そ 个を (a) (b) (C) Shown in the figure are three configurations where a circular loop of radius 7.1 cm is (a) lying flat in the xy-plane, or (b) in the xz-plane, or (c) bent about its diameter along two mutually perpendicular planes. Also shown in the figure is a vector representing a uniform magnetic field of 0.8 T permeating the whole region pointing at an angle of 21 degrees with the xy-plane. Calculate the total magnetic flux through the loop in configuration (c).

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そト
(a)
(b)
(C)
Shown in the figure are three configurations where a circular loop of radius 7.1 cm is (a) lying flat in the xy-plane, or (b) in the xz-plane, or (c) bent about its diameter
along two mutually perpendicular planes. Also shown in the figure is a vector representing a uniform magnetic field of 0.8 T permeating the whole region pointing at an
angle of 21 degrees with the xy-plane. Calculate the total magnetic flux through the loop in configuration (c).
Transcribed Image Text:そト (a) (b) (C) Shown in the figure are three configurations where a circular loop of radius 7.1 cm is (a) lying flat in the xy-plane, or (b) in the xz-plane, or (c) bent about its diameter along two mutually perpendicular planes. Also shown in the figure is a vector representing a uniform magnetic field of 0.8 T permeating the whole region pointing at an angle of 21 degrees with the xy-plane. Calculate the total magnetic flux through the loop in configuration (c).
Q3: Show detailed work and pay attention to the units.
Use the definition of magnetic flux to calculate the total magnetic flux through the loop in each configuration (a, b, and c.)
Order the configurations by the amount of magnetic flux through the loop.
Transcribed Image Text:Q3: Show detailed work and pay attention to the units. Use the definition of magnetic flux to calculate the total magnetic flux through the loop in each configuration (a, b, and c.) Order the configurations by the amount of magnetic flux through the loop.
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