a square loop with sides of length ℓ = 0.345 m in a magnetic field of magnitude 1.50 T. Calculate the magnetic flux (in Wb) through the loop oriented perpendicular to the magnetic field, 60.0° from the magnetic field, and parallel to the magnetic field. Three figures show an x y coordinate plane with the +x-axis pointing to the right and the +y-axis pointing upward. A magnetic field labeled vector B points to the right in the positive x-direction. In each figure, a bar of length ℓ is shown in different orientations. In the first figure, the bar is oriented vertically, perpendicular to the magnetic field. In the second figure, the bar is tilted so that the top end is further right than the bottom end, making a 60.0° angle with the magnetic field. In the third figure, the bar is oriented horizontally, parallel to the magnetic field. (a) perpendicular to the magnetic field  Wb (b) 60.0° from the magnetic field  Wb (c) parallel to the magnetic field

College Physics
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Chapter19: Magnetism
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a square loop with sides of length ℓ = 0.345 m in a magnetic field of magnitude 1.50 T. Calculate the magnetic flux (in Wb) through the loop oriented perpendicular to the magnetic field, 60.0° from the magnetic field, and parallel to the magnetic field.
Three figures show an x y coordinate plane with the +x-axis pointing to the right and the +y-axis pointing upward. A magnetic field labeled vector B points to the right in the positive x-direction. In each figure, a bar of length ℓ is shown in different orientations.
  • In the first figure, the bar is oriented vertically, perpendicular to the magnetic field.
  • In the second figure, the bar is tilted so that the top end is further right than the bottom end, making a 60.0° angle with the magnetic field.
  • In the third figure, the bar is oriented horizontally, parallel to the magnetic field.
(a)
perpendicular to the magnetic field
 Wb
(b)
60.0° from the magnetic field
 Wb
(c)
parallel to the magnetic field
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