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Gerald Tembrevilla; André Phillion; Melec Zeadin – Journal of Engineering Education, 2024
Background: The evolving transformations of our society at large, academic institutions, and engineering discipline in the 21st century have profound implications for the nature of experiential learning being offered in engineering education. However, what is experiential learning in the context of engineering education? Purpose: The introduction…
Descriptors: Engineering Education, Undergraduate Study, College Curriculum, Experiential Learning
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Boyle, Fiona; Walsh, Joseph; Riordan, Daniel; Geary, Cathal; Kelly, Padraig; Broderick, Eilish – Education Sciences, 2022
Universities are coming under increasing pressure to re-invent the way that engineering is taught in order to produce graduates that are capable of meeting the skills needs of the country's industries. This paper described an active project where Design Thinking (DT) methodology is being applied in a novel way to Engineering Curriculum…
Descriptors: Engineering Education, Curriculum Development, Design, Innovation
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K. P. J. Fortuin; Judith T. M. Gulikers; Nynke C. Post Uiterweer; Carla Oonk; Cassandra W. S. Tho – European Journal of Engineering Education, 2024
The competence to work together and co-create with others outside one's own scientific domain, culture or professional practice is a critical competence for engineers to respond to global challenges. In this context, boundary crossing (BC) competence is crucial. We reflect on a university-wide participatory action research educational innovation…
Descriptors: Learning Trajectories, Engineering Education, Cooperative Learning, Interdisciplinary Approach
Daniel Abbiw Jackson – ProQuest LLC, 2024
The evolving demands of the global job market, driven by rapid technological advancements, have heightened the need for higher education institutions (HEIs) to adapt and prepare graduates for the workforce. This study addressed the critical issue of graduate unemployment in Ghana, juxtaposed with the increasing youth unemployment rate. The primary…
Descriptors: Foreign Countries, Undergraduate Students, Business Education, Engineering Education
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Alick O. Vweza; Sara Mehta; Matthew Wettergreen; Ann Saterbak – Biomedical Engineering Education, 2024
A challenge in building the biomedical engineering human factors course at Malawi University of Business and Applied Sciences was integrating meaningful direct experiences with medical products. The instructor also noticed a significant gap between the topics in the course and their surrounding clinical context, a low-income setting. Recognizing…
Descriptors: Experiential Learning, Hands on Science, Biomedicine, Engineering Education
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Moye, Johnny J.; Reed, Philip A. – Technology and Engineering Teacher, 2020
In this quickly evolving digital world, the technology and education (T&E) education classroom can provide valuable instruction that creates a well-informed online citizenry through digital understanding and citizenship curriculum. For twenty years, "Standards for Technological Literacy" (STL) (ITEA/ ITEEA, 2000/2002/2007) provided…
Descriptors: Standards, Technological Literacy, Engineering Education, Elementary Secondary Education
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Ochoa, Hector A.; Shirvaikar, Mukul V.; Onyango, Brolyne – Journal of STEM Education: Innovations and Research, 2020
Digital Systems is one of the basic foundational courses in Electrical and Computer Engineering. The job market is increasingly in need of Electrical Engineers with knowledge of Hardware Description Languages (HDL). Yet most digital systems design curriculum, largely remains based on design using Transistor-Transistor-Logic (TTL) devices or…
Descriptors: Curriculum Development, Engineering Education, Introductory Courses, College Curriculum
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Lindsay, Euan D.; Morgan, James R. – European Journal of Engineering Education, 2021
CSU Engineering is the new civil engineering school at Charles Sturt University in Australia. Established at an institution that has not previously offered Engineering, CSU Engineering has taken the opportunity to design and implement a radically different model for its degree, drawing upon the frontier trends and themes in engineering education…
Descriptors: Engineering Education, Problem Based Learning, Workplace Learning, Online Courses
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Devine, K. L. – Engineering Design Graphics Journal, 2012
Students often have difficulty grasping the principles of dimensional tolerances and frequently fail to recognize that dimensioning practice has a significant impact on the tolerance of part features. This observation may be attributed to several factors, not the least of which are changes in prior student education and life experiences and…
Descriptors: Engineering Education, Engineering Technology, Experiential Learning, Group Activities
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Kim, Jungkuk – IEEE Transactions on Education, 2012
This paper introduces a problem-based learning (PBL) microprocessor application course designed according to the following strategies: 1) hands-on training without having a formal laboratory, and 2) intense student-centered cooperative learning through an ill-structured problem. PBL was adopted as the core educational technique of the course to…
Descriptors: Problem Based Learning, Experiential Learning, Cooperative Learning, Courses
Khaled, Anne; Gulikers, Judith; Biemans, Harm; van der Wel, Marjan; Mulder, Martin – Journal of Vocational Education and Training, 2014
The intentions with which hands-on simulations are used in vocational education are not always clear. Also, pedagogical-didactic approaches in hands-on simulations are not well conceptualised from a learning theory perspective. This makes it difficult to pinpoint the added value that hands-on simulations can have in an innovative vocational…
Descriptors: Vocational Education, Competence, Educational Innovation, Curriculum Development
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Jung, Seul – IEEE Transactions on Education, 2013
An interdisciplinary undergraduate-level robotics course offers students the chance to integrate their engineering knowledge learned throughout their college years by building a robotic system. Robotics is thus a core course in system and control-related engineering education. This paper summarizes the experience of developing robotics courses…
Descriptors: Robotics, Interdisciplinary Approach, Undergraduate Study, Courses
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
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Dobson, Helen E.; Tomkinson, C. Bland – International Journal of Sustainability in Higher Education, 2012
Purpose: The purpose of this paper is to examine the issues involved in designing appropriate problems or scenarios suitable for sustainable development (SD) education, in the context of problem-based learning (PBL) and experiential learning. Manchester's PBL approach to interdisciplinary Education for Sustainable Development (ESD) has been well…
Descriptors: Curriculum Development, Action Research, Pilot Projects, Change Agents
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Benenson, Gary; Stewart-Dawkins, Shawndel; White, Gwynn – Advances in Engineering Education, 2012
In spite of numerous calls for action, e.g., Executive Office of the President (2010), there have been few efforts nationally to promote engineering education in the elementary grades. Of these, hardly any have targeted underrepresented populations (National Academy of Engineering, 2009, p. 74). The collaboration described in this paper is a…
Descriptors: Engineering Education, Elementary Education, STEM Education, Design
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