NotesFAQContact Us
Collection
Advanced
Search Tips
Education Level
Higher Education17
Postsecondary Education7
High Schools1
Two Year Colleges1
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Showing 1 to 15 of 17 results Save | Export
Peer reviewed Peer reviewed
Direct linkDirect link
Paulo Guilherme Fuchs; Manoel Honorato Filho; Liziane Araújo da Silva; Ana Regina Aguiar Dutra; José Baltazar Salgueirinho Osório de Andrade Guerra – International Journal of Sustainability in Higher Education, 2024
Purpose: Universities and their actions affect the environment directly and significantly. Therefore, the carbon footprint (CF) needs to be implemented in these institutions for mitigating climate change and its potential risks. Based on this understanding, the university consortium quality and environment (QualEnv) stands out by its main…
Descriptors: Universities, Conservation (Environment), Climate, Fuels
Peer reviewed Peer reviewed
Direct linkDirect link
Livia Somerville; Matthias Stucki; Regula Keller – International Journal of Sustainability in Higher Education, 2025
Purpose: The purpose of this study was to evaluate the environmental footprint of a university of applied sciences in 2019 and 2020, including the effects of the lockdown periods. The study identified the main sources of emissions and assessed the pandemic-related effects. Design/methodology/approach: Using the life cycle assessment methodology,…
Descriptors: Foreign Countries, Universities, COVID-19, Pandemics
Peer reviewed Peer reviewed
Direct linkDirect link
Ben Goldman – portal: Libraries and the Academy, 2024
It is now widely understood that societies must rapidly decarbonize to avoid the worst impacts of future climate change. To contribute to this urgent effort, academic libraries should develop an understanding of the carbon footprint resulting from their activities. This article shares the results of an effort at the Penn State University Libraries…
Descriptors: Academic Libraries, Climate, Influence of Technology, Conservation (Environment)
Peer reviewed Peer reviewed
Direct linkDirect link
Victoria Newton; Thomas Ellis – Journal of Adult and Continuing Education, 2025
There is general consensus within students and staff in higher education that designers have to be 'eco-conscious', making decisions every day that will consciously or non-consciously impact their carbon footprint in multiple ways, from the files they are saving, to the designs they are creating. However, in further/higher education, it is still…
Descriptors: Design, Sustainability, Higher Education, Ecology
Peer reviewed Peer reviewed
Direct linkDirect link
Kai Rüdele; Matthias Wolf – International Journal of Sustainability in Higher Education, 2024
Purpose: This paper aims to examine the piloting of an experience-based training module on greenhouse gas (GHG) reporting. The training is designed to promote knowledge and skills of both, students and professionals, in the context of the European Sustainability Reporting Standards. The paper's purpose is to evaluate the suitability of the chosen…
Descriptors: Climate, Influence of Technology, Experiential Learning, Training
Peer reviewed Peer reviewed
Direct linkDirect link
Blanco, Philip R. – Physics Education, 2019
Most rockets convert the energy stored in their propellant mass into the mechanical energy required to expel it as exhaust. The 'rocket equation', which describes how a rocket's speed changes with mass, is usually derived by assuming that this fuel is expelled at a constant relative velocity. However, this is a poor assumption for cases where the…
Descriptors: Physics, Motion, Scientific Concepts, Fuel Consumption
Peer reviewed Peer reviewed
Direct linkDirect link
Wallington, Timothy J.; Anderson, James E.; Siegel, Donald J.; Tamor, Michael A.; Mueller, Sherry A.; Winkler, Sandra L.; Nielsen, Ole J. – Journal of Chemical Education, 2013
Providing sustainable mobility is a major challenge that will require new vehicle and fuel technologies. Alternative and future fuels are the subject of considerable research and public interest. A simple approach is presented that can be used in science education lectures at the high school or undergraduate level to provide students with an…
Descriptors: Science Instruction, College Science, Undergraduate Study, Scientific Principles
Peer reviewed Peer reviewed
Direct linkDirect link
Treptow, Richard S. – Journal of Chemical Education, 2010
Topics commonly taught in a general chemistry course can be used to calculate the quantity of carbon dioxide emitted into the atmosphere by various human activities. Each calculation begins with the balanced chemical equation for the reaction that produces the CO[subscript 2] gas. Stoichiometry, thermochemistry, the ideal gas law, and dimensional…
Descriptors: Chemistry, Fuels, Fuel Consumption, Computation
Peer reviewed Peer reviewed
Direct linkDirect link
Bembenic, Meredith Hill; Cratsley, Chira Endress; Hartwell, Bradley; Guertin, Laura; Furman, Tanya – Science Scope, 2012
As the United States strives to achieve energy independence, students need to be literate about energy and environmental issues. In this article, the authors present a lesson about the nation's electricity resources that is part 1 of a free, comprehensive unit on coal and energy that is available online (http://tinyurl.com/coalenergyunit). The…
Descriptors: Environmental Education, Fuels, Energy, Graduate Students
Carlson, Scott – Chronicle of Higher Education, 2009
In July, when energy prices were sky-high and some pundits were predicting a continued rise, Charles Riordan, facilities director at Loyola College of Maryland, and his colleagues locked in a chunk of their electricity prices--about a quarter of the college's consumption--to cover the next two years. Now that energy prices have fallen, the…
Descriptors: Energy Management, Fuel Consumption, Cost Indexes, Economic Change
Hignite, Karla – APPA: Association of Higher Education Facilities Officers (NJ1), 2009
As more institutions respond to the American College & University Presidents Climate Commitment, or are otherwise responsible for campus environmental stewardship, this implementation guide gives educational facilities professionals a practical framework for moving forward in their unique role within this process. The intent is to help facilities…
Descriptors: Educational Facilities, Facilities Management, Sustainable Development, Conservation (Environment)
Brown, Julie Paul; Hillman, Luce R. – Facilities Manager, 2010
Most colleges and universities have taken great strides in recent years to embrace "being green." As part of this process, many institutions have established an Office of Sustainability or similar department to implement these practices and foster the image of environmental consciousness that the universities want to project. Institutions are…
Descriptors: Historic Sites, Higher Education, Sustainability, Sustainable Development
Peer reviewed Peer reviewed
Direct linkDirect link
Bristow, Rob – EDUCAUSE Quarterly, 2009
With the world focusing on climate change and individuals through to organizations questioning how they can reduce their personal and professional carbon footprints, JISC (Joint Information Systems Committee) is looking at how it can help U.K. education professionals learn from one another. In 2009, the final report from JISC's SusteIT study…
Descriptors: Higher Education, Information Systems, Climate, Foreign Countries
Peer reviewed Peer reviewed
Direct linkDirect link
Barto, D.; Cziraky, J.; Geerts, S.; Hack, J.; Langford, S.; Nesbitt, R.; Park, S.; Willie, N.; Xu, J.; Grogan, P. – Journal of Natural Resources and Life Sciences Education, 2009
Consumers are constantly being presented with choices that have economic, environmental, and lifestyle/social dimensions. For example, is an energy-efficient hybrid car (with regenerative braking) a better choice than a regular petroleum-only vehicle when considered from all three dimensions? Surprisingly, although each and all of these dimensions…
Descriptors: Undergraduate Students, Fuels, Fuel Consumption, Heat
Boulard, Garry – Diverse: Issues in Higher Education, 2009
Addressing ongoing and costly deferred-maintenance needs is a challenge for any two- or four-year school. During an economically challenging time, many HBCUs have put energy efficiency and other green projects on the back burner. However, some are finding that deferred maintenance does not have to be a barrier to becoming green. Despite budget…
Descriptors: School Maintenance, Energy Conservation, Educational Finance, Community Colleges
Previous Page | Next Page »
Pages: 1  |  2