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Engineering Education | 10 |
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Journal Articles | 10 |
Reports - General | 10 |
Opinion Papers | 2 |
Numerical/Quantitative Data | 1 |
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Practitioners | 7 |
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Koen, Billy Vaughn – Engineering Education, 1984
Defines the engineering method by: (1) giving a preliminary definition and examples of its essential term (heuristics); (2) comparing the definition to a popular alternative; and (3) presenting a simple form of the definition. This definition states that the engineering method is the use of engineering heuristics. (JN)
Descriptors: Definitions, Engineering, Engineering Education, Heuristics
Engineering Education, 1989
Summarizes the report of the Massachusetts Institute of Technology Commission on industrial productivity, "Made in America: Regaining the Productive Edge." Provides six comments on the report's implications of the role of engineering education. (YP)
Descriptors: College Science, Educational Change, Engineering, Engineering Education
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
Sheridan, Patrick J. – Engineering Education, 1981
Presents detailed and summary enrollment data by year, school, and curriculum for: (1) all engineering students (graduate and undergraduate); (2) women; (3) minority groups (Black, Hispanic, American Indian, and Asian/Pacific); and (4) foreign national students. Indicates enrollment gains by women, minorities, and foreign national students.…
Descriptors: Engineering Education, Engineering Technology, Enrollment, Enrollment Trends
Wolf, Lawrence J. – Engineering Education, 1987
Addresses several concerns regarding the identity of the field of engineering technology. Discusses engineering technology from the standpoint of its designation as a discipline, its body of knowledge, its professional status, its academic faculty, and the structure and policies that will allow it the most options for the future. (TW)
Descriptors: Associate Degrees, College Science, Degrees (Academic), Engineering Education
Kimel, William R.; Monsees, Melford E. – Engineering Education, 1979
Presented are the results of a survey to determine how qualified the recent graduates of engineering schools are. Comments from employers are included. (SA)
Descriptors: Academic Achievement, Basic Skills, Competence, Engineering Education
Beaufait, Fred W. – Engineering Education, 1991
Examines the rates of attrition for undergraduate engineering students by addressing the following issues: ease of transition from high school to college; relevance of basic science coursework to engineering curricula; emphasis on management within general education component; improvement of academic advising schemes; development of universal…
Descriptors: Counseling Services, Curriculum Design, Curriculum Development, Engineering Education
McCurdy, Lyle B. – Engineering Education, 1986
Investigated were 74 programs in electronic engineering technology programs by program type: (1) 2+2 (associates and bachelors--same institution); (2) C4 (bachelors only); (3) 3+1 (three-year associates plus one for bachelors); and (4) +2 (bachelors after associates elsewhere). Describes subject requirements by group, focusing on mathematics.…
Descriptors: Associate Degrees, Bachelors Degrees, College Mathematics, College Science
Ellis, Richard A. – Engineering Education, 1991
Presents tabular information culled from the twenty-third annual survey of engineering and engineering technology enrollments for postsecondary programs in the United States. Provides data on Fall 1990, enrollments listed by individual schools and states, including details for women, minorities and foreign nationals and also by major curricula.…
Descriptors: Community Colleges, Engineering Education, Enrollment Rate, Enrollment Trends
Hull, Daniel M.; Pedrotti, Leno S. – Engineering Education, 1986
Discusses the historical background of technical education. Assesses future directions including probable areas of need. Defines tasks to be performed and outlines needed skills and abilities. Proposes a training curriculum and considers articulation of high school and postsecondary education. (JM)
Descriptors: Associate Degrees, College Science, Core Curriculum, Engineering Technology