Petrology Activities and Examples Collection
This is a collection of educational resources used in igneous and metamorphic petrology courses. The collection includes lab exercises, classroom activities, problem sets and more. The purpose of this collection is to allow for the sharing of materials within the community of petrology teachers. You can
- Add your teaching materials to the collection.
- Browse the entire collection of teaching activities by topic, using the Table of Contents.
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Subject: Igneous and Metamorphic Petrology Show all
Results 1 - 15 of 111 matches
Metamorphic Rock Identification part of Teach the Earth: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.
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Igneous Rocks Identification part of Teach the Earth:Teaching Activities
Katryn Wiese, City College of San Francisco
Igneous Rocks Identification online (developed for remote learning during COVID-19 pandemic); students will explore the various characteristics of igneous rocks and then apply them to identify unknowns.
Petrographic Microscope Home Kit for Smartphones part of Teach the Earth:Teaching Activities
Lynne Elkins, University of Nebraska at Lincoln
This is a useful set of design instructions to build a home microscope kit for illustrating the properties of polarizing/petrographic microscopes with a smartphone camera. It can be used for any number of class ...
Remote Mapping and Analytical data integration: Coal Creek quartzite and Ralston shear zone, Colorado part of Cutting Edge:Enhance Your Teaching:Teaching with Online Field Experiences:Activities
Kevin Mahan, University of Colorado at Boulder
This is a combination of an online mapping project (igneous and metamorphic terrain) and a subsequent module for group collaboration with associated analytical datasets (e.g., geochronology and microstructure). ...
See the activity page for details.
Isopach Maps part of GET Spatial Learning:Teaching Activities
Basil Tikoff, University of Wisconsin-Madison
Students complete several short, in-class exercises related to understanding isopach maps. We use Play-Doh models to illustrate features revealed in the isopach maps and to support student understanding of the ...
Virtual Field Trip to the Blue Ridge Province, Central Virginia part of Cutting Edge:Enhance Your Teaching:Teaching with Online Field Experiences:Activities
Steve Whitmeyer, James Madison University
The Mid-Atlantic Appalachian Orogen Traverse is a series of 4 virtual field trips that cross the Blue Ridge and Valley and Ridge geologic provinces in northwestern Virginia and northeastern West Virginia. This ...
Field and Laboratory Project - Volcanology and Petrology of Interbedded Andesitic Lava Flows and Volcaniclastic Rocks from Washburn Volcano, Yellowstone National Park part of NAGT:Our Work:Past Projects:Teaching in the Field:Field Trip Collection
Todd Feeley, Montana State University
Todd Feeley, Montana State University Intended Audience: This field trip was part of the 2003 Teaching Petrology in the 21st Century workshop. It is designed for use by undergraduate or graduate courses in ...
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Obsidian Dome Outcrop Tour part of Teach the Earth:Magma Labs
Jessica Larsen, University of Alaska Fairbanks
Virtual outcrop tour of a part of Obsidian dome in California. This Google Earth based tour shows photos and outcrop/process descriptions of the different lithologies in the Obsidian dome in Eastern California. ...
Plate Tectonics as Expressed in Geological Landforms and Events part of MARGINS Data in the Classroom:MARGINS Mini-Lessons
Jeff Ryan, University of South Florida-St. Petersburg
This activity seeks to have students analyze global data sets on earthquake and volcano distributions toward identifying major plate boundary types in different regions on the Earth. A secondary objective is to familiarize students with two publicly available resources for viewing and manipulating geologically-relevant geospatial data: Google Earth(TM) and GeoMapApp.
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What Goes into Making Volcanic Arc Magmas, and How Do We Know It? part of MARGINS Data in the Classroom:MARGINS Mini-Lessons
Jeff Ryan, University of South Florida-St. Petersburg
This activity is a directed reading exercise focused on papers that have been key to our understanding of the major source contributors to subduction zone volcanic rocks.
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Petrographic Problem Solving Assignments part of Teaching Examples
Jeffrey Templeton, Western Oregon University
Petrographic problem-solving (PPS) assignments are a series of mini-projects in which students conduct two-week scientific investigations on thin sections and hand samples selected by the instructor. For each PPS ...
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A field trip to explore rock formation and tectonics of southern California part of Geoscience in the Field:Activities
Andy Barth, Indiana University-Purdue University-Indianapolis
In this contribution, we provide an example of a one-day trip to examine Proterozoic metamorphic and Mesozoic intrusive igneous rocks that are easily accessible along and near roads in southern California. The ...
Integrating Scientific Discovery in a Field-based Igneous & Metamorphic Petrology Course part of Undergraduate Research:Case Studies
David Gonzales, Fort Lewis College
Show caption HideShip Rock at Sunset. Research-intensive courses in the field put students in settings where they can experience the geology, environment, and culture. DetailsDavid Gonzales, Fort Lewis College ...
How Does Surface Deformation at an Active Volcano Relate to Pressure and Volume Change in the Magma Chamber? part of Pedagogy in Action:Partners:Spreadsheets Across the Curriculum:Physical Volcanology:Examples
Peter LaFemina, Pennsylvania State University-Main Campus
SSAC Physical Volcanology module. Students build a spreadsheet to examine and apply the Mogi model for horizontal and vertical surface displacement vs. depth and pressure conditions in the magma chamber.
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What is the Relationship between Lava Flow Length and Effusion Rate at Mt Etna? part of Pedagogy in Action:Partners:Spreadsheets Across the Curriculum:Physical Volcanology:Examples
chuck connor, University of South Florida-St. Petersburg
SSAC Physical Volcanology module. Students use Excel to determine a log-log relationship for flow length vs effusion rate and compare it with a theoretical expression for the maximum flow length.
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