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Parsons, H. McIlvaine – 1981
Various aspects of automation are explained to differentiate it from technology and mechanization and to show the difference between using equipment to help humans and using equipment to replace humans. Five reasons are given for engineering psychology to focus its attention on automation. Automation issues in a number of areas are discussed,…
Descriptors: Aerospace Education, Automation, College Science, Engineering
Cutcliffe, Stephen H., Ed. – 1985
This collection of essays is the second volume in a series of working papers from Lehigh University Technology Studies Resource Center. The papers focus on the ethical implications of engineering as a profession and the current problems associated with the public responsibility of engineers. Issues that relate to the ethical dimensions of…
Descriptors: Engineering, Engineering Technology, Engineers, Ethics
Hancock, John C. – Engineering Education, 1979
This interim report of the American Society for Engineering Education is intended to keep members informed and encourage them to offer viewpoints on current issues. Recommendations given relate to lifelong education, programs and curricula, accreditation, teaching methods, supply and demand, communication with the public, society, certification,…
Descriptors: Accreditation (Institutions), Career Awareness, Career Planning, Curriculum Development
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Timmerhaus, Klaus D. – Chemical Engineering Education, 1981
Discusses low temperature heat transfer, transient heat transfer, and developments in steady state heat transfer. (SK)
Descriptors: Chemistry, College Science, Engineering, Engineering Education
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Lepkowski, Wil – Chemical and Engineering News, 1984
Discusss studies (commissioned with the Office of Technology Assessment, Congressional Research Service, and General Accounting Office) which will inform the House Science and Technology Committee members and Congress of various issues related to science policy. Includes a list of questions which indicate the range of issues under consideration.…
Descriptors: Engineering, Engineering Education, Federal Aid, Federal Programs
Science85, 1985
Describes (in separate articles) 25 developments in science, technology, and medicine that have potential impact on the near future. They include discoveries related to space butterflies, drugs, twenty-first century software, experimental mathematics, brain drugs, egg development, ultrasmall microchips, the biology of birth, cancer-causing genes,…
Descriptors: Computer Science, Computer Software, Genetic Engineering, Mathematics
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Rao, J. S. – Science, 1985
Assesses the current status of science and technology in India, focusing on developments in agriculture, energy, medicine, space, basic sciences, and engineering. Indicates that although India has benefited in many fields from international collaboration during the last 30 years, the country's leaders have also placed particularly strong emphasis…
Descriptors: Agriculture, Engineering, Foreign Countries, Health
Russell, Robert A. – Science, Technology and Society, 1985
Examines the history and resurgence of machine translation, describing metalanguages and transfer languages as algorithms for transforming source languages into target languages and reviewing prospects for the future. Indicates that leadership in this field is held by Japan for both hardware and software development for Japanese/English…
Descriptors: Asian Studies, Engineering, Higher Education, Japanese
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Harrison, Anna J. – Science, 1984
Discusses: (1) the synergistic nature of science, technology, and engineering; (2) the benefits and burdens of technology; (3) the resolution of societal issues; and (4) the roles and responsibilities of scientists and engineers in the resolution of societal issues. (JN)
Descriptors: Agriculture, Engineering, Engineers, Higher Education
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Lepkowski, Wil – Chemical and Engineering News, 1984
Indicates that the National Science Foundation (NSF) will emphasize technology to spur United States competition in technological development by raising support for engineering staff, research, and equipment. Includes a list of areas on which proposed engineering research centers should focus. (JN)
Descriptors: Engineering, Federal Programs, Higher Education, Research and Development Centers
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OECD Observer, 1986
Presents the salient characteristics of science and technology activities in the Organization for Economic Cooperation and Development area and indicates the main similarities and differences between member countries. Includes data on: trends in research and development (R & D) spending; university research; R & D in industry; and other…
Descriptors: Engineering, Expenditures, Financial Support, Higher Education
National Science Foundation, Washington, DC. – 1982
The eight working papers presented in this compendium were prepared for the National Science Foundation (NSF) as one means to assist the Office of Science and Technology Policy with preparation of the Administration's Annual Science and Technology Report to the Congress, 1981. They focus on specific aspects of three central themes directly related…
Descriptors: College Science, Cooperative Planning, Engineering Education, Federal Aid
Gunn, Thomas G. – Scientific American, 1982
Describes changes in the design of products and in planning, managing, and coordinating their manufacture. Focuses on discrete-products manufacturing industries, encompassing the fabrication and assembly of automobiles, aircraft, computers and microelectric components of computers, furniture, appliances, foods, clothing, building materials, and…
Descriptors: Assembly (Manufacturing), Automation, Computer Oriented Programs, Design
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Stone, Joics – 1975
Described is a study of the technical manpower spectrum. Particularly examined is the information collected from industry concerning how technically-trained people are used. Data on training appropriateness for particular job requirements are also examined. Conclusions are intended to assist educational institutions in formulating policy to better…
Descriptors: Careers, Employer Attitudes, Engineering Education, Engineers
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Hull, David – Science, Technology, and Human Values, 1985
Characteristics of science are explained through a historical and a functional approach. Indicates that science works successfully toward traditional goals because individual and group goals tend to coincide, and that competition between individual scientists contributes to the functional organization of science. (DH)
Descriptors: College Science, Disclosure, Engineering, Higher Education
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