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Quantitative Skills

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Modeling the carbon cycle of the anthropocene part of Quantitative Skills:Activity Collection
Students use an Excel sheet to complete forward and inverse models of changes in carbon distribution between atmosphere, ocean and the biosphere from 1751 to the present and several centuries into the future. The model is given as a mostly complete package, into which students input emissions data in various sensitivity tests.

On the Cutting Edge Exemplary Collection This activity is part of the On the Cutting Edge Exemplary Teaching Activities collection.
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An Assessment of Hillslope Stability Using the Factor of Safety part of Quantitative Skills:Activity Collection
In this homework assignment students are asked to consider the balance of forces on a hill slope using the Factor of Safety.

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Using a Mass Balance Model to Understand Carbon Dioxide and its Connection to Global Warming part of Quantitative Skills:Activity Collection
Students explore the increase in atmospheric carbon dioxide over the past 40 years with an interactive on-line model.

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What is the fate of CO2 produced by fossil fuel combustion? part of Quantitative Skills:Activity Collection
A box model is used to simulate the build up of carbon dioxide in the atmosphere during the industrial era and predict the future increase in atmospheric CO2 levels during the next century.

MATLAB Exemplary Collection This activity is part of the Teaching Computation in the Sciences Using MATLAB Exemplary Teaching Activities collection.
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CLEAN Selected This activity has been selected for inclusion in the CLEAN collection.
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Estimating Exchange Rates of Water in Embayments using Simple Budget Equations. part of Quantitative Skills:Activity Collection
Simple budgets may be used to estimate the exchange of water in embayments that capitalize on the concept of steady state and conservation principals. This is especially true for bays that experience a significant exchange of freshwater. This exchange of freshwater may reduce the average salt concentration in the bay compared to seawater if it involves addition of freshwater from rivers, R, and/or precipitation, P. Alternatively, it may increase the average salt concentration in the bay compared to seawater if there is relatively little river input and high evaporation, E. Since freshwater input changes the salt concentration in the bay, and salt is a conservative material, it is possible to combine two steady state budgets for a bay, one for salt and one for water, to solve for the magnitude of the water flows that enter and exit the bay mouth. Students will make actual calculations for the inflow and outflow of water to Puget Sound, Washington and the Mediterranean Sea and compare them to actual measured values.

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Flood Frequency and Risk Assessment part of Quantitative Skills:Activity Collection
Students calculate recurrence intervals for various degrees of flooding based on historical data. Students then do a risk assessment for the surrounding community.

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Two streams, two stories... How Humans Alter Floods and Streams part of Quantitative Skills:Activity Collection
An activity/lab where students determine the changes in 100-year flood determinations for 2 streams over time.

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Investigation: When will there no longer be glaciers in Glacier National Park? part of Quantitative Skills:Activity Collection
Students use historical data on the extent of the Grinnell Glacier in Glacier National Park to estimate when the glacier will melt completely.

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Earthquake Shaking and Damage part of Quantitative Skills:Activity Collection
This student homework and problem set has students quantitatively earthquake hazard, shaking and damage.

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Vectors and slope stability part of Quantitative Skills:Activity Collection
An in-class activity or homework for graphically solving slope-stability problems with vectors.

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