Find the energy stored in the capacitor: 20 ww 20V (a) + Vc.
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- Assume that the current flow through the resistor, IR, is 15 A; the current flow through the inductor, IL is 36 A; and the circuit has an apparent power of 10,803 VA. The frequency of the AC voltage is 60 Hz. ET ER EL IT IR15A IL36A Z R XL VA10,803 P VARSL PF LA series circuit has a capacitor of 1.5625x10^(-8)F a resistor of 2x10^4 ohms, and an inductor of 1H. If the initial charge on the capacitor is zero,. if a 12-volt battery is connected to the circuit and the circuit is closed at t=0, determine the charge on the capacitor at any time tFind the energy stored in a 3 μF capacitor and v= 12 v.
- Find the charge stored in the 12 nF capacitor in 'mC' ?An inductor when connected to a voltage source whose equation is e=155.56sin314t draws a current of 10 A. Find the inductance of the inductor.A coil having a 240V source has a current of 10.5 A when the frequency is set to 60 Hz. When the frequency is changed to 30 Hz, the resulting current is now 14.3 A. Find the inductance, L, of the coil (in mH).
- Find the energy stored in the capacitor.A series LR circuit has a variable inductor with theinductance L(t) is defined by intervals.Find the current i(t) if the resistance is 0.2 ohms, the voltageapplied is E(t) = 4 volts; knowing that i(0) = 0.Solve i(0+) of the inductor 2H The presence of a voltage source indicates an infinite size, which may be stated in the circuit as Vs(t)= δ(t).
- A capacitor with a capacitance of 32 microfarads is discharged through a resistance of 53 kilo-ohms. How many milliseconds does it take for the voltage to drop to 1/e of its initial value. Here "e" is the base of natural logarithms, about 2.718 .Once the following circuit has reached steady state, what is the voltage across the capacitor, VC1, in V? VA = 2 VR1 = 7.3 kΩR2 = 2.1 kΩC1 = 1.7 uFL1 = 2.3 mHIn the circuit below, the switch is closed at t=0 s. It is known that the voltage across the capacitor at t=0.2 s is Vc( t = 0.2 ) = 10.31 V. In this case, what will be the voltage Vc( t = 0.1 ) of the capacitor at t=0.1 s? Calculate.