#6) Capacitors are initially uncharged and V(+) = 10 (e-st 1) V; tzo Find i(t), V, (+), pH); w(t). +VI- SF iH) IF 个 -11 + V(+) 8F 10F IF
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A: Output power Po = 10 mWPo=RLVo2Vo = √(PO * RL) = √(10*10-3*8) = 0.283 V Vi = 16 mV = 0.016 V|Av|…
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- A 15-F AC capacitor is connected in series with a 50 resistor. The capacitor has a voltage rating of 600 WVDC. The capacitor and resistor are connected to a 480-V, 60-Hz circuit. Is the voltage rating of the capacitor sufficient for this connection?Three capacitors having capacitance values of 20F,40F, and 50F are connected in parallel to a 60 - Hz power line. An ammeter indicates a circuit current of 8.6 amperes. How much current is flowing through the 40F capacitor?(VD₂ = Determine the voltage across each capacitor in the circuit figure below. 0.68 V, VD₂ 0.56 V) = 240 V rms 50 Hz 1:1 ooooo elele C₁ H 1μF D₁ HE D₂ .C₂ 1 μF
- 152130 222 Ⓒ520° Fj² 7 Find voltage drop Mutual inductance Majt = + {1.2 V. on 12 resistance Nex (the same for alla)For the inductive element of Figure 1 , the current in phasor form is B) the voltage in phasor form for figure 1 is C)the impedance of the inductor for figure 1 isIn the figure ɛ = 10.0 V, R1 = 4.00 N , and R2 = 1.00 N. The inductor is ideal. If the switch is closed for a long time, what is the current through the inductor. Give your answer in A. %3D 10.0 V, R1 = 4.00 N, ve R2 = 1.00 N olarak Şekildeki devrede ɛ = verilmişlerdir. Solenoidin iç direnci yoktur. Anahtar kapatıldıktan çok uzun süre sonra solenoidden geçen akım A cinsinden nedir. %3| R S R2 E L
- 10.0 V, R1 = 4.00 N , and R2 = 1.00 N. The In the figure ɛ = inductor is ideal. If the switch is closed for a long time, what is the current through the inductor. Give your answer in A. Şekildeki devrede ɛ = 10.0 V, R1 = 4.00 N , ve R2 = 1.00 N olarak verilmişlerdir. Solenoidin iç direnci yoktur. Anahtar kapatıldıktan çok uzun süre sonra solenoidden geçen akım A cinsinden nedir. R1 S E R2 L leProblem 3 a) In Figure 1, the current through a 550 nF capacitor is i= 12 x 10-3 A sin(2000t + 20°). What is the sinusoidal expression for the voltage e? b) In Figure 2, the voltage across a 110 mH coil is e = 150 V sin(377t + 45°). What is the sinusoidal expression for I %3D the current i? i – - e e Figure 1 Figure 2 Page 1 of 2Let's say you measure t1/2 to be 0.037 seconds and the resistance in the circuit is 68 Ohms. Then what is the capacitance in micro Farads? Answer in micro Farads.
- For the series-parallel inductor circuit shown in figure B19, answer the following questions. 2mH 4mH SmH 3.5mH 8mH 8mH n2mH Figure B19 Determine the inductance, L value. If E is the energy stored in inductor for current, I. Calculate the energy if the current value is increased twice.Power factor 90 to 100% 88 to <90% 85 to <88% 80 to <85% 75 to < 80% 70 to < 75% 65 to < 70% 60 to <65% 55 to <60% 50 to <55% Less than 50% Surcharge None 2% 4% 9% 16% 24% 34% 44% 57% 72% 80% Use the table given for the following. A house with inductive loads has an avg consumption of 40kW and 26kVAR is supplied 230 Vrms source. We want to make the surcharge 0% by adding a capacitor. a. What is the smallest kVar of the capacitor that would reduce the surcharge to 0%?Q1. Solve for the equivalent capacitance if C1 = 26 micro Farad and C2 = 69 micro Farad. Note: All capacitance are in microfarad. Q2. Solve for the equivalent inductance at terminals a-b, if L1 = 12 mH and L2 = 43 mH. (Hint: You may add wires and flip the circuit) *Pls show the whole solution of these two questions thank you!