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Answer :
Final answer:
The force on the 2.00uC charge can be calculated using Coulomb's Law, where you multiply the magnitudes of the two charges, divide by the square of the distance between them and then multiply by Coulomb's constant. Remember to convert the units appropriately.
Explanation:
The subject of this question is concerned with the concept of electrostatic force in physics. The force on the 2.00-uC charge can be calculated using Coulomb's Law, which states that the force between two charges is directly proportional to the magnitude of each charge and inversely proportional to the square of the distance between them. This can be mathematically represented as:
F = k*(|q1*q2|)/r^2
Where:
F is the electrostatic force,
q1 and q2 are the magnitudes of the two charges,
r is the distance between the charges, and
k is Coulomb's constant (8.99 * 10^9 N.(m^2/C^2)).
In this case, q1 = -4.00uC (converted to C by multiplying by 10^-6), q2 = 2.00uC (also converted to C), and r = 20cm (converted to m by multiplying by 0.01). Plugging these values into the formula will give the force on the 2.00uC charge.
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