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Ramaley, Judith A. – New Directions for Higher Education, 2002
Discusses why science and mathematics should be a central part of liberal education. Also asserts that in addition to learning the habits of mind and forms of expression and inquiry of science and mathematics, students majoring in a science, technology, engineering, or mathematics (STEM) field should be expected to acquire the qualities of a…
Descriptors: Academic Education, College Mathematics, College Science, Educational Improvement
Willard, Lee W. – New Directions for Higher Education, 2002
Discusses the central role grants officers have in promoting institutional progress in science, technology, engineering, and mathematics (STEM) fields. (EV)
Descriptors: Administrators, College Mathematics, College Science, Educational Improvement
Peer reviewedHeyman, Gail D.; Martyna, Bryn; Bhatia, Sangeeta – Journal of Women and Minorities in Science and Engineering, 2002
Examines achievement-related beliefs among a group of (n=238) college students in engineering (38 female, 104 male) and non-engineering majors (57 female, 39 male) to understand why women enter engineering majors at a lower rate and are more likely than men to leave such majors. (Contains 41 references.) (Author/YDS)
Descriptors: Academic Achievement, Engineering Education, Females, Higher Education
Peer reviewedPopov, Atanas A. – European Journal of Engineering Education, 2003
Presents strategies for improving the quality of student learning in the context of a final undergraduate project in mechanical engineering. Assesses outcomes of changing practice and shows that careful selection of project topics, good balanced groups, and individual tutorials stimulating peer interaction can foster a deep approach to learning.…
Descriptors: Curriculum Design, Educational Quality, Engineering Education, Group Activities
Design Cost Data, 2002
Describes the design of the building named in the title. Includes photographs. (EV)
Descriptors: Building Design, College Buildings, Educational Facilities Design, Engineering Education
Peer reviewedChatziioanou, Alypios; Sullivan, Edward – Industry & Higher Education, 2002
Addresses the question of how closely the objectives of industry and engineering education should be aligned. Examines trends in college-business relationships using the example of California Polytechnic State University. Reflects on benefits and problems of closer connections with industry. (SK)
Descriptors: Curriculum Development, Educational Change, Educational Objectives, Engineering Education
Petroski, Henry – National Forum: Phi Kappa Phi Journal, 1989
Strategies for integrating engineering courses for nonmajors into the liberal arts curriculum are examined, and the potential problems are discussed. (MSE)
Descriptors: College Curriculum, Educational Strategies, Engineering Education, Higher Education
Bollinger, John G. – Engineering Education, 1990
Presents strategic planning designed to help academic institutions. Describes five key elements: situation analysis; mission statement; objectives; creating strategies; and tactics. Discusses the implementation, benefits, and side-effects of strategic planning. (YP)
Descriptors: College Administration, College Planning, Engineering Education, Higher Education
Peer reviewedSundberg, Donald C.; Someshwar, Arun V. – Chemical Engineering Education, 1989
Describes the structure of an in-depth laboratory project chemical engineering. Provides modeling work to guide experimentation and experimental work on heat transfer analysis. Discusses the experimental results and evaluation of the project. (YP)
Descriptors: Chemical Engineering, College Science, Engineering Education, Laboratory Experiments
Peer reviewedFarwell, Dianna; And Others – Journal of Environmental Health, 1995
The purpose of this study was to determine whether and, if so, why engineering faculty include occupational and public health and safety in their undergraduate engineering courses. Data were collected from 157 undergraduate engineering faculty from 65 colleges of engineering in the United States. (LZ)
Descriptors: Engineering Education, Environmental Education, Higher Education, Occupational Safety and Health
Peer reviewedDundar, Halil; Lewis, Darrell R. – Economics of Education Review, 1995
Examines departmental production and cost structures of a homogeneous sample of 18 research universities to estimate relative economies of scale and scope. Examines three departmental clusters (social, physical, and engineering sciences), using a four-output quadratic cost function. Average incremental and marginal costs are highest for research…
Descriptors: Cost Effectiveness, Departments, Efficiency, Engineering Education
McBean, Edward A. – Engineering Education, 1991
Examines the effectiveness of different forms of questionnaires utilized to evaluate teachers and courses by comparing the use of individual questions with that of global questions. Discusses findings related to specific improvements in the design of student questionnaires. (Author/JJK)
Descriptors: Course Evaluation, Engineering Education, Higher Education, Questionnaires
Peer reviewedTressel, George W. – Journal of Science Education and Technology, 1994
Examines 30 years of the National Science Foundation's experience impacting science and engineering education. (ZWH)
Descriptors: Educational Change, Educational Research, Engineering Education, High Schools
Peer reviewedStraub, Russell – Journal of Cooperative Education, 1990
A survey of 87 engineering students showed that, although engineering co-op positions often emphasize technical skills, qualities such as motivation, communication, and interpersonal skills are also important. There are differences in the level of importance that students attach to some of these nontechnical qualities, but it is also important to…
Descriptors: Communication Skills, Cooperative Education, Employment Potential, Engineering Education
Peer reviewedPittenger, Khush K. – Journal of Cooperative Education, 1993
In a survey of 303 cooperative engineering students, those in higher grade levels experienced more career growth from their latest co-op job. Few differences between third- and fourth-year students suggest that students benefit most from their first three co-op quarters. (SK)
Descriptors: Career Development, Cooperative Education, Engineering Education, Higher Education

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