Not enough information. You not only need to know the distance, but also the electric charge - not just that it is "positive", but the exact amount of charge.
No. The electric force in this case decreases.
The attractive force between two point charges decreases with the square of the distance between them. So, if the distance is doubled (from 12cm to 24cm), the force will decrease by a factor of 4. Therefore, at a separation of 24cm, the attractive force will be 5N.
In case of electric force there are both repulsive and attractive. But in case of gravitational force, only attractive force. Electrical force between electric charges. Gravitational force between masses. In electric force we use a constant known as permittivity of the medium. But in gravitational force a universal constant known as Gravitational constant is used. Electrical force is very much greater than gravitational force.
Relative permittivity or dielectric constant of a medium is defined as the ratio of force between two charges separated by a certain distance in air or vacuum to the force between the same charges separated by the same distance in the medium.According to American Heritage Dictionary:permittivitySYLLABICATION: per·mit·tiv·i·tyPRONUNCIATION: PERM eh TIV eh TEENOUN: Inflected forms: pl. per·mit·tiv·i·tiesA measure of the ability of a material to resist the formation of an electric field within it. Also called dielectric constant, relative permittivity.
The region in which a charged particle still experiences an electric force is called the electric field. An electric field is created by charged objects and extends into the space around them, influencing other charged particles within that region. The strength and direction of the electric field can vary depending on the distance from the source charge.
The electric force will be quarter of its strength.
When the distance between the objects is halved to 0.5 meters, the electric force between them increases by a factor of 4. This is because the electric force between two charged objects is inversely proportional to the square of the distance between them according to Coulomb's law.
The position of zero force if positive and negative charges are separated by a distance would be at half of the separation distance.
Electric force is a force at a distance, not a contact force. It is a fundamental force of nature that acts between charged particles without the need for physical contact. The strength of the electric force is determined by the magnitude of the charges and the distance between them.
The Coulomb electric force equation is given by F = k * |q1 * q2| / r^2, where F is the force between two point charges q1 and q2 separated by a distance r, and k is the Coulomb constant.
Electric force can act at a distance, but is stronger when objects are closer. the electric force is larger the closer the two objects are The electric force varies with the distance between the charges. The closer they are, the stronger the force. The farther apart they are, the weaker the force.
According to Coulomb's law, the electric force between two charged objects is inversely proportional to the square of the distance between them. This means that as the distance between the objects increases, the electric force between them decreases. Conversely, as the distance decreases, the electric force increases.
The electric force, the magnetic force and gravity, all act at a distance.The electric force, the magnetic force and gravity, all act at a distance.The electric force, the magnetic force and gravity, all act at a distance.The electric force, the magnetic force and gravity, all act at a distance.
In Columbus' Law, the separation distance affects the electric force inversely: as the distance between charges increases, the electric force decreases. This relationship is described by the inverse square law, which means that the force decreases exponentially as the distance increases.
The electric force between two objects decreases to one-fourth of the original force if the distance between them is doubled. This is because the electric force is inversely proportional to the square of the distance between the charges.
If you double the distance between two objects, the electric force between them decreases by a factor of four. This is because electric force is inversely proportional to the square of the distance between the charges.
Doubled