The force between two similar charges will be maximum when the charges are closest to each other, as the force between charges follows an inverse square law relationship with distance.
Similar charges repel each other due to the electric force. This occurs because like charges have the same sign of charge, either positive or negative, and so the force between them is repulsive.
Force bw two stationary charged particles is directly proportional to product of charges and inversly proportional to square of distance bw them. So max force product of force should be max and distance bw the particle should b minimum.
The force between charges is affected by the magnitude of the charges, the distance between the charges, and the medium in which the charges are located. The force increases with the magnitude of the charges and decreases with the distance between the charges. The medium can affect the force through its electric permittivity.
In a dielectric medium with constant ( k ), the force of attraction between two charges separated by a distance decreases by a factor of ( k ) compared to in air. This is due to the polarization of the medium which weakens the electric field between the charges, thereby reducing the force between them.
The electrical force between charges is strongest when the charges are closest together. The force decreases as the distance between the charges increases according to Coulomb's Law.
Similar charges repel each other due to the electric force. This occurs because like charges have the same sign of charge, either positive or negative, and so the force between them is repulsive.
Force bw two stationary charged particles is directly proportional to product of charges and inversly proportional to square of distance bw them. So max force product of force should be max and distance bw the particle should b minimum.
The force between charges is affected by the magnitude of the charges, the distance between the charges, and the medium in which the charges are located. The force increases with the magnitude of the charges and decreases with the distance between the charges. The medium can affect the force through its electric permittivity.
In a dielectric medium with constant ( k ), the force of attraction between two charges separated by a distance decreases by a factor of ( k ) compared to in air. This is due to the polarization of the medium which weakens the electric field between the charges, thereby reducing the force between them.
The electrical force between charges is strongest when the charges are closest together. The force decreases as the distance between the charges increases according to Coulomb's Law.
The force between electric charges is called the electrostatic force. It can be either attractive or repulsive, depending on the charges involved.
An electric force depends on the magnitude of the charges involved and the distance between the charges. The force increases with the magnitude of the charges and decreases with an increase in the distance between them.
The factors that affect the force between electric charges include the magnitude of the charges, the distance between the charges, and the medium through which the charges interact. The force between charges decreases as the distance between them increases, following an inverse square law. Additionally, the presence of a medium can affect the force through factors such as permittivity.
The force between the charges will increase by a factor of 2, following Coulomb's Law, which states that the force between two charges is directly proportional to the product of the charges and inversely proportional to the square of the distance between them.
The force between two charges is inversely proportional to the square of the distance between them. This means that as the distance between the charges decreases, the force between them increases, and vice versa.
The electrical field force acts between two charges, in the same way that the gravitational field force acts between two masses.
The force between charges decreases as the distance between them increases. Like charges repel each other. Oppostite charges attract each other