4. A 50 turn, current carrying, flat square coil of wire contains an area of 1.000 cm2. It's magnetic moment has a magnitude of 2.400 mA m². a) Find the current in the coil. b)A 1.2T magnetic field makes an angle of 28° with respect to the normal to the coil. Find the torque on the coil.
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- 55. A circular loop of wire 1.0 cm in radius carries a current of 30 A. The magnetic field at the center of the loop is a. 1.9 mT b. 2.4 mT C. 3.8 mT d. 12 µT e. 48 μ.10. Two long, straight wires are separated by distance, d = 19.0 cm. The wires carry currents of I = 7.00 A and I2 = 8.50 A in opposite directions, as shown in the figure. Find the magnitude of the net magnetic field at point (B). Let r1 13.0 cm, r2 = 8.00 cm, and r3 = 13.0 cm. T.5. A current through a wire is in the +x direction in the presence of an external magnetic field that points in the +y direction. In what direction does the magneitc force on the wire point?
- A piece of wire carrying a current of 2.5 A is bent into a quarter circle arc of radius 15 cm as shown below. Determine the magnitude of the magnetic field at point P. O a. 8.33x10-7 T O b. 2.62x10-7T O. 5.24x10-7 T O d. 1.05x10-7-6. Figure shows a cross section across a diameter of a long cylindrical conductor of radius a- 2 cm carrying uniform current 170 A. What is the magnitude of the current's magnetic field at radial distance. a) 0, b) 1 cm, c) 2 cm (wire's surface), and d) 4 cm?A straight wire carries a10.0 A current. Determine the magnetic field at a distance of 25.0 cm if the wire points inwards from the page.
- A current of 8.0 A circulates through a coil containing 200 turns of 1.5 m in diameter. a) Present the data appropriately and draw the outline of the situation described b) Find the magnetic field at a point along the coil 0.5 m from the center. c) Along the axis, at what distance from the center is the magnetic field five times smaller to the magnitude that it has in the center?The net magnetic flux through a closed surface.... a. depends on the net current threading through the surface. b. depends on the net charge enclosed by the surface. c. is always zero. d. is always a positive value.