4Ω 0.5 mH elle 0.5 A 10 Ω ww = 0 1=0 ww 12 Ω 8Ω 6 V + 1 Lic 10 μF DC Figure P6.34 Circuit for Problem 6.34.
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- Please address the question in the attached photo. Thank you.What symbol is under t for voltage across capacitor and = RC?6-38 The switch in the circuit of Figure P6-38 is closed at t = 0, and the circuit is ini- tially relaxed. Determine the current i(t). FIGURE P6-38 100 cos 5000f 0.2 H 1.2 k ww 190² 0.2 μF
- A resistor of 20ohms and a capacitance of unknown value when connected. In in parallel across a 100V, 50Hz supply take a current of 6A. The combination is now connected across a 100V supply of unknown frequency and the current falls to 5.5A . What is the frequency?For a RC discharge circuit, the resistor and the capacitor are having 2400 ohms and 0.00005 Farads. What will be the time constant of the circuit?40. Three capacitors, a 12 µF, a 20 µF, and a 30 µF, are connected in parallel to a 400-Hz source. What is the totalXc? a. 6.42 2 b. 42.78 2 c. 44.09 Q d. 56.32 2
- A 22-k resistor and a 0.02-F capacitor are connected in series to a 5-V source. How long will it take the capacitor to charge to 3.4 V Select one: a. 0.501 ms b. 0.66 ms c. 0.44 ms d. 0.70 msSolve this fast pleaseUse nodal analysis to determine current in the capacitor in the figure below. Choose the right answer.
- A 15-F AC capacitor is connected in series with a 50 resistor. The capacitor has a voltage rating of 600 WVDC. The capacitor and resistor are connected to a 480-V, 60-Hz circuit. Is the voltage rating of the capacitor sufficient for this connection?A resistor of 20 Ohms and a capacitance of unknown value when connected in in parallel across a 100V, 50Hz supply, take a current of 6A. The combination is now connected across a 100v supply of unknown frequency and the current falls to 5.5A. What is the frequency?Determine the equivalent inductance and equivalent current of the inductive circuit in Figure Q4. If L5 is replaced with a capacitor of 0.55 mF, how would it affect the branch current? The alternating Voltage source has an amplitude of 25 Vm.