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Edgar, T. F. – Chemical Engineering Education, 1990
Discusses a "process control" course in undergraduate chemical engineering. Describes current practices and philosophy and an outline for a course to be taught in the future. Appended are summaries of 12 participants' discussion. (YP)
Descriptors: Chemical Engineering, College Science, Course Content, Course Descriptions
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Solen, Kenneth A.; Kuchar, Marvin C. – Chemical Engineering Education, 1990
Presents some principles for specifying general classes of polymers for predicting relative chemical attack from acids, bases, oxidants, and certain common antagonists. Also discusses predicting relative solvent effects. Suggests uses of this information in two or three lectures in a chemical engineering materials course. (YP)
Descriptors: Chemical Engineering, Chemical Reactions, College Science, Course Content
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Chemical and Engineering News, 1990
Presents statistical data on chemistry and chemical engineering departments for the 1988-89 academic year. Provides tables for departments offering approved programs, degrees awarded by schools, and trends during the last five years. (YP)
Descriptors: Chemical Engineering, Chemistry, College Science, Doctoral Programs
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Karunes, S. – European Journal of Engineering Education, 1988
Describes management courses for undergraduates and postgraduates and supplementary training methods at the Indian Institute of Technology (IIT). Introduces tasks of the Center for Management Studies created in the Institute. Provides courses of study for Bachelor of Technology, Master of Technology, and Master of Science in the Appendices. (YP)
Descriptors: Administration, College Science, Course Content, Engineering Education
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Towill, Denis R. – European Journal of Engineering Education, 1988
Investigates the potential for carry-over of prior learning from one scenario to the next at various parts of the hard-soft spectrum in a control engineering context. Discusses hard-soft systems, input-output analysis, law of industrial dynamics, decision-making, developing models, model sensitivity analysis, and educational programs. (YP)
Descriptors: College Science, Engineering Education, Engineers, Higher Education
White, John A. – Engineering Education, 1989
This article outlines the problems in the student pipeline and the faculty pipeline related to engineering. Difficulties of women engineering faculty members are discussed. (YP)
Descriptors: College Faculty, Engineering Education, Faculty Development, Faculty Recruitment
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Jensen, Mogens – European Journal of Engineering Education, 1989
Described are the formation of DEUS (Danish Enterprise University System) consortium and DEUS TraiNet as examples of European collaboration program. The organization, technology, computer conferencing, service, and multimedia training of the programs are summarized. (YP)
Descriptors: Computer Networks, Continuing Education, Cooperation, Cooperative Programs
Doigan, Paul; Gilkeson, Mack – Engineering Education, 1988
Reports on the flow of faculty members to and from academic institutions. Compares data between public and private institutions and between predominantly Ph.D. versus B.S. degree producing institutions. Discusses the problems of maintaining the quality of education offered by engineering and engineering technology administrators. (YP)
Descriptors: College Science, Engineering, Engineering Education, Engineering Technology
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Marshall, Stewart – European Journal of Engineering Education, 1988
Describes a course designed to improve the professional qualities and skills of students by using a design project as the focal point of the course. Gives an example of a product development program including the introduction, stages, and evaluation. (Author/YP)
Descriptors: College Science, Course Descriptions, Engineering Education, Engineers
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Holden, Constance – Science, 1989
Presented are employment projections in science and engineering. A shortfall is predicted unless more women and minorities can be attracted to science. Projections are based on a number of demographic and educational statistics. (CW)
Descriptors: College Science, Educational Trends, Employment Patterns, Employment Projections
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Florman, Samuel C. – Issues in Science and Technology, 1989
Discussed is the narrowness of engineering education in the recent past. A more liberal education for engineers is proposed. The benefits of such an approach, personally, professionally, and to society are described. (CW)
Descriptors: College Science, Engineering Education, Engineers, Higher Education
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Fishwick, Wilfred – European Journal of Engineering Education, 1989
Discusses the way in which European engineering schools might advance the development of developing countries by cooperating with engineering and technical schools in those countries, including cooperation between schools and industry, continuing education, curriculum design, research and development, and educational technology. (YP)
Descriptors: College Science, Developing Nations, Engineering, Engineering Education
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England, R.; Field, R. W. – Chemical Engineering Education, 1989
This article focuses on the changes made in the undergraduate laboratory program of the first degree course in chemical engineering at the University of Bath (England). Describes experiments relating to the Engineering Applications 1 (EA1) requirements set by the Engineering Council. (YP)
Descriptors: College Science, Course Content, Course Descriptions, Engineering
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Klusacek, K.; And Others – Chemical Engineering Education, 1989
Illustrates how triangular diagrams can aid in presenting some of the rather complex transient interactions that occur among gas and surface species during heterogeneous catalytic reactions. The basic equations and numerical examples are described. Classroom use of the triangular diagram is discussed. Several diagrams and graphs are provided. (YP)
Descriptors: Chemical Engineering, Chemical Equilibrium, Chemical Reactions, College Science
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Ramkrishna, D.; And Others – Chemical Engineering Education, 1989
This is a summary of a seminar for changing the undergraduate chemical engineering curriculum in India. Identifies and describes biotechnology, materials for structural and microelectronic catalysis, and new separation processes as emerging areas. Evaluates the current curriculum, including basic science, engineering lore, chemical engineering,…
Descriptors: Chemical Engineering, College Science, Curriculum Development, Curriculum Guides
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