If we apply pressure to the particles of matter then the particles will come closer and the inter molecular space between them will also be shortend up and they will change their state from gas to liquid.
When heat is applied to a gas contained in a cylinder, the gas molecules gain kinetic energy and move faster. This increase in speed causes the gas to expand, increasing its volume and pressure inside the cylinder. If the cylinder is sealed, the pressure will build up until the gas escapes or the cylinder bursts.
The pressure exerted by a gas is created by the constant collisions of gas molecules with the walls of the container. These collisions result in a force being applied over an area, which then gives rise to the pressure of the gas.
Gas pressure is caused by the molecules of gas striking the walls of a container, or in the case of Earth's atmosphere, the molecules of air hitting the earth. In a vacuum, there are no gas molecules. No molecules, no pressure.
The molecules collide less frequently, which normally coincides with a decrease in temperature.
An ideal gas can be both compressed and expanded. In regards to ideal gas, when the gas is expanded or compressed, the molecules will remain the same. In order for the count of molecules to change, gas would need to be added. The molecule count can also change if gas escapes.
the pressure and the temperature increases, and the volume is reduced.
is move themselves
When heat is applied to a gas contained in a cylinder, the gas molecules gain kinetic energy and move faster. This increase in speed causes the gas to expand, increasing its volume and pressure inside the cylinder. If the cylinder is sealed, the pressure will build up until the gas escapes or the cylinder bursts.
Decreasing the pressure applied to the gas (apex)
The pressure exerted by a gas is created by the constant collisions of gas molecules with the walls of the container. These collisions result in a force being applied over an area, which then gives rise to the pressure of the gas.
Gas pressure is caused by the molecules of gas striking the walls of a container, or in the case of Earth's atmosphere, the molecules of air hitting the earth. In a vacuum, there are no gas molecules. No molecules, no pressure.
The molecules collide less frequently, which normally coincides with a decrease in temperature.
The molecules collide less frequently, which normally coincides with a decrease in temperature.
What causes the pressure exerted by gas molecules on their container? idk
Gas can be compressed effectively by reducing its volume while increasing the pressure applied to it. This can be achieved by using a compressor, which forces the gas into a smaller space, causing its molecules to come closer together and increasing its pressure.
As pressure is reduced, the volume of the gas will increase. This is described by Boyle's Law, which states that pressure and volume are inversely proportional. Therefore, as pressure decreases, the gas molecules have more space to move around, causing the gas to expand.
The molecules collide less frequently, which normally coincides with a decrease in temperature.