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Assuming that the only force on the two objects is an electric force.

Felectric = k Q q / r2

This is Coulomb's law. K = electrostatic constant, Q and q are the magnitudes of the point charges, and r is the distance between the point charges.

As you can see, if you decrease the magnitude of the charge, the electric force decreases. In other words, the objects are less attracted to one another.

aside: gravity happens to be modeled the same way.

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True or false as the electric charge on two objects is decreased the electric force between them increases?

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Related Questions

True or false as the electric charge on two objects is decreased the electric force between them increases?

False. The electric force between two objects is determined by the amount of charge on each object, as well as the distance between them. If the electric charge on two objects is decreased, the electric force between them will also decrease.


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How do the electric force between two objects depends on the amount of charge?

The electric force between two objects is directly proportional to the amount of charge on each object. As the amount of charge increases, the electric force between the objects also increases. Conversely, if the amount of charge decreases, the electric force between the objects will decrease.


On what does electric force depend that is analogous to mass in gravitational force?

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Yes, objects with larger amounts of charge generally have stronger electric fields than objects with smaller amounts of charge. The strength of an electric field is directly proportional to the amount of charge that produces it.


What is the difference between the movement of electric charge in a solution and the transfer of electric charge between solid objects?

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