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Showing 1 to 15 of 34 results Save | Export
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G. Mauricio Mejía; Yumeng Xie; Luca Simeone; Stephanie Tomlin – International Journal of Art & Design Education, 2025
As design becomes more oriented towards strategy, services and systems, design learning is no longer something apprentices can develop only with masters' input and critique. Further, the experimentation and reflection commonly occurring inside studio-based education is insufficient. Real-world or live projects offer an alternative to learning…
Descriptors: Design, Art Education, Strategic Planning, Skill Development
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P. Hariharasakthisudhan; K. Logesh; K. Sathickbasha; Sathish Kannan – Discover Education, 2025
This study presents a structured hybrid framework integrating Design Thinking (DT), the Conceive-Design-Implement-Operate (CDIO) methodology, and Root Assessment (RA) to enhance project-based learning (PBL) in engineering education. The framework addresses limitations in conventional PBL by embedding iterative ideation, structured engineering…
Descriptors: Student Projects, Active Learning, Design, Decision Making
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Ramli, Nurshahrily Idura; Rawi, Mohd Izani Mohamed; Rebuan, Fatin Nur Nabila – International Journal of Web-Based Learning and Teaching Technologies, 2022
Today, in the realm of Industry 4.0, vastly diverse internet of things (IoT) technologies are integrated everywhere, not to mention included in academic programs in schools and universities. Domain ratio of the final year projects in Universiti Teknologi MARA exposes a staggering hype in IoT as compared to other domains despite not having IoT…
Descriptors: Technology Uses in Education, Capstone Experiences, Student Projects, College Students
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Niina Niinimäki; Kati Sormunen; Pirita Seitamaa-Hakkarainen; Sini Davies; Kaiju Kangas – Journal of Computer Assisted Learning, 2025
Background: Implementing maker education in schools is on the rise, fuelled by its potential to move formal education towards a creative, technology-driven 21st century learning culture. In maker education, collaborative learning takes place through and around various digital and traditional technologies, which provide the means for students'…
Descriptors: Cooperative Learning, Experiential Learning, Technological Literacy, Student Projects
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Loh, A. P.; Law, Elliot; Putra, Andi Sudjana; Koh, Edwin; Zuea, Tang Kok; Tat, Khoo Eng – Advances in Engineering Education, 2021
A quick literature survey shows that Engineering education has been undergoing change since more than a hundred years ago, largely due to the needs of industry. The current drive for change is not very different and comes from the perception that Engineering graduates of today are not able to function effectively in the workplace. This is in part…
Descriptors: Foreign Countries, Innovation, Design, Engineering Education
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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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Rita N. To – Marketing Education Review, 2024
The Packaging Mockup Project directs students to (1) learn the basic tools in the Adobe Photoshop application, (2) research and create a new brand concept for different product categories, and (3) design an original packaging mockup of their own brand concept. This project is designed to allow students to apply what they learn about branding as…
Descriptors: Design, Computer Software, Visual Aids, Editing
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Meng-Han Tsai – Journal of Civil Engineering Education, 2024
This research describes a case study of an integrated human-computer interaction (HCI) course for construction engineering students using project-based learning and experiential learning cycle methods. To help engineering students keep pace with the increasing use of information technology (IT) in the construction industry, educational…
Descriptors: Design, Thinking Skills, Student Projects, Active Learning
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Arreola, Anaiss; Ganim, Katherine R. – Journal of Science Education for Students with Disabilities, 2021
When you don't have a hand, what could you have instead? This article introduces the impact of inviting youth with disabilities to learn tools and technology to design their own solutions and advocate for their own future. This approach to programming is rooted in a mindset of designing WITH, not FOR. Not only are design outcomes improved when…
Descriptors: Empowerment, Youth Programs, Students with Disabilities, Design
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Bertoni, Marco; Bertoni, Alessandro – Education Sciences, 2020
Fostering 'experiential learning' in real-life situations is a critical task for engineering educators when creating constructively aligned learning activities. The paper proposes an approach to measure the students' perception of learning in Conceive-Design-Implement-Operate activities conducted outside the classroom. The approach is based on the…
Descriptors: Experiential Learning, Engineering Education, Models, Educational Innovation
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Shahrasbi, Nasser; Jin, Leigh; Zheng, Wei-Jun – Journal of Information Systems Education, 2021
The growth in the tech industry in recent years has increased business major students' interest in software programming and app development. However, the traditional way of teaching these courses involves intensive coding exercises and little interaction among students. These methods often discourage the students due to the slow learning curve and…
Descriptors: Design, Computer Oriented Programs, Computer Software, Programming
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Lili Yan; Breanne K. Litts; Melissa Tehee; Stuart Baggaley; Jennifer Jenkins – British Journal of Educational Technology, 2025
Although education is framed as a future-oriented enterprise, we often fail to serve the diverse futurities of youth, particularly in formal learning environments. The cultural norms of formal learning environments are rooted in dominant ways of being and knowing and this shapes how learning environments and learning technologies can be designed.…
Descriptors: Student Projects, Cultural Awareness, Multimedia Materials, Design
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Orr, Marisa K.; Jordan, Shawn S. – Advances in Engineering Education, 2019
Dynamics of Machine Elements is a junior-level course in mechanical engineering that covers the kinematics (motion) and kinetics (causes of motion) of machine elements such as linkages, cams, and gear trains. This paper describes the results of adding a Rube Goldberg Machine Contest® project to the course to address student concerns over the lack…
Descriptors: Teaching Methods, Motion, Kinetics, Equipment
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Oliver, Kendra H.; Ehrman, Jonathan D.; Marasco, Christina C. – International Journal of STEM Education, 2019
Background: Many undergraduate students majoring in science, technology, engineering, and mathematics (STEM) fields lack experience in collaborative thinking, limiting their effectiveness as they enter careers in academic and industrial environments. The SyBBURE Searle Undergraduate Research Program has incorporated a team-based design component…
Descriptors: Skill Development, Teamwork, Undergraduate Students, STEM Education
Denvir, Catrina, Ed. – Cambridge University Press, 2020
Over the last decade, cost pressures, technology, automation, globalisation, de-regulation, and changing client relationships have transformed the practice of law, but legal education has been slow to respond. Deciding what learning objectives a law degree ought to prioritise, and how to best strike the balance between vocational and academic…
Descriptors: Legal Education (Professions), Educational Development, Job Skills, Skill Development
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