This graphic organizer may be used to help students analyze the processes and components of Earth System phenomena.
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Students construct explanations about Earth’s energy budget by connecting a model with observations from side-by-side animations of the monthly mapped data showing incoming and outgoing shortwave radiation from Earth’s surface.
Students analyze surface air temperature anomalies to identify change with respect to different latitudes across the world.
Students collect and analyze temperature data to explore what governs how much energy is reflected.
This activity is one of a series in the collection, The Potential Consequences of Climate Variability and Change activities.
Students review a visualization showing a global view of the top-of-atmosphere longwave radiation from January 26 and 27, 2012. They review the supporting text and analyze the data in the visualization to answer questions.
Students analyze four data visualizations focused on the topic of sea level. They use a jigsaw method to explore and communicate their findings to their peers.
Students move through a series of short activities to explore and evaluate global solar radiation data from NASA satellites. In this process, students make qualitative and quantitative observations about seasonal variations in net energy input to the Earth System.
Students will observe monthly satellite data of the North Atlantic to identify relationships among key science variables that include sea surface salinity (SS), air temperature at the ocean surface (AT), sea surface temperature (ST), evaporation (EV), precipitation (PT), and evaporation minus pre
This lesson is designed to help students analyze the interaction between different cloud heights and Earth's incoming and outgoing energy.