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AP/IB/Honors Environmental Science Activity Browse

Search for activities specifically designed for introductory college level environmental science courses. Refine this search by either clicking on the terms in boxes to the right or typing a term into the search box below. Activities include a description, background information, and necessary student documents.


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The Sleeping Mountain part of Starting Point-Teaching Entry Level Geoscience:Role Playing:Examples
In this role-playing scenario, students represent townspeople whose lives and livelihoods are endangered by an active volcano which may or may not erupt in the near future. -

Analyzing the Antarctic Ozone Hole (College Level) part of Starting Point-Teaching Entry Level Geoscience:Teaching with GIS:Examples
College-level adaptation of a chapter in the Earth Exploration Toolbook. Examine satellite images of atmospheric ozone in the Southern Hemisphere to study changes in concentration over a time. -

Investigating Earthquakes: GIS Mapping and Analysis (College Level) part of Starting Point-Teaching Entry Level Geoscience:Teaching with GIS:Examples
This is a college-level adaptation of a chapter from the Earth Exploration Toolbook. The students download global quake data over a time range and use GIS to interpret the tectonic context. -

Comparing Carbon Calculators part of Starting Point-Teaching Entry Level Geoscience:Teaching with Data:Examples
Carbon calculators, no matter how well intended as tools to help measure energy footprints, tend to be black boxes and can produce wildly different results, depending on the calculations used to weigh various ...

Global Earthquakes: Teaching about Earthquakes with Data and 3D Visualizations part of Cutting Edge:Visualization:Examples
In this series of visualizations and accompanying activities, students visualize the distribution and magnitude of earthquakes and explore their distribution at plate boundaries. Earthquakes are visualized on a 3D ...

Visualizing Global Earthquakes Where and Why do Earthquakes Occur? part of Cutting Edge:Visualization:Examples
In this activity students visualize the distribution and magnitude of earthquakes at and below the surface of Earth and how their distribution is related to plate boundaries. Earthquakes are visualized on a 3D ...

Marine Oxygen Isotopes and Changes in Global Ice Volume part of Cutting Edge:Climate Change:Activities
Students explore marine oxygen-isotope data from cores collected by the Ocean Drilling Program. The activity gives students access to real paleoclimate data, develops their skills in organizing and graphing data, ...

Paleotempestology Lab part of Cutting Edge:Introductory Courses:Activities
Paleotempestology Lab: this lab activity is designed to help students gain experience in relative and absolute dating techniques as well as a sense of how scientific investigations proceed.

Earthquake Epicenter Location Exercise using Google Earth and OneNote part of Cutting Edge:Geophysics:Workshop 07:Geophysics Activities
Students are provided with data from 4 seismograms which are used to plot the epicenter of an earthquake using OneNote to pick the P-S wave arrival gap and Google Earth to plot the circles which intersect at the ...

Downloading Earthquake Data from the USGS Earthquake Hazards Site for Anywhere in the World and Studying it Using ArcGIS part of Cutting Edge:Introductory Courses:Activities
Students download earthquake data from the USGS Earthquake Hazards website and plot and anlyze the earthquakes using ArcMap and ArcScene.

Who Polluted Surface and Groundwater in This Place? part of Cutting Edge:Introductory Courses:Activities
Students use water-well data and geology to determine which site caused groundwater and surface-water contamination.

Carbon Footprint Exercise part of Cutting Edge:Climate Change:Activities
We designed a three-step assignment for students in introductory geoscience that asks them to calculate their carbon footprint during one specific week. The goal of the assignment is to increase student awareness ...

Calculation of your personal carbon footprint part of Cutting Edge:Energy:Energy Activities
This worksheet walks the students through the steps for calculating their personal carbon footprint. Additionally it helps them consider options for reducing their carbon footprint and the potential costs of those ...

Natural Gas and the Marcellus Shale part of Cutting Edge:Energy:Energy Activities
This homework problem introduces students to the Marcellus shale natural gas play and how an unconventional reservoir rock can become an attractive hydrocarbon target.

Energy Gallery Walk part of Cutting Edge:Energy:Energy Activities
This is a cooperative learning activity using the Gallery Walk Strategy (strategy from the Starting Point Gallery Walk web pages) to enrich student understanding of the complex nature of solving our nation's ...

Power Source part of Cutting Edge:Energy:Energy Activities
In this lesson-opening activity, students or groups are tasked to make concept sketches that track the source of electrical power as far back as they can conceive. The concept sketches reveal students' prior ...

Groundwater Lab part of Cutting Edge:Introductory Courses:Activities
This lab uses "ant farm" groundwater models to demonstrate groundwater flow and the behavior of wells. The lab is organized so that students have to predict the behavior of the model before observing it.

Groundwater Consulting Lab part of Cutting Edge:Introductory Courses:Activities
Students are given a real-world scenario in this lab exercise in which they must determine the extent of groundwater contamination while staying within a budget. They progressively request more information and ...

Floods on the Minnesota River part of Cutting Edge:Introductory Courses:Activities
Students download and manipulate data from historical floods on the Minnesota River (could be done for any river) and use to establish a flood hazard zone for St. Peter, Minnesota. This lab was developed by ...

River Flooding and Erosion part of Cutting Edge:Urban Geology:Activities
Students take a real-life situation (river flooding and erosion), use real flood and map data, and make predictions and recommendations as to what to do to help alleviate the problem.

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