Submit Answer Tries 0/4 (b) (a) -x B (UT) By π/4 8 (rad) (c) 1/2 (8c29p30) The current-carrying wire loop in the figure on the left lies all in one plane and consists of a semicircle of radius 10 cm, a smaller semicircle with the same center, and two radial lengths. The smaller semicircle is rotated out of that plane by angle e, until it is perpendicular to the plane. The figure on the right gives the magnitude of the net magnetic field at the center of curvature versus angle 6. The vertical scale is set by Ba = 9.510 μT and B₁ = 12.118 UT. What is the radius of the smaller semicircle?
Submit Answer Tries 0/4 (b) (a) -x B (UT) By π/4 8 (rad) (c) 1/2 (8c29p30) The current-carrying wire loop in the figure on the left lies all in one plane and consists of a semicircle of radius 10 cm, a smaller semicircle with the same center, and two radial lengths. The smaller semicircle is rotated out of that plane by angle e, until it is perpendicular to the plane. The figure on the right gives the magnitude of the net magnetic field at the center of curvature versus angle 6. The vertical scale is set by Ba = 9.510 μT and B₁ = 12.118 UT. What is the radius of the smaller semicircle?
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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
Transcribed Image Text:Submit Answer Tries 0/4
(b)
(a)
-x
B (UT)
By
π/4
8 (rad)
(c)
1/2
(8c29p30) The current-carrying wire loop in the figure on the left lies all in one plane and consists of a semicircle of radius 10 cm, a smaller semicircle with the same center, and two radial lengths. The smaller semicircle is rotated out
of that plane by angle e, until it is perpendicular to the plane. The figure on the right gives the magnitude of the net magnetic field at the center of curvature versus angle 6. The vertical scale is set by Ba = 9.510 μT and B₁ = 12.118
UT. What is the radius of the smaller semicircle?
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