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Georgia Univ., Athens. Div. of Vocational Education. – 1983
This guide describes the requirements for courses in computer-aided design and computer-aided manufacturing (CAD/CAM) that are part of engineering technology programs conducted in vocational-technical schools in Georgia. The guide is organized in five sections. The first section provides a rationale for occupations in design and in production,…
Descriptors: Competence, Competency Based Education, Computer Graphics, Computer Oriented Programs
L. Bellamy; And Others – 1994
This report reviews the need for teaming skills in the engineering workplace and discusses why these same skills can contribute to improving the educational process. It also includes a team training workbook and a facilitator's guide that contain exercises and ideas to help develop effective teams. The report examines the evolution of teams in…
Descriptors: Curriculum Development, Decision Making Skills, Engineering, Engineering Education
National Academy of Sciences - National Research Council, Washington, DC. Assembly of Engineering. – 1979
This guide is intended for use by individuals sensitive to the needs of minority students for precollege programs that will prepare them for college-level engineering course work and eventual entry into the engineering profession. The guide emphasizes practical approaches to establishing and maintaining such a program. A hypothetical program…
Descriptors: Curriculum Development, Engineering, Engineering Education, Higher Education

Williams, Julia M. – Technical Communication: Journal of the Society for Technical Communication, 2002
Explains that communication skills have become a focus of engineering curricula as the result of the ABET (Accreditation Board of Engineering and Technology) Engineering Criteria 2000. Stresses that professional technical communicators can play a significant role in the development of engineering communication. Suggests that professional…
Descriptors: Communication Skills, Curriculum Design, Curriculum Development, Engineering
American Society for Engineering Education, Washington, DC. – 1994
This is an era when the explosion of technology makes society increasingly dependent upon the quality of the engineers it produces. In response, engineering education was evaluated during a 2-day workshop to insure its adequacy to meet the demands of the 21st century. This report is intended to act as a guide for engineering colleges and their…
Descriptors: College Programs, Curriculum Development, Educational Change, Engineering Education

Williams, Julia M. – Technical Communication Quarterly, 2001
Notes that the Accreditation Board for Engineering and Technology (ABET) has shifted its focus to the documentation of student learning outcomes. Considers how this shift has prompted changes in the work of technical communication departments and programs that serve engineering, from the development of new courses to increased collaboration…
Descriptors: Business Communication, Curriculum Development, Educational Change, Engineering
International Co-operation Europe Ltd. (ICEL), Brussels, Belgium. – 2001
Career Space is a consortium of major information and communications technology (ICT) companies working in partnership with the European Commission to encourage and enable more people to join and benefit from a dynamic e-Europe and to narrow the current skills gap. It believes the way in which engineering and computer studies students are educated…
Descriptors: Business Administration, Communications, Computer Science Education, Curriculum Development

Brinkman, Gert W.; van der Geest, Thea M. – Technical Communication Quarterly, 2003
Notes that reforms in engineering education have caused a shift from the traditional stand-alone courses in technical communication for engineering students towards communication training integrated in courses and design projects that allows students to develop four levels of competence. Describes three formats for integrated communication…
Descriptors: Curriculum Development, Educational Objectives, Engineering Education, Evaluation Methods
Torgersen, Paul E. – Engineering Education, 1979
The author comments on the importance of a strong general education for engineers and presents a set of standards for undergraduate instruction. (SA)
Descriptors: Career Development, Curriculum Development, Curriculum Problems, Engineering Education
Mansfield, George – Engineering Education, 1979
Presents a design for a workshop modeled after the engineering design process. A step-by-step approach is suggested for each aspect of the design process. (SA)
Descriptors: Course Objectives, Course Organization, Curriculum Development, Educational Objectives
US Department of Education, 2008
Magnet schools have developed strong national and local constituencies among parents and educators, who see them as vehicles for bringing equity and academic excellence to all students. Typically, these schools offer innovative programs through a specialized focus or theme. They may emphasize subjects like science or the arts, or they may adopt…
Descriptors: Neighborhood Schools, Magnet Schools, Fine Arts, Research Methodology
Ernst, Edward W.; Lohmann, Jack R. – Engineering Education, 1990
National Science Foundation support for instructional innovation in design curriculum is discussed. Programs that illustrate diverse approaches to teaching design are described. A list of programs given engineering curriculum development awards in 1988 and 1989 is provided. (CW)
Descriptors: College Science, Curriculum Development, Design, Engineering Education

Taylor, Joseph A.; Lunetta, Vincent N.; Dana, Thomas M.; Tasar, Mehmet F. – Journal of College Science Teaching, 2002
Describes an engineering course for education and other nonscience majors. In this course, students integrate basic principles of applied physical science and engineering to solve authentic design problems. Discusses the nature of the interactive and problem-based instructional format and its effects on developing students' scientific inquiry…
Descriptors: Course Descriptions, Curriculum Development, Engineering Education, Higher Education
Eck, Ronald W.; Wilhelm, William J. – Engineering Education, 1979
This description of a laboratory experience for engineering students emphasizes guided design, a slow-motion experience in decision making of an open-ended problem. (SA)
Descriptors: Course Content, Course Descriptions, Curriculum Development, Decision Making
Northern Montana Coll., Havre. Montana Center for Vocational Education, Research, Curriculum and Personnel Development. – 1988
This skills inventory for agricultural occupations was developed by a technical committee in Montana to assist in the development of model curricula and to address state labor market needs. The committee included employers from the forestry industry, members from trade and professional associations, and educators. The validated task list and…
Descriptors: Agribusiness, Agricultural Education, Agricultural Engineering, Competence
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