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Kopelevich, Dmitry I.; Ziegler, Kirk J.; Lindner, Angela S.; Bonzongo, Jean-Claude J. – Chemical Engineering Education, 2012
Because rapid growth of nanotechnology is expected to lead to intentional and non-intentional releases, future engineers will need to minimize negative environmental and health impacts of nanomaterials. We developed two upper-level undergraduate courses centered on life-cycle assessment of nanomaterials. The first part of the course sequence…
Descriptors: Curriculum Design, Engineering Education, Higher Education, Science Education
Gates, Harry W. – Engineering Education, 1980
Discusses several reasons for requiring senior design projects in electrical engineering technology (EET). Describes the senior design project program in EET at Indiana University-Purdue University at Fort Wayne. Lists points to consider regarding management of a projects program for faculty engaged in or contemplating such an approach. (CS)
Descriptors: College Science, Engineering Education, Engineering Technology, Higher Education
Collins, John T.; Sarrubbo, John N. – 1978
Experience at Westchester Community College has indicated that a significant percentage of students enrolled in the Engineering Technologies program, and almost all of those enrolled in the Engineering Science program, transferred to four-year institutions. Course work in higher level mathematics, as well as inorganic chemistry and modern physics,…
Descriptors: College Science, College Students, Community Colleges, Engineering Technology
Strange, Jerry D. – Engineering Education, 1980
Discusses reasons for including differential equations in the required course of study for engineering technology (ET) students. Briefly describes mathematics requirements of the ET Division of the School of Engineering at the University of Dayton. Provides an outline of their differential equations course for ET students. (CS)
Descriptors: College Science, Core Curriculum, Course Descriptions, Degree Requirements
Katz, Phyllis S. – Engineering Education, 1980
Lists suggested term paper topics and discusses the positive aspects of requiring a technical research paper and accompanying oral report of students who are mathematically and technically, rather than verbally, oriented. (CS)
Descriptors: College Science, Engineering Education, Engineering Technology, Higher Education
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
Wolf, Lawrence J.; And Others – Engineering Education, 1980
Reviews purpose, characteristics, and project results of the Science and Engineering Technology (SET) curriculum project, characterized by an interdisciplinary course of study with a skill focus in electronic instrumentation, leading to an associate degree or to transfer into a baccaulaureate curriculum in science, engineering, or technology. (CS)
Descriptors: Associate Degrees, College Science, Curriculum Development, Electronic Technicians
Doigan, Paul – Engineering Education, 1986
Reports data, with a few exceptions, from all colleges awarding bachelor's or higher degrees in engineering and engineering technology in the United States in 1985. Data are broken down by degree, school, curriculum, women, minorities, and foreign nationals. Eight tables summarize the data. (JM)
Descriptors: Bachelors Degrees, College Science, Data, Degrees (Academic)
Goodson, Carole E. – Engineering Education, 1987
Reports on three studies conducted by the Engineering Technology Division of the American Society of Engineering Education dealing with four-year engineering technology programs. Addresses funding, faculty development and recruitment, student characteristics, enrollment, retention, graduate employment, and alumni participation. (TW)
Descriptors: College Science, Degrees (Academic), Employment Opportunities, Engineering Education
Morgan, Robert P. – Engineering Education, 1989
Compares two engineering education reports which urge the following needs and emphases: attract and retain minorities, retain students already in engineering school, and allow students to enter the engineering program at various levels. Criticizes the Office of Technology Assessment's report and supplies prescriptions for the future. (MVL)
Descriptors: College Science, Curriculum Design, Curriculum Development, Curriculum Evaluation
Ellis, R. A. – Engineering Education, 1987
Reports on the trend toward the leveling off of the production of baccalaureate-level graduates in engineering during the 1985-86 academic year and the rise in doctoral degrees. Provides a state-by-state, institutional breakdown of engineering degrees and engineering technology degrees. (TW)
Descriptors: College Science, Degrees (Academic), Engineering Education, Engineering Technology
Troxler, G. William – Engineering Education, 1989
Discusses the relative roles of engineering and engineering technology. Questions where the baccalaureate engineering technology graduate fits within the engineering field. Lists four methods to improve marketing engineering to potential students and the public. Presents job production and the international picture. (MVL)
Descriptors: College Science, Curriculum Design, Curriculum Development, Employment Opportunities
Massachusetts Inst. of Tech., Cambridge. – 1980
The Program in Science, Technology, and Society at the Massachusetts Institute of Technology is described. Two broad aims of the program are to explore the influence of social, political, and cultural forces on science and technology, and to examine the impact of technologies and scientific ideas on people's lives. Although based in the School of…
Descriptors: College Curriculum, College Science, Course Descriptions, Cultural Influences