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The Big Melt
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This is a collection of five short videos that show how climate change is affecting fishing, native populations and access for the oil and gas industry in the Arctic. The videos include personal reflections by writers Andrew C. Revkin and Simon Romero, scientists, and residents about their experience of the impacts of the climate change in the Arctic.

Subject:
Applied Science
Career and Technical Education
Ecology
Economics
Environmental Science
Environmental Studies
Life Science
Oceanography
Physical Science
Social Science
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
Andrew C Revkin
Simon Romero
The New York Times
Date Added:
09/24/2018
Big Plans and Mega-Urban Landscapes
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CC BY-NC-SA
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This course explores the physical, ecological, technological, political, economic, and cultural implications of big plans and mega-urban landscapes in a global context. It uses local and international case studies to understand the process of making major changes to urban landscape and city fabric, and to regional landscape systems. It includes lectures by leading practitioners. The assignments consider planning and design strategies across multiple scales and time frames.

Subject:
Applied Science
Engineering
Environmental Science
Political Science
Social Science
Material Type:
Full Course
Date Added:
07/14/2022
Billion-Dollar Weather and Climate Disasters
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This set of interactive data visualizations show the weather and climate events that have had the greatest economic impact on the US from 1980 to 2016.

Subject:
Applied Science
Atmospheric Science
Career and Technical Education
Economics
Environmental Science
Environmental Studies
Physical Science
Social Science
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
NOAA
National Center for Environmental Education
Date Added:
09/24/2018
Biobased Products for a Sustainable (Bio)economy
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CC BY-NC-SA
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Have you ever asked what “biobased” means or wondered about the key aspects in developing and commercializing biobased products? This course will answer those questions and more; highlighting the opportunities, hurdles, and driving forces of the bioeconomy.

Today’s industries face enormous global challenges when it comes to the fossil-based economy. Fossil resources are no longer a desirable feedstock for many products and governments’ climate goals put various limitations to its usage. Moreover, consumer perception has become an increasingly important factor. With biobased products as an alternative to the fossil-based economy, the bioeconomy can provide viable solutions to these challenges.

The course describes the different types of biomass, the methods of refinery and typical conversion technologies used for biobased products. You’ll also engage in a study of the practical and real-life examples emerging in the market: biopolymers, bioenergy, bioflavours, and biosurfactants.

The course has been developed by a team of experts from seven different institutions and universities in three different countries, all sharing their personal perspectives on the opportunities and challenges faced by the biobased industry. The three top-ranked institutions Delft University of Technology, RWTH Aachen University, and Wageningen University & Research offer additional, more advanced courses to continue your learning journey:

Industrial Biotechnology: a more advanced course that digs deeper into engineering aspects of bio-based products.
MicroMasters Chemistry and Technology for Sustainability: Help drive the transition from fossil sources to renewable energy ones and engineer a biobased future.
Sustainable Development: The Water-Energy-Food Nexus: Introduction to sustainable development and its relation to the Water-Energy-Food Nexus.

Subject:
Applied Science
Biology
Environmental Science
Life Science
Material Type:
Full Course
Provider:
Delft University of Technology
Provider Set:
Delft University OpenCourseWare
Author:
Dr. A. Wahl
Dr. F. Hollmann
Prof.dr. Patricia Osseweijer
Date Added:
08/09/2019
Biochemical Oxygen Demand
Conditional Remix & Share Permitted
CC BY-NC-SA
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Biochemical Oxygen Demand" is an essential educational resource tailored for environmental science and engineering students, aiming to deepen their understanding of water quality assessment and pollution control. This unit comprises a series of engaging lessons, each meticulously designed to explore the dynamics of Biological Oxygen Demand (BOD) and its implications for aquatic ecosystems.Beginning with foundational concepts of dissolved oxygen and BOD, learners progress to advanced topics such as the Dissolved Oxygen Model and SAG (Submerged Aquatic Growth) curve analysis. Through interactive discussions and problem-solving exercises, students develop proficiency in calculating key parameters related to water quality, including DO concentrations and BOD levels.

Subject:
Engineering
Environmental Science
Material Type:
Unit of Study
Author:
Lotachukwu Ernest Eze
Date Added:
03/25/2024
Biodiversity Conservation in Canada: From Theory to Practice
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CC BY-NC-SA
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Short Description:
The aim of this book is to build a bridge between conservation theory and practice. The narrative is focused specifically on Canada. This permits an integrated treatment, where conservation theory is presented in the context of the social and institutional framework responsible for its implementation. Special attention is given to topics that are the subject of debate or controversy, as they provide valuable insight into the practical aspects of conservation. The result is a comprehensive synthesis of applied biodiversity conservation, tailored to the needs of conservation students and practitioners in Canada.

Long Description:
Conservation is often portrayed as an applied science—a body of knowledge about how ecological systems function, how they are threatened, and how they can be maintained. Conservation is also a form of management. It entails working with people to achieve desired ecological outcomes, grappling with conflicting land-use objectives, and making optimal use of available conservation resources. The aim of this book is to build a bridge between these two perspectives, linking theory with practice.

Major topic areas include the history of conservation, the social and scientific foundations of conservation, threats to biodiversity, applied conservation methods at both the species and ecosystem levels, the accommodation of climate change, and structured decision making. Special attention is given to topics that are the subject of debate or controversy, as they provide valuable insight into the practical aspects of conservation. The narrative is focused specifically on Canada. This permits an integrated treatment, where conservation theory is presented in the context of the social and institutional framework responsible for its implementation. The result is a comprehensive synthesis of applied conservation, tailored to the needs of conservation students and practitioners in Canada. Learning is supported by an engaging and clear writing style and 196 colour illustrations.

Word Count: 160462

ISBN: 978-1-55195-494-3

(Note: This resource's metadata has been created automatically by reformatting and/or combining the information that the author initially provided as part of a bulk import process.)

Subject:
Applied Science
Career and Technical Education
Environmental Science
Environmental Studies
Material Type:
Textbook
Provider:
University of Alberta
Date Added:
04/23/2023
Biogeographic patterns and climate change – a teaching resource for university lecturers – Atlas of Living Australia
Unrestricted Use
CC BY
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This case study describes a practical exercise developed for students in the School of Geography and Environmental Science at Monash University. The exercise is based around simple bioclimatic modelling techniques and designed for first-year university students of biogeography, ecology and climatology. It incorporates aspects of past, present and future climates and their impact on species distributions, particularly in Victoria, but could be easily modified to suit any part of Australia. The practical exercise has three main parts: the first is on animal distributions under current and future climates; the second concerns plant distributions in the past and present; and the third part looks at how rare and endangered species may respond to future climate change in alpine environments.

Subject:
Applied Science
Career and Technical Education
Environmental Science
Environmental Studies
Material Type:
Homework/Assignment
Author:
Simon Connor.
Date Added:
03/11/2019
Biology Video Assignment - Research and Scientific Communication
Unrestricted Use
CC BY
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This assignment is written as a final project for students in a biology class to create a video answering a question using scientific literature. It is scaffolded over the semester, with a brainstorming assignment, a submission of reference list, and the final video. 

Subject:
Biology
Environmental Science
Material Type:
Homework/Assignment
Author:
Darcy Ernst
Date Added:
05/25/2023
Biology for Non-Majors II
Unrestricted Use
CC BY
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Biology for Non-Majors II introduces students to the basics of the scientific process and covers some of biology’s most compelling topics surrounding the history and diversity of life, including discussion on the different kingdoms of life, with focus on plants and animals, as well as an introduction to ecology. Designed for non-life science majors, this course is the first in a two-part series that completes a survey of biological principles.

Subject:
Applied Science
Career and Technical Education
Environmental Science
Environmental Studies
Material Type:
Full Course
Provider:
Lumen Learning
Author:
Lumen Learning
Date Added:
01/04/2022
Biomass - Creating Bio-Diesel
Unrestricted Use
CC BY
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This detailed chemistry lesson from the U.S. Department of Energy focuses on transforming vegetable oil into biodiesel through a process of transesterification. The process described offers a good model for many chemical reaction processes that are used to produce a viable product.

Subject:
Applied Science
Career and Technical Education
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:
Matthew A. Brown
National Renewable Energy Laboratory
Raymond I. Quintana
Date Added:
06/19/2012
Biomes
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Educational Use
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This interactive resource adapted from NASA describes the different temperature, precipitation, and vegetation patterns in seven biomes: coniferous forest, temperate deciduous forest, desert, grassland, rainforest, shrubland, and tundra.

Subject:
Applied Science
Environmental Science
Material Type:
Activity/Lab
Diagram/Illustration
Interactive
Provider:
PBS LearningMedia
Provider Set:
PBS Learning Media: Multimedia Resources for the Classroom and Professional Development
Author:
National Science Foundation
WGBH Educational Foundation
Date Added:
12/17/2005
Bioshpere
Unrestricted Use
CC BY
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Salahaddin university College of science Environmental science department Biosphere.

Subject:
Environmental Science
Material Type:
Module
Author:
Navkiran Kaur
Date Added:
08/23/2019
Biotecnología Ambiental, Aplicaciones y Tendencias
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CC BY-NC-SA
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La Biotecnología Ambiental emplea el uso de organismos para la prevención, monitoreo y remediación de los ecosistemas, al mismo tiempo permite la generación de bioproductos y energía limpia. El libro consistió en tres capítulos, en el primero se establece los fundamentos de la Biotecnología Ambiental y sus aplicaciones en entornos terrestre, acuático y aéreo; además, se presentan herramientas aplicadas como los biosensores en el monitoreo ambiental, la fitorremediación en varios contextos de América Latina y el fortalecimiento de la agricultura sustentable. En el segundo capítulo se describe la importancia de un estudio bibliométrico y el enfoque para las diversas investigaciones, se detalla un manual de uso, que permite su replicabilidad en otros contextos. Además de presentar un caso de estudio aplicado al tema central de este libro, que sistematiza los temas más estudiados, las tendencias, revistas y países con mayores contribuciones. En el tercer capítulo se presentan varias prácticas de laboratorio y una sección de preguntas, que pueden ser empleadas en otras instituciones educativas o de manera autónoma. En conclusión, los capítulos son complementarios entre sí, facilitando la comprensión e interés del lector. El área de mayor relevancia corresponde a la biorremediación en suelos contaminados por hidrocarburos y metales pesados, los grupos más frecuentes en la revisión fueron hongos, cianobacterias y organismos genéticamente modificados. Finalmente, existe una oportunidad del uso y la potencial combinación de las técnicas basadas en metagenómica, ADN ambiental, inteligencia artificial para el desarrollo de las nuevas tendencias de la Biotecnología Ambiental

Subject:
Applied Science
Environmental Science
Material Type:
Textbook
Provider:
Editorial Grupo AEA
Author:
Cristhian David Chicaiza-Ortiz
Jean Carlo Andrade
Robinson Jasmany Herrera-Feijoo
Virginia del Carmen Rivadeneira-Arias
Date Added:
06/29/2023
Bird's Eye View Lesson Plan
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Educational Use
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In this activity, students construct "flying birds" (pollution collectors) from paper and wire hangers. Students hang up their birds to see how they react to air pollution, and compare and make observations about the differences in the birds.

Subject:
Applied Science
Atmospheric Science
Career and Technical Education
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:
Air Quality Flag Program
Environmental Protection Agency
Date Added:
07/25/2022
Black Ice: A Slippery Arctic Road
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CC BY-NC-SA
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In this lesson students investigate the effects of black carbon on arctic warming and are introduced to a mechanism of arctic warming that is not directly dependent on greenhouse gases in the atmosphere: black carbon deposition on Arctic snow and ice. It can also be used to introduce the concept of albedo. Prerequisite knowledge: students understand the concepts of absorption and reflection of light energy. This lesson is designed to be used with either an Earth/environmental science or chemistry curriculum. It may also be used as an enrichment activity in physics or physical science during a unit on energy. Includes suggested modifications for students with special needs and low technology option. Requires advance preparation, including freezing ice samples overnight.

Subject:
Applied Science
Atmospheric Science
Environmental Science
Geoscience
Mathematics
Physical Science
Physics
Material Type:
Activity/Lab
Assessment
Data Set
Lesson Plan
Simulation
Provider:
University of North Carolina at Chapel Hill School of Education
Provider Set:
LEARN NC Lesson Plans
Date Added:
11/05/2014
Black Ice - A Slippery Arctic Road
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In this series of activities students investigate the effects of black carbon on snow and ice melt in the Arctic. The lesson begins with an activity that introduces students to the concept of thermal energy and how light and dark surfaces reflect and absorb radiant energy differently. To help quantify the relationship between carbon and ice melt, the wet lab activity has students create ice samples both with and without black carbon and then compare how they respond to radiant energy while considering implications for the Arctic.

Subject:
Applied Science
Career and Technical Education
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:
DeeDee Whitaker
Katherine Whang
Date Added:
09/24/2018
'The Blob' - The Story of the Pacific Heatwave
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Educational Use
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This video explores the affect on seabirds of a three year ocean warming event (2013-16) in the NW Pacific. With ocean warming, a massive die off occurred based on the decline of food resources.

Subject:
Applied Science
Biology
Career and Technical Education
Ecology
Environmental Science
Environmental Studies
Life Science
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:
Ascentios
Ben M. Collins
Date Added:
11/29/2020
Blooming Thermometers
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In this activity, students develop an understanding of the relationship between natural phenomena, weather, and climate change: the study known as phenology. In addition, they learn how cultural events are tied to the timing of seasonal events. Students brainstorm annual natural phenomena that are tied to seasonal weather changes. Next, they receive information regarding the Japanese springtime festival of Hanami, celebrating the appearance of cherry blossoms. Students plot and interpret average bloom date data from over the past 1100 years.

Subject:
Applied Science
Biology
Career and Technical Education
Environmental Science
Environmental Studies
Life Science
Physical Science
Material Type:
Activity/Lab
Provider:
CLEAN: Climate Literacy and Energy Awareness Network
Provider Set:
CLEAN: Climate Literacy and Energy Awareness Network
Author:
Lisa Gardiner
National Center for Atmospheric Research (NCAR)
et al.
Date Added:
06/19/2012
The Blue Lake Rancheria Tribe Undertakes Innovative Action to Reduce the Causes of Climate Change
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Educational Use
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The Blue Lake Rancheria Tribe—a federally recognized Native American tribe in California—was one of 16 communities selected as a 2015–2016 Climate Action Champion by the Obama Administration for exceptional work in response to climate change.

The Tribe began its strategic climate action planning in 2008 and has become a regional leader in greenhouse gas reductions and community resiliency measures. To date, the Tribe has reduced energy consumption from 2008 levels by 35 percent and has committed to reduce greenhouse gas emissions 40 percent by 2018, utilizing a range of approaches—including aggressive energy efficiency upgrades, developing on-site renewable energy (biomass, solar, fuel cells, grid battery storage), and switching to green fuels (electricity and biodiesel).

Subject:
Applied Science
Environmental Science
Material Type:
Case Study
Provider:
National Oceanic and Atmospheric Administration
Provider Set:
U.S. Climate Resilience Toolkit
Date Added:
11/03/2016