The strong nuclear force acts only on neutrons and protons in the nucleus of an atom. The opposite would be a weak nuclear force.
electrostatic forces
protons and neutrons repel each other. The protons in the nucleus repel each other...APEX
The positive part of the nucleus is the protons, which have a positive charge. Protons are located within the nucleus of an atom, along with neutrons. The positive charge of the protons helps hold the nucleus together through electromagnetic forces.
The atomic nucleus contains protons and neutrons, which are held together by strong nuclear forces. The number of protons in the nucleus determines the element, while the combination of protons and neutrons determines the isotope of that element. Additionally, the nucleus is surrounded by a cloud of electrons that orbit around it.
The two particles in a nucleus are protons and neutrons. Protons carry a positive charge, while neutrons have no charge. Together, they make up the majority of an atom's mass and are responsible for holding the nucleus together through strong nuclear forces.
Neutrons help stabilize the nucleus by balancing the repulsive forces between positively charged protons. The presence of neutrons adds an attractive nuclear force that overcomes the electrostatic repulsion between protons, contributing to the stability of the nucleus. Additionally, neutrons play a crucial role in preventing spontaneous decay of the nucleus by helping to balance the number of protons and neutrons in the nucleus.
Most stable nuclei have a roughly equal number of protons and neutrons, which helps to balance the forces that hold the nucleus together. This balance of protons and neutrons helps minimize the nucleus's potential energy, making it more stable.
The strong nuclear force overcomes the electromagnetic repulsion between protons and binds protons and neutrons together in the nucleus of an atom. This force is attractive and acts over a very short range, keeping the nucleus stable.
Mesons hold protons and neutrons together by mediating the strong nuclear force between them. This force is carried by the exchange of mesons between quarks inside the protons and neutrons. The strong nuclear force is responsible for binding protons and neutrons together in the atomic nucleus.
The universal forces that hold atoms together are the electromagnetic force and the strong nuclear force. Electromagnetic force attracts negatively charged electrons to positively charged protons in the nucleus, while the strong nuclear force keeps protons and neutrons bound together in the nucleus.
The nucleus of an atom is located at the center of the atom. It contains protons and neutrons, which are held together by strong nuclear forces. The nucleus makes up the majority of the atom's mass and has a positive charge due to the protons it contains.
The central core of an atom is called the nucleus. It is made up of protons and neutrons, which are held together by strong nuclear forces. Electrons orbit around the nucleus in specific energy levels.