The largest force acting with in an atom is the van der wells force. It is several orders of magnitude stronger the the weak nuclear forces. It really depends on what sub atomic particles you are talking about.
Yes, atomic nuclei are extremely dense. They contain positively charged protons and neutrons packed tightly together in a small volume, which gives them a high density. This dense packing of particles is what helps hold the nucleus together through strong nuclear forces.
Electromagnetic forces exist between particles, such as protons and electrons, which hold atoms together. Strong nuclear forces also act between particles within the nucleus of an atom, binding protons and neutrons together.
Forces can hold groups of atoms together in molecules or solids. These forces include covalent bonds, ionic bonds, metallic bonds, and van der Waals forces. They determine the structure, stability, and properties of the material.
The particles are vibrating about their mean position.
When strong forces are not strong enough to hold an unstable nucleus together, the nucleus can undergo radioactive decay. This can result in the release of particles or energy, such as alpha or beta particles, to stabilize the nucleus.
Atomic physicists do not fully understand why all atomic particles stay together within an atom because the forces that hold them together, such as the strong nuclear force, are complex and not yet fully understood.
Intra-atomic forces refer to the forces that hold together the components within an atom, such as the nucleus and electrons. These forces include electromagnetic forces between protons and electrons, as well as forces that hold subatomic particles together, like the strong nuclear force and weak nuclear force.
Strong forces are able to hold atomic nuclei together because they are powerful enough to overcome the electromagnetic repulsion between positively charged protons in the nucleus. These strong forces, also known as nuclear forces, are responsible for binding protons and neutrons together to form stable atomic nuclei.
Particles are held together by several forces, including the electromagnetic force, weak nuclear force, and strong nuclear force. The electromagnetic force is responsible for holding atoms together through interactions between charged particles. The weak nuclear force is involved in nuclear decay processes, such as beta decay. The strong nuclear force is responsible for binding protons and neutrons together in atomic nuclei.
ions are the smallest particles in the molecule. these ions are attached by some attraction forces .by these forces they hold together
Yes, atomic nuclei are extremely dense. They contain positively charged protons and neutrons packed tightly together in a small volume, which gives them a high density. This dense packing of particles is what helps hold the nucleus together through strong nuclear forces.
Electromagnetic forces exist between particles, such as protons and electrons, which hold atoms together. Strong nuclear forces also act between particles within the nucleus of an atom, binding protons and neutrons together.
The most common bonds are ionic and covalent.
Forces can hold groups of atoms together in molecules or solids. These forces include covalent bonds, ionic bonds, metallic bonds, and van der Waals forces. They determine the structure, stability, and properties of the material.
The particles are vibrating about their mean position.
You think probable to a liquid.
The force responsible for giving a solid its shape is typically intermolecular forces between its particles. These forces hold the particles together in a specific arrangement, which determines the solid's shape.