The electric force between two charged particles will increase by a factor of 4 if one particle's charge is increased by a factor of 2. This is because the electric force is directly proportional to the product of the two charges.
The electric force between two charged particles decreases by a factor of 4 when the distance between them is increased by a factor of 2. The electric force is inversely proportional to the square of the distance between the charged particles.
The electric force between two charged particles increases by a factor of 4 if one particle's charge is increased by a factor of 2. This is because the electric force is directly proportional to the product of the charges involved.
The electric potential energy between two charged particles is directly proportional to the product of their charges. If one particle's charge is increased by a factor of 2, the potential energy between the two particles will increase by a factor of 2 as well.
The electric force between the two charged particles would increase by a factor of 2. Electric force is directly proportional to the charge of the particles involved, so doubling the charge of one particle would result in the force between them also doubling.
It is increased by a factor of 2
The electric force between two charged particles decreases by a factor of 4 when the distance between them is increased by a factor of 2. The electric force is inversely proportional to the square of the distance between the charged particles.
The electric force between two charged particles is inversely proportional to the square distance between them.Accordingly, it is reduced by a factor of 9
The electric force between two charged particles increases by a factor of 4 if one particle's charge is increased by a factor of 2. This is because the electric force is directly proportional to the product of the charges involved.
The electric potential energy between two charged particles is directly proportional to the product of their charges. If one particle's charge is increased by a factor of 2, the potential energy between the two particles will increase by a factor of 2 as well.
The electric force between the two charged particles would increase by a factor of 2. Electric force is directly proportional to the charge of the particles involved, so doubling the charge of one particle would result in the force between them also doubling.
It is increased by a factor of 2
Charged particles exert an electric force on other charged particles in their vicinity. This force can either be attractive (between particles of opposite charge) or repulsive (between particles of the same charge).
electric force
An electric force of attraction would occur between positively and negatively charged particles. Positively charged particles are attracted to negatively charged particles, according to the principle of opposites attract in electric forces.
The relationship between work and electric potential energy influences the movement of charged particles in an electric field. When work is done on a charged particle, its electric potential energy changes, affecting its behavior in the electric field. Charged particles will move in a direction that minimizes their electric potential energy, following the path of least resistance. This relationship helps determine the trajectory and speed of charged particles in an electric field.
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.
charged particles, causing them to change direction or accelerate. This deflection is a result of the interaction between the electric field and the charged particles' electric charge. The strength and direction of the deflection depend on the properties of the electric field and the charged particle.