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If you double the distance between two objects the electric force is .?

If you double the distance between two objects, the electric force between them decreases by a factor of four. This is because electric force is inversely proportional to the square of the distance between the charges.


How does distance affect the electric force according to Coulomb and law?

According to Coulomb's law, the electric force between two charged objects is inversely proportional to the square of the distance between them. This means that as the distance between the objects increases, the electric force between them decreases. Conversely, as the distance decreases, the electric force increases.


What happens to the electric force if you double the distance between two objects?

The electric force between two objects decreases to one-fourth of the original force if the distance between them is doubled. This is because the electric force is inversely proportional to the square of the distance between the charges.


What happens to the electric force if the distance between two particles is doubled?

If the distance between two particles is doubled, the electric force between them decreases by a factor of 4. This is because the electric force is inversely proportional to the square of the distance between the particles, according to Coulomb's Law.


How does the electric force between two charged objects change when the distance between the two objects is doubled?

The electric force between two charged objects decreases by a factor of four when the distance between them is doubled. This is because the electric force is inversely proportional to the square of the distance between the charges.


How does the electric force between two charged particles change if the distance between them is increased by a factor of 2?

The electric force between two charged particles decreases by a factor of 4 when the distance between them is increased by a factor of 2. The electric force is inversely proportional to the square of the distance between the charged particles.


What is the relationship between voltage (e), electric potential difference (v), and distance (d) in an electric field?

In an electric field, the relationship between voltage (e), electric potential difference (v), and distance (d) is described by the equation v e d. This means that the electric potential difference (v) between two points in an electric field is equal to the product of the electric field strength (e) and the distance (d) between the points.


How would you change the distance between two charged particles to increase the electric force between them by a factor of 25?

To increase the electric force between two charged particles by a factor of 25, you would need to reduce the distance between them to 1/5 of the original distance. This is because the electric force between two charged particles is inversely proportional to the square of the distance between them. By decreasing the distance, the force will increase by the square of the decrease in distance.


What Distance between electric earth point out building?

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How does the electric force vary with distance?

The electric force between two charges decreases as the distance between them increases. This relationship is described by Coulomb's Law, which states that the force is inversely proportional to the square of the distance between the charges. So, as the distance increases, the force decreases.


The electric force between two charged objects is influenced by?

The electric force between two charged objects is influenced by the magnitude of the charges on the objects and the distance between them. The force increases with the magnitude of the charges and decreases with the distance between the charges. Additionally, the presence of any intervening medium can also affect the strength of the electric force.


How is the electric force between two positive charges changed if the distance between the charges is tripled?

The electric force between the two positive charges will decrease by a factor of 9 (3 squared) when the distance between the charges is tripled. This is because the electric force follows an inverse square law with distance - meaning it decreases as the square of the distance between the charges increases.