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The electric force between two charged objects is influenced by the distance between them.

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What are two ways the electric force between two charged objects can be increased?

The electric force between two charged objects can be increased by increasing the magnitude of the charges on the objects or by decreasing the distance between the objects.


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 objects change between the objects?

weaker as square of distance


How is the behaivor of the droplets related to the charged wand experiment?

In the charged wand experiment, the behavior of the droplets is influenced by the charged wand's electric field. The charged wand induces an electric charge on the droplets, causing them to be attracted or repelled depending on their charge relative to the wand. This demonstrates the interaction between electric charges and how they affect the movement of objects in the electric field.


How does the electric force between two charged objects charge if you double the distance between the objects?

The electric force between two charged objects is decreased by a factorof 4 if you double the distance between the objects, from the formulaF=(q1*q2)/(4*Pi*Eo*r^2).


How does the electric force between two charged objects changes if you double the distance between the objects?

The electric force between two charged objects is decreased by a factorof 4 if you double the distance between the objects, from the formulaF=(q1*q2)/(4*Pi*Eo*r^2).


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

Less distance --> more force.


How does the electric force between charged objects changed as the objects move away from each other?

The electric force between charged objects decreases as the objects move away from each other. This decrease is described by Coulomb's law, which states that the force is inversely proportional to the square of the distance between the objects.


Which changes will decrease the electric force between two positively charged objects?

Increasing the distance between the objects, or decreasing the amount of charge on the objects will reduce the electric force between two positively charged objects. Adding negatively charged objects nearby can also reduce the electric force by attracting the positive charges.


What is the difference between the electric field and the electric force in the context of electromagnetism?

The electric field is a region around a charged object where other charged objects experience a force. The electric force is the actual force experienced by a charged object in an electric field. In summary, the electric field sets up the conditions for the electric force to act on charged objects.


What is the difference between the electric field and force in the context of electromagnetism?

In the context of electromagnetism, the electric field is a region around a charged object where another charged object would experience a force. The force is the actual interaction between two charged objects due to their electric fields. In simpler terms, the electric field sets up the conditions for the force to act between charged objects.


If the smaller the distance between charged objects what happens?

the stronger the electric force