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A particle of charge per unit mass alpha...

A particle of charge per unit mass `alpha` is released from origin with a velocity `vecv=v_(0)hati` in a magnetic field
`vec(B)=-B_(0)hatk` for `xle(sqrt(3))/2 (v_(0))/(B_(0)alpha)`
and `vec(B)=0` for `xgt(sqrt(3))/2 (v_(0))/(B_(0)alpha)`
The `x`-coordinate of the particle at time `t((pi)/(3B_(0)alpha))` would be

A

`sqrt(3)/(2)(V_(0))/(B_(0)alpha)+sqrt(3)/(2)v_(0)(t-(pi)/(B_(0)alpha))`

B

`sqrt(3)/(2)(V_(0))/(B_(0)alpha)+v_(0)(t-(pi)/(B_(0)alpha))

C

`sqrt(3)/(2)(V_(0))/(B_(0)alpha)+(v_(0))/(2)(t-(pi)/(B_(0)alpha))

D

`sqrt(3)/(2)(V_(0))/(B_(0)alpha)+(v_(0)t)/(2)

Text Solution

Verified by Experts

The correct Answer is:
C
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