It is called the Strong Force, specifically the ResidualStrong Force. The Fundamental Strong Force is what holds quarks (which make up Protons and Neutrons) together. The Residual Strong Force is mediated by virtual mesons and has an effective range of 10^(-15) Meters and gets significatly weaker beyond this point. This is the diameter of a Lead atom's nucleus- any bigger and it will become unstable, which is why all elements greater than this are radioactive.
protons,neutrons are very tiny particles that are found in the atoms.
The three subatomic particles found in an atom are the Protons, Neutrons, and Electrons. But the subatomic particles found in the nucleus of an atom are the Protons, and Neutrons. The Electrons surround the nucleus and take up most of the volume.
photons carry the electromagnetic force that holds electrons to the nucleus.mesons carry the strong force that holds protons and neutrons together in the nucleus.W & Z bosons carry the weak force that holds protons and neutrons together in the nucleus and mediate beta decay processes.quarks are inside the protons and neutrons.gluons carry the strong force that holds quarks together inside protons and neutrons.
I think protons and neutrons, but I don't know for sure. It might be, because the protons and neutrons are placed together in the nucleus? I might be wrong, but I tried:)
There quarks are held together to make up protons and neutrons. They are held together by the strong force (one of the four fundamental forces.) The strong force is created by the quarks exchanging force carrier particles called gluons.
protons, neutrons and electrons
Atoms are the basic constituents of matter. Protons, Neutrons, And Electrons are the main partilces. Electrons orbit outside nucleus. Protons and neutrons reside in the nucleus.
Original Answer:Neutrons, Protons and Electrons.New Answer:Neutrons and protons are no longer considered fundamental particles; scientists understand the properties of smaller particles that compose them. Current models describe three types of fundamental particles (quarks, leptons and bosons) of which all elements are made.
Protons and neutrons are composed of quarks, which are elementary particles that are held together by the strong nuclear force. Electrons are elementary particles that exist outside the nucleus of an atom and have a negative electric charge. Together, protons, neutrons, and electrons make up the structure of atoms.
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.
Protons and neutrons are hadrons; they are made of quarks. Protons are composed of two up quarks and a down quark, while neutrons are composed of one up quark and two down quarks. The quarks are held together by gluons. Electrons are not composed of more fundamental particles; they are categorized as leptons.they are made up of quarks
The two subatomic particles you add together to get the mass number of an atom are protons and neutrons. Protons have a positive charge, while neutrons have no charge, but together they contribute to the mass of an atom.
Some particles in an electron include protons and neutrons, which are found in the atomic nucleus. Electrons are negatively charged particles that orbit the nucleus and are part of the atomic structure. Additionally, quarks are fundamental particles that make up protons and neutrons.
All are particles of matter; quarks are the components of protons and neutrons and are considered as fundamental fermionic particles.
Elementary (fundamental) particles have not components; other particles (as protons and neutrons) are composed from other particles.
The fundamental force that holds subatomic particles together in the nucleus is the strong nuclear force. This force is responsible for binding protons and neutrons together in the atomic nucleus.
Protons and neutrons are not elementary particles. They're made of particles called quarks (which we're reasonably sure areelementary particles). These quarks are held together in hadrons such as protons and neutrons by something called the color force, also known as the strong nuclear force.The residual color force, which you can sort of think of as "left over" from holding the individual protons and neutrons together, holds the collection of protons and neutrons together in the nucleus.