Teaching Activities

These teaching activities have been designed with the aim of helping develop students' quantitative skills, literacy, or reasoning. To search by a specific discipline, use the 'Refine the Results' links on the right.


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Results 1 - 10 of 713 matches

Exploring California's Plate Motion and Deformation with GPS | Lessons on Plate Tectonics
Shelley Olds, EarthScope Consortium
Students analyze data to study the motion of the Pacific and North American tectonic plates. From GPS data, students detect relative motion between the plates in the San Andreas fault zone--with and without earthquakes. To get to that discovery, they use physical models to understand the architecture of GPS, from satellites to sensitive stations on the ground. They learn to interpret time series data collected by stations (in the spreading regime of Iceland), to cast data as horizontal north-south and east-west vectors, and to add those vectors head-to-tail.Students then apply their skills and understanding to data in the context of the strike-slip fault zone of a transform plate boundary. They interpret time series plots from an earthquake in Parkfield, CA to calculate the resulting slip on the fault and (optionally) the earthquake's magnitude.

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8. Efficiency and Conservation
Maurice Crawford, University of Maryland-Eastern Shore
Household energy use accounts for a significant portion of the nation's energy use; therefore, an important aspect of energy conservation is having buildings that are energy efficient. In this activity, ...

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9. Hybrid and Electric Cars
Randolph Chambers, College of William and Mary
This module reviews the history of the automobile and its varied power sources, culminating in the latest versions of hybrid and electric cars.

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7. Better Ways to Illuminate
Maurice Crawford, University of Maryland-Eastern Shore
In this module, students compare three types of lamps that are used for lighting: incandescent, compact fluorescent (CFL) and light-emitting diodes (LEDs). Students collect data on the amount of heat and light ...

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Unit 6: Hydrologic Balance and Climate Change
Kirsten Menking, Vassar College
In this unit, students create a STELLA model of the Owens River chain of lakes in eastern California and then experiment with different climate change scenarios to simulate the Pleistocene history of lake filling ...

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Unit 7: Heat Flow in Permafrost
Kirsten Menking, Vassar College
In this unit, students create a STELLA model of heat flow in the top 1 km of Earth's crust to explore the use of Arctic borehole temperature profiles as recorders of anthropogenic warming. The exercise draws ...

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Unit 8: Thermohaline Circulation
David Bice, Pennsylvania State University-Main Campus
In this module, students first review some background material on density-driven deep currents in the oceans, and then create a STELLA model of the thermohaline circulation in the North Atlantic Ocean. The model ...

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Module 10: Food Systems
Steven Vanek, Pennsylvania State Univ-Penn St. Erie-Behrend Coll; Karl Zimmerer, Pennsylvania State University-Main Campus
Module 10 continues the theme of human-environment interactions seen at a smaller scale with agroecosystems in Module 8, and develops the ideas of coupled human-natural systems (CHNS) begun at the beginning of the ...

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Unit 3: Understanding landslide factors
Becca Walker, Mt. San Antonio College
How do slope characteristics and magnitude of forces dictate whether or not a slope will fail? Can environmental and built characteristics change the magnitude of these forces? In this unit, students qualitatively ...

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Unit 9: Carbon Cycle and Ocean Chemistry
David Bice, Pennsylvania State University-Main Campus
In this module, students first review some background material on the terrestrial, marine, and anthropogenic processes involved in the storage and transfer of carbon in the Earth system. The students then build a ...

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InTeGrate Developed This material was developed and reviewed through the InTeGrate curricular materials development process.
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