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In this lesson, students download cloud coverage and surface data from the NASA Clouds and Earth’s Radiant Energy System (CERES) Student’s Cloud Observations On-line (S’COOL) student observation database website, then use a spreadsheet program... (View More)

Audience: Middle school
Materials Cost: Free

Students will examine seasonal cloud coverage data in North Carolina (or their local area), and analyze data to determine whether there is a correlation between season, cloud cover and type of cloud most prevalent during each season. Step-by-step... (View More)

In this data analysis activity, students will compare the amount (percentage) of snow cover along selected latitudes. Step-by-step instructions for use of the MY NASA DATA Live Access Server (LAS) guide students through selecting a data set,... (View More)

Keywords: Authentic data use
Audience: Middle school
Materials Cost: Free

This lesson uses NASA satellite data to contrast amounts of cloud coverage over different climate regions in Africa. It introduces the circulation pattern of Hadley Cells and the band of convergence and convection called the Intertropical... (View More)

In this data activity, students explore trends in cloud coverage over Toronto, Ontario, Canada and learn about different cloud types. Step-by-step instructions for use of the MY NASA DATA Live Access Server (LAS) guide students through selecting a... (View More)

Keywords: Authentic data use
Audience: 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)

This is a lesson about the formation of glaciers, ice layering and stratigraphy, and the cryosphere and cryobotics. Learners will collect evidence of layering, explore the science story that layering tells, study snow and ice for insights into... (View More)

The purpose of this investigation is to understand the change that takes place when water condenses from a gas to a liquid, and how a change in pressure affects this transformation. Materials needed for the experiment include a large (2L) soda... (View More)

This lesson is designed to help students gain knowledge in graphing a microset of data, then using the graphs to investigate the relationship between volcanic activity and the presence of atmospheric aerosols. This lesson is from the MY NASA DATA... (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)