11. |
A charged particle gains energy due to _____ .
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Answer:
Option (a) |
12. |
Equal currents are passing through two very long and straight parallel wires in mutually opposite directions. They will _____ .
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Answer:
Option (a) |
13. |
A charged particle is moving in a uniform magnetic field. Then _____ .
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Answer:
Option (a) |
14. |
If the speed of a changed particle moving through a magnetic field is increased, then the radius of curvature of its trajectory will _____ .
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Answer:
Option (b) |
15. |
An electron performs circular motion of radius r, perpendicular to a uniform magnetic field B. The kinetic energy gained by this electron in half revolution is _____
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Answer:
Option (c) |
16. |
Two concentric rings are kept in the same plane. Number of turns in both the rings is 20. Their radii are 40 cm and 80 cm and they carry electric currents of 0.4 A and 0.6 A respectively, in mutually opposite directions. The magnitude of the magnetic field produced at their centre is _____ T.
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Answer:
Option (c) |
17. |
A particle of mass m has an electric charge q. This particle is accelerated through a potential difference V and then entered normally in a uniform magnetic field B. It performs a circular motion of radius R. The ratio of its charge to the mass is = _____ [ is also called specific charge.]
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Answer:
Option (a) |
18. |
A proton, a deuteron ion and an α-particle of equal kinetic energy perform circular motion normal to a uniform magnetic field B. If the radii of their paths are rp, rd and rα respectively then _____[Here qd =qp, md = 2mp]
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Answer:
Option (a) |
19. |
Two very long conducting parallel wires are separated by a distance d from each other and equal currents are passed through them in mutually opposite directions. A particle of charge q passes through a point, at a distance from both wires, velocity v perpendicular to the plane formed by the wires. The resultant magnetic force acting on this particle is _____ .
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Answer:
Option (d) |
20. |
A charged particle is moving with velocity in a uniform magnetic field . The magnetic force acting on it will be maximum when _____
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Answer:
Option (c) |