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  • Environmental Science
Food, Farming, and Justice: A role play on La VÃa Campesina
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This resource has students role-play as farmers from around the world and consider how agricultural practices are part of climate solutions. This resource includes role-play activities for students to learn more about La Via Campesina, one of the largest social movements around the world. Students get to discuss why they may not have heard of this in their history books and embody La Via Campesina activists.

Subject:
Agriculture
Agriculture and Natural Resources
Applied Science
Environmental Science
Environmental Studies
Physical Science
Material Type:
Activity/Lab
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
Bill Bigelow
Chris Buehler
Julie Treick O'Neill
Tim Swinehart
Zinn Education Project
Date Added:
07/13/2022
Food Waste and the Environment
Only Sharing Permitted
CC BY-NC-ND
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Objectives:
- Demonstrate to students the energy, resources, and extensive steps it takes to produce food and to dispose of food waste.
- Discuss how the environment is being harmed through excessive food waste.

Subject:
Applied Science
Environmental Science
Material Type:
Lecture Notes
Provider:
Healthy Planet USA
Date Added:
04/28/2023
The Food We Eat Can Have a Positive Impact on Climate Justice
Conditional Remix & Share Permitted
CC BY-NC-SA
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In this psychology real-life investigation, students investigate the food on their plates, identify the source location of the foods they consume on a regular basis, and calculate their carbon footprint. The goal is to identify their diet (its source of origin – where was it grown, packaged, shipped from, etc.), its impact on their subjective well-being (also known as "happiness"), and its impact on their health as well as climate justice. Students conduct research to identify one potentially problematic ingredient that they frequently ingest. The idea here is for the students to investigate their carbon footprint and reflect on their current dietary choices, and also consider food ingredient(s) that might be detrimental to their well-being, such as increasing the vulnerability to certain diseases such as COVID-19, cancer, diabetes, etc. The goal is to widen students' awareness and encourage them to make up their own minds about their dietary choices while considering new directions to take. Furthermore, with the encouragement of a TED Talk on the power of talking about climate change with others, students are asked to create/design an infographic to effectively engage with the larger community on the issues of climate change and climate justice, and then use the infographic to talk to friends and family about what you are learning about climate change and climate justice.

Subject:
Agriculture
Agriculture and Natural Resources
Applied Science
Environmental Science
Environmental Studies
Health, Medicine and Nursing
Psychology
Social Science
Material Type:
Activity/Lab
Provider Set:
Teach the Earth
Author:
Deepti Karkhanis
Date Added:
08/04/2022
Food and Climate Change
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Educational Use
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In this activity, students listen to a podcast and then investigate causes of and solutions to food waste, plant-based recipes to get excited about, and the diversity and variety of heirloom foods.

Subject:
Agriculture
Agriculture and Natural Resources
Applied Science
Environmental Science
Environmental Studies
Physical Science
Material Type:
Activity/Lab
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
Environmental Solutions Initiative
Massachusetts Institute of Technology
Date Added:
08/01/2022
Food and Climate Change Curriculum
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Educational Use
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Comprehensive curriculum/unit to teach how food systems affect climate change. Strong use of real data is embedded throughout. Full lessons, mini-lessons, and short videos are presented.

Subject:
Agriculture
Agriculture and Natural Resources
Applied Science
Biology
Environmental Science
Environmental Studies
Life Science
Physical Science
Material Type:
Lesson
Lesson Plan
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
Alana Siegner
Date Added:
06/20/2019
Food and the Future Environment
Conditional Remix & Share Permitted
CC BY-NC-SA
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The Future of Food is an introductory-level science course that emphasizes the challenges facing food systems in the 21st century, and issues of sustainability for agriculture and other food production activities, as well as the challenges posed by food insecurity and modern diets to human health and well-being. Topics covered include introduction to the coupled-system perspective, historical development of food systems, socioeconomic aspects of the food system, interaction of the food system with the Earth's environment including soil, water, biota and climate, and the future of the food system considering potential changes such as in climate, urbanization, and demography.

Subject:
Applied Science
Atmospheric Science
Biology
Earth and Space Science
Ecology
Environmental Science
Life Science
Material Type:
Full Course
Provider:
Penn State's College of Earth and Mineral Sciences
Author:
Heather Karsten
Steven Vanek
Date Added:
05/03/2023
Forecasting Climate Variability and Change: A Matter of Survival
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In this activity, students explore past examples of climate variability in three locations: the Peruvian and Bolivian Andes, Central America, and coastal Greenland, and consider differences between climate variability and climate change.

Subject:
Agriculture and Natural Resources
Applied Science
Environmental Science
Environmental Studies
Physical Science
Material Type:
Activity/Lab
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
Cindy Shellito
SERC, Carlton College
Date Added:
03/09/2023
Forecasting Lake Effect Snow in Lake Superior region
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CC BY-NC-SA
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This exercise is designed to present the realistic problems of forecasting weather. Lake effect snows are hard to forecast because they depend on information that isn't part of the regular set of information and involve some pretty specific things that integrate the location of the site with surrounding environment. Even places close by can get totally different forecasts. When you have a regional forecast, it doesn't really address lake effect snows, unless the forecaster really focuses. So the exercise aims to show the value of broad critical thinking in meteorology, and it is very dramatic, because the difference between 36 inches and whiteout and clear blue sky is undeniable. The exercise comes when students are 8 weeks into the class. The class is an AMS based class, which has already been described well in this workshop by Julie Snow from Slippery Rock. Our class is given in the fall semester and lake effect snow starts in October and is quite an issue in forecasts until April. The skills of a forecaster are tested, and you cannot use forecasts from nearby areas reliably. Finally, we live in a fantastic snow belt, so lake effect snow happens a lot. In a good year we get over 300 inches of snow, mostly at times that places nearby do not. You can drive to Houghton in the bright sun and be met by a wall of very active blizzard just a few miles out of town.

There are some excellent tutorials available from COMET, and outreach of the National Weather Service. I use one done by Greg Byrd, which is available online or in a power point format. There are a number of things that must be learned before forecasting. These include some fluid dynamics of plumes, latent heat, remote sensing, upper air mapping, and the use of models. We cannot cover all them completely. I try to introduce all these things and give people entry points into the juicy parts of these topics, but do not expect students to understand completely. One thing you can spend a long time on are the satellite images. Here is one, just to whet your interest: http://serc.carleton.edu/details/images/13586.html




I have the students make a list of the critical parameters they think might be needed for a successful lake effect forecast. This is a challenge to prepare, but the idea is to include things that are even marginally useful and to collect data to see what is most important. We get a list of parameters like this:


850 mb wind direction
850 mb temperature
Lake Superior surface temperature
fetch length
opposing bay?
Inversion layer height
topographic lift factor
wind shear evidence
upstream lake
upstream moisture factor
snow/ice cover issues


This list is pretty good, but deliberately not complete, and we encourage students to add other things they think might be important. The next step is to find where you can get this information. I have web data sources for most (see below), and some of them are interrelated. You can do this exercise for any site around Lake Superior or probably many other lakes as well. For specific sites, the fetch length, upstream lake and opposing bay information are obtainable directly from the wind direction if you have a good map (Google Earth). So a spreadsheet for parameters related to wind direction can be prepared in advance and these parameters can be immediately available from the wind direction. Nonetheless the issue of sources for all this stuff must be addressed in an effort that spans several hours. The use of models is needed to look into the future where possible.

Once students know what they are looking for and how to find it, the exercise starts its data collection. Every day or every 6 or 12 hours beginning when conditions get close to "LES favorable" students collect information on these LES predictors. They also make LES forecasts for each period and include that information in the spreadsheet. The next day the real snowfall data is added to the spreadsheet, and this can be used as validation data for the forecast. This data collection needs to be done for several weeks (November and December in my case, usually a good time for LES).

The data analysis is the most challenging part. Spreadsheet plots which test the sensitivity of various parameters singly and together are possible. There is a lot of sophistication possible if there is enough LES to analyze. Overall, results should be a good experience with imperfect data addressed to a real-time problem. Models and real data, remote sensing, and balloons are all integrated and there are quite obvious weaknesses.

On the final day of class student groups will compete by doing forecasting which employs the LES techniques. This might reflect the most recent snow event. A more important element of this submission will be their evaluation of LES prediction parameters. Not only do we consider the actual forecast, but we discuss which parameters were successful? Which are inconclusive? What suggestions for improved forecasts are possible from the experience? The format of this will be short presentations with time for discussion.

(Note: this resource was added to OER Commons as part of a batch upload of over 2,200 records. If you notice an issue with the quality of the metadata, please let us know by using the 'report' button and we will flag it for consideration.)

Subject:
Applied Science
Atmospheric Science
Biology
Earth and Space Science
Environmental Science
Life Science
Mathematics
Measurement and Data
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
08/24/2019
Forest Management and the Carbon Cycle
Conditional Remix & Share Permitted
CC BY-NC-SA
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Students begin this activity by using the IPCC4, carbon diagram to distinguish natural and anthropogenic carbon. (A point that students may need to have clarified is that CO2 from natural and anthropogenic sources is the same molecule.). Students begin with Activity 1 , calculating the overall carbon transfer for a year, followed by an examination of the role of forests in the carbon cycle. This suite of activities includes 7 parts, and the selection of additional activities depends upon the discretion of the instructor and focus of the class.

(Note: this resource was added to OER Commons as part of a batch upload of over 2,200 records. If you notice an issue with the quality of the metadata, please let us know by using the 'report' button and we will flag it for consideration.)

Subject:
Agriculture
Agriculture and Natural Resources
Applied Science
Biology
Chemistry
Environmental Science
Life Science
Mathematics
Measurement and Data
Physical Science
Statistics and Probability
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Author:
Sarah Brylinsky
Date Added:
08/06/2022
Fostering Dialogue to Support Community Resilience
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This video outlines background and goals of resilience with a focus on communities and climate resilience.

Subject:
Agriculture and Natural Resources
Applied Science
Environmental Science
Environmental Studies
Physical Science
Material Type:
Diagram/Illustration
Reading
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
Aspen Global Change Institute
Date Added:
07/28/2022
Four Generations of Green
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Educational Use
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This video features the story of a multi-generational, family-run dairy business in Oregon. The family strives for sustainability in their operations by conserving energy and reducing greenhouse gases across many aspects of their business.

Subject:
Agriculture and Natural Resources
Applied Science
Environmental Science
Environmental Studies
Physical Science
Material Type:
Lesson
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
Climate Solutions
Solution Stories
Date Added:
03/09/2023
Freeland, CO Mining Town
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Freeland, CO Mining Town. Western Mining History presents a brief summary of Colorado's Historical Mining Towns with links to additional Colorado resources for a mining town database and mines by county. Western Mining History is an historical site that provides information on mining, mining towns, the gold and silver rush, and Photos and maps of the western United States. This is a strong primary source resource that can be used for a variety of class research projects. Consider becoming a member or making a donation to help further the work of the site.

Subject:
Anthropology
Applied Science
Chemistry
Cultural Geography
Earth and Space Science
Economics
English Language Arts
Environmental Science
Geology
Geoscience
History
Physical Geography
Physical Science
Reading Informational Text
Social Science
Sociology
U.S. History
Material Type:
Data Set
Primary Source
Reading
Provider:
Western Mining History
Provider Set:
Colorado Mining Towns
Date Added:
02/06/2023
Fremont County Mines
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This Western Mining History database uses Mineral Resources Data System to list known Colorado historical mines by county. Each county site has links to the known mines within its borders. Some are known and named, others are unnamed. Mines should be assumed to be on private property unless other research is conducted. Data provided for each mine site include: Name, State, County, Elevation, Primary Mineral Mined, Latitude and Longitude and a link to Google Maps. Photos are provided where available. Additional information for some Mines are satellite photos, and ownership, business and historical records. Mining History is an historical site that provides information on mining, mining towns, the gold and silver rush, and Photos and maps of the western United States. This is a great database for student historical research or data and statistics classes. Consider becoming a member or making a donation to help further the work of the site.

Subject:
Anthropology
Applied Science
Chemistry
Cultural Geography
Earth and Space Science
Economics
English Language Arts
Environmental Science
Geology
Geoscience
History
Mathematics
Measurement and Data
Physical Geography
Physical Science
Reading Informational Text
Social Science
Sociology
U.S. History
Material Type:
Data Set
Primary Source
Reading
Provider:
Western Mining History
Provider Set:
Historical Colorado Mines
Date Added:
02/06/2023
From Grid to Home
Unrestricted Use
CC BY
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In this classroom activity, students analyze regional energy usage data and their own energy bills to gain an understanding of individual consumption, regional uses, costs, and sources of energy.

Subject:
Agriculture and Natural Resources
Applied Science
Environmental Science
Environmental Studies
Physical Science
Material Type:
Activity/Lab
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Date Added:
03/09/2023
From Isotopes to Temperature: Working With A Temperature Equation
Unrestricted Use
CC BY
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In this activity, students will use oxygen isotope values of two species of modern coral to reconstruct ambient water temperature over a four-year period. They use Microsoft Excel, or similar application, to create a spreadsheet of temperature values calculated from the isotope values of the corals by means of an algebraic equation. Students then use correlation and regression techniques to determine whether isotope records can be considered to be good proxies for records of past temperatures.

Subject:
Agriculture and Natural Resources
Applied Science
Archaeology
Earth and Space Science
Environmental Science
Environmental Studies
Physical Geography
Physical Science
Social Science
Material Type:
Activity/Lab
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Date Added:
03/09/2023
From Meteorology to Mitigation: Understanding Global Warming
Conditional Remix & Share Permitted
CC BY-NC-SA
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Human-caused climate change represents one of the great environmental challenges of our time. As it is inextricably linked with issues of energy policy, a familiarity with the fundamentals of climate change is critical for those looking to careers in the energy field. To appreciate the societal, environmental, and economic implications of policies governing greenhouse gas emissions, one must understand the basic underlying science. METEO 469 serves to lay down the fundamental scientific principles behind climate change and global warming. A firm grounding in the science is then used as a launching point for exploring issues involving climate change impacts and mitigation.

Subject:
Agriculture and Natural Resources
Applied Science
Atmospheric Science
Earth and Space Science
Ecology
Environmental Science
Environmental Studies
Life Science
Material Type:
Full Course
Provider:
Penn State's College of Earth and Mineral Sciences
Author:
Brian Gaudet
Michael Mann
Date Added:
05/04/2023
From Source to Sink: How Sediment Reflects the Journey from the Mountains to the Sea
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CC BY-NC-SA
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This is one component of the Source to Sink Mini Lesson Set
Continental margins are phenomenal places to study the modern sedimentary cycle because sediment in margin regions has been routed from mountains (source) through river systems to the sea (sink); in some cases, sediment has continued across continental shelves and been delivered to the deep sea. The goal of this mini-lesson is to let students explore the characteristics of some key regions in the modern sedimentary cycle to identify and relate the variables that control source-to-sink systems. Which areas are eroding most rapidly and why? Which systems are responsible for the most rapid transfer of sediments from continents to the oceans? How do the characteristics of river systems affect the properties of the sediments they discharge? How can we apply our knowledge of these modern source-to-sink systems to the ancient sedimentary rock record?

Subject:
Applied Science
Earth and Space Science
Environmental Science
Hydrology
Oceanography
Material Type:
Activity/Lab
Provider:
Science Education Resource Center (SERC) at Carleton College
Provider Set:
Teach the Earth
Date Added:
04/12/2023
Frosty Fun: Lesson 2 Understanding Colorado Agriculture, Unit 4 Agriculture and the Seasons, DIGS AmeriCorps Curriculum CSU
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Frosty Fun. This is the Lesson 2 Understanding Colorado Agriculture activity from Unit 4 Agriculture and the Seasons, from the DIGS (Developing Individuals, Growing Stewards) AmeriCorps Curriculum from CSU. The curriculum focuses on introducing students in grades 3-5 to Colorado agriculture, industry and environmental issues. The curriculum upon request. Visit: https://engagement.colostate.edu/programs-old/developing-individuals-growing-stewards/

Subject:
Agriculture
Agriculture and Natural Resources
Agriculture, Natural Resources and Energy
Applied Science
Atmospheric Science
Biology
Botany
Career and Technical Education
Chemistry
Comprehensive Health and Physical Education
Earth and Space Science
Ecology
English Language Arts
Environmental Science
Environmental Studies
Life Science
Nutrition
Physical Science
Plant Science
Reading Informational Text
STEAM
Material Type:
Activity/Lab
Lesson
Lesson Plan
Provider:
CSU Extension Office
Provider Set:
AmeriCorps
Date Added:
02/24/2023
Frozen Earth
Unrestricted Use
CC BY
Rating
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This video montage of spectacular NASA satellite images set to music shows different types of ice and ice features as well as descriptions of satellite-based measurements of ice cover. Text captioning describes how global ice cover is changing, and how this is measured.

Subject:
Agriculture and Natural Resources
Applied Science
Environmental Science
Environmental Studies
Physical Science
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Date Added:
03/09/2023