In this mini lesson, students use in-water profiles of historical ocean data to analyze how sea surface salinity varies with depth.
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Exploring salinity patterns is a great way to better understand the relationships between the water cycle, ocean circulation, and climate. In this mini lesson, students analyze sea surface salinity mapped plots created from the Earth System Data Explorer, paired with questions (and answers) from the Aquarius Mission. Credit: Aquarius Education
Students examine satellite images of a recently formed island to identify areas of erosion and deposition.
This mini-lesson features time-series graphs of mean salinity at the surface for the Arctic and Antarctic regions. A series of questions guides students in their analysis.
Teachers, are you looking for resources to help you engage students in data analysis related to Volcanic Eruptions? Check out this image. These data show the number of known volcanic eruptions during the Holocene epoch (about 10,000 years ago to present) at each grid point on a 1-degree-by-1-degree grid.
GLOBE protocols and learning activities that complement the Volcanic Eruptions phenomenon through hands-on investigations are detailed.
In this activity, students make a claim about the cause of ocean currents and then develop a model to explain the role of temperature and density in deep ocean currents. This lesson is modified from "Visit to an Ocean Planet" Caltech and NASA/Jet Propulsion Laboratory.
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