The molecules of solid are already intact that you cannot compress them any further unless there are spaces left.
Solids and liquids are difficult compress. Gases, however, are easy; they respond to changes in temperature and volume.
Gases are easy to compress because they have particles that are far apart and have weak forces between them. When pressure is applied, the gas particles can be pushed closer together, reducing their volume. This is why gases are more compressible compared to liquids and solids, which have particles that are already close together.
Properties ofGASES: usually float, they are in bottle or balloons, they are easy to compress, they expand to fill their containers & they occupy far more space than the liquids of solids from which they form.
Gases have much less density compared to solids and liquids due to the larger spaces between gas particles. This makes gases easier to compress and to expand to fill a container.
compress it nearly impossiable to COMPRESS solids and liquids
The intermolecular forces in gases are weak.
The traits of gas are no definite volume, shape and mass. Gases are also easy to compress and can occupy far more spaces than solids and liquids from which they form.
Yes.
Fluids can be either liquids or gases. Gas is easy to compress and expands to fill its container while liquid is hard to compress.
Liquids and gases are easier to compress compared to solids because their particles are more loosely packed and have more space between them. This allows for the particles to be pushed closer together when pressure is applied, resulting in a decrease in volume. In solids, the particles are already closely packed together, making it more difficult to compress them further.
Gases are compressible because their molecules bounce off of each other instead of sticking together. The molecules of solids and liquids stick together instead of moving freely.
Yes, you can compress gases, liquids, and solids. However, liquids and solids are MUCH less compressible than gases, and for many practical purposes you can consider them "incompressible". This means that a high pressure will only cause a very small change in volume.