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In the circuit diagram R1 = 1760 Ω, R2 = 3130 Ω, C1 = 2.9 μF, C2 = 5.7 μF, and ℰ = 12 V. The switch is closed at t = 0.
What is the current in A from the battery when t = 1.018 seconds?
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- A 267-V emf is connected to the terminals A and B. Here,V = 267V, R1 = 14 Ω, and R2 = 19Ω. What is the current in the 14-Ω resistor?Problem 4: In the circuit below, what is Req and what are the currents 11, 12, 13, 14, 15, 16, and 17? Answers: Req = 13.14 2,₁ = 3.0 A, 1₂ = 1.71 A, 13 = 1.29 A, 14 = 0.43 A, 15 = 1.28 A, 16 = 0.77 A, 17 = 0.52 A. 3.2 2452 15 A 13 11 1002 w www 15Ω www 8.2 w 652 www 3.2 E = 39.42 V W 52Please show all steps
- In the figure below, R₁ = 21.00, R₂ = 12.0 Q, and the ideal battery has emf 8200 V. What is the current at point a if we close the following switches as =18 R₁ R₁ R₁ m Im Im] www R₁ R₂ R₂ (a) only switch S₁ A (b) only switches S₁ and S₂ (c) all three switches AConsider the following figure. (Assume V1 = 12.0 V, V2=18.0 V, V3=5.0 V, R1 = 20.0 Ω, and R2 = 5.0 Ω.) Calculate each of the unknown currents I1, I2, and I3 for the circuit.The circuit in the figure consists of switch S, a 5.10 V ideal battery, a 20.0 MQ resistor, and an airfilled capacitor. The capacitor has parallel circular plates of radius 4.90 cm, separated by 5.00 mm. At time t = 0, switch S is closed to begin charging the capacitor. The electric field between the plates is uniform. At t = 150 µs, what is the magnitude of the magnetic field within the capacitor, at radial distance 2.40 cm? Number i S C R Units T