A single turn square loop of wire, 2.00 cm on each edge, carries a clockwise current of 0.200 A. The loop is inside a solenoid with the plane of the loop perpendicular to the magnetic field of the solenoid. The solenoid has 30 turns/m and carries a clockwise current of 15 A. Find a) the force on each side of the loop and b) the torque acting on the loop.
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- A single-turn square loop of wire, 2.00 cm on each edge, carries a clockwise current of 0.240 A. The loop is inside a solenoid, with the plane of the loop perpendicular to the magnetic field of the solenoid. The solenoid has 30.0 turns/cm and carries a 15.0 A. (a) Find the force on each side of the loop. magnitude × What is the direction of the magnetic field inside a solenoid. μN direction directed away from the center ▾ (b) Find the magnitude of the torque acting on the loop. This is the maximum torque that can be exerted on the current loop in this field. Think carefully about the orientation of the loop with respect to the field. N. mThe superconducting magnet of an MRI scanner requires 810 A of current to create a magnetic field of 4.5 T in the center of its solenoid coil with a 0.65 m radius. If the solenoid is 1.9 m long, how many loops of wire does it have? N =A long solenoid that has 1 130 turns uniformly distributed over a length of 0.380 m produces a magnetic field of magnitude 1.00 x 104 T at its center. What current is required in the windings for that to occur? mA
- A single-turn square loop of wire, 2.00 cm on each edge, carries a clockwise current of 0.210 A. The loop is inside a solenoid, with the plane of the loop perpendicular to the magnetic field of the solenoid. The solenoid has 30.0 turns/cm and carries a clockwise current of 15.0 A. (a) Find the force on each side of the loop. magnitude µN direction (b) Find the magnitude of the torque acting on the loop. N · mA single-turn square loop of wire, 2.00 cm on each edge, carries a clockwise current of 0.170 A. The loop is inside a solenoid, with the plane of the loop perpendicular to the magnetic field of the solenoid. The solenoid has 30.0 turns/cm and carries a clockwise current of 15.0 A. (a) Find the force on each side of the loop. magnitude UN direction ---Select- (b) Find the magnitude of the torque acting on the loop. N.mA toroidal solenoid has 825 coils. How large a current must it be carrying so that the magnetic field within the coils, at a distance of 17cm from the center, is 0.025T?
- Please explainA long solenoid that has 1 040 turns uniformly distributed over a length of 0.380 m produces a magnetic field of magnitude 1.00 x 10 T at its center. What current is required in the windings for that to occur? mAA long solenoid has 1400 turns per meter of length, and it carries a current of 3.8 A. A small circular coil of wire is placed inside the solenoid with the normal to the coil oriented at an angle of 90.0° with respect to the axis of the solenoid. The coil consists of 50 turns, has an area of 1.2 × 10-³ m², and carries a current of 0.40 A. Find the torque exerted on the coil. T=
- A solenoid is 15 cm long, has a radius of 5 cm, and has 400 turns. If it carries a current of 4 A, the magnetic energy stored in the solenoid is Group of answer choices 12.6 mJ 84.2 mJ 0.562 J 3.37 J None of these is correct.As shown in the figure below, two long parallel wires (1 and 2) carry currents of I₁ = 3.14 A and I₂ = 4.55 A in the direction indicated. d (a) Determine the magnitude and direction of the magnetic field at a point midway between the wires (d = 10.0 cm). magnitude μT direction counterclockwise from the +x-axis. ▸ (b) Determine the magnitude and direction of the magnetic field at point P, located d = 10.0 cm above wire 1. UT magnitude direction counterclockwise from the +x-axis