Energy Courses

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Results 1 - 10 of 28 matches

Sustainable and Fossil Energy: Options and Consequences part of Courses
This course will combine lectures, field trips and laboratory exercises to explore the science, technology, and policy implications of sustainable and fossil energy options. The course will be taught in Wyoming and Idaho and take advantage of the numerous energy resources of the Rocky Mountain region.

Environment and the Earth Class part of Starting Point-Teaching Entry Level Geoscience:Service Learning:Examples
Compiled by Suzanne Savanick, Science Education Resource Center. Based on Bixby et al. (2003), Ecology on Campus: Service Learning in Introductory Environmental Courses, Journal of College Science Teaching, v. 32, n.5, o, 327-331.
Approximately 150 undergraduate students in the Environment and the Earth class at the University of South Carolina participated in a campus environmental service-learning project. The students collected data on lighting, water fixtures, recycling bins, and trash in five academic buildings. Signs were hung in the buildings and data were collected a second time.

Energy and the Environment part of Courses
Chris Sinton, Ithaca College
This course is designed to help students understand the earth energy system and the potential impact of human activity. Students are asked to gather and analyze data regarding energy generation, efficiency, and environmental impacts. The course focuses on quantitative analysis of energy systems, but also covers the socio-political and economic components.

Natural Disasters and Earth Resources part of Introductory Courses:Courses
Mathieu Richaud, California State University-Fresno
Processes and materials that produce the different geologic resources and hazards (earthquakes, volcanoes, floods, landslides). Plate tectonic theory. Emphasizes the relationship between geology and humans.

Conservation of Natural Resources part of Complex Systems:Courses
Jeff Wilson, The University of Texas at Brownsville
This course utilizes current literature seminar-style discussions and integrates the virtual world software SECOND LIFE into some of the content/presentations.

Sustainable Communities part of Courses
Martha Henderson, The Evergreen State College
Sustainable Communities address the role of social capital in maintaining and promoting local healthy communities. This course focused on the role of sustainable farming and energy production in reaching at-risk youth in rural communities undergoing economic and social change.

The Earth's Energy Resources (GEOL 115) part of Courses
Richard Kettler, University of Nebraska at Lincoln
This course examines the geology of energy resources. Emphasis is placed on those energy resources that society values most highly and consumes most voraciously. We emphasize those aspects of geology that are particularly relevant to the production of energy resources and to attempts to estimate the ultimate global recovery of these resources. We also consider briefly policy issues related to energy resource development, production, and utilization.

PC 121 - Energy and Society part of Courses
Bob Ford, Frederick Community College
Explores the nature and properties of energy. Emphasizes a scientific understanding of energy and is role in the global society. Examines current and alternative energy sources used to meet the needs of a growing and developing society. Some Friday or Saturday field trips.

GEOS 195 "Introduction to Fossil Fuels" part of Courses
James Staub, The University of Montana-Missoula
A a rigorous introductory course designed to provide an overview of geologic, geochemical, and geophysical principles and concepts associated with fossil fuel origins, exploration, development, production, and utilization. The course starts with a general introduction to fossil fuels and geologic principles and ends with a discussion of environmental issues associated with fossil fuel use.

Environmental Security part of Courses
Marie Johnson, United States Military Academy
This course explores the link between the environment and national security. It specifically focuses on four key drivers: food, water, infectious disease and energy. If a state cannot secure enough food and water for its citizens, effectively respond to infectious disease outbreaks and/or provide energy to drive its economy, it runs the risk of disintegrating socially and politically, becoming a breeding ground for terrorism and violence, and threatening the stability of all other states in our globalized society.