Teaching Activities
Earth education activities from across all of the sites within the Teach the Earth portal.
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Geography > Geospatial
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GETSI
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Unit 3: Glaciers, GPS, and Sea Level Rise part of Measuring the Earth with GPS
Karen M. Kortz (Community College of Rhode Island)
Jessica J. Smay (San Jose City College)
GPS data can measure bedrock elevation change in response to the changing mass of glaciers. In this module, students will learn how to read GPS data to interpret how the mass of glaciers in Alaska and Greenland is ...
Resource Type: Activities: Course Module, Activities
Subject: Geography:Geospatial, Geoscience:Geology:Geophysics:Geodesy, Geoscience:Geology:Geomorphology:Landforms/Processes:Glacial/Periglacial
Activity Review: Peer Reviewed as Exemplary
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Unit 1: Collecting GPS Data part of Measuring the Earth with GPS
Karen M. Kortz (Community College of Rhode Island)
Jessica J. Smay (San Jose City College)
GPS data can measure vertical and horizontal bedrock motion caused by a variety of geologic processes, such as plate movement and the changing amount of water and ice on Earth's surface. In this unit, students ...
Resource Type: Activities: Course Module, Activities
Subject: Geography:Geospatial, Geoscience:Geology:Geophysics:Geodesy
Activity Review: Peer Reviewed as Exemplary
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Unit 2: Earthquakes, GPS, and Plate Movement part of Measuring the Earth with GPS
Karen M. Kortz (Community College of Rhode Island)
Jessica J. Smay (San Jose City College)
GPS data can measure bedrock motion in response to deformation of the ground near plate boundaries because of plate tectonics. In this module, students will learn how to read GPS data to interpret how the bedrock ...
Resource Type: Activities: Course Module, Activities
Subject: Geography:Geospatial, Geoscience:Geology:Geophysics:Geodesy, Environmental Science:Natural Hazards:Earthquakes
Activity Review: Peer Reviewed as Exemplary
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Unit 4: Groundwater, GPS, and Water Resources part of Measuring the Earth with GPS
Karen M. Kortz (Community College of Rhode Island)
Jessica J. Smay (San Jose City College)
GPS data can measure ground elevation change in response to the changing amount of groundwater in valleys and snow cover in mountains. In this module, students will learn how to read GPS data to interpret how the ...
Resource Type: Activities: Activities, Course Module
Subject: Geoscience:Hydrology:Ground Water:Water supply/water resource evaluation, Geoscience:Geology:Geophysics:Geodesy, Geography:Geospatial, Environmental Science:Water Quality and Quantity:Groundwater , Geoscience:Hydrology:Ground Water, Environmental Science:Water Quality and Quantity
Activity Review: Peer Reviewed as Exemplary
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Unit 3: Static GPS/GNSS Methods part of High Precision Positioning with Static and Kinematic GPS
Ben Crosby, Idaho State University
The application of Global Navigation Satellite Systems (GNSS) in the earth sciences has become commonplace. GNSS data can produce high-accuracy, high-resolution measurements in common reference frames. Static GNSS ...
Resource Type: Activities: Activities, Course Module
Subject: Geoscience:Geology:Geomorphology:GIS/Mapping/Field Techniques, Geoscience:Geology:Geophysics:Geodesy, Geography:Geospatial, Geoscience:Geology:Geomorphology:Landforms/Processes:Mass Movement, Geoscience:Geology:Geomorphology:Landforms/Processes
Activity Review: Passed Peer Review
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Unit 2.2: Change Detection with Kinematic GPS/GNSS part of High Precision Positioning with Static and Kinematic GPS
Ben Crosby, Idaho State University
Though it may be difficult to perceive, landscapes are constantly changing form and position. High-precision GNSS is one of a handful of techniques capable of quantifying these changes and is a key component of ...
Resource Type: Activities: Course Module, Activities
Subject: Geography:Geospatial, Geoscience:Geology:Geomorphology:Landforms/Processes:Mass Movement, Geoscience:Geology:Geomorphology:GIS/Mapping/Field Techniques, Geoscience:Geology:Geophysics:Geodesy
Activity Review: Peer Reviewed as Exemplary
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Unit 1: GPS/GNSS Fundamentals part of High Precision Positioning with Static and Kinematic GPS
Ben Crosby, Idaho State University
The constellations of satellites orbiting our planet enable high-precision positioning not just for consumer or survey applications but also for geoscience research such as detecting plate motions, landslide ...
Resource Type: Activities: Course Module, Activities
Subject: Geoscience:Geology:Geomorphology:GIS/Mapping/Field Techniques, Geoscience:Geology:Geophysics:Geodesy, Geography:Geospatial
Activity Review: Peer Reviewed as Exemplary
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Unit 2.1: Measuring Topography with Kinematic GPS/GNSS part of High Precision Positioning with Static and Kinematic GPS
Ben Crosby, Idaho State University
Kinematic GNSS surveys can provide a rapid means of collecting widely distributed, high-precision topographic data. The advantages of this technique over optical instruments such as a total station are that it only ...
Resource Type: Activities: Course Module, Activities
Subject: Geoscience:Geology:Geomorphology:GIS/Mapping/Field Techniques, Geoscience:Geology:Geophysics:Geodesy, Geography:Geospatial
Activity Review: Peer Reviewed as Exemplary
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Unit 2: Kinematic GPS/GNSS Methods part of High Precision Positioning with Static and Kinematic GPS
Ben Crosby, Idaho State University
The application of Global Navigation Satellite Systems (GNSS) in the earth sciences has become commonplace. GNSS data can be collected rapidly and compared in common reference frames. Real-time kinematic (RTK) GNSS ...
Online Readiness: Designed for In-Person
Resource Type: Activities: Course Module, Activities
Subject: Geoscience:Geology:Geomorphology:GIS/Mapping/Field Techniques, Geography:Geospatial, Geoscience:Geology:Geophysics:Geodesy
Activity Review: Peer Reviewed as Exemplary
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Unit 3: Monitoring groundwater storage with GPS vertical position part of Measuring Water Resources
Bruce Douglas, Indiana University-Bloomington; Eric Small, University of Colorado at Boulder
This unit shows how GPS records of surface elevation can be used to monitor groundwater changes. Students calculate secular trends in the GPS time series and then use the original and detrended records to identify ...
Resource Type: Activities: Activities, Course Module
Subject: Geoscience:Geology:Environmental Geology, Geoscience:Hydrology:Ground Water:Geology of groundwater occurrence, Geoscience:Geology:Geomorphology:Geomorphology as applied to other disciplines, Landforms/Processes, Geoscience:Atmospheric Science:Meteorology:Extreme weather, Geoscience:Geology:Geophysics:Geodesy, Geoscience:Hydrology:Ground Water:Water cycle/groundwater-surface water interface, Groundwater flow, Environmental Science:Natural Hazards:Subsidence, Extreme Weather:Drought, Environmental Science:Water Quality and Quantity:Groundwater , Geoscience:Hydrology:Ground Water:Water and society, policy, and management, Water supply/water resource evaluation, Well hydraulics, Geography:Geospatial, Geoscience:Hydrology:Ground Water: Unsaturated zone/recharge
Activity Review: Peer Reviewed as Exemplary
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