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Magnetic field arises due to charges in motion. Can a system have magneticmoment even though its net charge is zero?

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Force on a charge in electric and magnetic fields A charge particle follows a parabolic path in a uniform electric field and a charged particel moving in a uniform magnetic field has two kinds of motions lnear motion in the direction of magnetic field and circular motion in a plane perpendicular to the magnetic field. when charge q is moving perpendicular to the magnetic field B, the radius of the circular path is r=(mv)/(Bq) . If v and B makes an angle theta , then r=(mvsintheta)/(Bq) , and the time period T=(2pim)/(Bq) . The time period of a charged particle undergoing a circular motion in uniform magnetic field is independent of its

Force on a charge in electric and magnetic fields A charge particle follows a parabolic path in a uniform electric field and a charged particel moving in a uniform magnetic field has two kinds of motions lnear motion in the direction of magnetic field and circular motion in a plane perpendicular to the magnetic field. when charge q is moving perpendicular to the magnetic field B, the radius of the circular path is r=(mv)/(Bq) . If v and B makes an angle theta , then r=(mvsintheta)/(Bq) , and the time period T=(2pim)/(Bq) . When a charged particle q is moving with velocity vecv in a magnetic field vecB , the force is non-zero. It means.

Force on a charge in electric and magnetic fields A charge particle follows a parabolic path in a uniform electric field and a charged particel moving in a uniform magnetic field has two kinds of motions lnear motion in the direction of magnetic field and circular motion in a plane perpendicular to the magnetic field. when charge q is moving perpendicular to the magnetic field B, the radius of the circular path is r=(mv)/(Bq) . If v and B makes an angle theta , then r=(mvsintheta)/(Bq) , and the time period T=(2pim)/(Bq) . Under the influenece of a uniform magnetic field, a charged particles is moving in a circle of radius r with speed v. The time period of motion.

Force on a charge in electric and magnetic fields A charge particle follows a parabolic path in a uniform electric field and a charged particel moving in a uniform magnetic field has two kinds of motions lnear motion in the direction of magnetic field and circular motion in a plane perpendicular to the magnetic field. when charge q is moving perpendicular to the magnetic field B, the radius of the circular path is r=(mv)/(Bq) . If v and B makes an angle theta , then r=(mvsintheta)/(Bq) , and the time period T=(2pim)/(Bq) . If an electron and a proton having same momenta enter perpendicular to a magnetic field, then

Discuss the motion of a charged particle when subjected to a uniform magnetic field when The direction of motion of the charged particle makes an angle with the direction of magnetic field?

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Discuss the motion of charged particle in uniform magnetic field, when its moves at an angle theta with the direction of magnetic field. Prove that its path is helical. Calculate the pitch of helical path. What will be the nature of path if theta=90^@

MODERN PUBLICATION-MAGNETIC DIPOLE & EARTH'S MAGNETISM-EXERCISE
  1. Magnetic field arises due to charges in motion. Can a system have magn...

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  2. State four properties of bar magnet.

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  3. Explain the magnetism on the basis of atomic theory.

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  4. Define magnetic pole.

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  5. What is a magnetic dipole? Define magnetic dipole moment. Give its SI ...

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  6. A current loop behaves as a mgnetic dipole. Obtain expression for magn...

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  7. In a hydrogen atom, an electron of charge e revolves in an orbit of ra...

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  8. Explain how an atom behaves as a magnetic dipole. derive an expression...

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  9. Deduce the expression for the magnetic dipole moment of an electron or...

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  10. Derive an expression for the magnetic dipole moment of an atom.

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  11. Deduce the expression for the magnetic dipole moment of an electron or...

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  12. What is the relationship between the current and the magnetic moment o...

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  13. Derive an expression for the magnetic dipole moment of an atom.

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  14. Explain how an atom behaves as a magnetic dipole. derive an expression...

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  15. What do you understand by magnetic field ? Define its strength and SI ...

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  16. Define magnetic field intensity at a point and derive an expression fo...

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  17. Obtain an expression for electric field intensity at any point on equi...

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  18. What is magnetic dipole? Derive an expression for magnetic field inten...

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  19. Derive an expression for the magnetic field due to magnetic dipole in ...

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  20. Derive an expression for the torque expereinced by a amgnetic dipole s...

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  21. Derive an expression for torque acting on a bar magnet placed in a uni...

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