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Bordogna, Joseph – J Eng Educ, 1970
Describes four one-term computer engineering courses conveying to the student an overall understanding of hardware, software, logic, computer systems and broad scope of computer technology. (IR)
Descriptors: Computer Science Education, Curriculum Development, Engineering Education, Higher Education
Bolz, Harold A. – Journal of Engineering Education, 1971
Descriptors: Curriculum Development, Engineering Education, Engineers, Organizational Change
Eldin, H. K. – Eng Educ, 1970
The systems engineer attempts to predict the consequences of his system's operation. (Editor)
Descriptors: Coordination, Curriculum Development, Engineering Education, Methods
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Uhl, Vincent W. – Chemical Engineering Education, 1982
Discusses the rationale for and execution of a senior design course. Includes topics on the development of a senior design project, nature of student assignments, prior training and attitudes of students, and future trends. (JN)
Descriptors: Chemistry, College Science, Course Descriptions, Curriculum Development
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Edward, Norrie S. – European Journal of Engineering Education, 2003
Presents findings of the evaluation of a participative approach to summative assessment of coursework in an honors-year module on manufacturing strategy. Discusses the objectivity of using a combination of staff, self, and peer assessment. (KHR)
Descriptors: Curriculum Development, Engineering Education, Evaluation Methods, Middle Schools
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Cotter, Maury – About Campus, 1998
Claims that curriculum planning and effective advising will help students develop intellectual connections across their individual courses and thus enhance their college experience. Explains how nine colleges now use interdisciplinary teaching to improve their engineering programs by making connections across department boundaries, college…
Descriptors: Colleges, Curriculum Development, Educational Cooperation, Engineering Education
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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
Peer reviewed Peer reviewed
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Lewis, Theodore – Journal of Research in Science Teaching, 2006
This article examines the merits of the proposition that design and inquiry are conceptual parallels. It does so by first looking closely at the inquiry-related discourse within science education, then at aspects of the design discourse within engineering, and finally within technology education. Convergences and divergences of these two streams…
Descriptors: Science Education, Technology Education, Inquiry, Discourse Analysis
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
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Tseng, Judy C. R.; Tsai, Wen-Ling; Hwang, Gwo-Jen; Wu, Po-Han – International Journal of Distance Education Technologies, 2007
In developing traditional learning materials, quality is the key issue to be considered. However, for high technical e-training courses, not only the quality of the learning materials but also the efficiency of developing the courses needs to be taken into consideration. It is a challenging issue for experienced engineers to develop up-to-date…
Descriptors: Engineering Education, Electronic Learning, Instructional Materials, Curriculum Development
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Mosto, Patricia; Savelski, Mariano; Farrell, Stephanie H.; Hecht, Gregory B. – Chemical Engineering Education, 2007
Integrating biology in the chemical engineering curriculum seems to be the future for chemical engineering programs nation and worldwide. Rowan University's efforts to address this need include a unique chemical engineering curriculum with an intensive biology component integrated throughout from freshman to senior years. Freshman and Sophomore…
Descriptors: Elective Courses, Biotechnology, Biology, Chemical Engineering
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Winberg, S. L.; Schach, S. R.; Inggs, M. R. – South African Journal of Higher Education, 2007
The use of effective knowledge management is becoming an essential part of technical development projects in order to enable developers to handle the growing complexity of these projects. In this article we discuss an innovative approach to address this concern from the perspective of an undergraduate engineering curriculum. Instead of adding…
Descriptors: Knowledge Management, Engineering Education, Undergraduate Study, Educational Strategies
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Miller, William M.; Petrich, Mark A. – Chemical Engineering Education, 1991
A class in which students learn about the roles that chemical engineers play in a variety of industries is described. Outlines from the first two class offerings and discussions of the use of guest speakers, videos, plant visits, student projects, and grading are included. (KR)
Descriptors: Career Awareness, Chemical Engineering, Chemistry, College Science
Goel, Sanjay – Online Submission, 2010
Community and culture significantly influence value orientation, perceived needs, and motivation as well as provide the ground for creating shared understanding. All disciplines have their own cultures, and all cultures evolve through cross-cultural exchanges. The computing community has created and documented a sound body of knowledge of…
Descriptors: Learning Theories, Engineering Education, Investigations, Educational Research
Root, Augustin A. – J Eng Educ, 1969
Descriptors: Computer Assisted Instruction, Curriculum Development, Engineering Education, Measurement
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