(a) Find the components of the magnetic force acting on each side of the loop. Components of the magnetic force acting on the top section of the loop. Frop, N Frop, Y %3D Frop, z Components of the magnetic force acting on the bottom section of the loop. FBottom, x = FBottom, y= N FBottom, z

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Chapter1: Units, Trigonometry. And Vectors
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As shown in the figure, a rectangular loop with a length e of 20.0 cm and a
width w of 15.0 cm has 20 turns and carries a current of 0.41 A
counterclockwise around the loop when viewed from the positive x-axis. A
horizontal (parallel to the x-z plane) magnetic field of magnitude 0.047 T is
oriented at an angle of 65° 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.)
-x-z plane
Transcribed Image Text:As shown in the figure, a rectangular loop with a length e of 20.0 cm and a width w of 15.0 cm has 20 turns and carries a current of 0.41 A counterclockwise around the loop when viewed from the positive x-axis. A horizontal (parallel to the x-z plane) magnetic field of magnitude 0.047 T is oriented at an angle of 65° 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.) -x-z plane
(a) Find the components of the magnetic force acting on each side of
the loop.
Components of the magnetic force acting on the top section of the loop.
FTop, x =
FTop, у
N
FTop, z
N
Components of the magnetic force acting on the bottom section of the
loop.
FBottom, x =
FBottom, y =
FBottom, z
Transcribed Image Text:(a) Find the components of the magnetic force acting on each side of the loop. Components of the magnetic force acting on the top section of the loop. FTop, x = FTop, у N FTop, z N Components of the magnetic force acting on the bottom section of the loop. FBottom, x = FBottom, y = FBottom, z
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