- strong nuclear force
- weak nuclear force
- molecular binding energy
- electrostatic force
- glue
- pressure
- magnetic force
- mortar
- grout
- cement
Particles in a solid are packed so close together that they can only vibrate in place. This is why solids have a fixed shape and volume. The strong forces of attraction between particles hold them in a fixed position.
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.
Ionic bonding holds the particles together in sodium chloride. In this type of bonding, electrons are transferred from one atom to another, resulting in the formation of charged particles called ions. Sodium donates an electron to chlorine, forming positively charged sodium ions and negatively charged chloride ions, which are attracted to each other to create the sodium chloride compound.
Liquid. The liquid state lies between the gaseous and the solid state. The cohesive (attractive) forces between the liquid particles are strong enough to keep them together but not to keep them in a fixed position.
Gluons! Although it depends what you mean by particle. In a hadron (like a proton or neutron) the 3 quarks which make it up are held together by the strong nuclear force which is mediated (or transferred) by gluons. In an atom the protons and neutrons are also held together by the strong force but it is much weaker than within the nucleon.
The particles are vibrating about their mean position.
nothing happends
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.
You think probable to a liquid.
Particles in a solid are packed so close together that they can only vibrate in place. This is why solids have a fixed shape and volume. The strong forces of attraction between particles hold them in a fixed position.
ions are the smallest particles in the molecule. these ions are attached by some attraction forces .by these forces they hold together
Plant roots help to hold soil together by forming a network that stabilizes the soil. In addition, organic matter in the soil acts as a binding agent to help keep soil particles in place. Soil structure, which is influenced by the arrangement of soil particles, also plays a role in holding soil together.
Usually some form of recycled paper, and a chemical glue to hold the paper particles together.
It is the process of cementation that occurs during the lithification process.
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.
The force that holds particles of matter together is called the electromagnetic force. This fundamental force is responsible for the attraction between charged particles, such as electrons and protons, which keeps atoms stable. Additionally, the strong nuclear force acts to hold protons and neutrons together in the nucleus of an atom. Together, these forces are essential for the structure and stability of matter.
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.