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Takoudis, Christos G. – Chemical Engineering Education, 1987
Describes a 15-week course in the fundamentals of microelectronics processing in chemical engineering, which emphasizes the use of very large scale integration (VLSI). Provides a listing of the topics covered in the course outline, along with a sample of some of the final projects done by students. (TW)
Descriptors: Chemical Engineering, College Science, Computer Uses in Education, Course Content
Bordogna, Joseph; And Others – Engineering Education, 1987
Discusses the need to integrate management and technology in engineering education programs. Describes the undergraduate management and technology program at the University of Pennsylvania. Outlines both the four-year and five-year options, describing two integrative courses that were developed specifically for the program. (TW)
Descriptors: College Science, Course Content, Course Descriptions, Economics Education
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Thomas, Gary – New Directions for Community Colleges, 1988
Explains how, to facilitate transfer for engineering students, the New Jersey Institute of Technology has worked with community colleges in developing four variants on articulation: 2 + 2 programs, cooperative education programs, consortial arrangements, and dual admissions. (DMM)
Descriptors: Articulation (Education), Community Colleges, Consortia, Cooperative Education
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Joye, Donald D.; Koko, F. William Jr. – Chemical Engineering Education, 1988
Presents a new method to teach the subject of evaporators which is both simple enough to use in the classroom and accurate and flexible enough to be used as a design tool in practice. Gives an example using a triple evaporator series. Analyzes the effect of this method. (CW)
Descriptors: Algorithms, Chemical Engineering, Chemistry, College Science
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Khonsari, M. M.; Horn, D. – Engineering Design Graphics Journal, 1987
Offers a method for interactive design of objects on a computer. Outlines a method which allows the designer to interact with orthogonal views to construct a three dimensional model of an arbitrary shape. Presents an algorithm based on the Bezier curves to efficiently create smooth curves and surfaces. (CW)
Descriptors: College Science, Computer Graphics, Computer Uses in Education, Engineering Education
Creese, Robert – Engineering Education, 1987
Describes the engineering education program at the Aalborg University Center in Denmark. Details the aims of the program. Outlines the programs and multidisciplinary departments of the university. Explains how students are grouped around projects. Reviews the evaluation process. Examines the attitudes of students in the program. (CW)
Descriptors: Civil Engineering, College Science, Course Descriptions, Engineering Education
Steinberg, Esther R.; Baskin, A. B. – Engineering Education, 1987
Reports on a study which investigated the effects of having students analyze circuits in the laboratory compared with troubleshooting from homework problems. Results indicated that laboratory experiences provide a richer learning experience than lecture and homework alone. (TW)
Descriptors: College Science, Computer Science, Computer Uses in Education, Electric Circuits
Saigal, Anil – Engineering Education, 1987
Addresses the status of engineering education for women. Discusses the changes related to both the image of women and the engineering profession over the past 15 years. Assesses how computer-aided engineering has made engineering attractive to women today. (TW)
Descriptors: Career Choice, Career Education, College Science, Computer Science
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Chemical and Engineering News, 1986
Reports on the amounts and trends in spending on research and development in chemistry in the United States. Profiles industrial, federal, and academic sectors, both in applied and basic research. (JM)
Descriptors: Chemical Industry, Chemistry, Employment Statistics, Engineering Education
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Beronja, Terry A.; Bee, Richard H. – NACADA Journal, 1986
As enrollments in engineering programs soar, many schools have been forced to control enrollment, resulting in a large population of pre-engineering majors. To aid in the understanding and advising of these majors, student profiles reflecting motivation patterns are presented. (MLW)
Descriptors: Career Choice, College Students, Data Analysis, Data Collection
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Bolton, Brian – Assessment and Evaluation in Higher Education, 1986
An electrical engineering program in which a field experience component is used both to enhance training and to evaluate the program's outcomes is described. The curriculum development process is highlighted. (MSE)
Descriptors: Curriculum Design, Engineering Education, Evaluation Methods, Experiential Learning
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Burnett, J. Nicholas – Weaver, 1986
Describes a chemical engineering course for liberal arts students that is taught from a scientific, social, and symbolic perspective. A summary of the early days of oil refining is included as representative of one of the major content segments of the course. (ML)
Descriptors: Chemical Engineering, Chemistry, College Science, Course Descriptions
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Brandt, Dietrich; Sell, Robert – European Journal of Engineering Education, 1986
Explains the context in which courses aimed at improving problem-solving skills are implemented. Describes the structure and content of courses and evaluates activities designed to develop problem-solving skills, including a discussion of factors affecting students in their ability to perform. (JM)
Descriptors: College Science, Communication Skills, Course Content, Critical Thinking
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Butcher, P. G. – Computers and Education, 1986
Describes design and production of the award-winning software used to control Great Britain's Open University Materials Science videodisc, the Teddy Bear Disc, which is used to teach undergraduate students about materials engineering. The disc is designed for use in one-week sessions, which students attend in July or August. (MBR)
Descriptors: Computer Assisted Instruction, Computer Software, Design, Diagrams
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Walsh, John – Science, 1984
Discusses current activities of the National Science Foundation's (NSF) education directorate, including proposed programs to upgrade science and mathematics teaching at the elementary and junior high school levels. Includes comments by Bassam Z. Shakhashiri, NSF's new assistant director for science and engineering education. (JN)
Descriptors: Educational Improvement, Elementary School Science, Elementary Secondary Education, Engineering Education
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