"Force the substance into a smaller volume" is pretty much the definition of "compress".
When a gas is compressed, its volume will decrease, its pressure will increase, and its temperature may increase.
Lifting a piston on a cylinder of gas shows the relationship between volume and pressure of the gas. As the piston is lifted, the volume of the gas increases, which causes the pressure to decrease. This demonstrates Boyle's Law, which states that the pressure of a gas is inversely proportional to its volume when temperature is held constant.
if its possible then the reason could be the expansion of high pressured helium from tank to balloon is large.
- if the cylinder is sealed by welding, the same volume- if the cylinder is open - any initial gas
To calculate the volume of compressed air, use the ideal gas law equation: PV = nRT, where P is the pressure of the compressed air, V is the volume, n is the number of moles of gas, R is the ideal gas constant, and T is the temperature. This formula allows you to calculate the volume of the compressed air if you know the pressure, temperature, and quantity of air.
The formula to calculate the volume of a compressed gas cylinder is V r2h, where V is the volume, r is the radius of the cylinder, and h is the height of the cylinder.
When a gas is compressed, its volume will decrease, its pressure will increase, and its temperature may increase.
If a piston is used to decrease the volume of a contained gas, the pressure of the gas will increase, following Boyle's Law. This is because as the volume decreases, the gas particles become more confined and collide with the container walls more frequently, resulting in an increase in pressure.
Oxygen gas in a syringe can be compressed to a smaller volume because gases are highly compressible compared to liquids and solids. When the volume of the syringe is reduced, the gas molecules are forced closer together, leading to an increase in pressure and a decrease in volume.
Yes, when a gas is compressed it could form into a solid or liquid substance.
As pressure increases, the molecules of the gas are compressed, reducing the amount of space between molecules, which results in a decreased volume.
If the gas is compressed into the cylinder, yes. However if the gas is already pre-compressed (to the point of liquefaction) and simply decanted into the cylinder, there will be little to no heating of the receptacle cylinder.
For a fixed mass of gas, the gas will become compressed by pressure and its volume will decrease. This is why pressurized gas containers explode when breached: the container breach eliminates the barrier between the gas compressed by the container and the outside air; the pressurized gas immediately increases the volume it occupies in the explosive decompression until its density equals the density of the regular atmosphere.
The compression will result in a lowering in the average distance between molecules of the gas. Imagine that the cylinder is like that in an internal combustion engine, with a piston inside the cylinder. The compression is accomplished by pressing the gas into a reduced volume. The number of gas molecules remains the same. With the same number of molecules in a reduced volume, the gas molecules are pressed more closely together, lowering the average distance between the gas molecules.
Because as there is a pressure between the gas molecules and as the molecules have more the force of attraction between as they gets closer to each and as the gas is compressed the molecules have less intermolecular force,the pressure the pressure increases pressure increases the volume of the gas gets decrease and according to Boyle's law also V( Volume) is inversely proportional to the temperature V =i\p(inversely propotional) Boyle's law
Lifting a piston on a cylinder of gas shows the relationship between volume and pressure of the gas. As the piston is lifted, the volume of the gas increases, which causes the pressure to decrease. This demonstrates Boyle's Law, which states that the pressure of a gas is inversely proportional to its volume when temperature is held constant.
Yes, particles in a gas can be compressed into a smaller volume by reducing the space between them. This will increase the pressure of the gas as the particles are forced closer together.