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When a charged particle moving with vel...

When a charged particle moving with velocity `vec(V)` is subjected to a magnetic field of induction `vec(B)` the force on it is non-zero. This implies that:

A

Angles between `vec(v)` and `vec(B)` can have any value other than zero and `180^(@)`

B

Angle between `vec(v)` and `vec(B)` is either zero or `180^(@)`

C

Angle between `vec(v)` and `vec(B)` is necessarily `90^(@)`

D

Angle between `vec(v)` and `vec(B)` can have any value other than `90^(@)`

Text Solution

Verified by Experts

The correct Answer is:
A

`F_(m) = B q v sin theta`
if `F_(m) != 0, theta != (0^(@) or 180^(@))`
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