.43 I think 10u(1-t) means 10 (for t<1) and 0 (for t>1) then, I can't remove this current source because it continuously make 10micro A (at t=500ms, t=1.002ms) I don't know what's wrong now.. 366 26. For the circuit of Fig. 9,43, 1 30-) mA. (a) Select R, so th O)6 V (b) Compute e2 ms). (c) Determine the settling, time of t capacitor voltage. (d) Is the inductor...
3.5: Non-homogeneous equations 10. A mass is attached to a spring and damper. We have m = 3, c = 30, k = 63. We also have an initial position z(0) = 2, v(0) = 2. Suppose further that an external force of cos(26) acts on this box. Find the particular solution X(t). Is the system over, under, or critically damped?
In the following circuit, the switch that had been OPEN for a sufficient time was shorted at t=0 In this case, the voltage v(t) at both ends of the capacitor and the current i(t) at the injector are obtained. 1) What is the Capacitor voltage v (0-) value and inductor current i (0-) value at t=0- just before t=0- 2) If sufficient time has passed since switching occurred, what is the value of v(00) and i(00) when t=oo? 3) In...
Please do the problem if you can do ALL parts. t-0 a SW1 SW2 0.5 Ω 2 1Ω V. R3 20 A T v(t) 0.5 F 0.5 H 0 Find the initial current i(0) through the inductor and the initial voltage v(0) across the capacitor at t 0. b. Write a node equation at node a fort2 0. c. Represent v(t) as a function of i(t) on the series connection of R2 and L. Find dv(t)/dt. Derive a second-order differential...
1. The current of a 20 mH inductor is given as 40 mA i(t) = la,e-10000t + A2e-40000-A ,t so ,t > 0 Assume that at time t0, the inductor voltage is 28 V. For t>0, find (a) the inductor voltage (b) the time when the inductor power is zero Now assume that at time t-0, the inductor voltage is-68 V. For t>O find (c) the inductor voltage for this new initial condition (d) the time interval during which the...