S1. The circuit below is in steady-state. Calculate the total energy stored in the circuit. w 8Ω 2 H 30 Ω w 10 Ω 10 Ω 100 V 4 ΩΣ + 10 mF
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- In the figure: R1 = 1439.170, R2 = R1 and R3 =2R2, then determine the value of the voltage source E. a 8 mA 10 mA 2 mA RT R1 R2 R3 O 25.33 11.51 O 17.27 15.43 13.82 +Needs Complete solution with 100 % accuracy.Write the differential equations for this circuit then change this circuit so that The voltage at V2 is 9.00V (DC) With a ripple of 500mVpp
- ansivered MEked out c Ammeter Find the impedance theoretically of a wire if it canies the frequency 10 kHz have a voltage is 8v, the current is 2mA, resistance is 11 k2, inductance 26 mH and capacitance 0.2 uf NOTE Write your Answer in the box without the unit. Question Not yet answered Marked out of Z= 3.00 P Flag question restion 6 Write all the steps and experimental setup to measure the numerical aperture of a plastic graded-index opt fiber in your own words? Fyet P Type here to search hpA 2MF 5MF 9V Two resistors ond twɔ eapacitors cre connected in series with a battery as shown in the figure. a) Calculate the potential at point B with respect to point A Shortly after the Switch closes. b) Calculate the potential at point B with respect to point A long after the Switch closes. c) How long does the circuit reach steady state?The circuit in the figure is fed by a sinusoidal alternating voltage with a frequency of 50 Hz. The circuit consists of a resistor and a capacitor with the capacitance C= 600 μ Q. The power supplied to the circuit is P=400 W and the voltage across capacitor is UC=90 V. a) Calculate the current I. b) Calculate the resistance R. c) Calculate the voltage U (amount). d) Calculate the phase angle of the circuit
- i need the answer quicklyQUESTION 10 Determine the magnitude of the current through the capacitor in the circuit below. VT = 97V RMS, ZT = 102 , R1 = 90, Xc = 60 Enter your answer in amps but do not enter the unit. Round your answer to one decimal place. L1 R1 C1 R2The circuit in the figure is fed by a sinusoidal alternating voltage with a frequency of 50 Hz. The circuit consists of a resistor and a capacitor with the capacitance C= 300 μ Q. The power supplied to the circuit is P=100 W and the voltage across capacitor is UC=120 V. a) Calculate the current I. b) Calculate the resistance R. c) Calculate the voltage U (amount). d) Calculate the phase angle of the circuit
- Please answer all subpart in detail.. Please all subpart either dislike is ready Please2) a)For the following circuit find the total capacitance and inductance and hence find the total impedance of the circuit. V1 230V/50Hz E R1 350 C1 4700pF HE C2 10nF HH C3 47nF C4 220nF HH L1 72mH L2 32mH All Resistance in Ohmscan you help me understand this process? Not really understanding because of the unknown values for the inductors/coils