they are malleable
yes viscosity is a property of gas
Argon, nitrogen, and oxygen are all gases at room temperature and pressure. Additionally, these three elements are all part of Group 18 (noble gases), Group 15, and Group 16 of the periodic table, respectively.
Yes, gases show the property of diffusion. Diffusion is the movement of gas molecules from an area of high concentration to an area of low concentration, and this process occurs naturally in gases due to their high kinetic energy and constant motion.
Liquids and gases both take the shape of their container. This is because the particles in liquids and gases are free to move past one another, allowing them to flow and conform to the shape of their container.
Gases have a low density, allowing them to be compressed into a smaller volume at high pressures. This property allows gases to be stored at high concentrations in a bottle of air freshener.
the noble gases have their valence shell complete
Diffusion occur in all phases.
All contain a full outer shell of electrons
The ability to flow and take the shape of their container is a property of liquids and gases that solids do not have. This property is known as fluidity.
yes viscosity is a property of gas
Yes, all gases can be compressed because gases are highly compressible compared to liquids and solids. When gases are subjected to pressure, they can be compressed into a smaller volume, increasing their density.
No, magnesium is not a property of noble gases. Magnesium is a chemical element classified as an alkaline earth metal, while noble gases are a group of elements known for their stable and unreactive nature.
Average Kinetic Molecular Energy
they can flow
Argon, nitrogen, and oxygen are all gases at room temperature and pressure. Additionally, these three elements are all part of Group 18 (noble gases), Group 15, and Group 16 of the periodic table, respectively.
They can all be easily compressed, they all expand to fill their containers and they all occupy much more space than the liquid or solid that they were formed from.
they conform to the shape of whatever they are put into.