Page 1 of 1

(15 pts.) 4. No energy stored in the 40 mH inductor or the 30 nF capacitor, when the switch in the circuit given below i

Posted: Sat Feb 19, 2022 3:26 pm
by answerhappygod
15 Pts 4 No Energy Stored In The 40 Mh Inductor Or The 30 Nf Capacitor When The Switch In The Circuit Given Below I 1
15 Pts 4 No Energy Stored In The 40 Mh Inductor Or The 30 Nf Capacitor When The Switch In The Circuit Given Below I 1 (100.71 KiB) Viewed 45 times
(15 pts.) 4. No energy stored in the 40 mH inductor or the 30 nF capacitor, when the switch in the circuit given below is closed. The resistor in the circuit is 500 22. The current source is DC and its value is 28 mA. Find (t) for t 2 0. Is 20° R₂3 Lg V Formula's that can be used in this question (depending on damping): 1 rad/s 2 RC α Wo 1 rad/s VLC wa = VW,2 - az wo Si = -a + a2 - Wo? Damping Overdamped Underdamped S2 = -a - a2 - 00 Step Response Equations Coefficient Equations x(t) = X, + Ajesit + A'z eszt *(0) = Xs + A + A'z dx/dt (0) = A'sı + A'zs2 X(t) = Xx + (B{coswat + Býsinwat)e-at (0) = X, +B; dx/dt (0) = -aB'+wa x(t) = X, + Dite-at + Date-at x(0) = X + D2 dx/dt (0) = D - ad's Critically damped