Answer:
i. F = 1.3 x
N
ii. The direction of the force of attraction exerted by the proton on the electron is towards the itself (i.e a pull).
Step-by-step explanation:
Since the given charges are opposite, then the force of attraction is experienced. The force of attraction between the two charges can be determined by:
F =
![(kq_(1) q_(2) )/(d^(2) )](https://img.qammunity.org/2021/formulas/physics/college/y7l53cjxlt4p08acpu77xxhum3ml0siafp.png)
where F is the force, k is the constant,
is the charge of the electron,
is the charge on the proton, and d is the distance between them.
So that; k = 9.0 x
N
![m^(2)](https://img.qammunity.org/2021/formulas/chemistry/middle-school/jelmjz7kot3sm80pidpl7v5ncxu8balssm.png)
,
= 1.6 x
C,
= 1.6 x
Thus,
F =
![(9.0*10^(9)*1.6*10^(-19)*1.6*10^(-19) )/((4.2*10^(-11)) ^(2) )](https://img.qammunity.org/2021/formulas/physics/college/9issffxdk2zeuciy8l1odkx3exogo114km.png)
=
![(2.304*10^(-28) )/(1.764*10^(-21) )](https://img.qammunity.org/2021/formulas/physics/college/cjtelu3gp2ufudb55ahf7jl6qhy4qhb0rb.png)
= 1.3061 x
F = 1.3 x
N
The force between the charges is 1.3 x
N.
ii. The direction of the force of attraction exerted by the proton on the electron is towards the itself.