A rectangular coil with 20 windings carries a current of 2.00 mA flowing in the counterclockwise...
a rectangular 55.0 turns coil of wire of dimensions 50 cm by 30 cm. It carries a current of 1.5 A in the counterclockwise direction. It is mounted in the x-y plane. The magnetic field makes an angle of θ= 37.0° with the positive x-axis and magnitude 1.2 T. What is the magnitude of the torque (in Nm) acting on the coil.
rectangular 20-turn coil of wire, of dimensions 10 cm by 5.8 cm. It carries a current of 0.1 A and is hinged along one long side. It is mounted in the xy plane, at angle 0 = 30 to the direction of a uniform magnetic field of magnitude 0.50 T. What is the torque acting on the coil about the hinge line in units of N.m? Hinge line e
A 20-turn rectangular coil with sides 30 cm and w 10 cm is placed in the y-z plane as shown in Fig. P5.6 (a) If the coil, which carries a current 10 A, is in the presence of a magnetic flux density 5.6 B 2 x 10-2+ $2) (T) determine the torque acting on the coil (b) At what angle is the torque zero? (c) At what angle value is the torque maximum? Determine its 20-turn coil y Figure P5.6...
1) The armature of an ac generator is a rectangular coil 2.00 cm by 6.00 cm with 80 turns. It is immersed in a uniform magnetic field of magnitude 0.250 T. If the amplitude of the emf in the coil is 22.0 V, at what angular speed is the armature rotating? _______rad/s 2) The magnetic field between the poles of an electromagnet is 3.30 T. A coil of wire is placed in this region so that the field is parallel...
A square coil of wire has sides of length 3.00 cm and 80.0 turns and lies in the xy-plane. The coil lies in a magnetic field of 0.100 T directed in the positive y-direction. (a) Determine the torque on the coil if it carries a current of 2.00 A in a clockwise direction. (b) Suppose the coil rotates 30.0° in the direction of the torque – find the new value of the torque’s magnitude
A circular coil 20.0 cm in radius and composed of 145 tightly wound turns carries a current of 2.60 A in the counterclockwise direction, where the plane of the coil makes an angle of 15.0° with the y axis (see figure below). The coil is free to rotate about the z axis and is placed in a region with a uniform magnetic field given by B = 1.30 ſ T. 1 B y A = 15.0° (a) What is the...
A circular coil 13.0 cm in radius and composed of 145 tightly wound turns carries a current of 2.30 A in the counterclockwise direction, where the plane of the coil makes an angle of 15.0° with the y axis (see figure below). The coil is free to rotate about the z axis and is placed in a region with a uniform magnetic field given by B = 1.20 ſ T. Je = 15.0° (a) What is the magnitude of the...
A circular coil 14.0 cm in radius and composed of 145 tightly wound turns carries a current of 2.80 A in the counterclockwise direction, where the plane of the coil makes an angle of 15.0° with the y axis (see figure below). The coil is free to rotate about the z axis and is placed in a region with a uniform magnetic field given by B = 1.40 ſ T. B O = 15.0° (a) What is the magnitude of...
7. (10 pts pt.) A 20 turn rectangular coil with sides of length in 30 cm and width w 10 cm is placed in plane as shown in Figure below a. If the coil, which carries a current i = 10 A is in the presence of a magnetic flux density B = 2x10 (+92) (Tesla) Determine the torque acting on the coil. b. At what angle is the torque zero? c. At what angle is the torque maximum? Determine...
A 50.0 cm x 35.0 cm rectangular coil of 19 turns lies in the horizontal (x-2) plane with its 50.0 cm side along the +x axis and its 35.0 cm side along the +z axis. The coil is in the region of a magnetic field B = (3.50 x 10-2 T/m . s)ztj - (2.60 x 10-2 T/m)xk. (a) Determine the magnitude of the induced emf. mv (b) What is the direction of the induced emf in the coil as...