it doesn't. electrons only feel the electromagnetic and weak forces.
The strong nuclear force affects matter by "building" it. Matter as we generally know it is composed of atoms. Atoms are built from protons, neutrons and electrons, and protons and neutrons are built from quarks. It is the strong nuclear force that binds the quarks and gluons together to make up the protons and neutrons. This is a straight forward way to explain how the strong nuclear force (strong interaction) affects matter.
The energy involved in chemical reactions is not so strong to affect the identity of atoms; only nuclear reactions can modify an atom.
When atoms combine at the level of the electron shell, you get molecules. If the combination occurs at the nuclear level, you get nuclear fusion and the release of lots of energy.
The four forces that affect atoms are the strong nuclear force, the weak nuclear force, electromagnetic force, and gravitational force. Strong nuclear force holds protons and neutrons together in the nucleus, weak nuclear force is responsible for certain types of radioactive decay, electromagnetic force governs interactions between charged particles, and gravitational force is the attraction between objects with mass.
No - not very likely - electrons are all -ve charged. Ultimately, no-one knows what hold atoms together, although a lot is known, they just get called nuclear forces.
Nuclear reactions release significantly more energy than chemical reactions. Nuclear reactions involve changes in the nucleus of an atom and release energy from the strong nuclear force. In contrast, chemical reactions involve changes in the electron configuration of atoms and release energy from the weaker electromagnetic force.
The electrons, or the electron cloud, of an atom affect how it reacts chemically with other atoms and molecules.
Atoms are composed of a nucleus at the center, which contains protons and neutrons bound together by nuclear forces. These nuclear forces, specifically the strong force, are responsible for holding the nucleus together by overcoming the electromagnetic repulsion between positively charged protons. The arrangement and interactions of these nuclear forces play a crucial role in determining the stability and properties of an atom.
Strong nuclear forces act through gluons in the nucleus
Strong nuclear forces hold the nucleus of an atom together. Weak nuclear forces are involved when certain types of atoms break down Enjoy it for your cheat ! p.s i used it also
Covalent bonds are the strongest type of bond because they involve the sharing of electron pairs between atoms, leading to a strong connection. This sharing of electrons creates a stable arrangement for both atoms, resulting in a strong bond.
Energy stored in atoms is primarily in the form of chemical potential energy, which is related to the arrangement of electrons in the atom's electron cloud and the bonds between atoms in a molecule. This energy can be released through chemical reactions or nuclear processes.