In the following transient circuit, solve for iolt) for t>o after the switch closes.
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- The circuit is connected to a 60-Hz line. The apparent power in the circuit is 29.985 VA, and the power factor is 62.5%. The resistor has a voltage drop of 14.993 V, the inductor has an inductive reactance of 60 , and the capacitor has a capacitive reactance of 45 . ETITZVA29.985PF62.5%ER14.993VIRRPELILXL60VARsLLECICXC45VARsCCInductive Circuits Fill in all the missing values. Refer to the following formulas: XL=2fLL=XL2ff=XL2L Inductance (H) Frequency (Hz) Inductive Reactance ( ) 1.2 60 0.085 213.628 1000 4712.389 0.65 600 3.6 678.584 25 411.459 0.5 60 0.85 6408.849 20 201.062 0.45 400 4.8 2412.743 1000 40.841Capacitive 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 has a switch that closes at t=0. Resistor R = 2.6ohms. L=0.1H, C= 4F while Vs= 24 volts Write down coefficients of the characteristic equation of the transient behavior of this circuit S^2 + _ s+ _=0 fill in the blanks “_”why 225 sin(t/3) is The forced oscillation is imposed on the natural oscillation ofcurrent given by −74sin(t) ??????????? I do want to know if I face such a question how can I determineProblem 12: Part (a) What is the initial energy in the inductor in J? Eind = ______ Part (b) How long will it take the current to decline to 25.00% of its initial value? Express this value in seconds. t = ______ Part (c) Calculate the average power dissipated in W. Pave = ______
- Lesson= Second Order Transient Response A 24-V battery is connected in seires with a 1-Henry (inductor), 8-ohms resistor and a 1/17 Farad ( capacitor) with when the switchis turned “on” at t = 0. Then, what will be the value of the current at t = 0.001 sec.Meterology: How do you mathematically derive this modified refractivity equation? M_rf = (77.6/T)*(P + 4810e/T) + 0.157zAn impedance coil is connected in series with a capacitor across a 220 V, 60 Hz acsupply. The circuit is designed such that the voltage across the impedance coil and thecapacitor are numerically equal. If this circuit operates at 0.866025403 leading powerfactor, determine the apparent power of the coil when the circuit current is 1 A. ASAP
- An impedance coil is connected in series with a capacitor across a 220 V, 60 Hz acsupply. The circuit is designed such that the voltage across the impedance coil and thecapacitor are numerically equal. If this circuit operates at 0.866025403 leading powerfactor, determine the apparent power of the coil when the circuit current is 1 A. please answer asapDifferential Equations: A resistor of 25 ohms and a capacitor of 0.04F are connected in series with a 50V source. If q(0) = 2/3C, calculate the current after 1 minute.A capacitor C1 = 10 µF is charged, with 5000V being the potential difference between its plates. The plates of this capacitor are connected to those of another discharged capacitance C2 = 5 µF. Calculate the final energy of the system.a-) 33.33mJb-) 16.67 mJc-) 50 mJd-) 75 mJ