In the gas state, molecules have weak intermolecular forces of attraction. These forces are much weaker compared to the forces in the liquid or solid states, allowing gas molecules to move freely and independently of each other.
When gas is released in a container the gas molecules spread all over the container and show that they have least force of attraction.
The state that has molecules packed very loosely is the gas state. In the gas state, molecules are not confined to a specific shape or volume and move freely in all directions.
The physical state in which matter has rapidly moving molecules is called a gas. In the gas state, the molecules move freely and quickly, resulting in a high degree of kinetic energy. This state is characterized by molecules that are spaced far apart from each other.
The transition from the gas phase to the liquid phase is called "condensation."
The molecules gain energy so they break up the solid structure and move more freely, however, they still have some attraction. More energy is required to weaken this attraction This molecule to molecule attraction is weakest in gaseous state of matter
The attraction forces between gas molecules are very small,but it could be increased by applying high preesure and low temperature. Thus it could be concluded that attraction between gas molecules leads to its liquifaction.
Because the attraction between gas molecules is negligible so its easy for gas molecules to move free
For an ideal gas, there is assumed to be no force of attraction between molecules. This assumption allows for simplification of the gas behavior under certain conditions, such as low pressure and high temperature. In reality, real gases do experience weak forces of attraction between molecules, but these are considered negligible in the ideal gas model.
When gas is released in a container the gas molecules spread all over the container and show that they have least force of attraction.
The state that has molecules packed very loosely is the gas state. In the gas state, molecules are not confined to a specific shape or volume and move freely in all directions.
The particles start to give away and they break away from the attraction. This can be seen when boiling water, because when it boils there are bubbles and that is a sign that a new state is being made (gas) and that the particles are breaking away
Because the force of attraction among the molecules are less, moreover vanderwall force of attraction is also weak.
hey why did u got doubt like that air can compressed because air is nothing but a matter consists of gas molecules. they are stable when they are in free state i.e.when occupied more space they are compressible due to existence of attraction between gas molecules
The state of matter where the molecules are further apart is the gas state. Gas molecules have a lot of kinetic energy, allowing them to move freely and take up a lot of space compared to liquids and solids.
Low temperatures are required to reduce the kinetic energy of the chlorine gas molecules, causing them to come closer together and form a liquid. High pressures help to further compress the gas molecules, increasing their attraction and facilitating the liquefaction process. Together, low temperatures and high pressures create conditions where the intermolecular forces dominate over the kinetic energy, allowing the gas to turn into a liquid state.
The physical state in which matter has rapidly moving molecules is called a gas. In the gas state, the molecules move freely and quickly, resulting in a high degree of kinetic energy. This state is characterized by molecules that are spaced far apart from each other.
The state of matter depends on the number of atoms / molecules in a given area / volume. If there are more number of molecules, then it will be in solid state and if it is very less molecules then gases. This inturn may depend on the intermolecular force of attraction between the atoms in them. In the case of solids, the force of attraction is high and hence there are more number of molecules present.