Students will analyze and interpret graphs to compare the flow of (shortwave) energy from the Sun toward China over the course of a year on cloudy versus clear days. Students will draw a conclusion and support it with evidence.
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In this mini lesson, students explore the relationship of chlorophyll and solar radiation by analyzing line graphs from the North Atlantic during 2016-2018.
In this activity, students will model the geometry of solar eclipses by plotting a few points on a piece of graph paper, and using quarters and a nickel to represent the Sun and Moon (not to scale).
Examine (daytime) surface temperature and solar radiation received at locations found near similar latitudes using NASA Data.
In this activity, students will model the geometry of solar eclipses using quarters to represent the Sun and Moon (not to scale).
GLOBE protocols and learning activities that complement exploration of the Flow of Energy and Matter are outlined.
In this activity, students will analyze past and future eclipse data and orbital models to determine why we don’t experience eclipses every month.
Students will analyze surface temperature and solar radiation data to construct explanations about the relationship of seasons and temperature to the amount of solar energy received on Earth’s surface.
My NASA Data has recently released several new resources, StoryMaps, for use in educational settings.
Ricky is a Software Engineer who works for the NASA Clouds and the Earth's Radiant Energy System (CERES) Project with the group that specializes in clouds. He develops software to ensure that the satellite data collected about clouds are accurate and accessible.