In the figure, R = 16.102, C = 4.45 μµF, and L = 22.7 mH. The generator provides an emf with rms voltage 97.2 V and frequency 548 Hz. (a) What is the rms current? What is the rms voltage across (b) R, (c) C. (d) L, (e) C and L together, and (f) R, C, and L together? At what average rate is energy dissipated by (g) R, (h) C, and (i) L? www R voo
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- A 13.6 H inductor is connected to an AC source whose emf is represented by the equation E = Emax sin(2 (pi) f t) where Emax = 47.0 V and f = 45.8 Hz. Determine the amplitude of the current in mA.An AC source with AV a = 125 V and f = 35.0 Hz is connected between points a and d in the figure. max 40.0 Ω b с mor HE 185 mH 65.0 με i (a) Calculate the maximum voltages between points a and b. BV d (b) Calculate the maximum voltages between points b and c. V Need Help? Read It (c) Calculate the maximum voltages between points c and d. V (d) Calculate the maximum voltages between points b and d. Watch ItQuestion in the attachment
- 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? ALRC circuit contains a parallel-plate capacitor with plates of area 23.50 m^2, separated by 1.47 mm and completely filled with dielectric (dielectric constant k = 3.32), 20.87 Ohm resistor and toroidal solenoid inductor with 979.50 turns of wire, a cros-sectional area of 2.66 cm^2, and mean radius of 4.42 cm. The components are connected in series to an emf source operating with a 51.46 V amplitude at 109.38 Hz. What is resonance angular frequency (rad/s)?What is the phase angle in an RLC circuit with R = 9.9 kΩ,C = 1.5 mF, and L = 250 mH? The generator supplies an rms voltage of 115 V at a frequency of 60.0 Hz.
- Consider a series RLC circuit with R = 12.0 Ω, L = 0.700 H, C = 72 μF, and a maximum voltage of 100 V. (d) What is the impedance at 60.0 Hz? (e) What is the rms current in the circuit at a frequency of 60 Hz? A 48.0 Ω resistor, a 0.900 H inductor, and a 17.0 µF capacitor are connected in series to a 60.0 Hz source. The rms current in the circuit is 3.28 A. Find the (h) phase angle between the current and generator voltagePlease box answersAn 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 mA