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Bartholomew, Scott R. – Technology and Engineering Teacher, 2017
Interest in Technology and Engineering Education (TEE) has recently revolved around working to define/redefine who we are, and who we are not; while others in TEE are not interested in a change of identity. An emphasis on design, design education, and design assessment may help clarify the discussion surrounding the future direction of TEE.…
Descriptors: Technology Education, Engineering Education, Design, Elementary Secondary Education
Randles, Sally; Dewick, Paul; Hannan, Eleanor; Nicholson, Dawn Theresa; Rietbergen, Martijn; Taylor, Christopher; Vargas, Valeria Ruiz; Wadham, Helen; Withycombe Keeler, Lauren – Journal of International Education in Business, 2022
Purpose: This study aims to present theory, practice and original research findings to support the proposition that broad enquiry and problem-based learning (EPBL) approaches provide an appropriate pedagogical lens for sustainability educators to develop the knowledge and skills needed to work effectively within mission-oriented innovation policy…
Descriptors: Teaching Methods, Learning Processes, Problem Based Learning, Undergraduate Students
Nørgaard, Bente – European Journal of Engineering Education, 2019
The development of employees' skills and competences has become a key driver of economic growth in the developed world. It is widely recognised that enhancing people's skills and competences will be a major cause of future competitive advantage. Consequently, companies need to be able to identify precise areas where they have, or can build,…
Descriptors: Problem Based Learning, Engineering Education, Corporations, Models
Mantawy, Islam M.; Rusch, Conner; Ghimire, Sushil; Lantz, Lucas; Dhamala, Hari; Shrestha, Bipesh; Lampert, Anthony; Khadka, Mohit; Bista, Anima; Soni, Rhytham; Shaik, Abdulu Saleem; Lujan, Eric; Boyd, Mika; Pickings, Richard; Mabrich, Alexander – Education Sciences, 2019
Educational approaches in structural engineering have focused on classical methods for solving problems with manual calculations through assignments, quizzes, and exams. The use of computational software to apply the learned knowledge has been ignored for decades. This paper describes an educational approach to tackle the lack of applicable…
Descriptors: Engineering Education, Active Learning, Student Projects, Construction (Process)
Naji, Khalid Kamal; Du, Xiangyun; Tarlochan, Faris; Ebead, Usama; Hasan, Mahmood A.; Al-Ali, Abdulla Khalid – EURASIA Journal of Mathematics, Science and Technology Education, 2020
This study examined engineering students' initial readiness to transition to emergency online learning in response to COVID-19 in Qatar. A theoretical framework is proposed for understanding the factors influencing students' readiness for change. Sequential explanatory mixed-method research was conducted, with 140 participants completing an online…
Descriptors: Engineering Education, Learning Readiness, Student Adjustment, College Students
Sedaghat, Ahmad; AlJundub, Mohammad; Eilaghi, Armin; Bani-Hani, Ehab; Sabri, Farhad; Mbarki, Raouf; Assad, M. El Haj – Journal of Problem Based Learning in Higher Education, 2017
The PBL unit of fluid and electrical drive systems is taught in final semester of undergraduates in mechanical engineering department of the Australian College of Kuwait (ACK). The recent project on an automated punching machine is discovered more appealing to both students and instructors in triggering new ideas and satisfaction end results. In…
Descriptors: Foreign Countries, Undergraduate Students, Engineering Education, Mechanics (Physics)
Tularam, Gurudeo A.; Machisella, Patrick – International Journal for Mathematics Teaching and Learning, 2018
Traditional teaching approaches are generally teacher-directed, where students are taught in a manner that is conducive to sitting and listening. It is often argued that these approaches may not provide students with valuable learning skills, and rather that non-traditional approaches to teaching and learning might better endow students with such…
Descriptors: Conventional Instruction, Nontraditional Education, Learning Strategies, Foreign Countries
Beddoes, Kacey; Panther, Grace – European Journal of Engineering Education, 2018
Teamwork is increasingly seen as an important component of engineering education programmes. Yet, prior research has shown that there are numerous ways in which teamwork is gendered, and can lead to negative experiences for women students. This article presents the first interview findings on professors' perspectives on gender and teamwork.…
Descriptors: Gender Differences, Teamwork, Engineering Education, College Faculty
Zalewski, Janusz; Novak, Gregor; Carlson, Randall E. – Education Sciences, 2019
This paper is an overview of approaches to teaching physics courses delivered to students of engineering disciplines. It addresses, first, the history of teaching physics to engineering students starting in the early 20th century, then reviews the main issues presented and discussed over the last decade in a series of conferences on Physics…
Descriptors: Physics, Science Instruction, Engineering Education, Undergraduate Students
Cian, Heidi; Marshall, Jeff; Cook, Michelle – Science Teacher, 2019
The "Framework" (NRC 2012) and "Next Generation Science Standards" (NGSS Lead States 2013) require science teachers to think differently. Specifically, NGSS's performance expectations now require that three domains (disciplinary core ideas (DCI), crosscutting concepts (CCC), and scientific and engineering practices (SEP)) be…
Descriptors: Science Instruction, Teaching Methods, Standards, Science Teachers
Leung, Siu Ling; Hargrove, Brianne A.; Marsh, Eric R.; Gregg, Andrea R.; Thole, Karen A. – Advances in Engineering Education, 2020
Today's engineering laboratory education often lacks opportunities for students to practice critical thinking through real-world problems. This particular objective is even harder to achieve through online laboratory experiments. In this article, we summarize our innovation in using a real-world challenge, analyze big data, to empower student data…
Descriptors: COVID-19, Pandemics, Educational Change, Engineering Education
Aaron M. Kyle; Michael Carapezza; Christine Kovich – Journal of STEM Outreach, 2018
Increased emphasis on K-12 engineering education, including the advent and incorporation of the NGSS in many curricula, has spurred the need for increased engineering learning opportunities for younger students. This is particularly true for students from underrepresented minority populations or economically disadvantaged schools, who…
Descriptors: Summer Programs, Design, Engineering Education, Laboratory Procedures
Burden, Håkan; Sprei, Frances – International Journal of Sustainability in Higher Education, 2021
Purpose: The purpose of this study is to address the challenges of teaching sustainable development to computer engineering students. Part of the problem is that they perceive the topic as irrelevant for their future profession. Design/methodology/approach: To address this challenge, we introduced a project element into a course on sustainable…
Descriptors: Sustainable Development, Ethics, Entrepreneurship, Computer Science Education
Productive Method as the Basis for Soft Skills Development in Engineering Foreign Language Education
Medvedeva, Olesya Dmitrievna; Rubtsova, Anna Vladimirovna – Education Sciences, 2021
The modern world requires engineering specialists with excellent hard skills as well as soft skills that contribute to better communication, creativity, and self-realisation of a person. The authors discovered that modern educational standards are starting to focus on soft skills development, proposing requirements for educational programs that…
Descriptors: Soft Skills, Second Language Learning, Second Language Instruction, Engineering Education
Losada-Gutierrez, Cristina; Espinosa, Felipe; Santos-Perez, Carlos; Marron-Romera, Marta; Rodriguez-Ascariz, Jose Manuel – IEEE Transactions on Education, 2020
Hands-on experimentation has widely demonstrated its efficacy in engineering training, especially in control formation, since experimentation using computer-aided control system design (CACSD) tools is essential for future engineers. In this context, this article describes a case study for Control Engineering formation, based on a new lab practice…
Descriptors: Case Studies, Robotics, Student Motivation, Computer Assisted Instruction