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Luiz Ney d’Escoffier; Aida Guerra; Marco Braga – Journal of Problem Based Learning in Higher Education, 2024
Education for sustainability demands transformative knowledge, which can be obtained through problem-based, project-organized learning (PBL). However, the integration of PBL and sustainability in higher education has not yet met the needs required due to the lack of application of a systemic perspective and strategy. In this literature review, we…
Descriptors: Problem Based Learning, Engineering Education, Sustainability, Higher Education
Kim, Mijung; McFeetors, P. Janelle; Jin, Qingna; Rose, Kerry; Carey, Jason; Miller-Young, Janice; Jamieson, Marnie; Adeeb, Samer – Journal of University Teaching and Learning Practice, 2023
Increasing numbers of studies in STEM fields indicate that there are higher gains in student outcomes in classroom environments implementing evidence-based teaching approaches focused on learners and their learning when compared to traditional lecture-based classrooms. However, despite the compelling results, studies show that lecture is still the…
Descriptors: Engineering Education, Pedagogical Content Knowledge, College Faculty, Student Centered Learning
Ibrahim, Mohd Faisal; Huddin, Aqilah Baseri; Hashim, Fazida Hanim; Abdullah, Mardina; Rahni, Ashrani Aizzuddin Abd; Mustaza, Seri Mastura; Hussain, Aini; Zaman, Mohd Hairi Mohd – International Journal of Evaluation and Research in Education, 2020
This study examined the educational effects in strengthening programming skills among university's undergraduate engineering students via integration of a robotics project and an experiential learning approach. In this study, a robotics project was conducted to close the gap of students' difficulty in relating the theoretical concepts of…
Descriptors: Programming, Engineering Education, Experiential Learning, Active Learning
McCrum, Daniel Patrick – European Journal of Engineering Education, 2017
For a structural engineer, effective communication and interaction with architects cannot be underestimated as a key skill to success throughout their professional career. Structural engineers and architects have to share a common language and understanding of each other in order to achieve the most desirable architectural and structural designs.…
Descriptors: Problem Solving, Undergraduate Students, Problem Based Learning, Active Learning
Wallace, Maria F. G.; Webb, Angela W. – Journal of College Science Teaching, 2016
In the engineering field, problem- and project-based learning, both of which are often referred to as PBL, are the dominant instructional models called for by accreditation agencies. The aim of this qualitative case study is to analyze and capture a holistic perspective of PBL course design and its implementation in two communication-intensive…
Descriptors: Undergraduate Study, STEM Education, Active Learning, Student Projects
Crippen, Kent J.; Boyer, Treavor H.; Korolev, Maria; de Torres, Trisha; Brucat, Phil J.; Wu, Chang-Yu – Journal of College Science Teaching, 2016
Undergraduate engineering education in the United States is in need of reform that addresses the recruitment and retention of a diverse population of students. Change Chem is a curriculum reform model that has been created to address this issue for freshman students. This article reports on a mixed method efficacy study of Change Chem, which uses…
Descriptors: Engineering, Engineering Education, Chemistry, Higher Education
Mantri, Archana – European Journal of Engineering Education, 2014
The intent of the study presented in this paper is to show that the model of problem-based learning (PBL) can be made scalable by designing curriculum around a set of open-ended problems (OEPs). The detailed statistical analysis of the data collected to measure the effects of traditional and PBL instructions for three courses in Electronics and…
Descriptors: Foreign Countries, Engineering, Engineering Education, Problem Based Learning
McLurkin, J.; Rykowski, J.; John, M.; Kaseman, Q.; Lynch, A. J. – IEEE Transactions on Education, 2013
This paper describes the experiences of using an advanced, low-cost robot in science, technology, engineering, and mathematics (STEM) education. It presents three innovations: It is a powerful, cheap, robust, and small advanced personal robot; it forms the foundation of a problem-based learning curriculum; and it enables a novel multi-robot…
Descriptors: Robotics, STEM Education, Engineering Education, Problem Based Learning
Courses for Teaching Leadership Capacity in Professional Engineering Degrees in Australia and Europe
Khattak, Hamid; Ku, Harry; Goh, Steven – European Journal of Engineering Education, 2012
Recently, many educational institutions across the globe have implemented engineering leadership programmes either as a part of a formal engineering curriculum or where leadership development is embedded into separate in-house programmes. This shows the clear intent of these educational institutions to prepare their engineering students for…
Descriptors: Engineering Education, World Problems, Schools, Engineering
Selcuk, Gamze Sezgin; Emiroglu, Handan Byacioglu; Tarakci, Mehmet; Ozel, Mustafa – Asia-Pacific Forum on Science Learning and Teaching, 2011
The purpose of this study is to introduce a problem-based learning material, the Satellite Module, that has integrated some of the subjects included in the disciplines of physics and mathematics at an introductory level in undergraduate education. The reason why this modular and problem-based material has been developed is to enable students to…
Descriptors: Undergraduate Study, Problem Based Learning, Physics, Geophysics
Sextos, Anastasios G. – European Journal of Engineering Education, 2014
This paper presents the structure of an undergraduate course entitled "programming techniques and the use of specialised software in structural engineering" which is offered to the fifth (final) year students of the Civil Engineering Department of Aristotle University Thessaloniki in Greece. The aim of this course is to demonstrate the…
Descriptors: Foreign Countries, Undergraduate Students, Undergraduate Study, Civil Engineering
Wankat, Phillip C. – Chemical Engineering Education, 2009
The Massachusetts Institute of Technology started the first US chemical engineering program six score years ago. Since that time, the chemical engineering curriculum has evolved. The latest versions of the curriculum are attempts to broaden chemical engineering to add product engineering, biology and nanotechnology to the traditional process…
Descriptors: Chemical Engineering, Engineering Education, Curriculum Development, Interdisciplinary Approach
Harris, Andrew T. – Chemical Engineering Education, 2009
The University of Sydney has offered an undergraduate course in particle technology using a contemporary problem based learning (PBL) methodology since 2005. Student learning is developed through the solution of complex, open-ended problems drawn from modern chemical engineering practice. Two examples are presented; i) zero emission electricity…
Descriptors: Feedback (Response), Problem Based Learning, Course Evaluation, Foreign Countries
Sampson, Demetrios G., Ed.; Ifenthaler, Dirk, Ed.; Isaías, Pedro, Ed. – International Association for Development of the Information Society, 2018
The aim of the 2018 International Association for Development of the Information Society (IADIS) Cognition and Exploratory Learning in the Digital Age (CELDA) conference was to address the main issues concerned with evolving learning processes and supporting pedagogies and applications in the digital age. There have been advances in both cognitive…
Descriptors: Learning Processes, Teaching Methods, Educational Technology, Technology Uses in Education
Baldock, Tom E.; Chanson, Hubert – European Journal of Engineering Education, 2006
This paper describes the pedagogical impact of real-world experimental projects undertaken as part of an advanced undergraduate fluid mechanics subject at an Australian university. The projects have been organized to complement traditional lectures and introduce students to the challenges of professional design, physical modelling, data collection…
Descriptors: Student Projects, Mechanics (Physics), Active Learning, Teaching Methods
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