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  1. Learn how to make and fly a soda bottle rocket with this fun and easy project. Explore the concepts of Newton's third law, air resistance, and aerodynamics with different features like fins, nose cone, and parachute.

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  2. Apr 18, 2024 · To build a bottle rocket, start by rolling a piece of paper into a cone and covering the outside of it with duct tape. Then, attach the cone to the bottom of an empty plastic bottle and cut out 4 cardboard triangles to make your rocket's fins.

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    • The STS-124 rocket lifts off with a powerful blast. (NASA courtesy photo) Rockets are vehicles that obtain their forward thrust from a reaction engine.
    • Rockets eject mass backward at high speed to achieve a forward push. Did a firefighter ever let you squirt water out of his fire hose? If so, you probably experienced the same thing.
    • Water being squirted out of a water hose at high speed creates a strong push in the opposite direction on the hose and on the person(s) holding the hose.
    • As you add air to a water bottle, pressure will build up inside. As a result, the plastic walls and the liquid inside the bottle will feel a bigger push.
  3. Aug 15, 2018 · Learn how to make a water bottle rocket using a plastic bottle, water, cork, pump and cardboard fins. Find out how air pressure and Newton's Third Law make the rocket launch and fly upwards.

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  4. Vinegar. Small squares of tissue paper or toilet paper. Funnel. Pour about an inch worth of vinegar into the bottom of the bottle. Put about a teaspoon of baking soda onto the tissue square and fold it up (this will create a time-release packet). This is most definitely an outside project! You can get as messy as you want.

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  5. www.nasa.gov › stem-content › water-rocket-constructionWater Rocket Construction - NASA

    May 2, 2023 · Learn how to build a bottle rocket from a two-liter soda bottle and other materials. This activity is part of the Rockets Educator Guide and suitable for grades K-12.

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  7. Dec 5, 2020 · Design and build a water bottle rocket that flies straight and in the desired direction. Explain center of drag, and center of mass, and draw their relationships to each other for a straight-flying rocket. Explain why water is more effective than air for propelling bottle rockets.

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