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Parra, Jessica Zlockie – Geography Teacher, 2019
A lot of the activities of daily living require energy, playing video games, making dinner, turning on the lights, using a computer, and perhaps even brushing our teeth requires energy. In this unit students discover what energy is, think about where it comes from, analyze options for making energy evaluate feasibility in different parts of the…
Descriptors: Energy Conservation, Lesson Plans, Energy, Elementary School Teachers
Chien, Sen-I; Su, Chaochin; Chou, Chin-Cheng; Li, Wen-Ren – Journal of Chemical Education, 2018
The present study describes the design of a simple teaching module for each student to fabricate a dye-sensitized solar cell (DSSC) that could power a small fan motor. The significance of this laboratory exercise is to stimulate students' motivation by visualizing the light being converted into electricity, which is then switched over to kinetic…
Descriptors: Science Instruction, Energy, Kinetics, High School Students
Rusk, Bryan; Mahfouz, Tarek; Jones, James – Tech Directions, 2011
Energy exists in many forms and can be converted from one form to another. However, this conversion is not 100% efficient, and energy is lost in the form of heat during conversion. In addition, approximately 6% of the monthly consumption of the average American household's electricity is neither lost nor used by its residents. These losses are…
Descriptors: Energy Conservation, Energy, Heat, Power Technology
Roman, Harry T. – Tech Directions, 2011
Using two cardboard boxes, a light bulb socket, light bulbs of varying wattage, a thermometer, and some insulation, students can learn some interesting lessons about how heat loss occurs in homes. This article describes practical experiments that work well on units related to energy, sustainable energy, renewables, engineering, and construction.…
Descriptors: Science Activities, Energy, Heat, Energy Conservation
Roeder, John L. – AAPT Press, 2009
Energy is a fundamental concept in physics, playing an important role in every aspect of the world around us. The conversion of energy among its many forms has enabled both the sustenance of living organisms on Earth and our development of a society based on the manufacture of products for our own convenience. All of these aspects of energy are…
Descriptors: Energy Conservation, Scientific Concepts, Science Instruction, Energy
Claymier, Bob – Science and Children, 2009
This lesson combines the science concepts of renewable energy and producing electricity with the technology concepts of design, constraints, and technology's impact on the environment. Over five class periods, sixth-grade students "work" for a fictitious power company as they research wind as an alternative energy source and design and test a…
Descriptors: Environmental Education, Energy, Scientific Concepts, Grade 6
Gales, Jenna; Baker, Blane – Physics Teacher, 2008
Energy concepts are fundamentally important for describing and analyzing systems ranging from subatomic particles to spiral galaxies. In general, students first encounter such concepts in introductory courses that typically focus on forms of energy, energy transfer, and conservation laws. Within these courses, conservation of mechanical energy is…
Descriptors: Introductory Courses, Energy Conservation, Science Activities, Scientific Concepts
Dinan, Frank; Stabler, Tom – Journal of College Science Teaching, 2008
This case study stresses the need to broadly consider an entire system, including all of the energy inputs and outputs involved, to determine the real efficiency of that system. It also asks its student audience to consider the role that scientific input plays in policy decision-making processes. It emphasizes that, despite the importance of this…
Descriptors: Decision Making, Energy, Public Policy, Fuels
Daehler, Kirsten; Folsom, Jennifer; Shinohara, Mayumi – WestEd, 2011
Proven through more than a decade of rigorous research to be effective with both teachers and students, "Making Sense of SCIENCE" helps teachers gain a deep and enduring understanding of tricky science topics, think and reason scientifically, and support content literacy in science, thereby increasing student achievement. The materials…
Descriptors: Science Instruction, Teaching Methods, Scientific Literacy, Science Achievement
Hirvonen, P. E. – European Journal of Physics, 2007
This study explores how the use of a surface-charge-based instructional approach affects introductory university level students' understanding of direct current (dc) circuits. The introduced teaching intervention includes electrostatics, surface-charge-based micro-models that explain the existence of an electric field inside the current-carrying…
Descriptors: College Students, Higher Education, Energy, Energy Conservation
Domenech, Josep Lluis; Gil-Perez, Daniel; Gras-Marti, Albert; Guisasola, Jenaro; Martinez-Torregrosa, Joaquin; Salinas, Julia; Trumper, Ricardo; Valdes, Pablo; Vilches, Amparo – Science & Education, 2007
The growing awareness of serious difficulties in the learning of energy issues has produced a great deal of research, most of which is focused on specific conceptual aspects. In our opinion, the difficulties pointed out in the literature are interrelated and connected to other aspects (conceptual "as well as" procedural and axiological), which are…
Descriptors: Energy, Misconceptions, Science Instruction, Scientific Concepts
van Sark, Wilfried G. J. H. M. – European Journal of Physics, 2007
To reach a sustainable world the use of renewable energy sources is imperative. Photovoltaics (PV) is but one of the technologies that use the power of the sun and its deployment is growing very fast. Several master programs have been developed over the world, including Utrecht University, that teach these technologies. Within the framework of a…
Descriptors: Energy Conservation, Energy, Natural Resources, Conservation (Environment)
Edgar, Thomas F. – Chemical Engineering Education, 2007
The emerging energy situation in the United States puts chemical engineering at the forefront of the large research and education effort that will need to be undertaken during the next 20 years. Chemical engineering undergraduates and graduate students will need to be literate on energy alternatives and the interconnection of technology,…
Descriptors: Nuclear Energy, Chemistry, Energy, Science Instruction
Brand, Lance; Warren, Ande; Fitzgerald, Mike – Tech Directions, 2006
Having students design and construct solar cookers is a great way to teach them about designing to meet human needs and about many basic global issues related to health and the environment. Because the activity includes solid content from the fields of math, science and technology, it is an excellent vehicle for technology educators who want to…
Descriptors: Heat, Energy Conservation, Environmental Education, Energy

Roberts, Michael J.; Thomas, M. Pugh – Environmental Education and Information, 1990
This paper defines renewable energy and outlines possible sources of this energy. Supplies, and ethics are considered. The position of renewable energy sources in the energy policy of Great Britain are discussed. (CW)
Descriptors: Alternative Energy Sources, Energy, Energy Conservation, Environmental Education