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Use Thevenin’s Theorem to get the current of 3 ohms resistor.
I REPEAT 3 OHMS RESISTOR
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- The circuit in Figure 24-2 is connected to a 60-Hz line. The apparent power in the circuit is 48.106 VA. The resistor has a resistance of 12 . The inductor has an inductive reactance of 60 , and the capacitor has a capacitive reactance of 45 . ETITZVA48.106PFERIRR12PELILXL60VARsLLECICXC45VARsCCIncandescent lighting of 500 W is connected in parallel with an inductive load. A clamp-on ammeter reveals a total circuit current of 7 A. What is the inductance of the load connected in parallel with the incandescent lights? Assume a voltage of 120 V and a frequency of 60 Hz.Capacitive Circuits Fill in all the missing values. Refer to the formulas that follow. XC=12fCC=12fXCf=12CXc Capacitance XC Frequency 38 F 60 Hz 78.8 400 Hz 250 pF 4.5 k 234 F 10 kHZ 240 50 Hz 10 F 36.8 560 nF 2 MHz 15 k 60 Hz 75 nF 560 470 pF 200 kHz 6.8 k 400 Hz 34 F 450
- 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 . ET120VITZVAPFERIRR36PELILXL40VARsLLECICXC50VARsCCDetermine vs , vy and io if Vz =8V and R1=60ohm and R2=70ohmHie = 1.1 KΩHfe or β = 100 solve for :a) Ac circuitb) Rinc) Rin’d) Ave) Vb/Vsf) Avsg) Voh) Aii) Ib/isj) Ais
- A certain 2N5458 JFET has IDSS = 6.0 mA and VGS(off) = – 3.5 V.What is VGS at ID=3mA?A voltage v = 300 sin (377t + 600) is applied across a circuit with pure element and draws a current of i = 7.0 sin (377t - 300) Amperes. Determine the value of the element of the circuit.Given:Hie = 1.1 KΩHfe or β = 100 solve for :a) Ac circuitb) Rinc) Rin’d) Ave) Vb/Vsf) Avsg) Voh) Aii) Ib/isj) Aisk) R0