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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 LThree 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?Assume that the voltage drop across the resistor, ER, is 78 V, that the voltage drop across the inductor, EL, is 104 V, and the circuit has a total impedance, Z, of 20 . The frequency of the AC voltage is 60 Hz. ETITZ20VAPFER78VIRRPEL104VILXLVARsLL
- The 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%ER14.993VIRRPELILXL60VARsLLECICXC45VARsCCFind the equivalent capacitance of the network shown below connected across terminals a and b.2. What is the voltage drop across 15 mF capacitor in the circuit? Solve for the equivalent capacitance
- 29. A telephone circuit has a capacitance of 6 microfarad. What current flows through it when 15 V at 400 Hz is impressed across it?Find the equivalent capacitance of given circuit between the point A and B) if the applied voltage across A-B, equal =5 VRMS , 1000 Hz. Note: Take the capacitance of each capacitor as C=680µF)Find the circuit resistance and inductance if the current flowing through the RLC circuit is two milliamps. The capacitance is twenty microfarad and the applied voltage is three volts at a frequency of two hundred fifty kilo hertz. Answer: 20.264 nH, 1.5 K ohm
- Find the impedance theoretically of a wire if it carries the frequency 10 kHz have a voltage is 8v, the current is 2mA, resistance is 12 kΩ , inductance 27 mH and capacitance 0.2 µfCapacitors are connected, one at a time, to the terminals of a 60-Hz, 12-V power source. Calculate the current through capacitors of capacitance 10-pF.Find the equivalent capacitance (μF) seen at the terminals of the circuit below.