increased
Gas molecules apply more pressure against their container when the temperature of the gas increases or when the volume of the container decreases. This is due to an increase in the average kinetic energy and frequency of collisions of the gas molecules with the container walls.
When the average kinetic energy of a gaseous system is increased, the temperature of the gas increases. This causes the gas molecules to move faster and collide more frequently with the walls of the container, resulting in increased pressure.
Since the temperature is increased, the molecules start moving to and fro... which tends increase in speed of the molecule.. such that the increase in temperature is directly proportional to the speed of the molecules by which the pressure will also increase...
When the water is heated, its molecules get additional kinetic energy due to it. This results in their increased velocity. As their kinetic energy gets increased, they try to overcome the force of attraction between themselves and eventually water changes into water vapour.
As the temperature of a gas in a container increases, the molecules in the gas gain kinetic energy and move faster, leading to more frequent and forceful collisions with the walls of the container. This increased frequency and force of collisions result in higher pressure on the walls of the container.
When the temperature is increased, the gas molecules gain kinetic energy and move faster. This causes them to collide more frequently with each other and the container walls, resulting in an increase in pressure and volume.
Gas molecules apply more pressure against their container when the temperature of the gas increases or when the volume of the container decreases. This is due to an increase in the average kinetic energy and frequency of collisions of the gas molecules with the container walls.
It is being increased, because temperature is the average kinetic energy of the object.
Yes, the temperature of a gas is a measure of the average kinetic energy of its molecules. This kinetic energy is related to the speed at which the gas molecules move, which in turn affects how hard they hit the walls of the container.
When the average kinetic energy of a gaseous system is increased, the temperature of the gas increases. This causes the gas molecules to move faster and collide more frequently with the walls of the container, resulting in increased pressure.
Since the temperature is increased, the molecules start moving to and fro... which tends increase in speed of the molecule.. such that the increase in temperature is directly proportional to the speed of the molecules by which the pressure will also increase...
The average kinetic energy of water molecules is directly proportional to the temperature of the water. As the temperature increases, the average kinetic energy of the water molecules increases as well. This energy is a measure of the motion of the molecules, with higher temperatures corresponding to higher average kinetic energies.
When the water is heated, its molecules get additional kinetic energy due to it. This results in their increased velocity. As their kinetic energy gets increased, they try to overcome the force of attraction between themselves and eventually water changes into water vapour.
The average energy is increased by heating.
The average kinetic energy of the gas molecules increases. This is because temperature is directly proportional to kinetic energy, as stated by the Kinetic Theory of Gases. Therefore, as the temperature increases, the molecules have higher kinetic energy.
Gas molecules at higher altitudes have higher kinetic energy due to increased temperature, not altitude itself. As you move higher in the atmosphere, the temperature decreases, which lowers the average kinetic energy of gas molecules.
thermometer. Temperature has to do with the average kinetic energy of molecules, and we find it with a thermometer