Answer:
a) least mass
Explanation:
According to the Newton's first law of motion, more the mass of a body the greater is its inertia, and inertia is the tendency of a body to resist any change to its state of rest or uniform motion.
Greater is the mass of charge least is its deflection under the influence of magnetic field.
This can be explained well by the mathematical equations relating the centripetal force and the magnetic force on a charged mass moving in a magnetic field perpendicular to the velocity:
[tex]m.\frac{v^2}{r} =q.v.B[/tex]
where:
m = mass of the charged particle
v = velocity of projection of the charged mass into the magnetic field
r = radius of curvature of path of charged mass under the magnetic force
q = magnitude of charge on the particle of mass 'm'
B = intensity of magnetic field normal to 'v'
[tex]\Rightarrow v=\frac{q.B.r}{m}[/tex]
[tex]\Rightarrow v\propto \frac{1}{m}[/tex]
i.e.
& also,
[tex]\Rightarrow m\propto \frac{1}{r}[/tex]