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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
Cle´mence Iacconi; Jonathan Piard; Elena Tosi-Brandi; Franc¸ois Azambourg; Marion Dubois; Vincent Cre´ance; Loi¨c Bertrand – Journal of Chemical Education, 2024
There is a gap between the importance of certain archeological material sources and their perception, both by professionals and by the general public. Textiles, for example, are essential to understanding practices that marked daily life and rituals in the past, but they have often been extremely degraded over time, particularly in temperate…
Descriptors: Archaeology, Chemistry, Active Learning, Student Projects
Tris Kee; Blair Kuys; Ronnel B. King – Interdisciplinary Journal of Problem-based Learning, 2025
Incorporating design thinking in project-based learning (PjBL) can generate a new praxis to epitomise an ecology of active-learner approaches and embrace the authenticity of collaborative problem-based learning (PBL). Design-oriented disciplines in higher education are expanding their teaching and research objectives to prepare future designers to…
Descriptors: Design, Thinking Skills, Active Learning, Student Projects
Danielle Lake; Wen Guo; Elizabeth Chen; Jacqui McLaughlin – Teaching & Learning Inquiry, 2024
This article builds upon current research to understand the value and limitations of teaching and learning design thinking (DT) in higher education. We implemented a mixed-methods study with faculty and students across 23 diverse courses in four higher education institutions in the United States. Findings showed that following structured learning…
Descriptors: Design, Thinking Skills, Higher Education, Decolonization
Koppikar, Unnati; Kandakatla, Rohit; Mallibhat, Kaushik; Joshi, Gopalkrishna – IEEE Transactions on Education, 2023
Contribution: This study identifies the skills required by the faculty to mentor first-year interdisciplinary design projects. The findings are compiled as a set of themes that can act as a guide for engineering educators in mentoring interdisciplinary design projects. Background: The National Academy of Engineering's (NAE) Engineer of 2020 report…
Descriptors: Engineering Education, Interdisciplinary Approach, Mentors, Problem Solving
Mou, Tsai-Yun – Journal of Baltic Science Education, 2023
The development of STEAM education has captured researchers' attention due to its advantages for students' learning and interest in related subjects, specifically in kindergarten to grade 12 (K-12) educational settings. However, there is limited research on the inclusion of STEAM in higher education, and what university students think as they are…
Descriptors: College Students, Student Attitudes, STEM Education, Art Education
Lippert, Robert J.; Seals, Tjuannia R. – ProQuest LLC, 2023
Middle school is a transitional period in which many students experience content-specific teachers, travel between classrooms, and explore extracurricular activity options for the first time. Historically, African American middle school students have not fared well in Science, Technology, Engineering, and Mathematics (STEM) on standardized…
Descriptors: African American Students, Student Interests, STEM Education, Middle School Students
Seals, Tjuannia R.; Lippert, Robert J. – ProQuest LLC, 2023
Middle school is a transitional period in which many students experience content-specific teachers, travel between classrooms, and explore extracurricular activity options for the first time. Historically, African American middle school students have not fared well in Science, Technology, Engineering, and Mathematics (STEM) on standardized…
Descriptors: African American Students, Student Interests, STEM Education, Middle School Students
Elina Hannula; Kati Sormunen; Kai Hakkarainen; Tiina Korhonen – Education and Information Technologies, 2025
Transdisciplinary invention projects based on traditional and digital fabrication technologies engage young people in designing and making complex artifacts and constitute a central aspect of future-oriented education. In Finland, comprehensive school students (aged 7-15) from all over the country can practice their inventive skills in the annual…
Descriptors: Student Experience, Student Projects, Intellectual Property, Programming
Oscar Fierro; Alex Palma-Cando; Paola E. Ordo´n~ez; Marvin Ricaurte – Journal of Chemical Education, 2025
This study describes an educational strategy of forming transdisciplinary work teams--with students from different careers and semesters--for developing academic projects as a collaborative learning tool. This strategy was implemented in the elective course Process Design, which involved developing projects in industrial processes. As a final…
Descriptors: Educational Strategies, Training, Outreach Programs, Interdisciplinary Approach
Andrew K. Schulz; Cassie Shriver; Anika Patka; Caroline Greiner; Benjamin Seleb; Rebecca Watts Hull; Carol Subiño Sullivan; Julia M. Sonnenberg-Klein; Roxanne Moore – Advances in Engineering Education, 2025
To address global challenges such as climate change, we must prepare an engineering workforce of sustainability-minded engineers ready to tackle complex socio-technical problems with multiple stakeholders. Frameworks like the United Nations (UN) Sustainable Development Goals (SDGs) have begun to drive structural changes in engineering education,…
Descriptors: Interdisciplinary Approach, Sustainability, Engineering Education, Conservation (Environment)
Kahn, Jennifer B.; Peralta, Lee Melvin; Rubel, Laurie H.; Lim, Vivian Y.; Jiang, Shiyan; Herbel-Eisenmann, Beth – Educational Technology & Society, 2022
In this paper, we introduce Notice, Wonder, Feel, Act, and Reimagine (NWFAR) to promote social justice in data science (DS) education. NWFAR draws on intersectional feminist DS to scaffold critical perspectives towards systems of power and oppression and attend to students' experiences in designs for learning. NWFAR adds three practices that are…
Descriptors: Data, Data Analysis, Interdisciplinary Approach, Social Justice
Chang, Chu-Yang; Du, Zhengyi; Kuo, Hsu-Chan; Chang, Chih-Ching – IEEE Transactions on Education, 2023
Contribution: This study represents the first systematic attempt to develop Science, Technology, Engineering, Arts, and Mathematics (STEAM) integrated project-based learning (PBL) as a transdisciplinary teaching method for fostering students' creativity and computational thinking (CT) skills. Background: With the growing importance of creativity…
Descriptors: Junior High Schools, Grade 7, Design, Cognitive Processes
Lauren M. Maloney; Christopher Page; Michael Bielski; Annie Rohan; Wei Yin – Biomedical Engineering Education, 2025
Challenge: The biomedical engineering (BME) capstone design courses are traditionally offered in students' senior year. Students often feel underprepared for the hands-on biodesign and prototyping process. Also, capstone design projects are often provided by BME faculty, without students' input in needs finding and screening. Novel Initiative: A…
Descriptors: Interdisciplinary Approach, Biomedicine, Engineering Education, Design
Hye Yeon Park; Carlos V. Licon; Jennifer Givens; Ole Russell Sleipness – International Journal of Sustainability in Higher Education, 2024
Purpose: This study aims to investigate the integration of education for sustainable development (ESD) into landscape architecture (LA) programs in North American universities to understand its benefits and challenges and provide insights into the implementation of sustainability principles, pedagogies and teaching methods.…
Descriptors: Faculty, Teacher Attitudes, Course Descriptions, Sustainability

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