If the distance between two protons is cut in half, the force between them will increase by a factor of 4. This is because the force between two charged particles is inversely proportional to the square of the distance between them according to Coulomb's Law.
The electrostatic force between two protons is about 2.3 x 10-15 meters.
When determining the electrostatic force between two protons, factors to consider include the distance between the protons, the magnitude of their charges, and the medium through which the force is acting. The force is directly proportional to the product of the charges and inversely proportional to the square of the distance between them.
I am going to assume that these two protons are independent of any nucleus, else the answer would differ completely. If two protons in free space are moved three times as far apart, the force goes down by a factor of nine (3 squared). Force between particles goes as 1/R2.
When the distance between objects increases, the force between them decreases. This relationship is described by the inverse square law, meaning that the force decreases as the square of the distance between the objects increases.
If the distance between two objects is decreased, the force between them will increase. This is in accordance with the inverse square law, which states that the force between two objects is inversely proportional to the square of the distance between them.
The electrostatic force between two protons is about 2.3 x 10-15 meters.
When determining the electrostatic force between two protons, factors to consider include the distance between the protons, the magnitude of their charges, and the medium through which the force is acting. The force is directly proportional to the product of the charges and inversely proportional to the square of the distance between them.
I am going to assume that these two protons are independent of any nucleus, else the answer would differ completely. If two protons in free space are moved three times as far apart, the force goes down by a factor of nine (3 squared). Force between particles goes as 1/R2.
the gravitational force between them decreases.
When the distance between objects increases, the force between them decreases. This relationship is described by the inverse square law, meaning that the force decreases as the square of the distance between the objects increases.
the force of attraction get weaker the more the distance grows between magnetic fields
If the distance between two objects is decreased, the force between them will increase. This is in accordance with the inverse square law, which states that the force between two objects is inversely proportional to the square of the distance between them.
The electrical force between charges decreases as the distance between them increases. This is because the force follows an inverse square law relationship with distance, meaning that it weakens proportionally to the square of the distance between the charges.
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.
Electrons and protons attract each other with the same force, known as the electromagnetic force. This force is determined by the distance between the charges and their magnitudes, following Coulomb's law.
The gravitational force between two objects increases as the distance between them decreases. This is governed by the inverse square law, where the force is proportional to the inverse of the square of the distance between the objects. So, decreasing the distance leads to a stronger gravitational force.
As the distance between two objects decreases (i.e. they get closer together), the force of gravity increases.