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Vicente, Aileen Joan; Tan, Tiffany Adelaine; Yu, Alvin Ray – Journal of Information Technology Education: Innovations in Practice, 2018
Aim/Purpose: This study was aimed at enhancing students' learning of software engineering methods. A collaboration between the Computer Science, Business Management, and Product Design programs was formed to work on actual projects with real clients. This interdisciplinary form of collaboration simulates the realities of a diverse Software…
Descriptors: Interdisciplinary Approach, Computer Science Education, Engineering Education, Business Administration Education
Cunningham, Richard G. – Engineering Education, 1984
Examines trends in accreditation action by the Accreditation Board for Engineering and Technology and the uses and misuses of accreditation. Also identifies six problem areas that continue to afflict engineering and engineering technology education. (JN)
Descriptors: Accreditation (Institutions), Educational Quality, Educational Trends, Engineering Education
Rossignol, Annette MacKay; Hanes, N. Bruce – Engineering Education, 1990
Discusses integrating occupational health and safety engineering topics into existing engineering course work. Describes three models for integration and a procedure to assess the integration. (YP)
Descriptors: College Science, Course Evaluation, Course Organization, Engineering Education
O'Hair, Michael T. – Engineering Education, 1984
Presents results of two studies, conducted 4 years apart, which reveal trends in 4-year engineering technology (ET) programs. Areas considered include administrative features and programs, funding, faculty, student characteristics and recruiting, retention, placement and follow-up. One trend reported is that ET may be drifting toward and perhaps…
Descriptors: College Faculty, Educational Trends, Engineering, Engineering Education

Felder, Richard M.; And Others – Journal of College Science Teaching, 1992
Describes the successful aspects of a three-day workshop on teaching effectiveness for engineering professors. Discusses participants' comments and suggestions about administrative support, communication of fresh insights and perspectives, establishment of a participatory structure, and teaching/learning mismatches. (JJK)
Descriptors: College Faculty, Engineering Education, Higher Education, Inservice Teacher Education
Levine, Dana – Engineering Education, 1984
Lists objectives of a four-week summer program (Females in Engineering, Methods, Motivation, Experience) designed to attract ninth-grade females to science and engineering careers. Also discusses program content and strategies and results of student and parent evaluation of the 1983 program. (JN)
Descriptors: Career Awareness, Engineering, Engineering Education, Females

Johansson, Roland – Higher Education Management, 1992
A model combining formative and longitudinal program evaluation was applied to two programs (economics/business administration and engineering) at Uppsala University (Sweden) in which students are brought together after two years in regional institutions. Useful features of the evaluation method are discussed and results of job market follow-up…
Descriptors: Business Administration Education, College Administration, Economics Education, Engineering Education
Maryland State Board for Community Colleges, Annapolis. – 1985
As part of an annual statewide evaluation process, quantitative information on community college programs is reviewed by the Maryland State Board for Community Colleges. Subsequently, in particular cases, a qualitative assessment is conducted by individual community colleges in response to specific questions raised by the Board. This report…
Descriptors: College Transfer Students, Community Colleges, Education Work Relationship, Educational Assessment

Campbell, Patricia B. – 1992
This brochure, one in a series of four, is designed to assist program directors, teachers, and evaluators evaluate programs to encourage girls in mathematics, science, and engineering. Seven sections cover the why, the what, and some of the how of program evaluation. The first section explains why programs need to be evaluated. The second section…
Descriptors: Educational Change, Elementary Secondary Education, Engineering Education, Enrollment
Jones, Lyle V., Ed.; And Others – 1982
The quality of doctoral-level chemical engineering (N=79), civil engineering (N=74), electrical engineering (N=91), and mechanical engineering (N=82) programs at United States universities was assessed, using 16 measures. These measures focused on variables related to: (1) program size; (2) characteristics of graduates; (3) reputational factors…
Descriptors: Academic Libraries, Chemical Engineering, Civil Engineering, College Faculty