Starting with emf2 = -M ΔI1/ Δt , show that the units of inductance are (V . s)/A = Ω.s .
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Starting with emf2 = -M ΔI1/ Δt , show that the units of inductance are (V . s)/A = Ω.s .

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- An RLC circuit is used in a radio to tune into an FM station broadcasting at f = 99.7 MHz. The resistance in the circuit is R is L 8.00 2, and the inductance = 1.60 µH. What capacitance should be used? pFConsider the RL circuit shown in the figure, where R = 19,8 Q. The switch S is closed at t = 0. At t = 3.00 ms, the current has reached 96.3% of its final value. Calculate the inductance (in mH). mHLRC circuit contains a parallel-plate capacitor with plates of area 23.50 m^2, separated by 1.47 mm and completely filled with dielectric (dielectric constant k = 3.32), 20.87 Ohm resistor and toroidal solenoid inductor with 979.50 turns of wire, a cros-sectional area of 2.66 cm^2, and mean radius of 4.42 cm. The components are connected in series to an emf source operating with a 51.46 V amplitude at 109.38 Hz. What is resonance angular frequency (rad/s)?
- For the circuit shown in the figure below, AV = 97.0 V, w = 65.0m rad/s, and L = 70.0 mH. Calculate the current in the inductor at t = 12.5 ms. max A AVmax sin at 000Please give a detailed solution Thank youHow many turns should a solenoid of cross-sectional area 3.9×10−2 m2 and length 0.31 m have if its inductance is to be 52 mH ? Express your answer using two significant figures.
- 4.30 2 In the circuit the emf ɛ = 188 volts and the inductance L= 38.4 mH. What will be the magnitude of the voltage difference across the inductor at a time 14.6 ms after the switch is closed? (State answer with 1 digit right of decimal: Do not enter unit.)In a certain series RLC circuit, Irms = 9.00 A, ΔVrms = 155 V, and the current leads the voltage by 31.0°.A loop of wire has a self-inductance of 5.5 mH. You pass a current of 9.0 Amps though the loop, and then drop the current to 0 at a contastant rate over 3.5 seconds. What is the EMF generated?