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Goldston, M. Jenice; Pan, Shanlin; Boykin, Karen; Allison, Elizabeth; Wehby, Scott – Science Teacher, 2016
Nanoscience development affects almost every discipline of science, engineering, and technology. Not surprisingly, "the science of small" is also finding its way into science classrooms. In general, "nano" refers to a billionth of a meter--about 1/50,000 the width of a hair follicle. The term "nanoparticle" usually…
Descriptors: Molecular Structure, Technology, Chemistry, Science Instruction
Hughes, Bill – Technology and Engineering Teacher, 2013
A low-cost and portable colorimeter kit has been designed and developed as an educational tool at Penn State University by Dr. Daniel Sykes for K-12 schools' integrated STEM learning. This scientific instrument allows students to learn how scientists utilize light as a means to study the chemical and physical properties of materials with an…
Descriptors: Chemistry, Algebra, Technology Education, Electronics
Jaffe, C. Carl – American Scientist, 1982
Describes principle imaging techniques, their applications, and their limitations in terms of diagnostic capability and possible adverse biological effects. Techniques include film radiography, computed tomography, nuclear medicine, positron emission tomography (PET), ultrasonography, nuclear magnetic resonance, and digital radiography. PET has…
Descriptors: Biology, Clinical Diagnosis, Computer Oriented Programs, Higher Education
Ting, Kuan-Chong – Engineering Education, 1983
Suggesting that selected research activities be integrated into engineering technology programs to give students experiences in new technology, this article discusses a project incorporating teaching, research, and service. A photograph and description of the solar experiment unit resulting from the project are provided. The unit runs on air,…
Descriptors: Engineering, Engineering Education, Higher Education, Laboratory Equipment

Silverman, Joseph – Journal of Chemical Education, 1981
Summarizes the technology of the field known as radiation processing, the term used to describe the large scale production or modification of materials by ionizing radiation. (CS)
Descriptors: Chemistry, College Science, Higher Education, Industry
Department of Energy, Washington, DC. – 1994
In recent years, the need for nuclear materials has decreased and the Department of Energy (DOE) has focused greater attention on cleaning up contamination left from past activities. The Office of Environmental Management (EM) within DOE is responsible for managing waste and cleaning up contamination at DOE sites across the nation. This collection…
Descriptors: Energy Education, Environmental Education, Federal Legislation, Hazardous Materials

Huber, Thomas P. – Journal of Environmental Education, 1983
Describes general concepts of remote sensing and provides three examples of how its techniques have been used in the context of environmental issues. Examples focus on the use of this data gathering technique in the visible (aerial photography), near infrared, and thermal infrared ranges. (JN)
Descriptors: College Science, Data Collection, Environmental Education, Higher Education

Whipple, Chris – Science, 1980
The energy required to build and install solar space- and water-heating equipment is compared to the energy saved under two solar growth paths corresponding to high and low rates of solar technology implementation. (Author/RE)
Descriptors: Energy, Energy Conservation, Environment, Fuel Consumption

Taub, Irwin A. – Journal of Chemical Education, 1981
Describes common features in the radiation chemistry of food components, and illustrates how product yields are predicted. Presents data that pertain to the radiolysis of the nitrate ion, metmyoglobin, myosin, and tripalmitin. (CS)
Descriptors: Chemistry, College Science, Food, Food Standards
Roberts, Kay, Ed.; And Others – 1980
Presented are proceedings and related documents of a workshop on alternative energy resources which was held in April, 1980. This information is intended to bring reference librarians up to date on alternative energy technologies and available reference materials to which library patrons may be directed. Among the speeches included are those…
Descriptors: Alternative Energy Sources, Energy, Information Dissemination, Information Sources
Rose, Harvey, Ed. – 1982
Twenty articles addressing different aspects of solar energy are compiled in this book. They represent the views of different governmental and non-governmental organizations, members of congress, and other individuals including, for example, Barry Commoner and Amory Lovins. Topics discussed include the need for federal support, passive solar…
Descriptors: Alternative Energy Sources, Conservation Education, Economic Factors, Energy

Hill, P. D. – Physics Education, 1989
Described are the characteristics of the laser and its effects on the body. Discussed are examples of laser treatments, including angioplasty, ophthalmology, and dermatology. A discussion of lasers of clinical interest and their applications is presented. (YP)
Descriptors: College Science, Electronics, Higher Education, Lasers
Leander Independent School District, TX. – 1989
Principles of Technology was designed as a high school course in applied science for vocational students in the 11th and 12th grades in Leander, Texas. It consists of a 2-year curriculum covering 14 units in applied physics: (1) force; (2) work; (3) rate; (4) resistance; (5) energy; (6) power; (7) force transformers; (8) momentum; (9) waves and…
Descriptors: Competency Based Education, Curriculum Guides, Energy, Force
Ericson, Katharine – 1980
Solutions to this country's energy problems can be found through a combination of conservation measures and solar technology. Accordingly, this book provides an overview of employment in the solar energy and energy conservation fields, an analysis of related life styles and working situations, a listing of solar energy programs and agencies, and a…
Descriptors: Alternative Energy Sources, Employment Opportunities, Energy, Energy Conservation

Leaf, Alexander; Ohkita, Takeshi – Environment, 1988
Summarized are some aspects of knowledge about the potential health consequences of a nuclear war. Discussed are fires, radioactive fallout, and synergistic effects. (CW)
Descriptors: Controversial Issues (Course Content), Environmental Education, Futures (of Society), Global Approach
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