Acceleration is defined as the rate of change of velocity with respect to time.
Formulas of force are given by:
(1)
where,
F = force
m = mass
a = acceleration
(2)
where,
F = force
k = coulomb constant (
)
r = distance between the charged particles
and
are the signed magnitude of charges
Use the formula (2) for calculating the value of force, we get:
Substitute the value of
and
, k and r to find the value of force.
F=

=

Now, put the above value force in formula (1) to identify the initial acceleration.
(1) (mass of electron =
)
acceleration of electron =

=

And,
acceleration of proton =

mass of proton =

Thus,
acceleration of proton =

=

Now, initial acceleration of electron and proton is
and
as 1 N =
.