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This activity is a short engineering design challenge to be completed by individual students or small teams. A real-world problem is presented, designing buildings for hurricane-prone areas, but in a simulated way that works in a classroom, after... (View More)

Hurricane Katrina serves as the focus for this lesson on the relationship between sea surface temperatures and hurricane intensity. Students assume the roles of Senior Science Advisors for the Louisiana Environmental Agency to research and plot the... (View More)

Audience: High school
Materials Cost: Free

In this inquiry exploration, student design an experiment to test the absorption of heat by different earth materials. Materials required include plastic water bottles, soil, sand, water, thermometers, lamp with 60 watt bulb, and stopwatch. This... (View More)

This is the first chapter of Meteorology: An Educator's Resource for Inquiry-based Learning, Grades 5-9. The chapter begins with a short history of meteorology, and grounds classroom exploration of meteorological concepts through a discussion of... (View More)

Using weather data from both satellite and ground-based observations, this lesson challenges students to select a site location for a hypothetical mountain retreat. Students must determine and then justify a building site after gathering, graphing... (View More)

Audience: Middle school, High school
Materials Cost: Free

This lesson incorporates sea surface data collected by NASA satellites. Data for three surface characteristics- height, temperature and speed- are used for several activities. Students examine the differences in speed of currents relative to... (View More)

Audience: High school
Materials Cost: Free

This background chapter reviews the basic principles of meteorology that educators need to guide inquiry activities in the classroom. Topics include structure of the atmosphere, Coriolis effect, water cycle, greenhouse effect, cyclones,... (View More)

Audience: Elementary school, Middle school, High school
Materials Cost: Free

This activity has two purposes: challenge the learner to develop a procedure for investigating a research question and to learn more about factors affecting the dynamics of air in motion. It demonstrates that warm air and cold air differ in weight... (View More)

The purpose of this investigation is to understand how the amount of water vapor in the air at various temperatures affects the way the human body responds. This is an important basic concept for understanding why one might feel either comfortable... (View More)

This experimental activity is designed to develop an understanding that air has mass. Students conduct an investigation and observe the change in the position of a bar balancing a balloon inflated with air on one end and a uninflated balloon on the... (View More)

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