Give the following equivalent circuits for an RLC system: 4 H 10 sin(21 – 30°) V ( 102-30° j3 (a) (b) Determine the average and reactive power delivered by the source.
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A: Given,vs=25cos103twhere,Vm=25Vrms=Vm2=252∠0°Inductive reactance XL=ωL=103×30×10-3…
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A: As per our guidelines, we are supposed to answer only first question. Kindly repost the other…
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A: The given circuit is:
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A: Note: As per the guide lines of the bartleby we are supposed to solve 3 questions, when they are…
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Q: Problem: Obtain the overall impedance for the following cases P = 1500 W, Q = 2000 VAR (inductive),…
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A: Due to guidelines we can solve only first question.
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Q: For the circuit shown in fig.(*), find the rms value of i, VR, and VL UR e = 63.60 + 100.0 sin wt –…
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A: Given Data: a) P = 1500 W Q = 2000 VAR Irms = 12 A b) S = 4500 angle 60 VA V = 120 angle 45 V
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A: Given E =2cosφrar-rsinφaφ+4Z2cosφaz V/m
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- Assume that the current flow through the resistor, IR, is 15 A; the current flow through the inductor, IL is 36 A; and the circuit has an apparent power of 10,803 VA. The frequency of the AC voltage is 60 Hz. ET ER EL IT IR15A IL36A Z R XL VA10,803 P VARSL PF LThe circuit is connected to a 60-Hz line. The apparent power in the circuit is 29.985 VA, and the power factor is 62.5%. The resistor has a voltage drop of 14.993 V, the inductor has an inductive reactance of 60 , and the capacitor has a capacitive reactance of 45 . ETITZVA29.985PF62.5%ER14.993VIRRPELILXL60VARsLLECICXC45VARsCCAssume that the voltage drop across the resistor, ER, is 78 V; the voltage drop across the capacitor, EC, is 104 V; and the circuit has a total impedance, Z, of 20 . The frequency of the AC voltage is 60 Hz. Find the missing values. ET ER78V EC104V IT IR IC Z20 R XC VA P VARSC PF C
- determine the inductive reactance of rlc series ac circuit given the ff: rms current=7.5A voltage=5V resistance=150ohms capacitive resitance=160ohm source average power=2.5WA resistor'R' with resistance value of 24 ohm, an inductor 'L' with inductance 20mH, and a capacitor 'C' with capacitance 50 micro Farrad are connected in series with a AC voltage v(t) where v(t) = 50 cos (2 vt + 30 degrees) v. Determine the current i(t) and total impedance if the frequency f is i. 60 Hz ii. 400Hzb) Find the rms current flowing in an AC capacitive circuit when a 4μF capacitor is connected across a 880V, 60Hz supply.
- The following values were obtained from a series circuit containing resistance and capacitance: V = 150 V; I = 2.5 A; P = 37.5 W, f = 60 Hz.Calculate (a) Power factor (b) effective resistance (c) capacitive reactance and(d) capacitanceThe current in an L-R-C series circuit has amplitude 0.120 Aand angular frequency 8.00 * 103 rad/s, and it has its maximum positivevalue at t = 0. The resistance is 95.0 Ω, the inductance is 6.50 mH,and the capacitance is 0.440 mF. For the resistor, inductor, and capacitor,find (a) the voltage amplitudes and (b) the instantaneous voltages att = 0.305 ms.A single phase CSI (with ideal switches) has the following days: I=30 A, f=500 Hz, Load capacitance=20 uF Find the circuit turn off time.
- A capacitor of 3.18 microfarads is connected in parallel with a resistance of 2000 ohms. The combination is further connected in series with an inductance of 795 mH and resistance of 100 ohms across a supply given by e=400 sin + 80 sin(3wt + 60O). Assume w = 314 rad/sec, determine the rms value of the total current.A series circuit of RLC with following parameters, R=15 ohm, L=20 m H & C=100 micro Farad. VT=169.7 sin (337t-30) Volt. Find the following: Zt, , It, Voltage across each element, Power factor, apparent power, real or average power and reactive power and the total phasor diagram and power phasor diagramL:57) A coil having an inductance of 0.01 H and resistance of 5 ohm is connected in parallel with a capacitance of 100 microfarad. If the supply voltage is 220 V and its frequency is 60 Hz, calculate: The reactive power absorbed by the coil The reactive power generated by the capacitor The active power absorbed by the coil.