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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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Bolton, William K. – European Journal of Engineering Education, 1985
A number of new initiatives have been started in the United Kingdom to bring universities and industry closer together. Several of these programs are outlined and the experience at Cambridge University with a research and teaching program linked directly to a manufacturing industry is described. (Author/JN)
Descriptors: Cooperative Programs, Engineering Education, Higher Education, Industry
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Crossland, Bernard – European Journal of Engineering Education, 1985
Discusses the development of industrial collaboration in engineering education in the United Kingdom, focusing on Queen's University in Belfast (Ireland). This example was selected since northern Ireland has suffered severe industrial decline and the importance of collaboration to rebuild its industrial base is recognized both in education and…
Descriptors: Cooperative Programs, Engineering Education, Higher Education, Industry
Felder, Richard M. – Engineering Education, 1984
Discusses eight steps to modify the way engineering schools operate. They include hiring some experienced engineers as faculty, incorporating peer and student review of teaching performance in faculty evaluations, reversing the tendency to make curricula increasingly narrow and specialized, and adopting a systems approach to engineering education.…
Descriptors: Curriculum Development, Educational Improvement, Engineering Education, Faculty Evaluation
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Spies, Karl – European Journal of Engineering Education, 1985
Discusses (1) the current status of computers on the mathematical training of engineers; (2) future prospects; and (3) mathematical topics that should be incorporated into precollege curricula (such as geometry and analytical geometry of parabola, ellipse, and hyperbola within the algebraic and geometric framework). (JN)
Descriptors: Computers, Educational Trends, Engineering Education, Higher Education
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Doornbos, R.; Dijkstra, J. B. – European Journal of Engineering Education, 1985
Discusses the use of computers in teaching these courses at the Eindhoven University of Technology: (1) regression analysis; (2) generalized linear models; and (3) multivariate statistical methods. Students also use the computer for their final studies for validating statistical tests. (JN)
Descriptors: College Mathematics, Engineering Education, Higher Education, Mathematics Education
Finniston, Monty – International Journal of Applied Engineering Education, 1985
Describes several key characteristics of professionalism and an engineering education curriculum which focuses on developing professionalism. The entrance course, teaching design, structured training, and continuing development are among the curricular areas addressed. (JN)
Descriptors: Curriculum Development, Educational Trends, Engineering Education, Futures (of Society)
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Pinch, Trevor J.; Bijker, Wiebe E. – Social Studies of Science, 1984
Outlines arguments for and reviews related literature suggesting that the study of science and technology can benefit from each other. Also discusses the Empirical Program of Relativism and social constructivist approaches to the study of technology, illustrating the parallels between the two approaches. Directions for the future are addressed.…
Descriptors: Curriculum Development, Engineering, Futures (of Society), Higher Education
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Smalley, Lee – Technology Teacher, 1984
Examines the issues and lists available options for these questions: why don't teachers (1) teach about the future, (2) use results of educational research, (3) focus on teacher-student interaction, (4) assign grades from a competency criterion, and (5) teach the structure of mechanical drafting. (SK)
Descriptors: Competency Based Education, Engineering Drawing, Futures (of Society), Research Utilization
O'Donoghue, R. – Engineering Education, 1984
Discusses a method that reinforces and monitors "correct" writing and editing, reviews the rhetoric for "effective" writing, and demonstrates how specific technical writing tasks fit into an engineer's everyday writing. An example of a technical writing task used in sophomore engineering classes is included. (JN)
Descriptors: Editing, Engineering Education, Higher Education, Technical Writing
Engineering Education, 1976
Presented is the tabulated data of the 1975-76 survey of engineering institutions by the Engineer's Council for Professional Development. Data are provided for eight regions and include: institutional operating income, engineering operating funds, faculty salaries, program costs, equipment value, and facilities. (SL)
Descriptors: Costs, Engineering Education, Facilities, National Surveys
Friedly, John C. – Engineering Education, 1976
Described and assessed is the Interdepartmental Program in Engineering at the University of Rochester which allows engineering students the opportunity to design their own curriculum. (SL)
Descriptors: Core Curriculum, Curriculum, Curriculum Design, Engineering Education
Gat, Dimitri V. – Technical Writing Teacher, 1976
Descriptors: Business Communication, Class Activities, Employment Interviews, Engineering
Lee, Lung-Sheng Steven – 2003
In Taiwan's universities and colleges, the engineering department is a significant asset to higher education programs, and the department chair is expected to play multiple roles and take on many responsibilities. In order to know these roles and responsibilities better, 4 roles and 29 responsibilities were identified and constructed into a…
Descriptors: Administrator Attitudes, Administrator Responsibility, Administrator Role, Department Heads
Brawner, Catherine E.; Felder, Richard M.; Allen, Rodney H.; Brent, Rebecca – 2001
SUCCEED (Southeastern University and College Coalition for Engineering Education)is an 8-campus coalition of engineering schools formed in 1992 under the sponsorship of the National Science Foundation. In 1997, members of SUCCEED's faculty development and program assessment teams designed a faculty survey of instructional practices and attitudes…
Descriptors: Educational Quality, Educational Strategies, Engineering Education, Excellence in Education
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