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Unit 4: GPS and infinitesimal strain analysis part of GPS, Strain, and Earthquakes
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 5: 2014 South Napa Earthquake and GPS strain part of GPS, Strain, and Earthquakes
The 2014 South Napa earthquake was the first large earthquake (Mag 6) to occur within the Plate Boundary Observatory GPS network (now Network of the Americas- NOTA) since installation. It provides an excellent ...
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Unit 2: Mashing it up: physical models of deformation and strain part of GPS, Strain, and Earthquakes
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 6: Applying GPS strain and earthquake hazard analyses to different regions part of GPS, Strain, and Earthquakes
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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Unit 5: Summative assessment project part of Analyzing High Resolution Topography with TLS and SfM
Unit 5 is the summative assessment for the module. This final exercise takes eight to ten hours. The exercise evaluates students' developed skills in survey design, execution of a geodetic survey, and simple ...
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Unit 4: Geomorphic change detection part of Analyzing High Resolution Topography with TLS and SfM
Applications of geodetic imaging in geomorphology research often center on monitoring and detecting change within a system over time. Since most geomorphic systems evolve over longer time periods—months, years, ...
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Unit 3: Geodetic survey of a fault scarp part of Analyzing High Resolution Topography with TLS and SfM
In this unit, students will design a survey (TLS and/or SfM) of a fault scarp. After conducting the survey in the field, students will analyze the data to identify the number and magnitude of possible fault ...
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Unit 1-TLS: Introduction to TLS part of Analyzing High Resolution Topography with TLS and SfM
Field experience using geodetic and geophysical tools provides a unique opportunity for upper-level undergraduates to learn research skills applicable to their future graduate research or career path. This unit ...
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Unit 2: Geodetic survey of an outcrop for stratigraphic analysis part of Analyzing High Resolution Topography with TLS and SfM
Geodetic survey techniques, such as TLS and SfM featured here, have many applications in sedimentology research, including lithological identification and analysis, sediment surface topography, and sequence ...
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Unit 1-SfM: Introduction to SfM part of Analyzing High Resolution Topography with TLS and SfM
This unit introduces students to Structure from Motion (SfM). SfM is a photogrammetric technique that uses overlapping images to construct a 3D model of the scene and has widespread research applications in ...
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