Consider the situation below in which a current carrying coil (loop) is situated in a magnetic field. The plane of the coil is perpendicular to the magnetic field, and an electric current is run in the direction indicated. What is true regarding to the forces on the coil? The magnetic forces give rise to torque that wants to make the coil spin around There are forces on the coil segments in the magnetic field that act outwards, away from the centre The net force will be to the right, causing the loop to move away from the B- field In this situation, there will be no forces on any of the coil segments

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Consider the situation below in which a current carrying coil (loop) is situated in a
magnetic field. The plane of the coil is perpendicular to the magnetic field, and an
electric current is run in the direction indicated.
What is true regarding to the forces on the coil?
The magnetic forces give rise to torque that wants to make the coil spin around
There are forces on the coil segments in the magnetic field that act outwards,
away from the centre
The net force will be to the right, causing the loop to move away from the B-
field
In this situation, there will be no forces on any of the coil segments
Transcribed Image Text:Consider the situation below in which a current carrying coil (loop) is situated in a magnetic field. The plane of the coil is perpendicular to the magnetic field, and an electric current is run in the direction indicated. What is true regarding to the forces on the coil? The magnetic forces give rise to torque that wants to make the coil spin around There are forces on the coil segments in the magnetic field that act outwards, away from the centre The net force will be to the right, causing the loop to move away from the B- field In this situation, there will be no forces on any of the coil segments
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