Purely Capacitive Load AC Source Electncal Pasthohala Fig: Purely Capacitive Circuit An 9.80-µF capacitor is connected to the terminals of an AC generator with an rms voltage of 1.70 x10² V and a frequency of 70.0 Hz. Find the capacitive reactance (Xc) and the rms current (Ims) in the circuit. O 232 N, 0.332 A 17.35 N, 0.237 A O 232 N, 0.733 A O 733 N, 0.230 A
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- Voltage and Current You have an Alternating Current Circuit that has a frequency of 820.0 rad/s with a capacitor. The peak current in the circuit is 1o = 5.60 A. The capacitor has a value of C = 9.30 mF. %3D What is the RMS Voltage across the capacitor? Make sure to include units with your answer and an appropriate number of significant figures. Your Answer: Answer unitsA 12.4 k2 resistor is in series with a 31.8 mH Calculate the impedance of the circuit if the source frequency is 33.8 Hz . inductor and an ac source. Vo AEO ? Z = Ω Submit Request Answer Part B Calculate the impedance of the circuit if the source frequency is 3.38x104 Hz . Z =In an oscillating LC circuit with L = 46 mH and C = 3.0 μF, the current is initially a maximum. How long will it take before the capacitor is fully charged for the first time? Number i Units
- Current Attempt in Progress Suppose that the inductance is zero (L=0H) in a series RCL circuit. The rms voltages across the generator and the resistor are 50 and 29 V, respectively. What is the rms voltage across the capacitor? Note: The ac current and voltage are rms values and power is an average value unless indicated otherwise. Number i UnitsRLC Circuit You have a series RLC Circuit that is being powered by a generator. This generator is providing voltage with a sinusoidal pattern and a peak value of the voltage of Ɛo = 6.50 V. The generator is powering this system with a frequency of f = 69.0 Hz. This circuit has a resistor (R = 60.0 Ohms), a capacitor (C = 664.0 UF) and an inductor (L = 21.90 mH). What is the Phase Angle of the system? Make sure to give your answer in units of degrees and with an appropriate number of significant figures. Your Answer: AnswerQuestion 1 Assume that you have an RC AC Circuit with one resistor, R = 100 , described by the RC Circuit phasor diagram below. 55.8° 90.4° 34.1° VR 90.2° Vps If you measure a Power Supply rms potential Vps = 3.75 V, a capacitor rms potential Vc = 2.1 V, and a resistor rms potential VR = 3.1 V, use the law of cosines to determine the phase angle y (in degrees). Y 1 pts Vc
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