Publication Date
| In 2015 | 0 |
| Since 2014 | 1 |
| Since 2011 (last 5 years) | 9 |
| Since 2006 (last 10 years) | 44 |
| Since 1996 (last 20 years) | 54 |
Descriptor
| Fuel Consumption | 610 |
| Energy Conservation | 431 |
| Energy | 254 |
| Fuels | 197 |
| Natural Resources | 146 |
| Elementary Secondary Education | 138 |
| Heating | 115 |
| Cost Effectiveness | 107 |
| Environmental Education | 106 |
| Conservation Education | 100 |
| More ▼ | |
Source
Author
| Scharmann, Larry, Ed. | 6 |
| Beaulieu, Barbara | 5 |
| Bartlett, Albert A. | 4 |
| Brown, Lester R. | 4 |
| Hansen, Shirley J. | 4 |
| Stephan, Ed | 4 |
| Stephan, Edward | 4 |
| Beard, J. Taylor | 3 |
| Bottinelli, Charles A. | 3 |
| Crittenden, Chris | 3 |
| More ▼ | |
Publication Type
Showing 1 to 15 of 610 results
Savasci, Funda – Science Activities: Classroom Projects and Curriculum Ideas, 2014
The purposes of this activity are to help middle school students understand the carbon cycle and realize how human activities affect the carbon cycle. This activity consists of two parts. The first part of the activity focuses on the carbon cycle, especially before the Industrial Revolution, while the second part of the activity focuses on how…
Descriptors: Science Instruction, Middle School Students, Secondary School Science, Scientific Concepts
Bartkovich, Kevin G. – Mathematics Teacher, 2013
The standard for measuring fuel efficiency in the U.S. has been miles per gallon (mpg). However, the Environmental Protection Agency's (EPA) switch in rating fuel efficiency from miles per gallon to gallons per hundred miles with the 2013 model-year cars leads to interesting and relevant mathematics with real-world connections. By modeling…
Descriptors: Efficiency, Fuels, Energy Education, Fuel Consumption
Hayden, Howard C. – Physics Teacher, 2013
A television advertisement and a website present an interesting question: can rail company CSX "really" move a ton of freight 468 miles on a gallon of fuel, or is the claim preposterous? Let us examine the claim, first by understanding what is meant, looking at their data, and then converting units to examine the claim quantitatively.
Descriptors: Science Instruction, Physics, Transportation, Fuels
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
Lazaros, Edward J. – Tech Directions, 2012
Most high school students are at an age when they are learning to drive. They often want to offer input when their parents decide on what vehicle to purchase, so the activity described in this article should have direct personal interest for them. It allows students to use technology and mathematics to determine the environmental impacts of…
Descriptors: Educational Technology, Engines, Power Technology, Energy Management
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)
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
O'Neill, Julie Treick – Rethinking Schools, 2012
Natural gas production in Wyoming is a lucrative and influential industry. All the perks--jobs, education spending, the budget surplus--are huge incentives for communities and the fossil fuel-friendly state legislature to play along, to stay silent. And many are willing. There has been natural gas production in the state for almost a century, but…
Descriptors: Hydraulics, Fuels, Global Education, Site Analysis
Delicado, Ana – Environmental Education Research, 2012
This article is based on a case study that follows the trajectory of a technological device aimed at environmental education from the engineering laboratory in which it was designed into the contexts in which it is used. "Greendrive" is a driving simulator that accurately reproduces the performance of a vehicle in terms of fuel consumption and…
Descriptors: Climate, Environmental Education, Engineering, Simulation
Lang, Aaron B. – Technology and Engineering Teacher, 2011
Transportation can simply be defined as the movement of goods, services, and people from one location to another. Without an efficient means to transport goods from place to place, the economy would be nothing like it is today. Throughout the history of the United States, American railroads have paved the way toward creating a nation of great…
Descriptors: Transportation, Power Technology, Distributive Education, United States History
Wikina, Suanu Bliss; Thompson, Cynthia Carlton; Blackwell, Elinor – Journal of Technology Studies, 2010
Increasing population, total economic volume, and human consumption levels have resulted in problems of resource shortages, climate change, ozone layer depletion, land regression, and deteriorating environmental pollution. Printing and related industries constitute one of the major sources of environmental pollution due to heavy energy and…
Descriptors: Printing, Industry, Energy, Depleted Resources
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
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
Hurowitz, Amanda – Understanding Our Gifted, 2010
Sometimes students come up with crazy ideas. When this author first started teaching at Thomas Jefferson High School for Science and Technology in Virginia five years ago, she had a sophomore share such an idea with her. He wanted to put solar panels on the school's roof as a way to reduce the school's carbon footprint and set a bright clean…
Descriptors: Sustainable Development, Conservation (Environment), Ecology, Energy Conservation
Quagliana, David F. – Tech Directions, 2010
This article describes an electrical technology experiment that shows students how to determine the cost of using an electrical appliance. The experiment also provides good math practice and teaches basic electricity terms and concepts, such as volt, ampere, watt, kilowatt, and kilowatt-hour. This experiment could be expanded to calculate the cost…
Descriptors: Fuel Consumption, Electronic Equipment, Energy, Experiments

Peer reviewed
Direct link
