A series RLC circuit has a resonant frequency of 4.03 kHz. When it is driven at 5.98 kHz, it has an impedance of 1.03 kQ and a phase constant of 51.00. What are (a) R, (b) L, and (c) C for this circuit? (a) Number 648.48 (b) Number i 21.3 (c) Number i 73.2 Units Ω Units mH Units nF
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- A series RLC circuit has a resonant frequency of 7.67 kHz. When it is driven at 10.9 kHz, it has an impedance of 1.06 k and a phase constant of 38.0⁰. What are (a) R, (b) L, and (c) C for this circuit? (a) Number (b) Number (c) Number 835.29 i 3.85 i 4.5 Units | Ω Units mH Units nFAn inductor has a 54.0- reactance when connected to a 64.0-Hz source. The inductor is removed and then connected to a 54.0-Hz source that produces a 130-V rms voltage. What is the maximum current in the inductor? 8.07 A 12.68 A 4.04 A 0.18 AA circuit has a resistor with resistance equal to 8 Ω and an inductor with inductance 8e-4 H. What is the average power dissipated in this circuit if the power supply has the following voltage, 7sin(5t)? None of the above 8.32 W 53.3 W 3.06 W 1.12 W
- Two resistors R₁ = 401, R₂ = 929 №, a capacitor C = 2.75 µF, and an inductor L R₁ R₂ C HE L vor Vrms (a) Determine the rms current from the source for very large frequencies. 0.229 A 6.30 mH, are connected to a sinusoidal voltage source with an rms voltage of 92.0 V as shown in the diagram below. (b) Determine the rms current from the source for very small frequencies. 0.097 X What is the inductive reactance for small values of the frequency? What happens to the current through the capacitor for small frequencies? AAn alternating source drives a series RLC circuit with an emf amplitude of 6.32 V, at a phase angle of +33.4°. When the potential difference across the capacitor reaches its maximum positive value of +5.21 V, what is the potential difference across the inductor (sign included)? Number i UnitsYou connect a 100-Ω resistor, a 800-mH inductor, and a 10.0-μF capacitor in series across a 60.0-Hz, 120-V (peak) source. The approximate resonant frequency of your circuit is Group of answer choices 37 Hz 60 Hz 354 Hz None of these is correct. 56 Hz
- A series RLC circuit has a resonant frequency of 7.94 kHz. When it is driven at 11.4 kHz, it has an impedance of 1.08 kl and a phase constant of 36.0°. What are (a) R, (b) L, and (c) C for this circuit? (a) Number i Units (b) Number i Units mH (c) Number i Units nF >The capacitance in a series RCL circuit is C₁ = 3.6 μF, and the corresponding resonant frequency is fo1 = 7.8 kHz. The generator frequency is 3.9 kHz. What is the value of the capacitance C₂ that should be added to the circuit so that the circuit will have a resonant frequency that matches the generator frequency? C₂ = iA 120-V rms voltage at 5000 Hz is applied to a 2.00-mH inductor, a 4.00-µF capacitor and a resistor. If the rms value of the current in this circuit is 0.400 A, what is the value of the resistor? 240 2 295 Q 423 2 95.1 Q 120 Q