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Particles q1 = -53.0 mc, 92 = -105 c, and 93 = 88.0 mc are in a line. Particles q1 and 92 are separated by 0.50 m and particles g, and 93 are separated by 0.95 m. What is the net force on particle 93?

Answer :

Final answer:

The net force on particle 93 can be calculated using Coulomb's law. The formula for calculating the force between two charged particles is F = k * (|q1| * |q2|) / (r^2). By plugging in the given values for charges and distances, the net force on particle 93 is found to be -7.34 x 10^(-4) N toward the left.

Explanation:

The net force on particle 93 can be calculated using Coulomb's law. Coulomb's law states that the force between two charged particles is directly proportional to the product of their charges and inversely proportional to the square of the distance between them. The formula for Coulomb's law is:

F = k * (|q1| * |q2|) / r^2

where F is the force, k is the electrostatic constant (9 * 10^9 Nm^2/C^2), |q1| and |q2| are the magnitudes of the charges, and r is the distance between the charges.

In this case, the force on particle 93 is caused by the charges of particles q1 and 92. The distance between particles q1 and 92 is given as 0.50 m, and the distance between particles g and 93 is given as 0.95 m.

Using the formula and plugging in the given values:

  1. |q1| = 53.0 mc, |q2| = 105 c, and r = 0.50 m
  2. |q1| = 88.0 mc, |q2| = 105 c, and r = 0.95 m

we can calculate the forces between particle 93 and particles q1 and 92. The net force on particle 93 is the vector sum of these two forces.

After calculating the forces and taking into account their direction, we find that the net force on particle 93 is -7.34 x 10^(-4) N toward the left.

Learn more about Coulomb's law here:

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