Teaching Activities

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

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College Lower (13-14)
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Results 1 - 10 of 76 matches

Metamorphic Rock Identification part of Teaching Activities
Katryn Wiese, City College of San Francisco
Metamorphic Rock Identification online (developed for remote learning during COVID-19 pandemic); students will explore the various characteristics of metamorphic rocks and then apply them to identify unknowns.

Grade Level: High School (9-12), College Lower (13-14)
Online Readiness: Online Ready
Resource Type: Activities: Activities:Lab Activity
Subject: Geoscience:Geology:Igneous and Metamorphic Petrology, Igneous and Metamorphic Petrology:Metamorphic Rocks
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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Geology of Yosemite Valley part of Cutting Edge:Enhance Your Teaching:Teaching with Online Field Experiences:Activities
Nicolas Barth, University of California-Riverside
This is a four-part module designed to be flexible in duration and student grade-level. (1) Geology of Yosemite Valley Virtual Field Trip. A 43-stop web-based Google Earth tour with embedded views, hyperlinked ...

Grade Level: Graduate/Professional, College Upper (15-16), College Lower (13-14), High School (9-12)
Online Readiness: Online Ready
Resource Type: Activities: Activities:Classroom Activity, Writing Assignment, Lab Activity, Project
Subject: Geoscience:Geology:Geomorphology:GIS/Mapping/Field Techniques, Geoscience:Geology:Structural Geology
Activity Review: Peer Reviewed as Exemplary
Online Field Experience Exemplary Collection This activity is part of the Teaching with Online Field Experiences Exemplary collection
See the activity page for details.

Measuring the Inclination and Declination of the Earth's magnetic field with a smartphone part of Cutting Edge:Enhance Your Teaching:Teaching with Online Field Experiences:Activities
Avradip Ghosh, University of Houston-University Park
The poles of the Earth's magnetic field are not precisely aligned with the geographic north and south poles and, in fact, vary continuously. This activity introduces to students the Earth's magnetic ...

Grade Level: College Lower (13-14), High School (9-12)
Online Readiness: Online Ready
Resource Type: Activities: Activities:Virtual Field Trip, Classroom Activity, Field Activity, Project, Lab Activity
Subject: Geoscience:Geology:Geophysics:Magnetism/Paleomag
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.

Reasons for the Seasons part of GEODE:GEODE Teaching Resources
Declan De Paor, Old Dominion University; Steve Whitmeyer, James Madison University
Reasons for the seasons (RFTS for short) is an interactive learning resource that leverages the popular Google Earth virtual globe. It is designed to help students and members of the public visualize and understand ...

Grade Level: College Upper (15-16), College Lower (13-14)
Online Readiness: Online Ready
Resource Type: Activities: Activities:Classroom Activity, Activities, Lab Activity, Virtual Field Trip
Subject: Geoscience:Lunar and Planetary Science
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.

Feldspar Minerals and Triangle Diagrams 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 learn how to read a triangle or ternary diagram. They determine physical properties of feldspars and interpret two ...

Grade Level: College Lower (13-14):College Introductory
Online Readiness: Online Ready
Resource Type: Activities: Activities, Lab Activity
Subject: Geoscience:Geology:Igneous and Metamorphic Petrology:Thermodynamics and Phase Equilibria
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.

Igneous Rocks and Triangle Diagrams 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 observe igneous rock compositions and plot them on triangle diagrams, normalize rock compositions using a ...

Grade Level: College Lower (13-14):College Introductory
Online Readiness: Online Ready
Resource Type: Activities: Activities, Lab Activity
Subject: Geoscience:Geology
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.

Working with Point Clouds in CloudCompare and Classifying with CANUPO part of Cutting Edge:Enhance Your Teaching:Teaching with Online Field Experiences:Activities
Sharon Bywater-Reyes, University of Northern Colorado
This exercise will walk you through 1) basic operations and use in CloudCompare, and 2) use of an Open-Source plugin in CloudCompare called CANUPO (http://nicolas.brodu.net/en/recherche/canupo/) that allows for ...

Grade Level: College Lower (13-14), College Upper (15-16)
Online Readiness: Online Ready
Resource Type: Activities: Activities:Lab Activity, Classroom Activity, Virtual Field Trip, Field Activity
Subject: 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.
Learn more about this review process.

Topographic differencing: Earthquake along the Wasatch fault part of Teaching Activities
Chelsea Scott, Arizona State University at the Tempe Campus
After a big earthquake happens people ask, 'Where did the earthquake occur? How big was it? What type of fault was activated?' We designed an undergraduate laboratory exercise in which students learn how ...

Grade Level: College Lower (13-14), College Upper (15-16), Graduate/Professional
Online Readiness: Online Ready
Resource Type: Activities: Activities:Lab Activity
Subject: Geoscience:Geology:Structural Geology:Regional Structural/Tectonic Activity, Geoscience:Geology:Geophysics:Geodesy, Geoscience:Geology:Geomorphology:Tectonic Geomorphology, Geoscience:Geology:Tectonics, Geomorphology:GIS/Mapping/Field Techniques, Environmental Science:Natural Hazards:Earthquakes
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.

How Do We Know Where an Earthquake Originated? part of EarthScope ANGLE:Educational Materials:Activities
Jeffrey Barker (Binghamton University) & Michael Hubenthal (IRIS)
Students use real seismograms to determine the arrival times for P and S waves and use these times to determine the distance of the seismic station from the earthquake. Seismograms from three stations are provided to determine the epicenter using the S – P (S minus P) method. Because real seismograms contain some "noise" with resultant uncertainty in locating arrival times of P and S waves, this activity promotes appreciation for uncertainties in interpretation of real scientific data.

Grade Level: College Lower (13-14), Middle (6-8), High School (9-12)
Online Readiness: Online Ready
Resource Type: Activities: Activities:Lab Activity, Classroom Activity
Subject: Geoscience:Geology:Geophysics:Seismology, Environmental Science:Natural Hazards:Earthquakes, 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.

Evolution of Extinct Animals part of Teaching Activities
Phil Novack-Gottshall, Benedictine University
A classroom/lab activity using the Paleobiology Database to produce and interpret diversity curves for various groups of important and popular extinct animals, such as trilobites, ammonites, and dinosaurs. Activity ...

Grade Level: College Lower (13-14), High School (9-12)
Online Readiness: Online Ready
Resource Type: Activities: Activities:Lab Activity, Classroom Activity
Subject: Geoscience:Paleontology:Extinction and Diversity
Activity Review: Peer Reviewed as Exemplary, Passed Peer Review
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.