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When a charged particle moves through a magnetic field, it experiences a force. The velocity of a charged particle in a uniform magnetic field is an intriguing consequence of the Lorentz force.

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While the charged particle travels in a helical path, it may enter a region where the magnetic field is not uniform. Charged particles move in helices parallel to the field lines and trapped between them.

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Direction of force on charged particle in magnetic field can also be find by Fleming's Left Hand Rule. (3) Helical path : When the charged particle is moving at an angle to the field (other than 0o, 90o

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While the charged particle travels in a helical path, it may enter a region where the magnetic field is not uniform. Charged particles move in helices parallel to the field lines and trapped between them.

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We know that this particle will move in a circle and from the second law of Newton we can write In this situation the magnetic field does not perform work and the energy of the charged particle is not affected by the magnetic field.

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