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Which of the following particles will d...

Which of the following particles will describe wll experience maximum magnetic force(magnitude) when projected with the same velocity perpendicular to a magnetic field?

A

`Be+++`

B

proton

C

`alpha`-particle

D

`Li`

Text Solution

Verified by Experts

The correct Answer is:
D

`F=qVB`
`F_("Min")=q_("Min")VB`
As from the given options `Li` has maximum charge.
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RESONANCE ENGLISH-ELECTRODYNAMICS-Exercise-1 PART-2
  1. Two long parallel wires are at a distance 2d apart. They carry steady ...

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  2. An infifnitely long conductor PQR is bent to form a right angle as sho...

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  3. Which of the following particles will describe wll experience maximum...

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  4. An electric current I enters and leaves a uniform circular wire of rad...

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  5. Two prticles A and B having equal charges, after being accelerated thr...

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  6. A negative charged particle falling freely under gravity enters a regi...

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  7. A proton is moved along a magnetic field line.The magnetic force on th...

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  8. A proton of mass m and charge q enters a magnetic field B with a veloc...

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  9. A particle moves in a region having a uniform magnetic field and a par...

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  10. if a charged particle projected in a gravity free room deflects,

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  11. Two parallel wires carry currents of 20A and 40A in opposite direction...

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  12. For the circuit shown in figure the direction and magnitude of the for...

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  13. A circular loop of radius R carrying a current I is placed in a unifor...

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  14. A rectanguar doop carrying a current I is situated near a long straigh...

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  15. A uniform magnetic field B=(3hati+4hatj+hatK) exists in region of spac...

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  16. Twio thin long parallel wires seprated byb a distance b are carryin...

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  17. In the figure shown a current I(1) is established in the long straight...

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  18. A steady current i flows in a small square lopp of wire of side L in a...

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  19. A point charge q is situated at a distance r from one end of a thin co...

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  20. A magnet of magnetic moment 2J/T is alined in the direaction of magnet...

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