Teaching Activities

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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) Download a ZIP file of this Unit
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 ...

Grade Level: College Lower (13-14):College Introductory
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 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) Download a ZIP file of this Unit
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 ...

Grade Level: College Lower (13-14):College Introductory
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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Converging Tectonic Plates Demonstration part of Geodesy:Activities
Shelley E Olds, EarthScope Consortium
During this demo, participants use springs and a map of the Pacific Northwest with GPS vectors to investigate the stresses and surface expression of subduction zones, specifically the Juan de Fuca plate diving beneath the North American plate.

Grade Level: High School (9-12), Middle (6-8), College Lower (13-14)
Resource Type: Activities: Activities:Classroom Activity, Activities, Outreach Activity, Lab Activity
Subject: Geoscience:Geology:Tectonics, Geophysics:Geodesy, Environmental Science:Natural Hazards, Geography:Geospatial, Environmental Science:Natural Hazards:Earthquakes
Activity Review: Peer Reviewed as Exemplary
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Explore Real Data from an Ice Core part of Teaching Activities
Jason Cervenec, Ohio State University-Main Campus; Stacy Porter, Wittenberg University
Ice core data allow students to explore a number of patterns while learning that researchers need to gather and interpret evidence to understand Earth's past. Students will explore core data collected in ...

Grade Level: College Lower (13-14), College Upper (15-16), High School (9-12)
Resource Type: Activities: Activities:Classroom Activity, Lab Activity
Subject: Geoscience:Oceanography
Activity Review: Peer Reviewed as Exemplary
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Measuring Ground Motion with GPS: How GPS Works part of Geodesy:Activities
Shelley E Olds, EarthScope Consortium
With printouts of typical GPS velocity vectors found near different tectonic boundaries and models of a GPS station, demonstrate how GPS work to measure ground motion.GPS velocity vectors point in the direction that a GPS station moves as the ground it is anchored to moves. The length of a velocity vector corresponds to the rate of motion. GPS velocity vectors thus provide useful information for how Earth's crust deforms in different tectonic settings.

Grade Level: College Lower (13-14), Middle (6-8), High School (9-12)
Resource Type: Activities: Activities, Classroom Activity, Outreach Activity, Lab Activity
Subject: Geography:Geospatial, Geoscience:Geology:Tectonics, Geophysics:Geodesy
Activity Review: Peer Reviewed as Exemplary
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Working with Climate Change Data part of Introductory Courses:Activities
Eileen Herrstrom, University of Illinois at Urbana-Champaign
This activity takes place in a laboratory setting and requires ~1.5-2 hours to complete. Students use spreadsheets to create graphs data related to climate change: sunspots, insolation, carbon dioxide, and global ...

Grade Level: College Lower (13-14):College Introductory
Resource Type: Activities: Activities:Lab Activity, Activities
Subject: Environmental Science:Global Change and Climate:Climate Change, Geoscience:Atmospheric Science:Climate Change
Activity Review: Peer Reviewed as Exemplary
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Reef Builders through Time part of Teaching Activities
Peg Yacobucci, Bowling Green State University-Main Campus
Students will use the Paleobiology Database (PBDB) to explore the history of reef-building animals through time. They will document diversity and extinction patterns through time for seven reef-building marine ...

Grade Level: College Upper (15-16)
Resource Type: Activities: Activities:Classroom Activity, Lab Activity
Subject: Environmental Science:Oceans and Coastal Resources, Geoscience:Oceanography:Marine Resources
Activity Review: Peer Reviewed as Exemplary
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Exploring Tectonic Motions with GPS part of EarthScope ANGLE:Educational Materials:Activities
Shelley E Olds, EarthScope Consortium
Learners study plate tectonic motions by analyzing Global Positioning System (GPS) data, represented as vectors on a map. By observing changes in vector lengths and directions, learners interpret whether regions are compressing, extending, or sliding past each other. To synthesize their findings, learners identify locations most likely to have earthquakes, and defend their choices by providing evidence based on the tectonic motions from the GPS vector and seismic hazards maps. Show more information on NGSS alignment Hide NGSS ALIGNMENT Disciplinary Core Ideas History of Earth: HS-ESS1-5 Earth' Systems: MS-ESS2-2 Earth and Human Activity: MS-ESS3-2, HS-ESS3-1 Science and Engineering Practices 4. Analyzing and Interpreting Data 5. Using Mathematics and Computational Thinking 6. Constructing Explanations and Designing Solutions Crosscutting Concepts 4. Systems and System Models 7. Stability and Change 

Grade Level: College Lower (13-14), Middle (6-8), High School (9-12)
Resource Type: Activities: Activities:Classroom Activity, Lab Activity
Subject: Geoscience:Geology:Geophysics:Geodesy, Environmental Science:Natural Hazards, Geoscience:Geology:Tectonics, Environmental Science:Natural Hazards:Earthquakes
Activity Review: Peer Reviewed as Exemplary
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Volcano Monitoring with GPS: Westdahl Volcano Alaska part of EarthScope ANGLE:Educational Materials:Activities
Maite Agopian, EarthScope; Beth Pratt-Sitaula, EarthScope
Learners use graphs of GPS position data to determine how the shape of Westdahl Volcano, Alaska is changing. If the flanks of a volcano swell or recede, it is a potential indication of magma movement and changing ...

Grade Level: College Lower (13-14), Middle (6-8), High School (9-12)
Online Readiness: Online Adaptable
Resource Type: Activities: Activities:Classroom Activity, Lab Activity, Outreach Activity
Subject: Geoscience:Geology:Geophysics:Geodesy, Environmental Science:Natural Hazards:Volcanism, Environmental Science:Natural Hazards, Engineering
Activity Review: Peer Reviewed as Exemplary
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Tsunami Vertical Evacuation Structures (TVES) part of EarthScope ANGLE:Educational Materials:Activities
Bonnie Magura (Portland Public Schools), Roger Groom (Mt Tabor Middle School), and CEETEP (Cascadia EarthScope Earthquake and Tsunami Education Program)
Students learn about tsunami vertical evacuation structures (TVES) as a viable solution for communities with high ground too far away for rapid evacuation. Students then apply basic design principles for TVES and make their own scale model that they think would fit will in their target community. Activity has great scope for both technical and creative design as well as practical application of math skills. Examples are from the Pacific Northwest, USA's most tsunami-vulnerable communities away from high ground, but it could be adapted to any region with similar vulnerability.

Grade Level: College Lower (13-14), Middle (6-8), High School (9-12)
Online Readiness: Designed for In-Person
Resource Type: Activities: Activities:Classroom Activity, Project, Lab Activity
Subject: Geoscience:Oceanography:Marine Hazards, Geoscience, Environmental Science:Natural Hazards:Earthquakes, Coastal Hazards:Tsunami, Environmental Science:Natural Hazards, Engineering, Environmental Science:Natural Hazards:Mass Wasting
Activity Review: Peer Reviewed as Exemplary
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