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Exercise:
A square coil of wire containing NO turns is placed in a uniform magnetic field with strength BO see figure. Each side has a length of aO and the current in the coil is IO. includegraphicswidth.textwidth#image_path:squarcoil# abcliste abc Determine the magnitude of the magnetic force on each of the four sides. abc Calculate the torque acting on the coil. abcliste

Solution:
abcliste abc There is only a force if the current is not anti- parallel to the magnetic field. In this situation this only applies to the top and bottom side of the coil. They each experience a force of F FF Ntimes Itimes atimes B F approx resultFP abc The torque on the coil with respect to an axis parallel to the the top and bottom side and in the middle between them is given by tau r sscFtop + r sscFbottom fraca F MF atimes F M approx resultMP abcliste
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Exercise:
A square coil of wire containing NO turns is placed in a uniform magnetic field with strength BO see figure. Each side has a length of aO and the current in the coil is IO. includegraphicswidth.textwidth#image_path:squarcoil# abcliste abc Determine the magnitude of the magnetic force on each of the four sides. abc Calculate the torque acting on the coil. abcliste

Solution:
abcliste abc There is only a force if the current is not anti- parallel to the magnetic field. In this situation this only applies to the top and bottom side of the coil. They each experience a force of F FF Ntimes Itimes atimes B F approx resultFP abc The torque on the coil with respect to an axis parallel to the the top and bottom side and in the middle between them is given by tau r sscFtop + r sscFbottom fraca F MF atimes F M approx resultMP abcliste
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Attributes & Decorations
Branches
Magnetism
Tags
coil, magnetic force, torque
Content image
Difficulty
(1, default)
Points
0 (default)
Language
ENG (English)
Type
Calculative / Quantity
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Decoration