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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- What symbol is under t for voltage across capacitor and = RC?In relation to two capacitors in parallel as in Figure 6.59b), show that the rule of the current division is6-38 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?C3 Vin \aov AC Cr D3 Vin Voat /calculate Vout and explain the followingcircait. ALl capacitor 0,4MF And Calculate the energy trapped in each capacitor and the total energy trapped in the circuit ellFor 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 2OUTPUT VOLTAGE (V) 2.0 1.8 1.6 1.0 0.8 0.6 0.2 0 <-50 a. TMP35 b. TMP36 c. TMP37 +Vs = 3V -25 0 50 25 TEMPERATURE (°C) 75 Figure 6. Output Voltage vs. Temperature 100 b 125 00337-007 Using the appropriate curve, develop a linear equation for the output temperature as a function of voltage.What is the solution for SΔgen= 3Va’’ ()= –5.1– j4.7VA Where Va’’=Volts Va’=0.9∠-10.9Volts