V₁(t) ix(t) R₁ Calculate the energy stored at -0.12 ms: C₁ Problem is related to Problem x.xx in the text (for ECE331). R₁ = 892, C₁ = 0.45µF and v₁(t) = 5cos(210³ t) V ix = A help (formulas) μJ help (numbers)
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- Fill in all the missing values. Refer to the formulas that follow. Resistance Capacitance Time constant Total time 150 k 100 F 350 k 35 s 350 pF 10 s 0.05 F 1.2 M 0.47 F 12F 0.05 s 86 k 1.5 s 120 k 470 pF 250 nF 100 ms 8 F 150 s 100 k 150 ms 33 k 4 F =RCR=CC=R Totaltime=5AAMA 1.constier the following T-resisteanca a)Find the open circuit impadance paíamele(2) 4 Short s admittance c) Hy bird parameter(h)eFor the following circuit, Vsrc=1.5 V and Rload%3D225 Q. What is Is? Is +. Vsrc VR Rload 30 mA 9 mA 6.67 mA 40 mV
- For R1=9000, R2=2000, R3=6000, R4=5000, C1=0.006, C2=D0.002 & 11=0.007 A in the shown circuit, obtain the energy stored in each capacitor under dc conditions. C2 R4 ŽR3 ER2 ŽRI C1= Energy stored in C1= Energy stored in C2=A capacitor of capacity C₁ is charged upto V volt and then connected in parallel to an uncharged capacitor of capacity C₂. The final potential difference across each will be (a) (c) C₂V G₁ + C₂ (1+2) GV G + C₂ (4) (1-²) v (b)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)= ww
- What is the time constant of the circuit below 10 ka 10V 0000 50mH O 5 µs O 50 ms 5 ms 500 s 0 A四 U-6 36% PrtSc Impr. F11 F12 F9 F10 F7 F8 F4 F5 F6 * & 0 1/4 6 7 8 R T Y U 4410 mH jok a resistor, capacitar eard inductor measure the resistoane R using Use to an ohm metere Measure the time constants for the two circuits below and find values of C and L I need help vith the building of this. circuit. 1f you could make them ánd find ans wer to the question abore, I would the C appretiate it gieatlyThe 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 BA
- Original 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 HH1 RC circuits You would like to make a simple timer that will sound a buzzer one minute after a switch in an RC circuit is closed. You design a buzzer so that it will sound when the charge on a capacitor falls below 20% of it's initial value. You are using 200nF capacitor. How large of a resistor do you need? www RIn the circuit below, Find the voltage across the inductor at time t = 0.000909 s. The values are V1 = 146V, R = 4.4 ohms, L =0.02 henries