Are you referring to the Black and white bottle experiment? There are a few websites that talk about it with a Google search.
If you are referring to the black bottle experiment where you pour "a lot" of water in and when you repeatedly pour the water, only "a little" water comes out...then sorry. Can't help you there. But if your teacher did the experiment with you, he/she probably won't tell you how it works, but he/she will be willing to talk to you about your ideas.
The variables in a blobs in a bottle experiment may include the type and amount of materials used to create the blobs, the size and shape of the bottle, the temperature of the water in the bottle, and the amount of time elapsed to observe the blobs forming and reacting. These variables can be manipulated to study how they affect the formation and movement of the blobs in the bottle.
The blobs in a bottle science experiment demonstrates the principle of density. When two liquids with different densities, such as oil and water, are mixed together in a bottle, they form separate blobs due to their immiscibility. The blobs created in this experiment help to visualize how substances with different densities do not mix together and instead form distinct layers.
The purpose of performing the egg in the bottle experiment is to demonstrate the effects of air pressure. When the heat from the burning paper causes the air inside the bottle to expand and then contract, it creates a vacuum that sucks the egg into the bottle.
Water is better for the tornado bottle experiment because it creates the desired swirling effect when the bottle is spun rapidly. Vinegar may not form visible swirls as effectively as water due to its lower viscosity.
The hypothesis for an egg in a bottle experiment could be that when the fire heats the air inside the bottle, the air expands and escapes. This creates a lower air pressure inside the bottle, allowing the egg to be forced into the bottle due to the higher air pressure outside.
"Blobs In A Bottle" is the name of a simple science experiment that creates a lava lamp effect inside of a soda bottle. The instructions for the experiment can be found at: www.sciencebob.com. Click on "Experiments"
Carbon dioxide(gas) is released in this reaction.
The Black Math Experiment was created in 2004.
It is a common physics experiment where the crumpled paper inside the bottle creates a seal, trapping air. When you blow into the bottle, the air pressure increases, causing the paper to move outward due to the pressure difference between the inside and outside of the bottle. This experiment demonstrates principles of air pressure and pushes the paper out of the bottle.
The variables in a blobs in a bottle experiment may include the type and amount of materials used to create the blobs, the size and shape of the bottle, the temperature of the water in the bottle, and the amount of time elapsed to observe the blobs forming and reacting. These variables can be manipulated to study how they affect the formation and movement of the blobs in the bottle.
The purpose is to avoid any contamination of the reagent in the bottle.
How does changing the speed at which the bottle is spun affect the size or duration of the tornado created inside it?
your experiment would be to state the problem,make an hypothesis,research,analyze,experiment,then comes your conclusion
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bottle hitting u in the face when launching when it comes down hits u on the head
The blobs in a bottle science experiment demonstrates the principle of density. When two liquids with different densities, such as oil and water, are mixed together in a bottle, they form separate blobs due to their immiscibility. The blobs created in this experiment help to visualize how substances with different densities do not mix together and instead form distinct layers.
A plastic soda bottle is a good choice for an air pressure experiment with hardboiled eggs. It is durable, clear for observation, and easy to manipulate for creating changes in air pressure within the bottle. Make sure to use a bottle with a cap that can be sealed tightly to control the air pressure effectively.