Teaching Activities
Earth education activities from across all of the sites within the Teach the Earth portal.
Grade Level
Online Readiness
Resource Type: Activities
Subject Show all
- Astronomy 27 matches
- Classical Mechanics 22 matches
- Education Practices 7 matches
- Electricity & Magnetism 4 matches
- Fluid Mechanics 1 match
- General Physics 9 matches
- Modern Physics 2 matches
- Optics 3 matches
- Oscillations & Waves 10 matches
- Other Sciences 37 matches
- Quantum Physics 1 match
- Thermodynamics & Statistical Mechanics 6 matches
Physics
47 matches General/OtherProject Show all
- CUREnet 1 match
- Curriculum for the Bioregion 1 match
- Cutting Edge 5 matches
- E-STEM 17 matches
- Earth and Space Science 2 matches
- EarthLabs 1 match
- EarthLabs for Educators 3 matches
- GETSI 19 matches
- Integrate 4 matches
- IODP School of Rock 2020 1 match
- NAGT 3 matches
- Pedagogy in Action 46 matches
- PENGUIN 3 matches
- Quantitative Skills 8 matches
- SISL 2 matches
- Starting Point-Teaching Entry Level Geoscience 22 matches
- Teach the Earth 3 matches
- Teacher Preparation 3 matches
- Teaching Computation with MATLAB 3 matches
- TIDeS 10 matches
Results 1 - 10 of 157 matches
Unit 1: Exploring Harrier Meadow, an Urban Wetland System part of Evaluating the Health of an Urban Wetland Using Electrical Resistivity
Compiled by Lee Slater, Rutgers University Newark (lslater@newark.rutgers.edu)
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Students will conduct a virtual exploration of Harrier Meadow, a salt marsh in the New Jersey Meadowlands. They will identify its vulnerability to pollution, its tidal connection to the Hackensack Estuary and the ...
Resource Type: Activities: Activities:Lab Activity, Datasets and Tools:Datasets with Teaching Activities, Real-world Examples
Subject: Physics:Other Sciences:Environmental Science, Environmental Science:Ecosystems, Water Quality and Quantity:Wetlands, Environmental Science:Waste:Waste Solid :Landfills, Environmental Science:Water Quality and Quantity:Point Source Pollution, Surface Water , Geoscience:Geology:Geophysics:Exploration Methods:Electrical Conductivity/Resistivity, Environmental Science:Sustainability
Activity Review: Peer Reviewed as Exemplary
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Unit 5: Integrated Geophysical Interpretation and Comparison with Ground Truthing part of Evaluating the Health of an Urban Wetland Using Electrical Resistivity
Compiled by Lee Slater, Rutgers University Newark (lslater@newark.rutgers.edu)
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In this unit, students explore spatial associations between the three-dimensional electromagnetic (EM) conductivity inversions and the visible patterns of Salicornia (pickleweed) introduced in Unit 1, Exploring ...
Resource Type: Activities: Activities:Lab Activity, Datasets and Tools:Datasets with Teaching Activities, Real-world Examples
Subject: Environmental Science:Water Quality and Quantity:Point Source Pollution, Chemistry:Environmental Chemistry, Environmental Science:Sustainability, Physics:Other Sciences:Environmental Science, Environmental Science:Waste:Waste Solid :Landfills, Environmental Science:Water Quality and Quantity:Wetlands, Surface Water , Geoscience:Geology:Geophysics:Exploration Methods:Electrical Conductivity/Resistivity, Environmental Science:Ecosystems
Activity Review: Peer Reviewed as Exemplary
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Unit 2: Geophysical Properties of the Subsurface part of Evaluating the Health of an Urban Wetland Using Electrical Resistivity
Compiled by Lee Slater, Rutgers University Newark (lslater@newark.rutgers.edu)
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Archie (1950) defined the term petrophysics to describe the study of the physics of rocks, particularly with respect to the fluids they contain. Although originally focused on geophysical exploration, petrophysics ...
Resource Type: Activities: Real-world Examples, Activities:Lab Activity, Datasets and Tools:Datasets with Teaching Activities
Subject: Environmental Science:Water Quality and Quantity:Point Source Pollution, Wetlands, Surface Water , Environmental Science:Waste:Waste Solid :Landfills, Environmental Science:Sustainability, Physics:Other Sciences:Environmental Science, Environmental Science:Ecosystems, Geoscience:Geology:Geophysics:Exploration Methods:Electrical Conductivity/Resistivity, Chemistry:Environmental Chemistry
Activity Review: Peer Reviewed as Exemplary
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Unit 4: The Magic of Geophysical Inversion part of Evaluating the Health of an Urban Wetland Using Electrical Resistivity
Compiled by Lee Slater, Rutgers University Newark (lslater@newark.rutgers.edu)
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This unit introduces the student to the concept of geophysical inversion, which is the process of estimating the geophysical properties of the subsurface from the geophysical observations. The basic mechanics of ...
Resource Type: Activities: Computer Applications, Datasets and Tools, Activities:Lab Activity, Real-world Examples
Subject: Environmental Science:Water Quality and Quantity:Point Source Pollution, Wetlands, Surface Water , Environmental Science:Waste:Waste Solid :Landfills, Environmental Science:Sustainability, Chemistry:Environmental Chemistry, Environmental Science:Ecosystems, Geoscience:Geology:Geophysics:Exploration Methods:Electrical Conductivity/Resistivity, Physics:Other Sciences:Environmental Science
Activity Review: Peer Reviewed as Exemplary
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Unit 3: Codorus Creek Case Study: Measuring and Interpreting Seismic Refraction Data part of Measuring Depth to Bedrock Using Seismic Refraction
Using seismic refraction data in a case study for urban renewal. Andy Parsekian, University of Wyoming, aparseki@uwyo.edu
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This unit presents an applied case study example and the associated concepts related to designing a seismic survey and analyzing the data. It discusses parts of the instrument and presents practical experience ...
Resource Type: Activities: Datasets and Tools:Datasets with Teaching Activities, Real-world Examples, Activities:Project, Classroom Activity, Lab Activity
Subject: Environmental Science, Physics:Other Sciences:Environmental Science, Physics:Oscillations & Waves:Wave Motion, Geoscience:Geology:Geophysics:Exploration Methods:Seismic refraction
Activity Review: Peer Reviewed as Exemplary
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Unit 3: Field Geophysical Measurements part of Evaluating the Health of an Urban Wetland Using Electrical Resistivity
Compiled by Lee Slater, Rutgers University Newark (lslater@newark.rutgers.edu)
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Near-surface geophysical measurements are performed by moving sensors across the earth's surface. Active geophysical sensors transmit a signal into the earth and record a returned signal that contains ...
Resource Type: Activities: Activities:Lab Activity, Datasets and Tools, Computer Applications, Real-world Examples
Subject: Environmental Science:Water Quality and Quantity:Point Source Pollution, Wetlands, Surface Water , Environmental Science:Waste:Waste Solid :Landfills, Environmental Science:Sustainability, Physics:Other Sciences:Environmental Science, Environmental Science:Ecosystems, Geoscience:Geology:Geophysics:Exploration Methods:Electrical Conductivity/Resistivity, Chemistry:Environmental Chemistry
Activity Review: Peer Reviewed as Exemplary
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Unit 3: Getting started with GPS data part of GPS, Strain, and Earthquakes
Vince Cronin, Baylor University (Vince_Cronin@baylor.edu)
Phil Resor, Wesleyan University (presor@wesleyan.edu)
This unit provides essential background information on GPS (global positioning system) and reference frames. Students learn how to access GPS location and velocity data from the Network of the Americas (NOTA). They ...
Online Readiness: Online Ready
Resource Type: Activities: Course Module, Activities
Subject: Geoscience:Geology:Structural Geology:Regional Structural/Tectonic Activity, Stress/Strain/Strain Analysis, Geography:Geospatial, Geoscience:Geology:Geophysics:Geodesy, Physics:General Physics:Vector Algebra, Geoscience:Geology:Tectonics, Geography:Physical
Activity Review: Peer Reviewed as Exemplary
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Learn more about this review process.
Unit 2: Mashing it up: physical models of deformation and strain part of GPS, Strain, and Earthquakes
Vince Cronin, Baylor University (Vince_Cronin@baylor.edu)
Phil Resor, Wesleyan University (presor@wesleyan.edu)
Students gain an intuitive understanding of strain and deformation through a series of physical model activities using everyday materials such as bungee cords, rubber bands, fabric, index cards, silly putty, sand, ...
Resource Type: Activities: Course Module, Activities, Classroom Activity:Short Activity:Demonstration
Subject: Geoscience:Geology:Structural Geology:Structural Visualizations, Geoscience:Geology:Geophysics:Geodesy, Geoscience:Geology:Structural Geology:Stress/Strain/Strain Analysis, Microstructures, Deformation Mechanisms, Fabrics, Rheology/Behavior of Materials, Modeling Structural Processes, Physics:General Physics:Vector Algebra
Activity Review: Passed Peer Review
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Unit 6: Applying GPS strain and earthquake hazard analyses to different regions part of GPS, Strain, and Earthquakes
Vince Cronin, Baylor University (Vince_Cronin@baylor.edu)
Phil Resor, Wesleyan University (presor@wesleyan.edu)
Students select their own set of three stations in an area of interest to them, conduct a strain analysis of the area between the stations, and tie the findings to regional tectonics and societal impacts in a 5–7 ...
Resource Type: Activities: Activities, Course Module
Subject: Geoscience:Geology:Structural Geology:Structural Visualizations, Stress/Strain/Strain Analysis, Geoscience:Geology:Geophysics:Seismology, Geodynamics, Geodesy, Geoscience:Geology:Structural Geology:Regional Structural/Tectonic Activity, Geophysics and Structural Geology, Environmental Science:Natural Hazards:Earthquakes, Physics:General Physics:Vector Algebra, Geoscience:Geology:Environmental Geology, Tectonics, Geomorphology:Landscape Evolution, Geography:Geospatial, Physical
Activity Review: Passed Peer Review
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Unit 4: GPS and infinitesimal strain analysis part of GPS, Strain, and Earthquakes
Vince Cronin, Baylor University (Vince_Cronin@baylor.edu)
Phil Resor, Wesleyan University (presor@wesleyan.edu)
Students work with GPS velocity data from three stations in the same region that form an acute triangle. By investigating how the ellipse inscribed within this triangle deforms, students learn about strain, strain ...
Resource Type: Activities: Activities, Course Module
Subject: Geoscience:Geology:Structural Geology:Folds/Faults/Ductile Shear Zones, Stress/Strain/Strain Analysis, Structural Visualizations, Geoscience:Geology:Geophysics:Geodynamics, Geography:Geospatial, Geoscience:Geology:Structural Geology:Regional Structural/Tectonic Activity, Geoscience:Geology:Geomorphology:GIS/Mapping/Field Techniques, Physics:General Physics:Vector Algebra, Environmental Science:Natural Hazards:Earthquakes, Geoscience:Geology:Tectonics, Geomorphology:Landscape Evolution, Geography:Physical, Geoscience:Geology:Geophysics:Geodesy
Activity Review: Peer Reviewed as Exemplary
Learn more about this review process.
Learn more about this review process.