w As shown in the figure, a rectangular loop with a length of 20.0cm and a width w of 15.0 cm has 20 turns and carries a current of 0.350 A counterclockwise around the loop when viewed from the positive x axis. A horizontal (parallel to the xz plane) magnitude 0.0350 T is oriented at an angle of 65.0° relative to the perpendicular to the loop (the positivex axis). (Assume the length and width are measured along the z and y axes, respectively.) 7 2-2 plane 2

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(b) Find the net magnetic force on the loop. (Enter the magnitude only.)
FNet = 0
N
(c) Find the magnetic torque on the loop.
3.33E-4
x
magnitude
What factors determine the torque acting on a current-carrying loop in a magnetic field? Nm
clockwise
direction
✓✓ about the y axis as viewed from the positive y axis
(d) If the loop can rotate about the y axis with only a small amount of friction, what will be the final angle of the perpendicular to the coil with respect to the direction of the magnetic field?
0⁰
90°
180°
Transcribed Image Text:(b) Find the net magnetic force on the loop. (Enter the magnitude only.) FNet = 0 N (c) Find the magnetic torque on the loop. 3.33E-4 x magnitude What factors determine the torque acting on a current-carrying loop in a magnetic field? Nm clockwise direction ✓✓ about the y axis as viewed from the positive y axis (d) If the loop can rotate about the y axis with only a small amount of friction, what will be the final angle of the perpendicular to the coil with respect to the direction of the magnetic field? 0⁰ 90° 180°
As shown in the figure, a rectangular loop with a length of 20.0 cm and a width w of 15.0 cm has 20 turns and carries a current of 0.350 A counterclockwise around the loop when viewed from the positive x axis. A horizontal (parallel to the x-z plane) magnetic field of
magnitude 0.0350 T is oriented at an angle of 65.0° relative to the perpendicular to the loop (the positive x axis). (Assume the length and width are measured along the z and y axes, respectively.)
(a) Find the components of the magnetic force acting on each side of the loop.
Find the components of the magnetic force acting on the top section of the loop.
FTop, x
N
FTop, y =
N
FTop, z =
N
#
Find the components of the magnetic force acting on the bottom section of the loop.
FBottom, x=
N
FBottom, y
IN
IN
Bottom, z
=
FLeft, y
FLeft, z
-x-2 plane
Find the components of the magnetic force acting on the left section of the loop.
FLeft, x
-0
N
N
N
Find the components of the magnetic force acting on the right section of the loop.
FRight, x
N
Fright, y
✔N
IN
Right,
k
Transcribed Image Text:As shown in the figure, a rectangular loop with a length of 20.0 cm and a width w of 15.0 cm has 20 turns and carries a current of 0.350 A counterclockwise around the loop when viewed from the positive x axis. A horizontal (parallel to the x-z plane) magnetic field of magnitude 0.0350 T is oriented at an angle of 65.0° relative to the perpendicular to the loop (the positive x axis). (Assume the length and width are measured along the z and y axes, respectively.) (a) Find the components of the magnetic force acting on each side of the loop. Find the components of the magnetic force acting on the top section of the loop. FTop, x N FTop, y = N FTop, z = N # Find the components of the magnetic force acting on the bottom section of the loop. FBottom, x= N FBottom, y IN IN Bottom, z = FLeft, y FLeft, z -x-2 plane Find the components of the magnetic force acting on the left section of the loop. FLeft, x -0 N N N Find the components of the magnetic force acting on the right section of the loop. FRight, x N Fright, y ✔N IN Right, k
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