The force between nucleons is called nuclear force.
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.
The strong atomic force holds protons (and neutrons) together in the nucleus.
The Strong nuclear force is what holds the protons and neutrons together in an atoms nucleus. Think of a gorilla with an atom of two protons and two neutrons together and his hands holding the atoms together.
The force that holds protons and neutrons together in an atomic nucleus is called the strong nuclear force.
The strong nuclear force is the universal force that acts only on protons and neutrons within the nucleus. It is responsible for binding them together to form the atomic nucleus.
The nucleus of an atom is composed of protons and neutrons, which are held together by the strong nuclear force. The protons carry a positive charge, while neutrons have no charge. Electrons orbit around the nucleus in specific energy levels.
Atomic nucleus contain protons and neutrons.
Protons and neutrons are arranged in the nucleus of an atom in a tightly packed manner, with protons positively charged and neutrons neutral. They are held together by the strong nuclear force.
Hi, Ill try to answer this question. In the nucleus, there are two main forces which act. These are; 1. Strong nuclear force & 2. Electrostatic forces The electrostatic force, is the repulsive force which acts between the positively charged protons. This is because like charges repel. (You can see this in action if you place 2 magnets with the north poles facing one another and try to move them together.) The strong nuclear force, is a short-range force, which acts to hold the nucleus together. As the number of nucleons (neutrons and protons) increases, so does the strong nuclear force. As such, it is really the strong nuclear force which holds the nucleus together. Hope this helped.
"strong nuclear force"
Protons and neutrons strongly attract each other when they are located close together within the nucleus of an atom due to the strong nuclear force. This force overcomes the repulsive electromagnetic force between protons, allowing them to stay together in the nucleus.
Nuclear particles are held together by the strong nuclear force, which is one of the four fundamental forces of nature. This force is responsible for binding protons and neutrons together in the atomic nucleus.