The Three-Hole Bottle Demo Report 2026

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  1. Click ‘Get Form’ to open The Three-Hole Bottle Demo Report in the editor.
  2. Begin by entering your name, date, and period at the top of the form. This personalizes your report and ensures proper identification.
  3. In section 1, compare the demo bottle with the provided diagram. Use the drawing tools to sketch any differences you observe directly in the editor.
  4. For section 2, predict what will happen when the tape is removed from the top hole. You can type your prediction or illustrate it using our platform's diagram features.
  5. Continue through sections 3 to 13, describing actual outcomes and explanations for each experiment step. Utilize text boxes for detailed descriptions and checkboxes for predictions.
  6. In sections 14 to 19, repeat similar steps for horizontal bottle predictions and testing hypotheses. Document your observations clearly using our editing tools.

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2:54 4:23 And pressure the rapidly expanding extremely hot gases produced in this reaction. Try. And spreadMoreAnd pressure the rapidly expanding extremely hot gases produced in this reaction. Try. And spread apart. But because their environment is confined the pressure inside the jug quickly Rises.
This is because the high pressure air in the balloon pushes outward harder than the low pressure air in the bottle. The air in the balloon pushes out against the walls, keeping it inflated. When the hole is unplugged, air flows back into the bottle. The air pressure in the bottle increases and collapses the balloon.
When all the holes are open, the water will barely come out in the first hole, it will come out a little more in the second hole, and it will come out even more in the last hole. This is because there is not as much high pressure in the bottle due to so many holes.
These droplets are water vapor from the atmosphere condensing on the surface of the bottle. They do this because the surrounding air cools when it touches the bottle. Clouds form the same way. Water vapor in the atmosphere cools and condenses on particles in the air, creating a cloud.
The water bottle rocket demonstrates two of his laws. Every action has an equal and opposite reaction. The water moves one way and the bottle goes the opposite way. The same amount of force can accelerate a heavy object slowly or a light object more quickly.

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