i1(t) = 1.2e ^-3tA, R 1 = 5ΜΩ,C 1=2 µF Derive the complete solution for vx(t) fort > = 0 i₁(t) ↑ R₁ ≤ v₂ (t)=C₂₁ of a t = 0
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- 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?Find the voltage across the capacitors in the given circuit under dc conditions, where R₁ = 67 Q and R₂ = 17 Q. 1092 R₁ www C₁ +51 - www 50 92 R₂ 60 V The voltage across the capacitors are v₁ = 1 + 22 HH C₂ V and v25 V.Determine the inductor current i(t) for t20. Given that Vs = 10V, R₁ = 1kQ, R₂ = 5kQ, R3 = 2kQ2, and L = 1mH. 1=0 ww R₁LR₁
- Find the voltage across the capacitors in the given circuit under dc conditions, where R₁ = 66 and R₂ = 19 0. R₁ www C₁ +51 1092 www ww 50 92 www R₂ 60 V 3-4 C₂ The voltage across the capacitors are v₁ = 15 + HH V and v2= V.Suppose R = 230 N and C = 120_µF in a (charging) RC-series circuit with a 11_V power source. What is the maximum charge on the capacitor? After 2 time constants, the capacitor will reach what percent of its maximum charge? %3D 8. max charge A. 0.002256 C D. 0.002283_C В. 0.001623 C Е. 0.001678_C С. 0.0008826 C F. 0.00132 C |--/ 9. percent 90.99 % 86.47 % 138.7 % D. 92.44 % 52.58 % 152 % А. В. Е. С. F. |--/Os. Calculate Consider the circuit in the figure, in transient conditions. The switch closes int = the final voltage V at the capacitor's terminals at the end of the transient. Report your result in volt. The admitted tolerance is 3 % t = 0 R2 v(t) C R3 Data: | = 9 A R1 = 52 R2 = 82 R3 = 62 C = 135 uF |3D
- Select all correct statement(s):1, The equivalent resistance for resistors in parallel is the harmonic mean of all resistors;2, The equivalent capacitance for capacitors in series is the sum of all capacitors;3, The equivalent inductance for inductors in series is the sum of all resistors.32None of them is correct12. Detormine whether or not the following equnlities correct: a. A+B C+ÕC = BC b. B(AO c) +B C+ A(BOC) = AC 3. Convert the following expressions to SOP forms: a. (A +B C) B b. (A + C)(A•B č+A•C• D)PLEASE DO IT URGENTLYThe last line is , Given x(n) =3n u(n) and the system is initially at rest. Show all the steps in detail
- Saved Messages Shared media A premaccs = pinned message fr1 2345@notavaaq.ga - 10 un eunl@notavaad 77 videos 10 un SOLD A series RL circuit connected across a dc source through a SPST switch, three (3) milliseconds after the switch is closed, the voltage across the inductor is 20V and drops to 5V after 20 ms. if R = 100 ohms, find the value of L. Assume that t=0, i =0 A 1.30H 1.22 H 1.59H D 1.25H & ELYSIAN MARKET kay @premsbyjisoo mag dm: AVAI 4 UNIQUE MARKET Photo 317 of 317 ava today at 11:56 AM Upload Docu. Media viewerThe givens are I1 = 0.219A, R1 = 66 ohms, R2 = 38 ohms, C = 0.1 farads. What is Vc across the capacitor at time t = 4.58 seconds?IToolem 3: Transients in linear circuits – E3200 V R1=302, R2=R3=202, i, R1 L=20mH i3 i2 Find: the current: i1(t)=? R2 R3