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Connolly, Patrick E.; Sadowski, Mary A. – Engineering Design Graphics Journal, 1999
Proposes a simple approach for including exercises into the freshman level classroom to help first and second semester students approach and solve problems in novel and inventive ways. (Author/CCM)
Descriptors: Creative Development, Engineering Education, Engineering Graphics, Engineering Technology

Rao, Y. K. – Chemical Engineering Education, 1979
Shows that upon incorporating an irreversible step into an otherwise reversible Carnot Cyclic process there results a diminution of thermodynamic efficiency and a simultaneous augmentation of the entropy of the universe. (Author/HM)
Descriptors: College Science, Engineering Education, Engineering Technology, Higher Education
Vanderburg, Willem H. – Bulletin of Science, Technology and Society, 2006
This third part continues the exploration of how we can overcome the limitations of the present knowledge system. In preparation, two aspects of current engineering theory and practice are examined because they are paradigmatic: the concept that engineering is essentially problem-solving, which goes against our understanding of human skill…
Descriptors: Theory Practice Relationship, Skill Development, Engineering Technology, Hidden Curriculum
Thomas, Charles R. – Engineering Education, 1985
Discusses programming projects in applied technology courses, examining documentation, formal reports, and implementation. Includes recommendations based on experience with a sophomore machine elements course which provided computers for problem solving exercises. (DH)
Descriptors: Computer Oriented Programs, Curriculum Development, Engineering, Engineering Education
Eng Educ, 1969
Proposes preparation of urban engineers through interdisciplinary systems engineering research in order that technology may be applied to urban problems such as transportation, environment, and housing. Summary of report by the Urban Engineering Study Committee. Complete report available at
Descriptors: Engineering Technology, Higher Education, Interdisciplinary Approach, Problem Solving

Koen, Billy V. – European Journal of Engineering Education, 1988
Describes a preliminary definition of engineering method as well as a definition and examples of engineering heuristics. After discussing some alternative definitions of the engineering method, a simplified definition of the engineering method is suggested. (YP)
Descriptors: College Science, Definitions, Engineering, Engineering Education
Tribus, Myron – Engineering Education, 1977
Proposes new approaches to engineering education. Adaptability is central to the idea of developing flexible adults able to cope with a changing world. Stresses the need to educate students for a continuous, life-long education. This is seen as the role of the university. (MA)
Descriptors: Cooperative Education, Discovery Learning, Engineering Education, Engineering Technology
Thomas, Walter E. – Engineering Education, 1977
In this article, some of the essential factors to a good technical program are identified. Seen as three major factors are: (1) teaching students to define problems; (2) teaching students that most engineering problems have more than one solution and contain trade-offs; (3) instilling a desire for continuous education. (MA)
Descriptors: Cognitive Processes, Decision Making Skills, Engineering Education, Engineering Technology
Koen, Billy Vaughn – 1985
In an effort to more clearly define the engineering method, this document attempts to draw distinctions between engineering and science. Part I, "Some Thoughts on Engineering," discusses strategies that engineers employ to solve problems, and the characteristics of the types of engineering problems. Part II, "The Principal Rule of the Engineering…
Descriptors: Definitions, Engineering Education, Engineering Technology, Engineers

Rodriguez-Ramos, Walter E. – Engineering Design Graphics Journal, 1987
Advances four propositions in an effort to provide a frame of reference for a new generation of interactive engineering graphics scholars. Suggests the integration of traditional engineering graphics with new production tools such as computer-aided design drafting. Proposes that graphics problem-solving educational opportunities be maximized. (CW)
Descriptors: College Science, Computer Graphics, Computer Uses in Education, Drafting