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Kekelis, Linda; Larkin, Molly; Gomes, Lyn – Technology and Engineering Teacher, 2014
This article describes a reverse-engineering project where female students take a part a hair dryer--giving them an opportunity to see the many different kinds of engineering disciplines involved in making a hairdryer and that they work together. Mechanical Engineer, Lyn Gome, describes her experience leading a group of middle school girls through…
Descriptors: Role Models, Females, Engineering, Career Choice
Jesiek, Brent K.; Haller, Yating; Thompson, Julia – Advances in Engineering Education, 2014
Responding to globalization trends, many engineering schools are internationalizing their courses and curricula to prepare graduates for careers that involve working across countries and cultures. As a result, both students and staff are looking beyond study abroad to international work, research, and service learning opportunities as alternate…
Descriptors: Engineering Education, Cultural Awareness, Foreign Countries, Study Abroad
Rynone, William – Tech Directions, 2010
In this article, the author provides detailed information on a wide variety of commonly used screws, bolts, and other fasteners. The information has been gathered in his engineering career and outside interests (maintenance on his car and airplane, and woodworking). The topic should be of interest to students and educators in many technical…
Descriptors: Engineering, Engineering Technology, Engineering Education, Construction Materials
National Academies Press, 2012
The aim of this report is to encourage enhanced richness and relevance of the undergraduate engineering education experience, and thus produce better-prepared and more globally competitive graduates, by providing practical guidance for incorporating real world experience in US engineering programs. The report, a collaborative effort of the…
Descriptors: Engineering, Engineering Technology, Engineering Education, Undergraduate Study
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
Katehi, Linda, Ed.; Pearson, Greg, Ed.; Feder, Michael, Ed. – National Academies Press, 2009
Engineering education in K-12 classrooms is a small but growing phenomenon that may have implications for engineering and also for the other STEM subjects--science, technology, and mathematics. Specifically, engineering education may improve student learning and achievement in science and mathematics, increase awareness of engineering and the work…
Descriptors: Engineering Education, Engineering, Technological Literacy, Educational Change
Engineering Education, 1989
This volume includes 303 entries of programs on engineering and engineering technology; 239 entries on engineering programs, and 64 entries on engineering technology programs. The information includes the school name and address; school profile; admission information including student expenses and financial aid; graduation requirements; and…
Descriptors: College Admission, College Choice, College Instruction, College Programs
Peer reviewedMaher, Carolyn A. – European Journal of Engineering Education, 1990
Described are engineering programs that have used automated data acquisition systems to implement data collection and analyze experiments. Applications include a biochemical engineering laboratory, heat transfer performance, engineering materials testing, mechanical system reliability, statistical control laboratory, thermo-fluid laboratory, and a…
Descriptors: Biochemistry, College Curriculum, College Science, Data Collection
Riley, David R.; Thatcher, Corinne E.; Workman, Elizabeth A. – International Journal of Sustainability in Higher Education, 2006
Purpose: This paper aims to disseminate an innovative approach to sustainability education in construction-related fields in which teaching, research, and service are integrated to provide a unique learning experience for undergraduate students, faculty members, and community partners. Design/methodology/approach: The paper identifies the need for…
Descriptors: Undergraduate Students, Engineering Education, Architecture, Environmental Education
David, Edward E., Jr.; Willenbrock, F. Karl – Engineering Education, 1988
Reexamines the recommendations of "A National Action Agenda for Engineering Education." Cites at least one exemplary effort related to each. Covers the overburdened curriculum; practice oriented graduate programs; design, manufacturing, and construction; instructional laboratories; faculty pool, professional development for faculty;…
Descriptors: College Preparation, College Science, Construction (Process), Curriculum Design
Fromm, Eli; Quinn, Robert G. – Engineering Education, 1989
Presented is a blueprint for restructuring the first two years of the engineering curriculum. Four new concepts for the first two years are discussed: (1) the mathematical and scientific foundations of engineering, (2) fundamentals of engineering, (3) the engineering laboratory, and (4) the professional and personal enrichment program. (MVL)
Descriptors: College Science, Curriculum Design, Curriculum Development, Engineering
Wakeland, Howard L. – Engineering Education, 1989
Points out three areas that the American engineering community must consider related to global competition: technology, languages, and cultural understanding. Several American and foreign universities' efforts to include the topics in their programs are examined. (MVL)
Descriptors: College Science, Cultural Background, Cultural Education, Curriculum Development
Cady, K. Bingham; And Others – Engineering Education, 1988
Discusses the restructuring of the graduate program to accommodate emerging fields in engineering. Notes half of the graduate degrees Cornell grants each year are M.Eng. degrees. Offers 12 specialties: aerospace, agriculture, chemical, civil, electrical, mechanical and nuclear engineering; computer science, engineering physics; geological…
Descriptors: College Science, Course Content, Curriculum Design, Curriculum Development
Peer reviewedRavnsborg, Sissel – European Journal of Engineering Education, 1990
Discussed is a type of evaluation unlike traditional methods in that it gives students an opportunity to exercise an influence on their own situation. Planning, procedures, and recordings are described. (CW)
Descriptors: College Curriculum, College Science, Educational Assessment, Educational Practices
Ackermans, S. T. M.; Trum, H. M. G. J. – Engineering Education, 1988
Discusses a two-year masters program; one year of lecture and practical training, and a second year on a supervised design task in an industry or development laboratory. Reviews the emphases of the curriculum. Describes the two paths to engineering careers in the Netherlands. (MVL)
Descriptors: College Science, Course Content, Curriculum Design, Curriculum Development
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