A series RLC circuit is driven in such a way that the maximum voltage across the inductor is 2.30 times the maximum voltage across the capacitor and 3.18 times the maximum voltage across the resistor. (a) What is op for the circuit? The resistance is 31.10 and the current amplitude is 236 mA. (b) What is the amplitude of the driving emf? (a) Number i (b) Number i Units Units
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- An LRC circuit contains a 700-Ω resistor, a 7.00-Hcoil, and an unknown capacitor. The circuit resonates at1000 Hz. What is the value of the capacitance ?? The resonant frequency of an LRC circuit is 425 Hz.If the resistance is 300 Ω and the capacitance is 200 nF, what is the value of the inductance ??An 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 UnitsA 10 -mH inductor and a 25 MF (micro F) capacitor are connected in parallel. The combination is in series with a resistor and a 15 Ohm resistor and 10V, 160Hz emf. (a) What is the current through the resistor? (b) What is the phase angle?
- An RLC circuit is driven by an AC generator of frequency w. The generator voltage can be represented by Et) - Emax cos(ur) and the current by t) - max cos(wr-p). The peak generator voltage Emax, the peak current /max- and the phase angle p by which the generator EMF leads the current are given in the figure. R E- 20 V Ina = 2.3 A = +30 The average power dissipated by the resistor is:An alternating emf source with a variable frequency fa is connected in series with a 43.02 resistor and a 19.0 μF capacitor. The emf amplitude is 11.0 V. Consider a phasor diagram for phasor VR (the potential across the resistor) and phasor Vc (the potential across the capacitor). (a) At what driving frequency fa do the two phasors have the same length? At that driving frequency, what are (b) the phase angle in degrees, (c) the angular speed at which the phasors rotate, and (d) the current amplitude? (a) Number i 216.4 (b) Number i 45 (c) Number i 1361.6 (d) Number i 158 Units Units Units Units Hz (degrees) rad/s mAA 21 mH inductor with 3.0 Ω resistance is connected in series to a 17 μF capacitor and a 75 Hz , 49 V (rms) source. Calculate the rms current. Calculate the phase angle. Calculate the power dissipated in this circuit.