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When water boils in a closed container how much pressure does it exert?

When water boils in a closed container, it exerts vapor pressure that is equivalent to the atmospheric pressure acting on the surface of the liquid. This pressure can vary depending on the altitude but typically is around 101.3 kPa at sea level.


Which of the assumptions explains the pressure which a gas exerts?

The assumption of kinetic theory that explains the pressure a gas exerts is that gas particles are in constant, random motion. This motion results in collisions between gas particles and the walls of the container, creating a force per unit area known as pressure.


How can you tell the substance in the container is a gas?

It expands to fill the container.


What effect does temperature have on gas pressure in a closed container?

In a closed container, the gas pressure means the gas atom exerts on the wall of the container. If someone add volume of the gas to the container, it gives more chance for it to collide to the wall. on the other hand, if you heat the container(also the gas inside), it gives the gas atoms energy so it runs faster, it speeds up the chance of gas exert on the wall. it can also be explained as, in a period of time, more gas atoms have exerted to the wall of container.


When you raised the tempratuere of the gas in a fixed volume container what happens to the pressure that gas exerts on the walls of the container?

The pressure will increase. if you have done solubility in chemistry it is like when you heat something to help it dissolve faster, this is because the heat gives the particles more energy to move around. Pressure is basically the force of the particles of the gas bumping against the container it is in, and as before with the dissolving, you are just giving more energy to the particles so they are bumping against the container with a greater force, therefore increasing the pressure

Related Questions

When water boils in a closed container how much pressure does it exert?

When water boils in a closed container, it exerts vapor pressure that is equivalent to the atmospheric pressure acting on the surface of the liquid. This pressure can vary depending on the altitude but typically is around 101.3 kPa at sea level.


What is gas pressure in a closed system is caused by?

Gas pressure in a closed system is caused by the constant collisions of gas molecules with the walls of the container. These collisions create a force that exerts pressure on the walls of the container. The more frequent and vigorous the collisions, the higher the gas pressure.


How gas exerts pressure on the side of its container?

The molecules of the gas are in constant motion and their collisions with the sides of the container exerts a force which is felt as pressure.


When a container of gas is cooled what happens to the gas inside?

Gas pressure decreases when cooling down a closed container.


What causes the pressure that a gas exerts on the wall of its container?

Kinetic theory explains the pressure that a gas exerts on the walls of its container. This describes elastic collisions between the atoms or molecules in the gas with the container's walls, which collectively exert a measureable pressure.


How does a gas exert pressue on the container in which it is being held?

A gas exerts pressure on the container because it is bouncing off the walls of the container at a certain force. The greater the force is the greater the pressure.


What matter exerts pressure in all directions?

A gas exerts pressure in all directions due to the constant motion of its particles. This pressure is the result of collisions between gas particles and the walls of their container.


What are examples of when it is most observable that when gas particles collide with a surface they exert pressure on that surface?

When filling a balloon with gas, the pressure increases as more gas particles collide with the inner surface of the balloon. In a closed container, the gas exerts pressure on the walls of the container due to collisions with the surface. In a tire, the pressure is a result of gas particles colliding with the inner walls of the tire.


Does the faster a fluid moves the more pressure the fluid exerts?

Yes, that is correct. The faster a fluid moves, the more pressure it exerts. This is due to the kinetic energy associated with the movement of the fluid particles, which translates into increased pressure.


How do fluids exert pressure on a container?

Fluids exert pressure on a container due to the weight of the fluid above it pushing down. This pressure is distributed evenly in all directions, causing the container to experience a force perpendicular to its surface. The pressure increases with depth, as more fluid weight is pressing down.


Which of the assumptions explains the pressure which a gas exerts?

The assumption of kinetic theory that explains the pressure a gas exerts is that gas particles are in constant, random motion. This motion results in collisions between gas particles and the walls of the container, creating a force per unit area known as pressure.


How can you tell the substance in the container is a gas?

It expands to fill the container.