Gas.
Like Oxygen, Carbon Dioxide and Helium etc.
Ionic bond.
The energy required to bond particles of matter together is known as bond energy. This energy is stored in the chemical bonds that hold atoms together in molecules. Bond energy is a measure of the strength of these bonds and is released when the bonds are broken.
In the solid state, particles are tightly packed and have the least amount of kinetic energy. In the liquid state, particles are less tightly packed and have more kinetic energy than in the solid state. In the gas state, particles are far apart and have the most kinetic energy.
The attractive force between like particles is called cohesion. It is the force that holds similar particles together within a substance.
Particles in the state of matter known as a gas are loosely connected, similar to beads on a string. Gases have high kinetic energy and their particles move freely and independently of each other.
The particles in a covalent bond are attracted to one another because positively charged and negatively charged particles are drawn together.
Particles with opposite charges form bond. The ionic bond formed is stronger.
A gas has particles which have no bond together.
molecule
A gas has particles which have no bond together.
Ionic bond.
The state of matter that has the strongest bond is called a solid. Liquids are another state of matter, however, they provide the weakest bond.
Energy is released when the bond between nuclear particles is broken.
hydrogen bonds bond them
The state of matter that has the strongest bond is called a solid. Liquids are another state of matter, however, they provide the weakest bond.
It's called an ionic bond. It usually results from a metal, which forms a positive ion, reacting with a non-metal, which forms a negative ion.
Iron is so hard and strong because bond between the particles of iron is very strong. We know that every matter is made up of small particles. These particles are joined with each other by a force called bond. So as much the bond between the particle strong as the matter will be strong.