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Showing 1 to 15 of 125 results Save | Export
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Dennis, Zara R.; Wilson, Kate; Boyson, Toby; Kasmarik, Kathryn – Teaching Science, 2019
This paper presents a multi-year study on the impact of attending an engineering summer school on girls' confidence that they could become an engineer. While it is relatively easy to recognise and address tangible barriers to entering an engineering profession -- such as a lack of preparedness in terms of a mathematics or physics background --…
Descriptors: Females, Engineering Education, Engineering, Career Choice
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Matuszak, Zbigniew; Tomaszewska, Iwona Ewa – NORDSCI, 2018
In Poland there is a Higher Education Act introduced in October 2011, which imposes an obligation to monitor the careers of graduates. Career Office Maritime Academy in Szczecin conducted a first pilot research, which aimed to prepare the mandatory tests and tame the graduates for a new trial, which are cyclic test of careers of graduates:…
Descriptors: Marine Education, Foreign Countries, Educational Legislation, Higher Education
Kettle, Jane – Higher Education Academy, 2013
This publication focuses on national and international policy initiatives to develop a better understanding of work-based learners and the types of flexibility that may well enhance their study especially pedagogically. As part of our five-strand research project "Flexible Pedagogies: preparing for the future" it: (1) highlights the…
Descriptors: Workplace Learning, Teaching Methods, Employers, Futures (of Society)
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Hanson, James H.; Brophy, Patrick D. – Advances in Engineering Education, 2012
Not all knowledge and skills that educators want to pass to students exists yet in textbooks. Some still resides only in the experiences of practicing engineers (e.g., how engineers create new products, how designers identify errors in calculations). The critical incident technique, CIT, is an established method for cognitive task analysis. It is…
Descriptors: Critical Incidents Method, Engineering, Engineering Education, Task Analysis
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Angus, John C. – Chemical Engineering Education, 1977
Gives a brief history of the chemical engineering department at Case Institute of Technology and discusses its present curriculum, goals, and faculty. (MLH)
Descriptors: Curriculum, Engineering, Engineering Education, Higher Education
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Westwater, J. W. – Chemical Engineering Education, 1976
Describes the chemical engineering department and programs at the University of Illinois-Urbana. (MLH)
Descriptors: Engineering, Engineering Education, Graduate Study, Higher Education
Wales, Charles E. – Phi Delta Kappan, 1978
Guided Design, as created and used in the engineering school of West Virginia University, is a procedure in which the teacher models professional reasoning, and shows students how the subject matter they study can be used to make better decisions. (IRT)
Descriptors: Decision Making, Engineering, Higher Education, Models
Stavros, Demo A. – Engineering Education, 1984
Discusses the use of laboratory courses as an invaluable teaching aid to assist in meeting both social and technical objectives. The use of laboratories in conjunction with technical theory courses, as well as in making students aware of their responsibilities to themselves, their teams, and to the instructor are described. (BC)
Descriptors: Engineering, Engineering Technology, Higher Education, Laboratories
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Auganes, Hans Gunnar – European Journal of Engineering Education, 1985
The Norwegian Institute of Technology has major responsibility for professional continuing engineering education (CEE) in this country. Degrees offered, typical CEE program, CEE program format, publicity for CEE courses, and related topics are discussed. (JN)
Descriptors: Engineering, Engineering Education, Higher Education, Professional Continuing Education
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Davidson, Burton – Chemical Engineering Education, 1977
Discusses the chemical engineering department at Rutgers University, emphasizing the traditional graduate program and a bio-chemical engineering program. (MLH)
Descriptors: Educational Programs, Engineering, Engineering Education, Higher Education
Frey, Henry R. – 1971
Activities during the first three years of New York University's Ocean Engineering Program are described including the development of new courses and summaries of graduate research projects. This interdepartmental program at the master's level includes aeronautics, chemical engineering, metallurgy, and physical oceanography. Eleven courses were…
Descriptors: Chemistry, Education, Engineering, Graduate Study
Burke, Thomas E. – Professional Engineer, 1983
A new program at Clemson University is taking on the challenge of teaching engineering students communications skills. The approach involves incorporating into regular engineering courses such communications skills as making graphs/transparencies, conducting radio interviews, and composing concise letters/memos. These and other program activities…
Descriptors: Communication Skills, Engineering, Engineering Education, Higher Education
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Plumb, Carolyn; Reis, Richard M. – Change: The Magazine of Higher Learning, 2007
The United States, as well as the rest of the world, will face critical civil, environmental, energy, communication, manufacturing, and health-care challenges in the coming decades, and more scientists and engineers will be needed to address those problems. The number of jobs in the U.S. labor force requiring science and engineering skills, in…
Descriptors: Foreign Countries, Educational Change, Labor Market, Labor Force Development
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Preusser, Robert – Impact of Science on Society, 1974
Discusses an educational program at the Massachusetts Institute of Technology that attempts to relate science and engineering to art. It is intended that this interdisciplinary program will lead to a revitalization of art and play a significant role in the humanization of technology. (JR)
Descriptors: Art, Educational Programs, Engineering, Higher Education
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Gray, B. F. – Physics Education, 1975
Reviews the British Ordinary National Diploma (OND) course in technology, a two-year fulltime program leading to degree and subdegree courses in technology and science. The course was designed as an alternative to a two-year sixth form A-level course in mathematics and physics. (MLH)
Descriptors: College Programs, College Science, Curriculum, Engineering
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