Well scientifically speaking the strong force causes protons and neutrons to be attracted to each other. Attractive forces between the protons and neutrons keeps the nucleus together. This is one of the four basic forces in nature.But when the protons and neutrons start to move farther apart the strong force gets weaker, and weaker the farther they move and will be repelled.
The residual effect of the strong force, also known as the nuclear force, is the force that holds a nucleus together. It is constantly opposed by the electromagnetic force repelling the protons in the nucleus.
The opposite force to the strong nuclear force is the electromagnetic force. The strong nuclear force holds atomic nuclei together, while the electromagnetic force governs interactions between charged particles.
The strong nuclear force is a fundamental force that binds protons and neutrons within an atomic nucleus. It is charge-independent because it acts the same way on protons (positively charged) and neutrons (no charge), overcoming the electromagnetic repulsion between protons. This force is responsible for the stability of atomic nuclei.
Yes, all atoms have the strong force in their nucleus.
The residual strong force. The strong force (or color force) is what holds quarks together to form protons and neutrons. The residual strong force then holds the protons and neutrons together in the nucleus.
There are four properties of force: gravitation, electromagnetism, the weak interaction, and the strong interaction.
The two properties that determine how strong of a force gravity will exert on two objects are the mass of the objects and the distance between their centers. The greater the mass of the objects, the stronger the gravitational force will be between them. Additionally, the closer the objects are to each other, the stronger the gravitational force will be.
The nuclear force energy is very strong. Their binding energy is also large.
The strongest force known is called the "strong force" or "strong nuclear force".
"Strong" properties refer to a material's ability to withstand force or stress without breaking, while "hard" properties refer to a material's resistance to deformation or indentation. In other words, strength is about withstanding force, while hardness is about resisting penetration or scratching.
Strong force is transmitted by gluons.
The strong nuclear force, aka the strong interaction.
The four fundamental forces of nature are gravity, the electromagnetic force, the strong force (strong nuclear force or strong interaction), and the weak force(weak nuclear force or weak interaction).
That force is known as the "strong force", the "nuclear force", or the "residual strong force".
The strong force is one of the four fundamental forces of nature, responsible for binding protons and neutrons together in the atomic nucleus. It is the strongest force among the four fundamental forces but has a short range, acting only at distances on the scale of atomic nuclei. The strong force is carried by particles called gluons and is characterized by its ability to overcome the electromagnetic repulsion between positively charged protons within the nucleus.
All atoms have strong force. Strong force holds the universe together. Without it, we would be annihilated.
it is strong