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Yijia Hao; Yushi Liu; Bo Liu; George Amarantidis; Rami Ghannam – IEEE Transactions on Education, 2025
Contribution: The integration of artificial intelligence (AI) in engineering higher education is becoming increasingly important nowadays. This article contributes to the Scholarship of Integration by providing a comprehensive review of current research on AI integration in engineering higher education and presenting a pilot AI introductory module…
Descriptors: Foreign Countries, Undergraduate Students, Engineering Education, Artificial Intelligence
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Poboroniuc, Marian Silviu; Naaji, Antoanela; Ligusova, Jana; Grout, Ian; Popescu, Dorin; Ward, Tony; Grindei, Laura; Ruseva, Yoana; Bencheva, Nina; Jackson, Noel – World Journal on Educational Technology: Current Issues, 2017
The paper presents some results obtained through the implementation of the Erasmus LLP "SALEIE" (Strategic Alignment of Electrical and Information Engineering in European Higher Education Institutions). The aim of the project was to bring together experts from European universities to enhance the competitiveness of Electrical and…
Descriptors: Information Technology, Information Security, Computer Security, Engineering Education
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Tank, Kristina; Pettis, Christy; Moore, Tamara; Fehr, Abby – Science and Children, 2013
With the integration of engineering into science instruction, teachers have been seeking ways to add engineering in their classrooms. This article presents a primary (K-2) STEM unit that took place in a half-day kindergarten classroom as a way to address the scientific and engineering practices (dimension 1, p.41) and the disciplinary core idea…
Descriptors: STEM Education, Engineering Education, Curriculum Design, Curriculum Development
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Karabulut-Ilgu, Aliye; Jahren, Charles – Advances in Engineering Education, 2016
Engineering educators call for a widespread implementation of hybrid learning to respond to rapidly changing demands of the 21st century. In response to this call, a junior-level course in the Construction Engineering program entitled Construction Equipment and Heavy Construction Methods was converted into a hybrid learning model. The overarching…
Descriptors: Program Evaluation, Blended Learning, Construction Industry, Engineering Education
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Awang, Tuan Salwani; Zakaria, Effandi – Turkish Online Journal of Educational Technology - TOJET, 2012
Engineering technology students can attain a meaningful mathematics learning if they are allowed to actively participate in hands-on activities. However, the current dissemination of knowledge in the classroom still focuses on teacher-centered paradigm of teaching. A study to explore lecturers' views regarding a newly developed integral calculus…
Descriptors: Educational Technology, Calculus, Mathematics Education, Lesson Plans
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Lohani, Vinod K.; Wolfe, Mary Leigh; Wildman, Terry; Mallikarjunan, Kumar; Connor, Jeffrey – Advances in Engineering Education, 2011
In 2004, a group of engineering and education faculty at Virginia Tech received a major curriculum reform and engineering education research grant under the department-level reform (DLR) program of the NSF. This DLR project laid the foundation of sponsored research in engineering education in the Department of Engineering Education. The DLR…
Descriptors: Engineering Education, Educational Change, Spiral Curriculum, Curriculum Development
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Utomo, Tjipto; Ruijter, Kees – Chemical Engineering Education, 1984
Describes the evaluation and reconstruction of a transport phenomena course given at the Bandung Institute of Technology which had a 70 percent failure rate. Discusses the teacher-paced modular instruction technique designed to replace the original course material and its results in terms of student performance over a three-year period. (JM)
Descriptors: Chemical Engineering, Course Content, Curriculum Development, Curriculum Evaluation
Barr, Ronald E.; And Others – Engineering Education, 1984
Discusses computer graphics and computer-aided design in the freshman engineering program at the University of Texas at Austin. Procedure uses interactive modules that do not require any programing skills. An annotated test of modules used and suggested approaches that might be useful at other schools are included. (BC)
Descriptors: Computer Graphics, Computer Programs, Computers, Course Descriptions
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Ringwood, J. V.; Monaghan, K.; Maloco, J. – European Journal of Engineering Education, 2005
This paper examines a particular methodology of teaching engineering design to undergraduate engineering students, which relies on Lego[R] Mindstorms[TM]. A number of important issues are addressed, including the timing of the design module within the programme, prior knowledge required and assessment components. The module, which has been running…
Descriptors: Engineering Education, Engineering, Design Crafts, Undergraduate Students
Roy, Rustum; Knox, Bruce E. – 1983
The major goal of the Educational Modules for Materials Science and Engineering (EMMSE) project is to experiment with a means for developing, indexing, and disseminating instructional materials in materials science and engineering. This document is the updated final report of the project. Key accomplishments discussed (presented in order of…
Descriptors: Ceramics, College Science, Curriculum Development, Engineering
Illinois Inst. of Tech., Chicago. – 1973
Presented is a description of the Education and Experience in Engineering (E3) Program at the Illinois Institute of Technology. Included are the objectives, how the program works, faculty, dissemination of E3 information, integration of science and technology into the E3 program, and the integration of liberal arts and engineering. A chapter is…
Descriptors: Curriculum Development, Engineering, Engineering Education, Evaluation Methods
Brillhart, Lia V. – Engineering Education, 1981
With less time to spend with individual students, teachers of large classes may need course materials that augment texts and lectures. The author discusses what criteria such materials must meet and gives examples from a course in statics. (Author/DS)
Descriptors: Cognitive Style, College Science, Course Descriptions, Curriculum Development
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Saylor, John M. – 1992
The National Science Foundation (NSF) is providing funds for coalitions of engineering educational institutions to improve the quality of undergraduate engineering education. A hypothesis that is being tested is that people can learn better in environments that allow self-paced and/or collaborative learning. The main tools for providing this…
Descriptors: Computer Networks, Computer Software, Computer System Design, Cooperative Learning
International Co-operation Europe Ltd. (ICEL), Brussels, Belgium. – 2001
Career Space is a consortium of major information and communications technology (ICT) companies working in partnership with the European Commission to encourage and enable more people to join and benefit from a dynamic e-Europe and to narrow the current skills gap. It believes the way in which engineering and computer studies students are educated…
Descriptors: Business Administration, Communications, Computer Science Education, Curriculum Development
Olds, Barbara M.; Miller, Ronald L. – 1996
This document describes the development of a project called "Connections," at the Colorado School of Mines. "Connections" is an integrated series of active-learning courses and seminars that allow first-year engineering and science students to connect studies in engineering, physical science, social science, and humanities via…
Descriptors: Academic Persistence, Active Learning, College Freshmen, Communication Skills