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Throwing Boiling Water into Freezing Air

Boiling water and then tossing it into air temperatures of -14 degrees Fahrenheit or lower will cause the water to turn from a liquid to a gas. In the picture above, water was boiled in a pot and taken directly outside to be thrown into the -22 degrees Fahrenheit air. As water reaches its boiling point, the molecules move faster and faster, on the verge of its evaporation point. Hot water evaporates faster than cold water because the molecules in cold water are not moving near as quickly. When you try this same experiment with cold water, it will not have the same effect. Hot water freezes faster than cold water, which is known as the Mpemba effect.

Location
Spirit Lake, Iowa

Driving Question

  • Why does the water change phases so quickly?

Probing Questions

  • Do you think hot or cold water freeze faster? Why?
  • What do you think are the observable properties of water in its different states?

Classroom Suggestions

Students could:

  • Observe steam, water, snow, and ice in the classroom, record observations, and make comparisons to the image of boiling water being thrown into the very cold air (picture attached above).
  • Engage in an indoor experiment by putting a glass of cold water and a glass of hot water in the freezer and periodically check on it to see which one freezes faster. 
  • Investigate this further by trying the experiment with hot water and then trying it with cold water. The teacher would need to lead this experiment as students could potentially hurt themselves with the boiling water.
  • Observe the properties of the water before boiling, while boiling, and then after its thrown in the air. This would also need to be led by the teacher as students could potentially hurt themselves with the boiling water.

Resources

Iowa Core Alignment

2-PS1-1:

Plan and conduct an investigation to describe and classify different kinds of materials by their observable properties

Credit Info

  • Phenomena submitted by Allison Postma and Karli Olsen.
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