An LRC circuit is shown with an alternating source with a current given by i(t)= Icos(cot), with 1-16.5 A and f= 124 Hz. If R=802, C=25 μF, and L=100 mH are being used, determine: a) The maximum electric potential across R, C, and L.
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- A capacitor uses air as a dielectric and has a capacitance of 3 F. A dielectric material is inserted between the plates without changing the spacing, and the capacitance becomes 15 F. What is the dielectric constant of this material?One steradian represents .... .... ... (rad)^2 O degree O 2rad (rad)3 OAn AC circuit is composed of a serial connection of: a resistor with resistance 50 0, a coil with inductance 0.3 H and a capacitor with capacitance 15 µF. The circuit is connected to an AC voltage source with amplitude 25 V and frequency 50 Hz. Determine the amplitude of the electric current in the circuit and a phase difference between the voltage and the current. R=50 2 C=15 µF omH L=0.3 H U.-25 V f=50 Hz Hi guys! Here is something you can practice with. Simplify the circuit above. The final answer is RLC circuit the amplitude of the current is approximate: /m = 0.2 A. %3D The phase difference between the voltage and the current is about: p = -67°. %3D
- Given V 20 sin(@t + 60°) and V2 = 60 cos(ot- 10°). What is the phase angle %3D between the waveforms? All terms to be expressed in cosine terms. 60 80 20 40 Moving to another question will save this response. a hp O O OThe current through a 220 μF capacitor is given below. Use Ohm’s Law to find the voltage. Convert to polar form, find the impedance and complete the math, then convert back to the waveform at i1 = 1.5sin(2500t + 30°) mA and i2 = 4.7sin(200t – 40°) mAA voltage of 10V RMS 520Hz is applied across a 20mH inductor. Calculate the RMS current through the inductor. 78.2mA RMS 153mA RMS 108mA RMS 221mA RMS
- Find the charge q(t) on the capacitor and the current i(t) in the given LRC-series circuit. L = 1 h, R = 100 N, C = 0.0004 f, E(t) = 30 V, q(0) = 0 C, i(0) = 4 A %3D %3D %3D 3 50t -50t te 3 q(t) %3D 250 55 250 3-50t 22 -50t i(t) = 220te 501 %3D Find the maximum charge on the capacitor. (Round your answer to four decimal places.) 0.0402 Need Help? Read It Talk to a Tutoreeeeee t=0 Y. Co) = 15V Ye C4) 0,25MF R In the above circuit, thie switch closes at t= 0. The capacitor is charged to voltage ISV initially. Find the capacitor for the following cases: Ca) R= 8.5k (6) R= 4k () R= 1k * plot the waveforms for each Cuse www. An inductance of 15mH has a current drawing I = 15sin(650t - 300) A. Determine the equation of voltage in the circuit
- The following is given for a series R-L-C circuit: resistor (R) = 8 Ohms, an inductor (L) = 32 mH and a capacitor (C) = 800uF. The circuit is supplied by a voltage source of e = 120 sin (125t) Volts. What is the period of ac source?Given: L1 = 17 mHL2 = 21 mHL3 = 0.014 HL4 = 11981 mHL5 = 89 uH Calculate the total inductance of the circuit, LT.Questions 16 to 20 (Write True or False) A16 A larger inductor produces a smaller rate of change of current. A17 KVL states that E IR + E EMF = 0 for any open circuits. A18 For a sine waveform, the value of form factor is 1.414. A19 In a purely inductive circuit, the current lags the voltage by II/4 rads. In an ideal transformer, the rate of change of flux is the same for both primary A20 and secondary.