We have
We have
Q = magnitude of charge at each of the three locations A, B and C=3.5 x 10⁻⁶ C
r₁ = distance of charge at origin (A) from charge at B = 6cm = 0.06 m
r₂ = distance of charge at origin from charge at C = 7cm=0.07m
F₁ = magnitude of force by charge at B on charge at origin
F₂ = magnitude of force by charge at C on charge at origin
Let's calculate F₁
![F_1=(kQ^2)/(r^2_1)](https://img.qammunity.org/2023/formulas/physics/college/689g343h2c0z5ah5thicrt7tfxp30tr8b2.png)
k is a constant that is 9x10^9
we substitute the values
![F_1=((9*10^9)(3.5*10^(-6))^2)/(0.06^2)](https://img.qammunity.org/2023/formulas/physics/college/nzbsmhqbn96lt451z5i13af3fsvjybh85j.png)
![F_1=30.625N_{}](https://img.qammunity.org/2023/formulas/physics/college/oe2joey6lz2carl1tjcyal5wi81szw5o0c.png)
then for the force with charge C
![F_2_{}=(kQ^2)/(r^2_2)](https://img.qammunity.org/2023/formulas/physics/college/jzpzeyo76iol86trf3uc4v3asxu9conjcl.png)
![F_1=((9*10^9)(3.5*10^(-6))^2)/(0.07^2)=22.5N](https://img.qammunity.org/2023/formulas/physics/college/1swxiyg5hasd6pqc4dafidl2v3mfzjij3u.png)
Then we calculate the net force
![F=F_1+F_2](https://img.qammunity.org/2023/formulas/physics/college/zpc7pomch0xyi2d7cht53cl4vnxgyijhu1.png)
![F=30.625+22.5](https://img.qammunity.org/2023/formulas/physics/college/ds1ot7l2unwq0ii8xab2ew8nl1lncfautu.png)
![F=53.125N](https://img.qammunity.org/2023/formulas/physics/college/ujjyip2izkmhnutnsadvwjqf5gspsdyf7l.png)
As we can see in the diagram the forces go to the left therefore the solution is
![F=-53.1N](https://img.qammunity.org/2023/formulas/physics/college/zrtv7wn2jjbzj6a6d602im71bmgy2q988f.png)