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- The rms value of v(t)=Vmaxcos(t+) is given by a. Vmax b. Vmax/2 c. 2Vmax d. 2VmaxQUESTION 4 A resistor, a capacitor, and an inductor are connected in series with a function generator. The resistor has a resistance of 2kO, the inductor has a reactance of 5002, and the capacitor has a reactance of 1kQ. The circuit has a total current of 100mA RMS. Find the total voltage. O 305+j80 V O 155-j720 V O 200-j50 V O 120+j30 Vplease write the complete solution and the topic is AC parallel circuits thank you A sinusoidal 50 Hz voltage of 200 V(rms) supplies the following three circuits which are inparallel (i) a coil of inductance 0.03 H and resistance 3 ohms,(ii) a capacitor of 40 microfaradin series with a resistance of 100 ohms, (iii) a coil of inductance 0.02 H and resistance 7 ohmsin series with a 300 microfarad capacitor. Find the total current supplied.
- For the circuit shown below, determine: Amplitude of the Voltage Source RMS value of the Voltage Source Frequency of the Voltage Source Phase Angle of the Voltage Source Total Resistance Total Inductance Total Capacitance Inductive Reactance Capacitive Reactance Total Impedance in Polar Form Total Current in Polar Form Voltage across the Resistor Voltage across the Inductance Voltage across the Capacitor Draw all voltages and current on the Complex Plane show all the workTwo reactances 1+j2 and 2-j2 are connected in series. Which of them is inductive? What is the total reactance? What is the total impedance? Kindly answer please. Thank you. I badly need itR + 12 cos 3t V Vo 4 sin 2t A 10 V If we would like to use Superposition to solve for v, in the circuit shown above, we must find the individual contribution of .each independent source :SINUSOIDAL CURRENT SOURCE CONTRIBUTION What is the amplitude of the voltage v, considering only the contribution of the sinusoidal current source? Assume that R = .15 Ohms, L = 11.6 Henry, and C = 0.02 Farad .Write your answer in Volts
- Load 1 Load 2 24 kW 40 kW pf = 0.8 lagging pf = 0.95 lagging %3D A 240-Vrms, 60 Hz source supplies two loads as shown above. Find the capacitance of a capacitor connected in parallel that will raise the power factor to unity. O 3.14 millifarad O 4.45 millifarad O 1.43 millifarad 5.74 millifaradClear my choice A capacitor is connected in parallel with a load of S= 6000 VA, and pf3D0.8 lag. The load is operating at 180 V and a frequency of 60 Hz. Calculate the capacitance value that will correct the power factor to pf=1. Select one: O a. 0.295 mf O b. None of them c. 0.354 mf O d. 6000 mf An 8 kVA motor operates at a 0.75 power factor, the real power is then: Select one: О 60 KW O 600 W O None of the Answers O 6000 W What term describes the maximum expected error associated with a measurement or a seńsor? 113 ) A ENG 12-AA voltage source with a value of 25 e^j45 V flows a current of 5 e^j15 A through a series impedance. Find the equivalent impedance and admittance in this circuit. Find the resistance, inductive and capacitive elements at equivalent impedance
- Consider the following circuit used to provide power for an inductive RL load. The input voltage is Vs-100V and the load has a 50 impedance value. The thyristor is working at a frequency fs = 2 kHz. The discharge current is to be limited to 40A and the required dv/dt is 40V/us. If the value of Cs is equal to 0.14uF, then the snubber losses are equal to: T1 Vs Select one: O a. 3.4W O b. 1.4W 5.4W Od. 7.4WQUESTION 6 R www L m + + + 12 cos 3t V Vo 4 sin 2t A 10 V If we would like to use Superposition to solve for vo in the circuit shown above, we must find the individual contribution of each independent source. SINUSOIDAL CURRENT SOURCE CONTRIBUTION: What is the amplitude of the voltage vo considering only the contribution of the sinusoidal current source? Assume that R = 16 Ohms, L = 11.9 Henry, and C = 0.03 Farad. Write your answer in Volts.QUESTION 4 A resistor, a capacitor, and an inductor are connected in series with a function generator. The resistor has a resistance of 1.5k2, the inductor has a reactance of 1.2kQ, and the capacitor has a reactance of 2002. The circuit has a total current of 172mA RMS. Find the total voltage. O 310V233.7 O 74.5VL-14° 188V273.2 O 44.4VL-25.3°