Trapped on a deserted island, you salvage some copper wire and a generator to build a makeshift radio If you wrap the wire into an 8-turn coil of radius 3 8 cm and length 25 cm, what is its transmitter. inductance?
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- 4. A coil of current carrying wire contalns 500 turns and is 20cm long with a diameter of 2cm. What is its inductance? What is the magnetic flux through It with a current of 20 A running through the wire? What is the induced voltage across it if the 20a current dies to zero at a constant rate during a 10second interval? VLEIn the figure below the switch S is closed, Supppose the emf of the ideal battery is 12.0 V, the inductance of the ideal inductor L = 30.0 mH, and the resistance R2 = 4.34 ohms and the resistance R2 = 2.17 ohms. When i = 0.17 A 1. how much energy is delivered by the battery? 2. how much of this energy is stored in the magnetic field of the inductor? 3. how much of this energy is dissipated by both resistors? 4. what is the rate dibat/dt at t = 0, t = 0.82 s and t after a long time?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?
- An MRI machine needs to detect signals that oscillate at very high frequencies. It does so with an LCLC circuit containing a 15 mHmH coil. To what value should the capacitance be set to detect a 370 MHzMHz signal?In the circuit shown in the Figure with 3.0 mH for the inductance and 6.0 uF for the capacitance, S1 has been closed for a long enough time so that the current reads a steady 3.50 A. Suddenly, S2 is closed and S1 is opened at the same instant. What is the maximum charge that the capacitor will receive? What is the current in the inductor at this time? At an instant when the charge on the capacitor is 0.1 mC, what is the current in the inductor? At an instant when the charge on the capacitor is 0.1 mC, what is the rate at which the current in the inductor is changing?can you help with 1a and subquestion 1b and 1c this is not and will not be graded 1a. Your RL circuit has a characteristic time constant of 20.0 ns, and a resistance of 5.90 MΩ. What is the inductance of the circuit? 1b. What resistance would give you a 1.00 ns time constant, perhaps needed for quick response in an oscilloscope? 1c. A large superconducting magnet, used for magnetic resonance imaging, has a 49.0 H inductance. If you want current through it to be adjustable with a 1.30 s characteristic time constant, what is the minimum resistance of system?