Problem 4. (a)Find Vc(t) for all time in the circuit of Figure 4. (b)At what time is Vc = 0.1Vc(0)? 20 2 24 32 On 2200 200 1 8 A 200 £2 30 52 (1=0 mFvc
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- Ex. 296. Figure 295 is a unit step response of a standard 2nd-order transfer function (wn^2 / (s^2 + 2*zeta*wn*s + wn^2). The TF in std- poly form is (C / (s^2 + As + B)). в, and C. Determine A, ans:3The circuit in Figure has been connected for a long time. If the battery is disconnected, how does it take the capacitor to discharge to 1/20 of its initial voltage? Take R₁ = 2.00 Q, R₂=4.00 Q, R3-7.00 Q, R4 = 2.00 Q and C= 5.00 uF and ε = 14.0 V. (Your result must be in us. Include 2 digit after the decimal point and maximum of 2% of error is accepted in your answer.) E R₂ R₂ BARefer to the circuit of Figure Find V when the controlling current I is the following: a. 20 MAZ0° b. 50 MAZ-180° c. 60 MAZ60° R = 1 KΩ 601 25 ΚΩ + 5 kΩ V
- Find ve(t) for the circuit in figure below oft ≥ 0 ww 1-0 32 ΚΩ 6mA = 60-120e-500t V Answer: VC(t) www 10K2 Vem 50nF www 8K02 300VOriginal Schematic and OrCAD Schematic: The input primary voltage is 250V, frequency 50 Hz, primary inductance setting is 2000H and secondary inductance is 10H and voltage peak to peak ripple is approximately equal to 92mv. U1 D4 IN our DINA002 C3 DIN002 90u R1 R2 10k TXI BC540A V1 VOFF =0 VAMPL 2 FREQ- 50 AC0 XFRM_LINICT-SEC D5 DIN4002 C2 0.384m 84 5 HHwhat are the complex powers of all elements in the circuit?(Sj2π,S-j1π,S2π,S1π,S6Z0*V)
- For the following circuit, Vsrc=1.5 V and Rload%3D225 Q. What is the power sourced by the DC voltage supply? Is Vsrc VR Rload 1.5 W 10 mW 81 mW 6.67 mWplss solve within 20mins An RL circuit has an emf of 5 volts, a resistance of 50 ohms, an inductance of 1 henry, and no initial current. Find the current in the circuit at time t = 2 ms. Express your answer in mA and round-off to three (3) decimal places. 6.915 mA 9.516 mA 5.916 mA 5.619 mAIEYGN9QmEpGpicor2WQ_ZtuQVINUKNNMTIMFBDWFFM consider the following circuit and find the contribution of the 2A source only in the value of Vx. 4Ω 50 Vx 10 A 2 A 3F= 20 0.2i 4 H O 4v otherwise 10 V BV O 6V
- A 4.5MF Copacitor to a 74 K A Arilo ohms resistor with ç=20ov. initially unchucged is connected and an emf sourse 1) current in th Ac Circvit immediatlu of ter Saritch s clored?: b)cuirentin Ke ciccuit AMor vera long time after Switch s closed> ) what is te Charge On the copurilor ofter a verq long time atter the Sw/tch s i's clordi 1 How long After the Smitch is Closed (cached 50%0 has the coporitm of idy Pinal voltage.For R1=8000 Q, R2=9000 Q, R3=7000 Q, R4=8000 , C1=0.002 F, C2=0.004 F & 1=0.002 A in the shown circuit, obtain the energy stored in each capacitor under dc conditions. C2 R4 I1 ER3 ŽRI C1= Energy stored in C1 (in Joule)= Energy stored in C2 (in Joule)= wwCircuit Theory: I have this following circuit but its not producing the correct output. My input is a 0-3.3 V sine wave at 1 kHz. My output at the speaker should also be a 0-3.3 V sine wave, but its giving me the wrong output. How do I fix this circuit using transistor(s) or any other components? How do I actually apply my knowledge of circuits to this real world problem that I'm stuck?