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Exercise:
Determine the direction of the magnetic force acting on the particle electron proton or neutron in each of the situations a to f. center includegraphicswidth.textwidth#image_path:forcdirections# center If there is no force acting on the particle explain why not.

Solution:
For situations a b d and f the solution is shown in the figure below. They can be found using the right-hand rule proton or the left-hand rule electron. center includegraphicswidth.textwidth#image_path:forcdirection-solutions# center For the particles in c and e there is no force. A neutron is a neutral particle and therefore it does not experience a force in a magnetic field. The proton in e moves directly against the magnetic field lines. Since sinpi the force has zero magnitude.
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Exercise:
Determine the direction of the magnetic force acting on the particle electron proton or neutron in each of the situations a to f. center includegraphicswidth.textwidth#image_path:forcdirections# center If there is no force acting on the particle explain why not.

Solution:
For situations a b d and f the solution is shown in the figure below. They can be found using the right-hand rule proton or the left-hand rule electron. center includegraphicswidth.textwidth#image_path:forcdirection-solutions# center For the particles in c and e there is no force. A neutron is a neutral particle and therefore it does not experience a force in a magnetic field. The proton in e moves directly against the magnetic field lines. Since sinpi the force has zero magnitude.
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Magnetism
Tags
charged particle, magnetic force
Content image
Difficulty
(1, default)
Points
0 (default)
Language
ENG (English)
Type
Descriptive / Quality
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