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Dengate, Jennifer; Peter, Tracey; Farenhorst, Annemieke – Canadian Journal of Higher Education, 2019
A mixed methods analysis of Canadian natural sciences and engineering faculty's workplace experiences revealed a gendered care gap with women reporting greater responsibility for students' personal and mental health problems, including suicidal thoughts and behaviour, and sexual assault. Statistical results demonstrated that women were approached…
Descriptors: College Faculty, Natural Sciences, Engineering Education, Mental Health
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Poza-Lujan, Jose-Luis; Calafate, Carlos T.; Posadas-Yagüe, Juan-Luis; Cano, Juan-Carlos – IEEE Transactions on Education, 2016
Current opinion on undergraduate studies has led to a reformulation of teaching methodologies to base them not just on learning, but also on skills and competencies. In this approach, the teaching/learning process should accomplish both knowledge assimilation and skill development. Previous works demonstrated that a strategy that uses continuous…
Descriptors: Evaluation Methods, Progress Monitoring, Performance Based Assessment, Teacher Effectiveness
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Ernst, Jeremy V.; Williams, Thomas O., Jr. – Journal of Technology Education, 2014
Technology and engineering educators have an opportunity to serve a vital role in contributing to or assisting in the guidance of educational programming for students qualifying for accommodation services. Within this article, students referred to as at-risk were from two specific special populations within this group: individuals with…
Descriptors: Engineering Education, Technology Education, Research Design, Academic Accommodations (Disabilities)
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Miranda, Joao; Nagy, Mariana – European Journal of Engineering Education, 2011
European cooperation is a relevant subject that contributes to building a competitive network of high education institutions. A case of teacher mobility on behalf of the Erasmus programme is presented: it considers some Operations Research topics and the development of the Lego on My Decision module. The module considers eight lecture hours in…
Descriptors: Operations Research, International Cooperation, Programming, Faculty Mobility
Hill, Armin J. – Eng Educ, 1969
Compares engineering faculty work load at Brigham Young and Purdue Universities based on an analysis of ten types of teaching assignments. Suggests that administrators adapt time measurement scales of faculty work load to include actual classroom time, preparation and follow-up, assigned research, personal development, committee work, and student…
Descriptors: Administrator Guides, College Administration, Engineering Education, Faculty
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Hanesian, D. – Chemical Engineering Education, 1977
Presents data pertinent to faculty workloads at 66 universities surveyed by the Faculty Council of the New Jersey Institute of Technology in 1971. (SL)
Descriptors: College Science, Engineering Education, Faculty, Faculty Workload
Peters, Max S. – Journal of Engineering Education, 1971
Descriptors: Colleges, Engineering Education, Facility Requirements, Operating Expenses
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Eagleton, Lee C. – Chemical Engineering Education, 1977
Describes a Faculty Workload Formula developed in the Department of Chemical Engineering at Pennsylvania State University. (SL)
Descriptors: Chemistry, College Science, Engineering, Engineering Education
Hauck, George F. – Eng Educ, 1969
Descriptors: College Administration, Comparative Analysis, Engineering Education, Faculty
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Moriarty, Mary A. – Equity & Excellence in Education, 2007
This study used quantitative and qualitative methods to examine the use of inclusive pedagogy by science, technology, engineering, and mathematics (STEM) faculty at three community colleges. The purpose was to identify barriers to the adoption of inclusive teaching methods for diverse learners and students with disabilities and to propose ways to…
Descriptors: Teaching Methods, Science Instruction, Instructional Development, Teaching Load
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DeJong, P. S.; Shahan, J. C. – Engineering Design Graphics Journal, 1991
An investigation of alternative methods of managing lower division graphics courses is described. Nonexam grading time was reduced to nearly zero, creating time for professional growth, proposal development, and meaningful research. Grade profiles and attitudes of students taking the altered course are discussed. (KR)
Descriptors: Assignments, Computer Assisted Design, Engineering Education, Higher Education
Kraybill, Edward K. – Engineering Education, 1981
Describes the consequence of increasing undergraduate engineering enrollments on undergraduate engineering programs, including heavier teaching loads, reduced research activity, tighter operating budgets, reduced student-faculty contact, use of nonfaculty personnel, fewer requirement and course offerings, and facilities and equipment inadequacies.…
Descriptors: College Attendance, College Science, Curriculum Problems, Educational Practices
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
Dowell, Earl H. – Engineering Education, 1987
Reports on a survey of the objective measures of 26 engineering schools. Provides results of the rankings of eight categories, including those pertaining to admission test scores, faculty size, number of students per faculty member, refereed journal articles, and outside sponsored research expenditures by institution and by faculty members. (TW)
Descriptors: College Entrance Examinations, College Science, Educational Finance, Engineering Education