Students observe how air quality changes over time, for a selected location, using data from the United States Environmental Protection Agency (EPA).
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Students analyze surface air temperature anomalies to identify change with respect to different latitudes across the world.
Students will examine air temperature data collected through The GLOBE Program during the 2017 US solar eclipse.
Students analyze a graph that illustrates the change in global surface temperature relative to 1951-1980 average temperatures.
Students observe the map image, individually, looking for changes in surface air temperatures (using data displayed, unit of measure, range of values, etc.) and noticeable patterns.
By investigating the data presented in a model that displays extreme summer air temperatures, students explain energy transfer in the Earth system and consider the impact of excessive heat on local communities.
Students review a video that models the global impact of smoke from fires to develop an understanding of how models can be used to interpret and forecast phenomena in the Earth System.
Use the AirNow.gov website to determine current air quality in US locations, as well as other information.
Compare images from two volcanic eruptions in the Kuril Islands which occurred ten years apart and complete a graphic organizer for impacts on different Earth spheres.
Students compare climographs for two locations to determine the most likely months to expect the emergence of mosquitoes in each location.