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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- Needs Complete solution with 100 % accuracy.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 circuitQUESTION 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 R2
- 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= 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 circuit2) 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 OhmsDescribe the voltage across and the current through the inductor combination in both charging and discharging phases. Calculate the total capacitance and inductance of the circuits and verify your results by simulating the circuit.
- What is the value of the R to get the full deflection??In Figure, a 20 resistor is connected to a battery. Figure shows the increase of thermal energy Eth in the resistor as a function of time t. The vertical scale is set by Eths =2.50 mJ, and the horizontal scale is set by ts = 4.0 s. What is the electric potential across the battery? 0.20 V 0.15 V 0.30 V 0.10 V 0.25 V R Eh,s Eth (mJ) t (s) ts3 H 2 H a L1 H L2 H Determine the equivalent Inductance in Henrys between the terminals a and b in the figure when: L1 = 2 and L2 = 6. Express your answer using two decimal places. Attach your work to support your answer. Your Answer: Answer
- Please break this down for me.TOPIC: STABILITY Subject to a step input, the voltage drop across the resistor took 696.3103us to reach 13% of its steady value from rest. Determine the time (ms) needed to reach 90% of its steady value from 10% Determine the time (ms) needed to reach 80% of its steady value from 20%Find the total inductance at the terminals a-b, for the circuit shown in FigureQ2(b). 25 µH 18 μΗ " a 60 μΗ 20 µH 30 μΗ 75 μΗ 12 μΗ 15 μΗ 38 μΗ Figure Q2 (b)