In a series RLC circuit, the amplitude of the voltage source must be greater than the amplitude of the inductor's voltage. O True O False
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- V09A 120-V rms voltage at 8000 Hz is applied to a 2.0-mH inductor, a 6.0-µF capacitor and a 200-2 resistor. What is the rms value of the current in this circuit? 20 A 1.2 A О 1.26 А 0.54 A 0.59 Adl dt 6. Kirchhoff's voltage law states that the sum of the voltage drops across an inductor, L and across a resistor, IR, must be the same as the voltage source, E (t), applied to the circuit. The resulting ODE model is L+ IR = E(t). If a 12-volt battery is connected to an RL dt circuit with a ½ henry inductor, L, and a 10 ohm resistor, R, find the current I (t) given that I(0) = 0.
- In a series LRC circuit shown below, what is the inductance L of the inductor? Given that the ac circuit is operating at a 60-Hz frequency source and has a voltage amplitude of 120 V, the capacitive reactance is 300 ohms, the inductive reactance is 100 ohms, and the resistance is 300 2. 60 Hz L O 265 mH O 796 mH O 3700 mH O 1700 mH O 2900 mHPlease give a detailed solution Thank-youA series LRC circuit has a 42.7Ω resistor, a 801.5μF capacitor, and a 29.6 mH inductor. What is the resonant frequency (in Hz) of this circuit?
- A 28 mH inductor with 2.5 Ω resistance is connected in series to a 22 μF capacitor and a 83 Hz , 71 V (rms) source. Calculate the rms current. Calculate the phase angle. Calculate the power dissipated in this circuit.An RLC circuit consists of a 48 Ω resistor, a 200 μF capacitor, and an inductor. The rms current is 2.5 A when the circuit is connected to a 120 V, 60 Hz outlet. What is the inductance?