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An electron experiences a magnetic force...

An electron experiences a magnetic force of magnitude` 4.60 xx 10^-15 N`, when moving at an angle of `60^@` with respect to a magnetic field of magnitude `3.50 xx 10^-3 T`. Find the speed of the electron.

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To find the speed of the electron experiencing a magnetic force, we can use the formula for the magnetic force acting on a charged particle moving in a magnetic field: \[ F = q v B \sin \theta \] Where: - \( F \) is the magnetic force, - \( q \) is the charge of the electron, - \( v \) is the speed of the electron, ...
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DC PANDEY ENGLISH-MAGNETICS-Exercise
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  3. An electron experiences a magnetic force of magnitude 4.60 xx 10^-15 N...

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  4. He^(2+) ion travels at right angles to a magnetic field of 0.80 T with...

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  6. An electron and a proton are moving with the same kinetic energy along...

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  7. A charged particle enters a region of uniform magnetic field at an ang...

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  8. Can a charged particle be accelerated by a magnetic field. Can its spe...

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  9. An electron beam projected along positive x-axis deflects along the po...

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  10. An electron and a proton are projected with same velocity perpendicula...

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  12. A wire of length L carries a current i along the x-axis. A magnetic fi...

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  13. A wire along the x-axis carries a current of 3.50A in the negative dir...

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  14. Find net force on the equilateral loop of side m carrying a current of...

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  15. A charge q is uniformly distributed on a non-conducting disc of radius...

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  16. A circular loop of wire having a radius of 8.0 cm carries a current of...

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  17. A length L of wire carries a current i. Show that if the wire is forme...

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  18. A coil with magnetic moment 1.45 A -m^2 is oriented initially with its...

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  19. a. A conductor in the shape of a square of edge length l = 0.4 m carri...

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  20. Determine the magnetic field at point P located a distance x from the ...

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