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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)
Mathew Thomas – Journal of Technology Education, 2025
STEM literacy is essential for preparing students to solve real-world problems across science, mathematics, engineering, and technology domains. However, the integration of STEM education especially in terms of its influence on student discourse and interdisciplinary learning remain underexplored. This study contributes to STEM education research…
Descriptors: Foreign Countries, STEM Education, Multiple Literacies, Interdisciplinary Approach
Carrie Kavanaugh Brun – ProQuest LLC, 2024
This action research study explored the challenge of evoking wonder among fourth graders within one Catholic School, using an integrative STEM educational approach. Cognitive constructivism, social constructivism, and situated learning theory guided this qualitative case study. Twenty-one students learned about the Fibonacci sequence and Golden…
Descriptors: STEM Education, Catholic Schools, Psychological Patterns, Learner Engagement
Tim Gill – Research Matters, 2024
Core Maths qualifications were introduced into the post-16 curriculum in England in 2014 to help students develop their quantitative and problem-solving skills. Taking the qualification should also give students confidence in understanding the mathematical content in other courses taken at the same time. In this article, we explore whether Core…
Descriptors: Foreign Countries, Mathematics Skills, Mathematics Tests, Minimum Competency Testing
Jesiek, Brent K.; Mazzurco, Andrea; Buswell, Natascha T.; Thompson, Julia D. – Journal of Engineering Education, 2018
Background: Engineers are often expected to span organizational, cultural, stakeholder, geographic, temporal, and other boundaries. Yet, few studies on boundary spanning have appeared in the engineering education literature, suggesting the need for improved theoretical and conceptual foundations to guide empirical studies of boundary spanning in…
Descriptors: Engineering, Engineering Education, Innovation, Leadership Role
Samardzic, Natasa M.; Sekulic, Dalibor L. – IEEE Transactions on Education, 2022
Contribution: This article presents the innovative prototypes used in materials and fabrication technologies in medical devices (MFTIMD) laboratory course, under the curriculum of Biomedical (BME) and Electrical Engineering (EE) undergraduate studies. A special part of the course is devoted to state-of-the-art topics, such as flexible and wearable…
Descriptors: Undergraduate Students, Engineering Education, Biomedicine, Instructional Materials
Fan, Hua; Xie, Huajiang; Feng, Quanyuans; Bonizzoni, Edoardo; Heidari, Hadi; McEwan, Michael P.; Ghannam, Rami – IEEE Transactions on Education, 2023
Continuous developments in the electronics industry have led to constantly changing career roles and graduate skills requirements. Students in the University of Electronic Science and Technology of China (UESTC) have complained that numerous courses in electronic engineering are heavily focused on theoretical knowledge that is disconnected from…
Descriptors: Interdisciplinary Approach, Student Projects, Active Learning, Electronics
Moloi, Mabel Julia; Motlhabane, Abraham Tlhalefang – South African Journal of Education, 2023
The aim with this study was to analyse and explore how physical sciences, engineering science and technology subjects (technical electrical technology, technical civil technology, technical mechanical technology) can contribute to the alignment of the technical sciences curriculum. We used document analysis to collect data. An analysis of the…
Descriptors: Integrated Curriculum, Science Curriculum, Physical Sciences, Engineering Education
Mohlin, Alice – Journal of Workplace Learning, 2023
Purpose: The purpose of this paper is twofold: to identify and map contemporary research on advanced technology implementations for problem-solving purposes in the manufacturing industry, and to further understand the organizational learning possibilities of advanced technology problem-solving in the manufacturing industry.…
Descriptors: Manufacturing Industry, Problem Solving, Organizational Learning, Technology Uses in Education
Kelly Schucker; Mary B. Mcvee; Christopher J. Jarmark; Lynn E. Shanahan – Pedagogies: An International Journal, 2024
Situated in an elementary afterschool Engineering Literacies Club framed around multiliteracies and the engineering design process, this article explores engineering habits of mind and disciplinary literacies. Disciplinary literacies encourage students to read, write, think, and act like historians, mathematicians, scientists, or engineers by…
Descriptors: After School Programs, Elementary School Science, Elementary Schools, Engineering Education
Jeffrey A. Anderson; Bryan B. Nguyen – PRIMUS, 2024
Many students who enroll in a first course in linear algebra major in STEM disciplines other than mathematics. Teachers who serve such students may find it difficult to provide authentic problems from these broader areas that ignite students' interest in linear algebra. In this paper, we highlight an interdisciplinary learning activity that…
Descriptors: Mathematics Instruction, Algebra, Graphs, Majors (Students)
Mario Alberto de la Puente Pacheco; Juan Diego Rios Mahecha; Mauro Maury Campo; Jose Torres – Research in Comparative and International Education, 2024
This study explores the effectiveness of online and blended teaching methods in developing cross-curricular skills crucial for an ideal engineering profile among undergraduate students. Involving 587 online and 635 blended students across 11 Latin American universities, the research incorporates Likert tests for student perceptions and…
Descriptors: Engineering Education, Teaching Methods, Barriers, Interdisciplinary Approach
Katherine R. McCance; Margaret Blanchard – AERA Open, 2024
Interdisciplinarity has the potential to lead to more innovation and advances in knowledge than are possible from a single discipline. Yet, little is known about interdisciplinary collaborations and the perceptions of those involved. This quantitative study investigated the perceptions of U.S. faculty, staff, postdocs, and graduate students…
Descriptors: Interdisciplinary Approach, Cooperation, Partnerships in Education, Scientists
Gutiérrez Ortiz, Francisco Javier; Fitzpatrick, John J.; Byrne, Edmond P. – European Journal of Engineering Education, 2021
The engineering graduate of today will engage in a career which will span the middle of the twenty-first century, and beyond. They will work in a world which is increasingly more complex and uncertain than at any time before. This will require an integrated combination of technical knowledge and transferable skills and values, to a greater extent…
Descriptors: Engineering Education, Chemical Engineering, Foreign Countries, Teaching Methods
Lowe, David B.; Goldfinch, Tom – IEEE Transactions on Education, 2021
Contribution: Insights are provided into the intended role of integrative courses that aim to connect technical and professional capabilities and, particularly, the appropriate stage within a program for different levels of integrative capability. Background: The need for Engineering graduates who can balance technical competence with professional…
Descriptors: Engineering Education, Job Skills, Competence, Interdisciplinary Approach

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