Teaching Activities

Earth education activities from across all of the sites within the Teach the Earth portal.



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Results 11 - 20 of 67 matches

Unit 3: Geodetic survey of a fault scarp part of Analyzing High Resolution Topography with TLS and SfM
Bruce Douglas (Indiana University) Nicholas Pinter (University of California Davis) Nathan Niemi (University of Michigan) J. Ramon Arrowsmith (Arizona State University) Kate Shervais (UNAVCO) Chris Crosby (EarthScope)
In this unit, students will design a survey (TLS and/or SfM) of a fault scarp. After conducting the survey in the field, students will analyze the data to identify the number and magnitude of possible fault ...

Grade Level: College Upper (15-16)
Online Readiness: Online Ready, Designed for In-Person
Resource Type: Activities: Course Module, Activities:Virtual Field Trip, Activities
Subject: Geoscience:Geology:Structural Geology:Folds/Faults/Ductile Shear Zones, Geoscience:Geology:Geomorphology:Landscape Evolution, Tectonic Geomorphology, Geoscience:Geology:Tectonics, Geomorphology:Geomorphology as applied to other disciplines, Geoscience:Geology:Structural Geology:Geophysics and Structural Geology, Geography:Geospatial, Geoscience:Geology:Geomorphology:Landforms/Processes:Hillslopes, Geoscience:Geology:Geophysics:Geodesy, Geography:Physical
Activity Review: Peer Reviewed as Exemplary
On the Cutting Edge Exemplary Collection This activity is part of the On the Cutting Edge Exemplary Teaching Activities collection.
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GETSI Developed This material was developed and reviewed through the GETSI curricular materials development process.
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Unit 1-TLS: Introduction to TLS part of Analyzing High Resolution Topography with TLS and SfM
Bruce Douglas (Indiana University) Chris Crosby (UNAVCO) David Phillips (UNAVCO) Kate Shervais (UNAVCO)
Field experience using geodetic and geophysical tools provides a unique opportunity for upper-level undergraduates to learn research skills applicable to their future graduate research or career path. This unit ...

Grade Level: College Upper (15-16)
Online Readiness: Online Ready
Resource Type: Activities: Course Module, Activities:Virtual Field Trip, Activities
Subject: Geography:Physical, Physics:Optics:Lasers, Geography:Geospatial, Geoscience:Geology:Geophysics:Geodesy, Geoscience:Geology:Geomorphology:GIS/Mapping/Field Techniques
Activity Review: Peer Reviewed as Exemplary
On the Cutting Edge Exemplary Collection This activity is part of the On the Cutting Edge Exemplary Teaching Activities collection.
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GETSI Developed This material was developed and reviewed through the GETSI curricular materials development process.
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Unit 2: Geodetic survey of an outcrop for stratigraphic analysis part of Analyzing High Resolution Topography with TLS and SfM
Bruce Douglas (Indiana University) Chris Crosby (UNAVCO) Kate Shervais (UNAVCO)
Geodetic survey techniques, such as TLS and SfM featured here, have many applications in sedimentology research, including lithological identification and analysis, sediment surface topography, and sequence ...

Grade Level: College Upper (15-16)
Online Readiness: Online Ready, Designed for In-Person
Resource Type: Activities: Course Module, Activities:Virtual Field Trip, Activities
Subject: Geoscience:Geology:Geophysics:Geophysics in other disciplines, Geoscience:Geology:Sedimentary Geology:Stratigraphy:Sequence Stratigraphy, Geoscience:Geology:Geophysics:Geodesy, Geography:Geospatial, Physical
Activity Review: Peer Reviewed as Exemplary
On the Cutting Edge Exemplary Collection This activity is part of the On the Cutting Edge Exemplary Teaching Activities collection.
Learn more about this review process.
GETSI Developed This material was developed and reviewed through the GETSI curricular materials development process.
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Unit 1-SfM: Introduction to SfM part of Analyzing High Resolution Topography with TLS and SfM
Kate Shervais (UNAVCO) Bruce Douglas (Indiana University) Chris Crosby (EarthScope)
This unit introduces students to Structure from Motion (SfM). SfM is a photogrammetric technique that uses overlapping images to construct a 3D model of the scene and has widespread research applications in ...

Grade Level: College Upper (15-16)
Online Readiness: Online Ready, Designed for In-Person
Resource Type: Activities: Course Module, Activities, Virtual Field Trip
Subject: Geography:Physical, Geospatial, Geoscience:Geology:Geophysics:Geodesy, Geoscience:Geology:Geomorphology, Physics:Other Sciences:Geoscience
Activity Review: Peer Reviewed as Exemplary
On the Cutting Edge Exemplary Collection This activity is part of the On the Cutting Edge Exemplary Teaching Activities collection.
Learn more about this review process.
GETSI Developed This material was developed and reviewed through the GETSI curricular materials development process.
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Unit 4. Urban Landscapes and Water Use part of Water Sustainability in Cities
Gigi Richard, Fort Lewis College
Students are introduced to evapotranspiration (ET) and how ET varies with meteorological factors and plant factors. A pre-class video and worksheet introduce students to estimating landscape water needs from ET and ...

Grade Level: College Upper (15-16)
Resource Type: Activities: Course Module, Activities
Subject: Geography:Physical, Environmental Science:Water Quality and Quantity, Geoscience:Hydrology, Atmospheric Science, Environmental Science:Land Use and Planning, Engineering, Environmental Science:Sustainability, Geoscience:Geology:Environmental Geology
Activity Review: Peer Reviewed as Exemplary, Passed Peer Review
InTeGrate Developed This material was developed and reviewed through the InTeGrate curricular materials development process.
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Unit 3. Urban Water - Atmospheric Environment Interactions part of Water Sustainability in Cities
Marshall Shepherd, University of Georgia
Unit 3 addresses concepts related to urban-atmosphere interactions. The content explores how urban landscapes and atmospheric constituents modify or interact with the atmosphere to affect temperature, clouds, ...

Grade Level: College Upper (15-16)
Resource Type: Activities: Course Module, Activities
Subject: Environmental Science:Sustainability, Geoscience:Hydrology, Environmental Science:Water Quality and Quantity, Engineering, Geoscience:Geology:Environmental Geology, Geography:Physical, Geoscience:Atmospheric Science:Climatology :Hydrologic cycle, Environmental Science:Land Use and Planning
Activity Review: Passed Peer Review, Peer Reviewed as Exemplary
InTeGrate Developed This material was developed and reviewed through the InTeGrate curricular materials development process.
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Unit 5: How do earthquakes affect society? part of Imaging Active Tectonics
Bruce Douglas, Indiana University-Bloomington; Gareth Funning, University of California-Riverside
Unit 5 is a final exercise that can start during a lab period and carry over into work outside of the lab time. The project report will test students' abilities to synthesize and apply knowledge related to ...

Grade Level: College Upper (15-16)
Resource Type: Activities: Activities, Course Module
Subject: Environmental Science:Natural Hazards:Earthquakes, Environmental Science:Policy:Environmental Decision-Making, Geoscience:Geology:Geophysics:Geodynamics, Environmental Science:Sustainability, Geoscience:Geology:Environmental Geology, Structural Geology:Regional Structural/Tectonic Activity, Geoscience:Geology:Tectonics, Structural Geology:Folds/Faults/Ductile Shear Zones, Geoscience:Geology:Geophysics:Seismology, Geography:Geospatial, Geoscience:Geology:Structural Geology:Geophysics and Structural Geology, Geoscience:Geology:Geophysics:Geophysics in other disciplines, Geography:Physical, Geoscience:Geology:Geophysics:Geodesy
Activity Review: Passed Peer Review
GETSI Developed This material was developed and reviewed through the GETSI curricular materials development process.
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Unit 4: The phenomenology of earthquakes from InSAR data part of Imaging Active Tectonics
Bruce Douglas, Indiana University-Bloomington; Gareth Funning, University of California-Riverside
How are different types of earthquakes represented in InSAR data? How can we obtain detailed information on the earthquake source from InSAR data? How well can we resolve those details? In this unit, students ...

Grade Level: College Upper (15-16)
Resource Type: Activities: Course Module, Activities
Subject: Geoscience:Geology:Geomorphology:Landforms/Processes, Geoscience:Geology:Structural Geology:Geophysics and Structural Geology, Geoscience:Geology:Geomorphology:Landscape Evolution, Modeling/Physical Experiments, Geomorphology as applied to other disciplines, Tectonic Geomorphology, Geoscience:Geology:Structural Geology:Regional Structural/Tectonic Activity, Modeling Structural Processes, Geoscience:Geology:Geophysics:Geodesy, Computer Modeling, Geodynamics, Seismology, Geoscience:Geology:Structural Geology:Stress/Strain/Strain Analysis, Folds/Faults/Ductile Shear Zones, Geoscience:Geology:Tectonics, Environmental Science:Natural Hazards:Earthquakes, Geography:Physical
Activity Review: Passed Peer Review
GETSI Developed This material was developed and reviewed through the GETSI curricular materials development process.
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Unit 3: How to see an earthquake from space (InSAR) part of Imaging Active Tectonics
Bruce Douglas, Indiana University-Bloomington; Gareth Funning, University of California-Riverside
How can we tell what style of faulting was responsible for a particular earthquake? Especially in cases where there is limited instrumentation in a region, or where geologists have difficulty accessing the affected ...

Grade Level: College Upper (15-16)
Resource Type: Activities: Course Module, Activities
Subject: Geoscience:Geology:Structural Geology:Stress/Strain/Strain Analysis, Regional Structural/Tectonic Activity, Folds/Faults/Ductile Shear Zones, Geoscience:Geology:Geophysics:Seismology, Geography:Geospatial, Geoscience:Geology:Geophysics:Geodynamics, Geoscience:Geology:Structural Geology:Geophysics and Structural Geology, Geoscience:Geology:Geomorphology:Landforms/Processes, Environmental Science:Natural Hazards:Earthquakes, Physics:Oscillations & Waves:Instruments, Geoscience:Geology:Tectonics, Geomorphology:Geomorphology as applied to other disciplines, Landscape Evolution, Tectonic Geomorphology, Geography:Physical, Geoscience:Geology:Geophysics:Geodesy
Activity Review: Peer Reviewed as Exemplary
On the Cutting Edge Exemplary Collection This activity is part of the On the Cutting Edge Exemplary Teaching Activities collection.
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GETSI Developed This material was developed and reviewed through the GETSI curricular materials development process.
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Unit 2: Identifying faulting styles, rates and histories through analysis of geomorphic characteristics (Lidar) part of Imaging Active Tectonics
Bruce Douglas, Indiana University-Bloomington; Gareth Funning, University of California-Riverside
Can active faults be identified remotely, based upon their appearance in the landscape? How can the geomorphic features associated with active faults be used to classify and quantify fault movement? In this unit, ...

Grade Level: College Upper (15-16)
Online Readiness: Online Ready
Resource Type: Activities: Activities:Virtual Field Trip, Course Module, Activities
Subject: Geoscience:Geology:Structural Geology:Folds/Faults/Ductile Shear Zones, Geoscience:Geology:Geophysics:Seismology, Geodesy, Geography:Geospatial, Geoscience:Geology:Structural Geology:Regional Structural/Tectonic Activity, Geophysics and Structural Geology, Environmental Science:Natural Hazards:Earthquakes, Geoscience:Geology:Environmental Geology, Tectonics, Geomorphology:Tectonic Geomorphology, Geography:Physical, Geoscience:Geology:Geophysics:Geodynamics
Activity Review: Peer Reviewed as Exemplary
On the Cutting Edge Exemplary Collection This activity is part of the On the Cutting Edge Exemplary Teaching Activities collection.
Learn more about this review process.
GETSI Developed This material was developed and reviewed through the GETSI curricular materials development process.
Learn more about this review process.