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What do objects that have the same charge do?

Objects with the same charge repel each other due to the electromagnetic force. Like charges, such as two positively charged objects or two negatively charged objects, will push away from each other.


If two of the same objects are positively charged but one has double the amount of charge what would happen when the objects are brought together?

The object with more charge will repel the object with less charge due to the electrostatic force. This is because like charges repel each other. The objects will not come into contact and will instead push away from each other.


What do objects with the same electric charge do?

Objects with the same electric charge repel each other, meaning they push away from each other due to the force of electrostatic repulsion. This is because like charges (positive-positive or negative-negative) repel each other according to the fundamental principle of electrostatics.


How do objects with the same charge behave differently then objects with opposite charges?

Objects with the same charge repel each other, causing them to push away from each other. Objects with opposite charges attract each other, resulting in them being pulled together. This behavior is due to the interaction of electric fields surrounding the charged objects.


Why do two objects with the same charge always repel each other?

No. There are two kinds of charge, which we call 'positive' and 'negative' charge. Two charged objects will attract each other only if they have opposite kinds of charge. If they both have the same kind, then they repel each other.


What type of interaction is there between objects with the same electrical charge?

Objects with the same electrical charge repel each other due to the electrostatic force. This force is caused by the interaction of the electric fields surrounding the charged objects, causing them to push away from each other.


When two objects have the same charge they attract to each other?

No, when objects have the same charge they do not attract. Take two balloons, for example. When you rub them on your head, then hold them near each other, they move away from each other, which is called repelling. They repel because the charge of the two balloons are the same. They picked up the positive or negative charges from your hair.


What does like charges mean?

Two objects that both have a net positive electrical charge, or that both have a net negative charge, will push each other away.


How will two negative objects interact?

Two negative objects typically repel each other due to the like charges they possess. This repulsion is governed by the principles of electromagnetism, where objects with the same charge push each other away.


What does like charges repel mean?

Two objects that both have a net positive electrical charge, or that both have a net negative charge, will push each other away.


What is an orbit and why do objects stay in them?

Objects in space go around other objects, in elipses. They stay there because of the forc of gravity of the central object. Without it, they would go away, in a straight line.Objects in space go around other objects, in elipses. They stay there because of the forc of gravity of the central object. Without it, they would go away, in a straight line.Objects in space go around other objects, in elipses. They stay there because of the forc of gravity of the central object. Without it, they would go away, in a straight line.Objects in space go around other objects, in elipses. They stay there because of the forc of gravity of the central object. Without it, they would go away, in a straight line.


How do objects with the same charge behave when they come close to one another?

Objects with the same charge will repel each other when they come close to one another due to the electrostatic force of repulsion between like charges. This is because like charges carry the same type of charge, either positive or negative, and thus there is a force that pushes them away from each other to minimize the energy of the system.