d Answer: 124 a The long, straight conductor shown in the figure lies in the plane of the rectangular loop at a distance d = 10 cm. The loop has dimensions a 20 cm and b = 50 cm, and the currents are I₁ = 10 A and I₂ = 20 A. Determine the net magnetic force acting on the loop. Consider the wire carrying I₁ to coincide with the z-axis, and the loop to lie in the + side of the x - z plane. F = â + 9 + 2 (N) b
d Answer: 124 a The long, straight conductor shown in the figure lies in the plane of the rectangular loop at a distance d = 10 cm. The loop has dimensions a 20 cm and b = 50 cm, and the currents are I₁ = 10 A and I₂ = 20 A. Determine the net magnetic force acting on the loop. Consider the wire carrying I₁ to coincide with the z-axis, and the loop to lie in the + side of the x - z plane. F = â + 9 + 2 (N) b
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The long, straight conductor shown in the figure lies in the plane of the rectangular loop at a distance d = 10 cm. The loop has dimensions a = 20 cm and
b = 50 cm, and the currents are I₁ = 10 A and I₂ = 20 A. Determine the net magnetic force acting on the loop. Consider the wire carrying I₁ to coincide with
the z-axis, and the loop to lie in the side of the x - z plane.
F = x
124
+ Û
· * (N)
a
+ 2"
Transcribed Image Text:Answer:
The long, straight conductor shown in the figure lies in the plane of the rectangular loop at a distance d = 10 cm. The loop has dimensions a = 20 cm and
b = 50 cm, and the currents are I₁ = 10 A and I₂ = 20 A. Determine the net magnetic force acting on the loop. Consider the wire carrying I₁ to coincide with
the z-axis, and the loop to lie in the side of the x - z plane.
F = x
124
+ Û
· * (N)
a
+ 2
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