In the figure below, the cube is 38.8 cm on each edge. Four straight segments of wire-ab, bc, cd, and da-form a closed loop that carries a current/-5.15 A in the direction shown. A uniform magnetic field of magnitude 8 0.021 T is in the positive y direction. Determine the magnetic force on each segment. (a) ab F-0 (b) bc F-41.96 (t) có F-29.66 (d) da F-41.96 x x mN mN mN mN x (e) Explain how you could find the force exerted on the fourth of these segments from the forces on the other three, without further calculation involving the magnetic field.

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In the figure below, the cube is 38.8 cm on each edge. Four straight segments of wire-ab, bc, cd, and da-form a closed loop that carries a current / -5.15 A in
the direction shown. A uniform magnetic field of magnitude 8= 0.021 T is in the positive y direction. Determine the magnetic force on each segment.
(a) ab
F = 0
(b) bc
F-41.96
(C) cơ
F= 29.66
(d) da
F 41.96
X
x
mN
mN
mN
mN
x
(e) Explain how you could find the force exerted on the fourth of these segments from the forces on the other three, without further calculation involving the
magnetic field.
Transcribed Image Text:In the figure below, the cube is 38.8 cm on each edge. Four straight segments of wire-ab, bc, cd, and da-form a closed loop that carries a current / -5.15 A in the direction shown. A uniform magnetic field of magnitude 8= 0.021 T is in the positive y direction. Determine the magnetic force on each segment. (a) ab F = 0 (b) bc F-41.96 (C) cơ F= 29.66 (d) da F 41.96 X x mN mN mN mN x (e) Explain how you could find the force exerted on the fourth of these segments from the forces on the other three, without further calculation involving the magnetic field.
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