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Cecilia Madero-Gonzalez; Jesus Vazquez-Hernandez; Fernando Gonzalez Aleu – Quality Assurance in Education: An International Perspective, 2025
Purpose: This study aims to examine the impact of gamification on the five dimensions of meaningful learning (i.e. cooperative, active, authentic, constructive and intentional learning) and undergraduate student performance taking online lessons. Design/methodology/approach: Therefore, the authors conducted an experiment among undergraduate…
Descriptors: Gamification, Undergraduate Students, Online Courses, Engineering Education
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Boettcher, K.; Terkowsky, C.; Schade, M.; Brandner, D.; Grünendahl, S.; Pasaliu, B. – European Journal of Engineering Education, 2023
A newly-developed online laboratory experiment in immersive virtual reality (VR) is used for process engineering students. A digital twin (DT) of a jet pump was realised using the game engine Unreal Engine 4. The chance was taken for an instructional redesign deviating from the conventional cookbook-experiment to better integrate the changing…
Descriptors: Computer Simulation, Laboratories, Engineering Education, Problem Solving
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Schmidt, Karsten; Winsløw, Carl – International Journal of Research in Undergraduate Mathematics Education, 2021
A central problem in undergraduate mathematics education for future engineers consists in the perceived and actual relevance of the mathematical content. One strategy to strengthen both is to let students experience how that content appears in posing and solving authentic problems from the field of engineering which the students have signed up to…
Descriptors: Authentic Learning, Engineering Education, Mathematics Activities, Undergraduate Students
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Susanne Engström; Helena Lennholm – International Journal of Technology and Design Education, 2025
In literature, teaching for an authentic learning experience is seen as rewarding and interesting, promoting better understanding of for example sustainable development and fostering students' independence. Some upper secondary schools emphasise authentic teaching and learning on their websites, showcasing how students engage in authentic tasks.…
Descriptors: Secondary School Students, Authentic Learning, Student Attitudes, Technology Education
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Breen, Kimberly C.; Dotson, Mary Elizabeth; Madonna, Megan C.; Asturias, Gabriela; Pena, Daniela Mariucci; Springate, Hope; Alvarez, Valentina; Ramanujam, Nimmi – Advances in Engineering Education, 2023
Background: Through the human-centered design process (HCD), students, referred to as learners, can use a personal lens to contextualize engineering concepts and solve real-world problems (Goldman and Kabayadondo 2016). The Ignite program, created by the Center for Global Women's Health Technologies (GWHT) at Duke University, integrates the HCD…
Descriptors: Design, Thinking Skills, STEM Education, Intervention
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Aadland, Torgeir; Aaboen, Lise – European Journal of Engineering Education, 2020
The future engineer is labelled an entrepreneurial engineer, having networking, teamwork, opportunity recognition, creativity, risk management, and discipline-specific skills. Therefore, entrepreneurship education is being increasingly introduced in engineering education. The various educational designs used to introduce entrepreneurship education…
Descriptors: Entrepreneurship, Engineering Education, Authentic Learning, 21st Century Skills
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Mann, Llewellyn; Chang, Rosemary; Chandrasekaran, Siva; Coddington, Alicen; Daniel, Scott; Cook, Emily; Crossin, Enda; Cosson, Barbara; Turner, Jennifer; Mazzurco, Andrea; Dohaney, Jacqueline; O'Hanlon, Tim; Pickering, Janine; Walker, Suzanne; Maclean, Francesca; Smith, Timothy D. – European Journal of Engineering Education, 2021
Problem-based learning (PBL) has a history of producing strong educational results in engineering; however, global society is challenged by highly complex environmental, socio-political and technical problems summarised in the UN Sustainable Development Goals (SDGs). This obliges us to explore educational approaches that address complexity. Yet,…
Descriptors: Problem Based Learning, Engineering Education, Educational Innovation, Holistic Approach
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Hailes, Stephen; Jones, Liz; Micheletti, Martina; Mitchell, John E.; Nyamapfene, Abel; Roach, Kate; Tilley, Emanuela; Truscott, Fiona – Advances in Engineering Education, 2021
In 2014, the UCL Faculty of Engineering Sciences introduced the Integrated Engineering Programme -- a revision of eight existing degree programmes across a range of engineering disciplines. Centred on a thread of authentic project-based activities, the programme aimed to enhance the students' understanding of key theoretical concepts and heighten…
Descriptors: Engineering Education, Authentic Learning, Student Projects, Active Learning
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Murray, Mike; Hendry, Gillian; McQuade, Robert – European Journal of Engineering Education, 2020
Vocational disciplines such as engineering provide an ideal opportunity for contextualising the curriculum. The provision of co-curricular activities can stimulate students to assimilate their prior knowledge and skills whilst enhancing employability attributes. Team-based co-curricular activities linked to problem-based learning can offer…
Descriptors: Civil Engineering, Extracurricular Activities, Undergraduate Students, Engineering Education
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Carbone, Angela; Rayner, Gerry M.; Ye, Jing; Durandet, Yvonne – European Journal of Engineering Education, 2020
Work-integrated learning (WIL) has become an increasingly conspicuous and valued component of student learning at university. Given the limits to scale for WIL-related internships and placements, other forms of WIL, such as field trips and site visits, have become more common in undergraduate engineering curricula. However, these forms of WIL are…
Descriptors: Engineering Education, Field Trips, Value Judgment, Student Attitudes
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DeBoer, Jennifer; Radhakrishnan, Dhinesh; Freitas, Claudio – Advances in Engineering Education, 2022
Displaced learners, uprooted because of conflict, poverty, or other major traumas, are often shut out of opportunities to learn engineering. At the same time, fragile contexts demand engineers' expertise, but experts and their engineered solutions are often called in from outside the community. In this article, we examine engineering learning as a…
Descriptors: Refugees, Homeless People, Authentic Learning, Engineering Education
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Mitchell, John; Nyamapfene, Abel; Roach, Kate; Tilley, Emanuela – Higher Education Pedagogies, 2019
Accredited engineering degrees call upon students to develop a wide range of knowledge and skills. These range from technical, scientific and mathematical knowledge, through to transferable skills such as communications, teamwork, business acumen and critical analysis. Through a faculty-wide curriculum development programme we have sought to…
Descriptors: Educational Philosophy, Teaching Methods, Engineering Education, Student Motivation
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IGI Global, 2018
The rapid growth in online and virtual learning opportunities has created culturally diverse classes and corporate training sessions. Instruction for these learning opportunities must adjust to meet participant needs. "Online Course Management: Concepts, Methodologies, Tools, and Applications" is a comprehensive reference source for the…
Descriptors: Online Courses, Electronic Learning, Distance Education, Educational Trends