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Please answer question 3 with details on how to do it. Make handwriting legible please. Thank you.
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- A 1µFcapacitor is connected in series with a 134Ω resistor. The total current of the circuit is 56mA∠0˚, 191Hz. Calculate the magnitude of the total impedance.Round your answer in one decimal place.A voltage v = 311 sin (377t + 600) is applied across a circuit having an inductance of 0.34 H. What is the magnitude of the impedance in ohms?The voltage and current at the terminals of the circuit element are zero for t<0. For t≥0 they are v=15e−250t V,i=40e−250t mA. Calculate the total energy delivered to the circuit element.
- Given the following pairs of voltages and currents, indicate whether the element involved is a capacitor, an inductor, or a resistor, and determine the values of C, L or R. (if sufficient data are given) a.) v = 550 sin(377t + 50°); i = 11 sin(377t − 40°) b.) v = 36 sin(754t − 80°); i = 4 sin(754t − 170°) c.) v = 10.5 sin(ωt − 13°); i = 1.5 sin(ωt − 13°)The admittance of a network is (0.05– j0.08) S. Determine the values of resistance andreactance in the circuit if they are connected (a) in series, (b) in parallel.The voltage v = 131 sin(100t+50°) V is connected acroos a 1-H inductor. Determine the current in polar form
- Show the complete solution. 24. A coil having inductance L = 2.4 H and R = 4 ohms is connected to a constant 100 V dc source. How long does it take the voltage across the resistance to reach 50 V? Answer: 0.4158 sA circuit has inductance of 2h. If the circuit current changes at the rate of 10a/second, then self induced emf is 129. An inductance 10mH connected across a 100V, 50Hz supply has an inductive reactance of ___ A. Pi ohms B. 10pi ohms C. 1000 pi ohms D. Pi H
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