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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, ...

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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 ...

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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 ...

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Introduction to Modeling Folds part of GET Spatial Learning:Teaching Activities
Basil Tikoff, University of Wisconsin-Madison
Students make Play-Doh models of synclines and anticlines, including one of a plunging fold. They use these models to answer questions about what these structures look like in map view and cross-sectional view.

Project X part of Teach the Earth:Teaching Activities
George H. Davis, The University of Arizona
Each student independently analyzes a geologic cross-section (i.e., X-section) and the journal article within which it is contained. Students select from a list prepared by the instructor. Each student prepares ...

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Wakemup Pluton part of GET Spatial Learning:Teaching Activities
Basil Tikoff, University of Wisconsin-Madison
Students work through a set of questions about a geologic map of an igneous intrusion and surrounding rock units. These questions focus students' attention on the topography, geomorphology, lithology, and ...

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Introduction to Structure Contours part of GET Spatial Learning:Teaching Activities
Basil Tikoff, University of Wisconsin-Madison
Students construct structure contour lines for a "dipping bed" in our classroom and on a geologic map. In my class, this is a multi-day activity. In part 1 of this exercise, students use "topographic ...

Geometric and Kinematic Analysis in a Sandbox part of Structural Geology and Tectonics:Activities
Kim Hannula, Fort Lewis College
Introduction to the concepts of geometric and kinematic analysis, using an easily assembled sandbox. Students repeat experiments to see variation. The lab also reviews structural map symbols, and involves some ...

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3D Model of a Geologic Map part of GET Spatial Learning:Teaching Activities
Basil Tikoff, University of Wisconsin-Madison Naomi Barshi, University of Wisconsin-Madison Carol Ormand, SERC, Carleton College
Students analyze a geologic map of an angular unconformity that truncates a pair of dikes, with some topography. When students have deciphered the map and constructed a cross-section, I show them a Play-Doh model ...

Sketching Block Diagrams part of Spatial Thinking Workbook:Teaching Activities
Carol Ormand Ph.D., Carleton College
Students watch a video of the instructor sketching two geologic block diagrams (of flat stratigraphy and of an upright anticline), then practice sketching additional geologic block diagrams.