The field lines repel each other and spread outward because like charges repel. The field lines become more dense between the charges due to the increased electric field strength.
When two objects with excess positive charges are brought close together, they repel each other due to the like charges. This repulsion is a fundamental property of electric charges known as the electrostatic force.
When two like charges (positive-positive or negative-negative) are brought together, they will repel each other due to the electromagnetic force. This repulsion will cause the charges to move away from each other until they reach a distance where the electromagnetic force is balanced by other forces, such as gravity or friction.
When two similar charges (positive or negative) are brought close together, they will repel each other due to the electrostatic force of repulsion between like charges. The closer they are, the stronger the repulsion will be. This is governed by Coulomb's Law, which states that like charges repel each other, while opposite charges attract.
Think about what happens when two magnets with a north pole are brought together. Ig becomes harder and harder to bring them together as the distance between them decrease. The last inch seems impossible no matter how hard you try. That's what happens when positive charges are brought together.
When opposite charges are brought together, the magnetic field is not affected. Magnetic fields are produced by moving charges, not static charges. So, bringing opposite charges together will not change the magnetic field in the vicinity.
When two objects with excess positive charges are brought close together, they repel each other due to the like charges. This repulsion is a fundamental property of electric charges known as the electrostatic force.
what happens when 2 positive charges interact
When two like charges (positive-positive or negative-negative) are brought together, they will repel each other due to the electromagnetic force. This repulsion will cause the charges to move away from each other until they reach a distance where the electromagnetic force is balanced by other forces, such as gravity or friction.
When two similar charges (positive or negative) are brought close together, they will repel each other due to the electrostatic force of repulsion between like charges. The closer they are, the stronger the repulsion will be. This is governed by Coulomb's Law, which states that like charges repel each other, while opposite charges attract.
Think about what happens when two magnets with a north pole are brought together. Ig becomes harder and harder to bring them together as the distance between them decrease. The last inch seems impossible no matter how hard you try. That's what happens when positive charges are brought together.
When opposite charges are brought together, the magnetic field is not affected. Magnetic fields are produced by moving charges, not static charges. So, bringing opposite charges together will not change the magnetic field in the vicinity.
Two negative charges that interact when they are brought together they would repulse, from each other.-Jeremy
The charges are the same. To increase the potential energy, the agent must do + work on the charges. If the agent must do + work, then the charges are resisting being brought together.
Opposite electric charges attract each other when brought close together. This attraction is due to the electromagnetic force between the charges.
When two positive objects are brought near each other, they will repel each other due to their like charges. This repulsion force is a result of the positive charges on both objects creating an electrostatic force that pushes them apart.
When two magnets are brought together, the opposite poles will attract one another, but the like poles will repel one another. This is similar to electric charges. Like charges repel, and unlike charges attract.
When two charged balloons are brought close together, they will either repel each other if they have like charges or attract each other if they have opposite charges. This is due to the electrostatic force between the charges on the balloons.