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- An R-L series circuit contains two resistors and two inductors. The resistors dissipate powers of 96 watts and 125 watts. The inductors have reactive powers of 100 VARs and 78 VARs. What is the power factor?7. The resistor in an R-L series circuit has a voltage drop of 53 V, and the inductor has a voltage drop of 28 V. What is the applied voltage of the circuit?An R-L series circuit contains two resistors and two inductors. The resistors have values of 120 and 300 . The inductors have reactive values of 220 and 470 . Find impedance.
- The circuit in Figure 24-2 is connected to a 1000-Hz line. The resistor has a current flow of 60 A, the inductor has a current flow of 150 A, and the capacitor has a current flow of 70 A. The circuit has a total impedance of 4.8 . ETITZ4.8VAPFERIR60ARPELIL150AXLVARsLLECIC150AXCVARsCCIn an R-L series circuit, the apparent power is 560 VA, PF = 62%. Find reactive power.The circuit is connected to a 400-Hz line with an applied voltage of 35.678 V. The resistor has a true power of 14.4 W. and there are 12.96 inductive VARs and 28.8 capacitive VARs. ET35.678VITZVAPFERIRRP14.4WELILXLVARsL12.96LECICXCVARsC28.8C
- In an R-L parallel circuit, ET=240 volts, R=560 R = 560 2, and XL=330. Find reactive power.The circuit in Figure 24-2 is connected to a 120-V, 60-Hz line. The resistor has a resistance of 36 , the inductor has an inductive reactance of 40 , and the capacitor has a capacitive reactance of 50 . ET120VITZVAPFERIRR36PELILXL40VARsLLECICXC50VARsCCIn a circuit with no independent sources, Thevenins voltage Vth is: Select one: O a0 O b. Sum of two voltage sources O c. Asingle voltage source O d. Infinite voltage sources
- Q1 Find the Norton equivalent circuit for the following circuit with respect f0 the terminals ab using Multsim program with the values that are shown on the circuit M 25V 60 40 50 1ov RL 250 30A circuit has a true power demand of 4W and a reactive power demand of 3VAR. What is the value of the apparent power?Determine the Thevenin equivalent of the circuit when Vs(t)=5Cos(4000t-30°)V