Publication Date
| In 2026 | 0 |
| Since 2025 | 15 |
| Since 2022 (last 5 years) | 95 |
| Since 2017 (last 10 years) | 237 |
| Since 2007 (last 20 years) | 478 |
Descriptor
| Curriculum Development | 1197 |
| Engineering Education | 925 |
| Higher Education | 478 |
| Foreign Countries | 286 |
| Engineering | 282 |
| Teaching Methods | 215 |
| Science Education | 212 |
| College Science | 160 |
| Educational Change | 141 |
| Undergraduate Study | 129 |
| Interdisciplinary Approach | 127 |
| More ▼ | |
Source
Author
Publication Type
Education Level
Audience
| Practitioners | 128 |
| Teachers | 78 |
| Administrators | 38 |
| Policymakers | 16 |
| Researchers | 11 |
| Students | 3 |
| Community | 2 |
Location
| Australia | 26 |
| Canada | 17 |
| United Kingdom | 17 |
| South Africa | 16 |
| Georgia | 13 |
| Sweden | 11 |
| United Kingdom (Great Britain) | 11 |
| United States | 11 |
| Brazil | 10 |
| Taiwan | 10 |
| Texas | 10 |
| More ▼ | |
Laws, Policies, & Programs
| Morrill Act 1862 | 2 |
| Morrill Act 1890 | 1 |
Assessments and Surveys
| Myers Briggs Type Indicator | 1 |
| Program for International… | 1 |
| Study Process Questionnaire | 1 |
| Torrance Tests of Creative… | 1 |
What Works Clearinghouse Rating
Smith, Herbert E. – J Eng Educ, 1969
Descriptors: Curriculum Development, Engineering Education, Individual Characteristics, Management Development
Peer reviewedJohnson, Arthur T.; Phillips, Winfred M. – Journal of Engineering Education, 1995
Discusses a philosophy from which biological engineering curriculums can emerge. Discusses competencies, basic engineering and biological concepts, common courses, interfacing between engineers and biologists, and employment. Contains 28 references. (JRH)
Descriptors: Biology, Curriculum Development, Engineering, Higher Education
Potter, C. S.; van der Merwe, E. J.; Kaufman, W.; Delacour, J. – South African Journal of Higher Education, 2008
This article focuses on the longitudinal evaluative strategies used in the development of a new teaching approach for a university course with high failure rates. The subject is compulsory for all first year engineering students at our university. The evaluation has been conducted as part of a process of developmental action research, and has…
Descriptors: Curriculum Development, Evaluation Methods, Engineering Education, Required Courses
Veldman, F. J.; De Wet, M. A.; Mokhele, N. E. Ike; Bouwer, Willem Adriaan Johannes – European Journal of Engineering Education, 2008
In this article, the authors support problem-based learning (PBL) based on its high level of alignment in addition to providing learners in engineering with an additional opportunity in learning process competencies, as contained within the South African National Critical Cross-field and Developmental Outcomes (COs). Constructive alignment…
Descriptors: Engineering Education, Higher Education, Academic Achievement, Problem Based Learning
Coleman, Robert J. – 1989
The University of North Carolina's Electrical Engineering Department developed and delivered a course for undergraduate engineering students. The course integrated technical, social, and ethical perspectives on problems and issues faced in the world of practicing engineers. It achieved this integration by making use of professors in engineering,…
Descriptors: Course Descriptions, Course Evaluation, Curriculum Development, Engineering Education
United Nations Educational, Scientific, and Cultural Organization, Paris (France). Div. of Marine Sciences. – 1983
This report contains recommendations on advanced university curricula in ocean engineering and related areas, emphasizing the needs of developing countries. A decision matrix is included to assist users in developing the necessary criteria for designing appropriate curricula to prepare university students for careers in different ocean engineering…
Descriptors: Audiovisual Aids, College Curriculum, Curriculum Design, Curriculum Development
Bussard, Ellen – 1982
A 3-year project was developed to increase students' abilities to perform competently as professional engineers. The project sought to infuse into existing courses concern for, practice with, and development of three competencies critical to professional success: problem-solving, communication, and value clarification. Eight elementary and…
Descriptors: Communication (Thought Transfer), Competence, Course Content, Course Descriptions
Peer reviewedMiranda, R. – Chemical Engineering Education, 1989
Described is a heterogeneous catalysis course which has elements of materials processing embedded in the classical format of catalytic mechanisms and surface chemistry. A course outline and list of examples of recent review papers written by students are provided. (MVL)
Descriptors: Chemical Analysis, Chemical Engineering, Chemical Industry, Chemical Reactions
Fromm, Eli; Quinn, Robert G. – Engineering Education, 1989
Presented is a blueprint for restructuring the first two years of the engineering curriculum. Four new concepts for the first two years are discussed: (1) the mathematical and scientific foundations of engineering, (2) fundamentals of engineering, (3) the engineering laboratory, and (4) the professional and personal enrichment program. (MVL)
Descriptors: College Science, Curriculum Design, Curriculum Development, Engineering
Wakeland, Howard L. – Engineering Education, 1989
Points out three areas that the American engineering community must consider related to global competition: technology, languages, and cultural understanding. Several American and foreign universities' efforts to include the topics in their programs are examined. (MVL)
Descriptors: College Science, Cultural Background, Cultural Education, Curriculum Development
Cady, K. Bingham; And Others – Engineering Education, 1988
Discusses the restructuring of the graduate program to accommodate emerging fields in engineering. Notes half of the graduate degrees Cornell grants each year are M.Eng. degrees. Offers 12 specialties: aerospace, agriculture, chemical, civil, electrical, mechanical and nuclear engineering; computer science, engineering physics; geological…
Descriptors: College Science, Course Content, Curriculum Design, Curriculum Development
Peer reviewedLaukhuf, Walden L. S.; And Others – Chemical Engineering Education, 1989
Discussed is the idea of increasing the humanities requirements for chemical engineers. Reported are the results of a survey to determine what other universities are doing about increased general education requirements. A copy of the survey is included. (MVL)
Descriptors: Bachelors Degrees, Chemical Engineering, College Science, Curriculum Development
Peer reviewedDeshpande, Pradeep B. – Chemical Engineering Education, 1988
Describes an engineering course for graduate study in process control. Lists four major topics: interaction analysis, multiloop controller design, decoupling, and multivariable control strategies. Suggests a course outline and gives information about each topic. (MVL)
Descriptors: Automation, College Science, Course Content, Course Descriptions
Stoner, George H. – J Eng Educ, 1969
Descriptors: Creativity, Curriculum Development, Engineering Education, Engineers
Nyquist, Ewald B. – 1971
The author implies or mentions in general that many factors, such as economic, cultural, psychological and political, all interacting with one another, determine the state of society and more specifically that of our environment. Basically, however, he attempts to identify how engineering and technology fit into the situation. He states, as a…
Descriptors: Curriculum Development, Engineering Education, Environmental Education, Humanities

Direct link
