Consider a series RC circuit as shown below. What is the time constant of the circuit? b9224d 2.50 µF $2.00 MO 50.0 V a. 10.0 s b. 5.00 s C. 125 s d. 4.50 s
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- Consider a series RC circuit as in Figure below for which R =5.7 MO, C=3.4 µF, and ɛ=30.0 V. Find the maximum charge ( in units of µC) the capacitor can have after a very long time of the switch S being closed. C R + Select one: А. 102.00 B. 153.00 C. 51.00 D. 204.00 E. 132.60A = 60 B = 70 C = 170 D = 71. Initially, for the circuit shown above, the switch S is open and the capacitor charge is 80 µC. The switch S is closed at time t = 0. The capacitor charge when the time t is equal to 50.0 s is closest to: Group of answer choices a. 64 µC b. 72 µC c. 48 µC d. 80 µC e. 56 µC 2. What is the value of the time constant of the RC circuit shown in question 11? a. 50.0 s b. 97.6 s c. 2.62 s d.0.381 s e.0.0102 s
- Tina the ballarina has this RC circuit she made for school help her figure out the following a. What is the time constant for the RC circuit? b. After how long does the capacitor become 80% charged? c. How much current flows in the R3 resistor at this time? + S I R₁ R₂ C R3 www.h R₁=100 kn R₁-200 kn R₂=300kn C=5.00 μF {=9.00V THE CAPACITOR IS INNITIALY CHARGED WHEN THE SWITCH IS CLOSEDThree resistors: R1 = 3 Ω, R2 = 6 Ω, and R3 = 9 Ω are connected in series to each other and to a 36 V battery. What is the ammeter reading after the switch is closed? a. 2A b. 4 A c. 3 A d. 5 AIn the circuit below, V = 48 volts, R1 = 5.0 Ω, R2 = 4.0 Ω, R3 = 12 Ω, and R4 = 8.0 Ω. What is the current through R4? a. 4.0 A b. 5.0 A c. 2.0 A d. 6.0 A e. 3.0 A
- The following resistors are connected in a DC circuit: R₁ = 214 2 R₂=182 2 R3 = 335 2 . . a. Calculate the total resistance if each resistor is connected in series. b. Req= BB 2 Ω Calculate the total resistance if each resistor is connected in parallel. Req= 52Consider a series RC circuit as in Figure below for which R =7 MO, C=5.1 µF, and ɛ=30.0 V. Find the time constant of the circuit in units of seconds. S R Select one: А. 1.37 B. 46.41 C. 57.12 D. 35.70 E. 0.73The Q vs t graph shown below is for the capacitor of an RC circuit. Q (C) 10 7.5 5. 2.5 7 14 21 28 35 42 49 56 63 70 t(s) Determine the time constant of the RC circuit. TH If R= 802, determine C. C= MY NOTES
- In the circuit shown, what is the current in the 10 Q resistor if the current in the 20 Q resistor is l= 0.5 A. 50 V -T. 30V R 20 Ω 10 Ω a. 1.00 Left b. 3.00 Left c. 1.00 Right d. 2.14 Right e. 3.00 Right wwwV = 60.0 V R = 13.0 k C = 16.0 με simple RC circuit The moment after this circuit is connected, when the capacitor is fully uncharged, the current in the circuit is A very long time after the circuit is connected, when the capacitor is fully charged, the charge on the capacitor is mA. C.Consider a series RC circuit as in Figure below for which R =1.9 MQ, C=1.9 µF, and ɛ=30.0 V. Find the maximum charge ( in units of µC) the capacitor can have after a very long time of the switch S being closed. R + Select one: A. 74.10 B. 114.00 C. 57.00 D. 28.50 E. 85.50