A rectangular coil of wire (a = 28.0 cm, b = 43.0 cm) containing
a single turn is placed in a uniform 6.80 T magnetic field, as the
drawing shows. The current in the loop is 20.0 A. Determine the
magnitude of the magnetic force on the right side of the
loop.
N
A rectangular coil of wire (a = 28.0 cm, b = 43.0 cm) containing a single...
3. A rectangular coil of wire (a -22.0 cm, b- 43.0 cm) containing a single turn is placed in a uniform 7.80 T magnetic field, as the drawing shows. The current in the loop is 11.0 A. Determine the magnitude of the magnetic force on the top side of the loop.
. A rectangular coil of wire (a = 20.0 cm, b = 41.0 cm)
containing a single turn is placed in a uniform 7.80 T magnetic
field, as the drawing shows. The current in the loop is 19.0 A.
Determine the magnitude of the magnetic force on the bottom side of
the loop.
3) The next figure shows a rectangular 20-turn coil of wire, of dimensions 10 cm by 5.0 cm. It carries a current of 0.10 A and is hinged along one long side. It is mounted in the xy plane, at angle of 30° to the direction of a uniform magnetic field of magnitude 0.50 T. In unit-vector notation, a) what is the magnetic force on each side? B) What is the torque acting on the coil? Hinge line
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
Hinge line The figure shows a rectangular, 20-turn coil of wire of dimensions 9 cm by 5 cm. It carries a current of 0.090 A and is hinged along one long side. It is mounted in the xy plane, at an angle of 30° to the direction of a uniform magnetic field of magnitude 0.30 T. What is the torque acting on the coil about the hinge line Submit Answer Incorrect. Tries 3/10 Previous Tries What is its direction? O...
A square coil of wire of side 3.80 cm is placed in a uniform magnetic field of magnitude 2.00 T directed into the page as in the figure shown below. The coil has 30.5 turns and a resistance of 0.780 2. If the coil is rotated through an angle of 90.00 about the horizontal axis shown in 0.335 s, find the following. Rotation axis X X X (a) the magnitude of the average emf induced in the coil during this...
A 150-turn rectangular coil having dimensions of 10.0 cm by 5.0 cm is placed in a uniform magnetic field of magnitude of 0.8 T. Assume the max torque exerted on the wire by the magnetic field is 0.12N*m . Find the magnitude of the torque on the coil when the magnetic field makes an angle of 31º with the normal to the plane of the coil .06180457 0.13597005 1.23609138 .61804569
A circular coil consisting of a single loop of wire has a radius of 8.28 cm and carries a current of 9.16 A. It is placed in a uniform external magnetic field, so that the normal to the loop makes an angle of θ = 80.4° with the direction of the field. If the coil feels a torque of 1.39×10−2 Nm, what is the magnitude of the magnetic field?
Question 14 3 pts A 250-turn rectangular coil having dimensions of 8.0 cm by 3.0 cm is placed in a uniform magnetic field of magnitude of 0.9 T. Assume the max torque exerted on the wire by the magnetic field is 0.13 Nm. Find the magnitude of the torque on the coil when the magnetic field makes an angle of 28° with the normal to the plane of the coil.
A rectangular coil that has a length of 20.0 cm and a width of
8.5 cm containing 10 loops lies flat on your desk as shown on this
page. A uniform magnetic field of magnitude 5.10 × 10-5 T points
towards the bottom of this page. If a 6.00-A clockwise current
flows through the coil, (a) determine the torque on the coil.
(b) which edge of the coil rises up?
Top
Bottom
Left
None of these
Right