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A charged particle moving in a magnetic field experiences a resultant force
  • a)
    in a direction of magnetic field
  • b)
    in the direction opposite to the magnetic field
  • c)
    in the direction perpendicular to both the magnetic field and its velocity
  • d)
    none of the above
Correct answer is option 'C'. Can you explain this answer?
Most Upvoted Answer
A charged particle moving in a magnetic field experiences a resultant ...
Explanation:

Force on a charged particle in a magnetic field:
When a charged particle moves through a magnetic field, it experiences a force known as the magnetic force. The direction of this force depends on the velocity of the particle and the direction of the magnetic field.

Direction of the magnetic force:
- The magnetic force on a charged particle is always perpendicular to both the velocity of the particle and the magnetic field.
- This means that the charged particle experiences a force in a direction perpendicular to the magnetic field and its velocity.

Resultant force on the charged particle:
- Since the magnetic force is always perpendicular to the velocity of the charged particle, it causes the particle to move in a circular path.
- The resultant force on the charged particle is the centripetal force that keeps the particle moving in a circular path.

Conclusion:
- Therefore, when a charged particle moves in a magnetic field, it experiences a resultant force in a direction perpendicular to both the magnetic field and its velocity. This is known as the magnetic force.
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A charged particle moving in a magnetic field experiences a resultant forcea)in a direction of magnetic fieldb)in the direction opposite to the magnetic fieldc)in the direction perpendicular to both the magnetic field and its velocityd)none of the aboveCorrect answer is option 'C'. Can you explain this answer?
Question Description
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