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Yes, you can bring a plastic water bottle on a plane, but it must be empty when you go through security. You can refill it after passing through security at a water fountain or purchase a sealed bottle of water inside the airport.
Not necessarily. You have to have a space of air in the bottle. The expansion/contraction happens because the water is heating/cooling the air. Liquids are usually considered incompressible and hence will not change their volume when heated or cooled (unless it evaporates or melts!). Assuming that you have an air space: If you have cold water in a sealed bottle that you heat up, it will expand. If you put hot water in a bottle and seal it, it will contract as it cools. If the bottle is not sealed, there will be no volume change.
If a bottle is tightly sealed and heated, the pressure inside the bottle will increase as the air or gas inside expands. This pressure build-up could potentially lead to the bottle exploding if the pressure becomes too great for the bottle to contain. It is important to be cautious when heating sealed containers to prevent accidents.
Actually, an empty sealed bottle should expand slightly as altitude increases. At the altitude where the bottle is sealed, the air pressure outside the bottle is equal to the air pressure inside the bottle. When the bottle is transported to a higher altitude, the air pressure inside the bottle is greater than the air pressure outside the bottle (In other words: There are more air molecules per unit volume inside the bottle than outside). The increased air pressure inside the bottle relative to the outside pressure causes the bottle to expand slightly. An empty bottle would not collapse as altitude increases.
As altitude increases, the air pressure decreases. The air pressure inside the sealed bottle remains constant, creating a pressure difference between the inside and outside of the bottle. This pressure difference causes the higher pressure inside the bottle to push outwards, leading to the bottle collapsing due to the lack of external pressure to balance it.
An empty glass bottle with a sealed cap floats on water because the air trapped inside the bottle provides buoyancy. The air in the bottle is less dense than water, causing the bottle to float on the surface. The sealed cap prevents water from entering the bottle, maintaining its buoyancy.
A sealed bottle partially filled with a liquid can float because the weight of the liquid inside the bottle is less than the weight of the liquid it displaces. This creates an upward buoyant force that allows the bottle to float.
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To create and maintain a sealed bottle ecosystem, start by adding soil, plants, and small organisms like worms or insects to a clear plastic bottle. Seal the bottle tightly to create a closed environment. Place the bottle in a well-lit area but away from direct sunlight. Water the plants occasionally and monitor the ecosystem for any changes. Avoid opening the bottle frequently to maintain the sealed environment.
We have to assume that the lid does not allow air to enter the plastic bottle. When the water is hot, the air above the water is also hot. When the air cools down, its volume decreases significantly. This, in turn, causes the pressure in the bottle to decrease such that atmospheric pressureis greater than the pressure inside the bottle. This causes the bottle to contract since the force exerted on the bottle due to atmospheric pressure is greater than the force exerted on the bottle due to the air pressure inside the bottle. The volume of the bottle decreases until the pressure of the air inside becomes equal to atmospheric pressure. The changes in volume, pressure and temperature can be explained by the equation pV=nRT, where p:pressure of gas V:Volume occupied by gas n:number of moles of gas R:molar gas constant T:Thermodynamic temperature of the gas
You can get condensation in your tail lights from a small leak that lets moisture inside the plastic cover. Moisture can get inside the plastic cover if it is not sealed tight or if there is a small crack.
As the air inside the sealed bottle is heated, it will expand and increase in pressure. When the air is allowed to cool, it will contract and decrease in pressure. This change in pressure can potentially cause the bottle to deform or even explode if the pressure builds up too much.