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Q: How do the air particles exert a pressure on the inside of a balloon?
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How do gas particles exert pressure on their container?

'This is because the air particles are bumpinginto each other and the walls. When this happens it causes pressure on the walls because of the speed the air particles are moving


Why are you not crushed under atmospheric pressure?

The fluids in your body exert pressure and prevent the atmospheric pressure from closing in. Fluids exert pressure on a container the particles collide with each other and the sides of the container.


The fact that light can exert a pressure on matter suggests that it is made of particles called?

The particles of light are called photons.


Why does the air in a balloon condense in refrigerator?

This is fully explained by the Ideal Gas Laws. Temperature, volume, and pressure are all directly inter-related in a gas. Lower temperature creates less pressure which creates a smaller balloon. If you really want to know why this happens, you need to understand what temperature is and what a gas is. Temperature is actually the average kinetic energy of the constituent particles, and a gas is a collection of independently moving atoms or molecules, so, imagine all these molecules of air, whose speed is measured by their temperature. The faster they move, the more force they exert when they collide with the balloon. The more force they exert, the more inflated the balloon will be. It makes perfect sense.


Why does a sealed gas balloon expand when it is brought from ground level to the top of a mountain?

the air is less dense at altitude, therefore it exerts less pressure. the gas in a sealed balloon will exert the same pressure regardless of it's altitude, so, with less outside pressure to overcome, the balloon will expand.

Related questions

How the air particles exert a pressure on the inside of the balloon?

Particles in gases, like the gas inside the balloon, move around a lot, fill up their container and collide a lot, both with each other and the walls of the container (ie - the balloon). Pressure is just how many collisions there are. So high pressure is when the particles collide with the walls of the container loads, and low pressure is when they don't collide with it very much. So the gaseous particles collide with the inside of the balloon, creating pressure. Hope that helps :)


How do gas particles exert pressure on their container?

'This is because the air particles are bumpinginto each other and the walls. When this happens it causes pressure on the walls because of the speed the air particles are moving


How do fluids exert exert pressure?

All of the forces exerted by the individual particles in a fluid combine to make up the pressure exerted by the fluid.


Why are you not crushed under atmospheric pressure?

The fluids in your body exert pressure and prevent the atmospheric pressure from closing in. Fluids exert pressure on a container the particles collide with each other and the sides of the container.


The fact that light can exert a pressure on matter suggests that it is made of particles called?

The particles of light are called photons.


The fact that light can exert a pressure on matter suggests that it is made of particles called .?

The particles of light are called photons.


Why does your head not get crushed with atmospheric pressure?

Like the air inside a baloon, the fluids inside your body exert pressure. This pressure inside your body acts against atmospheric pressure. I was looking for the answer for a school assignment! Textbooks help!


Why does the air in a balloon condense in refrigerator?

This is fully explained by the Ideal Gas Laws. Temperature, volume, and pressure are all directly inter-related in a gas. Lower temperature creates less pressure which creates a smaller balloon. If you really want to know why this happens, you need to understand what temperature is and what a gas is. Temperature is actually the average kinetic energy of the constituent particles, and a gas is a collection of independently moving atoms or molecules, so, imagine all these molecules of air, whose speed is measured by their temperature. The faster they move, the more force they exert when they collide with the balloon. The more force they exert, the more inflated the balloon will be. It makes perfect sense.


Why does a sealed gas balloon expand when it is brought from ground level to the top of a mountain?

the air is less dense at altitude, therefore it exerts less pressure. the gas in a sealed balloon will exert the same pressure regardless of it's altitude, so, with less outside pressure to overcome, the balloon will expand.


When you blow a balloon what makes it bigger?

The elastic material of common balloons is inflated by a higher pressure of the air inside the balloon. The pressurized air molecules exert a greater force against the inside of the balloon, pushing it outward against the resistance of the elastic material. Non-elastic balloons must have a pressure equal to or greater than the outside air. What makes elastic helium balloons rise is that the helium (although having a higher interior pressure) is much less dense than the outside air, and is displaced by the air and forced upward.


When you blow into a balloon what makes it bigger?

The elastic material of common balloons is inflated by a higher pressure of the air inside the balloon. The pressurized air molecules exert a greater force against the inside of the balloon, pushing it outward against the resistance of the elastic material. Non-elastic balloons must have a pressure equal to or greater than the outside air. What makes elastic helium balloons rise is that the helium (although having a higher interior pressure) is much less dense than the outside air, and is displaced by the air and forced upward.


What causes a gas to exert pressure when confined in a container?

Assuming constant amount of gas and temperature, pressure will increase as volume decreases. Conversely, pressure will decrease as volume increases. If you squeeze on a filled balloon, the volume decreases. The pressure of the air on each square inch of the balloon increases, which causes it to eventually pop if the pressure gets too high. Assuming constant amount of gas, a temperature change will already change the volume of the gas. As temperature rises, the gas expands, causing more pressure to be exerted on the balloon. Assuming constant temperature, adding more gas also increases the volume and thus increases the pressure.