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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
Ophélie Allyssa Desmet; Tarun Tejasvi Mutukuri – Gifted Child Quarterly, 2025
This study explores talent-development trajectories of early-career chemical engineers to identify key components for success in the field using the talent development megamodel as a theoretical framework. Interviews with 12 recent PhD graduates reveal a trajectory across four developmental stages: (a) math ability and science ability, (b)…
Descriptors: Talent Development, Academically Gifted, Chemical Engineering, Graduate Students
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Ting-Ting Wu; Hsin-Yu Lee; Pei-Hua Chen; Chia-Ju Lin; Yueh-Min Huang – Journal of Computer Assisted Learning, 2025
Background: Science, Technology, Engineering, and Mathematics (STEM) education in Asian universities struggles to integrate Knowledge, Skills, and Attitudes (KSA) due to large classes and student reluctance. While ChatGPT offers solutions, its conventional use may hinder independent critical thinking. Objectives: This study introduces PA-GPT,…
Descriptors: Peer Evaluation, Artificial Intelligence, Natural Language Processing, Technology Uses in Education
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Dixon, Raymond A.; Bucknor, Jason – Journal of Technology Education, 2019
This study explored the use of heuristics in the design space by novice and expert engineers in the initial ideation of a design solution. Verbal protocol analyses were conducted with four engineering students and four professional engineers as they generated ideas to solve a design problem. Overall, both experts and novices used various types of…
Descriptors: Comparative Analysis, Specialists, Novices, Engineering
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Wei Xu; Jia-Chen Chen; Ye-feng Lou; Hang Chen – International Journal of Technology and Design Education, 2024
Maker education can enhance learners' creativity. Design thinking can facilitate the innovative resolution of complex problems. The design thinking literature and most maker teaching modes are limited in their promotion of learning and ability development in various dimensions. Learners have stereotypes about some professions; interventions can…
Descriptors: Elementary School Students, Cooperative Learning, Problem Based Learning, Student Projects
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Kevin Berner; Jennifer C. Buxton; Loren F. McMahon – Journal of Occupational Therapy Education, 2024
Assistive technology (AT) supports engagement for individuals with disabilities by improving independence in daily living tasks, work and productive activities, learning activities, and societal participation. However, for many individuals, access to AT is limited due to high costs, device availability, and inability to be customized. The Maker…
Descriptors: Program Evaluation, Assistive Technology, Disabilities, Professionalism
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Ekaterina Rzyankina; Frikkie George; Zach Simpson – IEEE Transactions on Education, 2024
Background: The COVID-19 pandemic and the shift to digital learning materials have dramatically reduced the use of paper-based textbooks in higher education. In the field of engineering, students need a comprehensive understanding of mathematical concepts, which can be achieved through the use of e-textbooks. These digital learning materials can…
Descriptors: Engineering Education, Electronic Publishing, Misconceptions, Mathematics Instruction
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Mahboobin, Arash; Clark, Renee M. – Journal of Curriculum and Teaching, 2020
Through reflection, learning experiences that students most-frequently valued during open-ended, scaffolded problem solving in a bioengineering two-course sequence were identified in this study. Reflective knowledge of this type can inform instructors in orchestrating experiences to scaffold problem solving of this kind and were useful in directly…
Descriptors: Problem Solving, Scaffolding (Teaching Technique), Engineering Education, Learning Experience
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Kadam, Kapil; Mishra, Shitanshu; Deep, Anurag; Iyer, Sridhar – European Journal of Engineering Education, 2021
Engineering Drawing (ED) is one of the fundamental courses for various engineering disciplines. However, first-year engineering undergraduates often face difficulties in learning and solving ED problems that require visualisation of 3D objects. Conventional and modern teaching methods do assist the teaching-learning of a subject but do not…
Descriptors: Engineering Education, Freehand Drawing, Thinking Skills, Spatial Ability
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Vieira, Camilo; Magana, Alejandra J.; Roy, Anindya; Falk, Michael – Journal of Computing in Higher Education, 2021
This study implements a design-based research approach to design and evaluate different scaffolding strategies for supporting student learning as well as promoting student agency within a computational science course. The course introduces computational methods and tools in the context of disciplinary problems for materials science and engineering…
Descriptors: Personal Autonomy, Scaffolding (Teaching Technique), Self Management, Engineering Education
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Geren, Necdet; Uzay, Çagri; Bayramoglu, Melih – International Journal of Technology and Design Education, 2021
It is well accepted that many mechanical engineering (ME) design processes are complex. We believe that many ME design approaches include unnecessary complexity, intended to assist the teaching of engineering knowledge. This technical complexity has contributed to many critical issues in ME education, including decreased enrolments in many…
Descriptors: Competency Based Education, Engineering Education, Design, Difficulty Level
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Foley, Rider W.; Ferguson, Sean M.; Pollack, Catherine C. – Journal of Engineering Education, 2021
Background: Accreditation organizations broadened program assessment criteria in ways that present challenges for the evaluation of learning outcomes. This is especially the case in courses where there are not narrowly defined questions or definitive solutions, such as engineering ethics. While protocols for learning assessment exist, there is…
Descriptors: Undergraduate Students, Engineering Education, Student Evaluation, Concept Mapping
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Lee, Shiela; Russell, John; Campbell, Todd; Lee, Okhee – Science and Children, 2022
Engineering has led the way in responding to the COVID-19 pandemic, including developing masks that reduce transmission, digital tools that allow contact tracing, and vaccines that show promise to put an end to the pandemic and allow a more normal way of life. Society is not only "following the science," but is also applying principles…
Descriptors: Engineering Education, Personal Autonomy, Problem Solving, Elementary School Students
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Solodikhina, ?nna; Solodikhina, ?aria – Education and Information Technologies, 2022
Engineering education must be changed following the change in the labor market. The cult of innovation has led to a demand for innovators who have both the mindset of an inventor who can see a problem and find a way to solve it, and the mindset of an entrepreneur who is ready to bring that solution to life. Thus, teaching a techno-innovator…
Descriptors: Engineering Education, Thinking Skills, Innovation, Skill Development
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Price, Argenta; Salehi, Shima; Burkholder, Eric; Kim, Candice; Isava, Virginia; Flynn, Michael; Wieman, Carl – International Journal of Science Education, 2022
The ability to solve authentic real-world problems in science, engineering, and medicine is an important goal in post-secondary education. Despite extensive research on problem solving and expertise, the teaching and assessing of advanced problem-solving skills in post-secondary students remains a challenge. We present a template for creating…
Descriptors: Student Evaluation, Evaluation Methods, Accuracy, Problem Solving
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