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Gerald Tembrevilla; André Phillion; Melec Zeadin – Journal of Engineering Education, 2024
Background: The evolving transformations of our society at large, academic institutions, and engineering discipline in the 21st century have profound implications for the nature of experiential learning being offered in engineering education. However, what is experiential learning in the context of engineering education? Purpose: The introduction…
Descriptors: Engineering Education, Undergraduate Study, College Curriculum, Experiential Learning
Tharuesean Prasoplarb; Chatree Faikhamta; Samia Khan; Kornkanok Lertdechapat; Nguyen Van Bien; R. Ahmad Zaky El Islami; Song Xue; Vipavadee Khwaengmek; Alison Hennessey – Asia-Pacific Science Education, 2024
Southeast Asian countries are embracing updated integrated curricula, such as STEM, which are impacted by socio-scientific, political, and economic reasons related to global educational reform. This study compares science curricula regarding science and engineering practices (SEP?s) in Indonesian, Thai, and Vietnamese science curricula. The SEP?s…
Descriptors: Foreign Countries, Comparative Education, Science Curriculum, Integrated Curriculum
Roy Bendor; Maria Luce Lupetti – International Journal of Technology and Design Education, 2025
Speculative design is an emerging form of critical material engagement with possible futures. Designers working speculatively call attention to current and future sociotechnical dilemmas, and aim to provoke debate about the moral, political and ethical implications of sociotechnical innovation. Despite the popularity of speculative design and its…
Descriptors: Graduate Study, College Curriculum, Design, Engineering Education
Yijia Hao; Yushi Liu; Bo Liu; George Amarantidis; Rami Ghannam – IEEE Transactions on Education, 2025
Contribution: The integration of artificial intelligence (AI) in engineering higher education is becoming increasingly important nowadays. This article contributes to the Scholarship of Integration by providing a comprehensive review of current research on AI integration in engineering higher education and presenting a pilot AI introductory module…
Descriptors: Foreign Countries, Undergraduate Students, Engineering Education, Artificial Intelligence
Nature of Engineering: A Cognitive and Epistemic Account with Implications for Engineering Education
Miri Barak; Tamar Ginzburg; Sibel Erduran – Science & Education, 2024
Engineering education has slowly been making its way into schools with the aim of promoting engineering literacy, which is central to learning and working in a technology-oriented society. Educators and policy makers advocate the need for developing students' understanding of the nature of engineering (NOE); yet, there is an ongoing debate on the…
Descriptors: Engineering Education, Science Curriculum, Integrated Curriculum, Educational Research
Md. Yunus Naseri; Caitlin Snyder; Katherine X. Perez-Rivera; Sambridhi Bhandari; Habtamu Alemu Workneh; Niroj Aryal; Gautam Biswas; Erin C. Henrick; Erin R. Hotchkiss; Manoj K. Jha; Steven Jiang; Emily C. Kern; Vinod K. Lohani; Landon T. Marston; Christopher P. Vanags; Kang Xia – IEEE Transactions on Education, 2025
Contribution: This article discusses a research-practice partnership (RPP) where instructors from six undergraduate courses in three universities developed data science modules tailored to the needs of their respective disciplines, academic levels, and pedagogies. Background: STEM disciplines at universities are incorporating data science topics…
Descriptors: Data Science, Courses, Research and Development, Theory Practice Relationship
Christopher Greer; Devon Eichfeld; Sara Sattarzadeh; Siu Ling Leung – Advances in Engineering Education, 2024
When engineering students are unable to evaluate the validity of their solutions, they are unprepared to solve complex, real-world engineering problems that require decomposition or knowledge transfer. A proper framework is key to successful implementation and can encourage more institutions to adopt problem-solving engineering labs. This paper…
Descriptors: Problem Solving, Engineering Education, Learning Laboratories, Scientific Concepts
Vinod Bhatt; Dev Brat Gupta; Asmita Sharma – Measurement: Interdisciplinary Research and Perspectives, 2025
The present study is a combination of qualitative and quantitative research in order to determine the impact on virtual teaching and learning methods, particularly in technical courses. The research is an attempt to demonstrate that the tools, practices, methodology, and so on that have been used are ineffective for technical courses because they…
Descriptors: Electronic Learning, College Instruction, Engineering Education, Instructional Effectiveness
John Mitchell; Emanuela Tilley – Journal of Problem Based Learning in Higher Education, 2024
This paper will present the argument that while Problem Based Learning (PBL) (or its variant Project Based Learning, PjBL) provides significant benefits and advantages to student learning in of itself, the full benefit of PBL is only completely realised as part of an "integrated" curriculum that provides a variety of learning…
Descriptors: Foreign Countries, College Faculty, Engineering Education, Educational Researchers
Hussein Sabra; Theresia Tabchi – ZDM: Mathematics Education, 2024
This contribution explores the teaching of graph theory in the context of engineering education. We examine how teachers use collectively designed resources in terms of their backgrounds. After a literature review, we justify the choice to develop an analytical framework for studying the materials in terms of connections to be established in the…
Descriptors: Foreign Countries, Graphs, Engineering Education, Computer Science
Kashif Raza; Simon Li; Catherine Chua – Science & Education, 2024
Traditional engineering education (Eng. Ed) has received criticism for restricting student learning and experiences to practical skills development while ignoring the significance of fostering cognitive skills that encourage higher order thinking, criticality, and self-reflexivity. Imaginative education (IE) has emerged as a consideration for…
Descriptors: Engineering Education, Imagination, Higher Education, Conventional Instruction
Sharon Tettegah; Ebenezer Larnyo; Charles Terry; Jessica Young; Dave Vallett; Alan B. Craig; Yingtao Jiang – Schools: Studies in Education, 2024
Increasing diversity and broadening participation in engineering programs has been a persistent challenge due to various factors. Despite efforts to enhance engineering education, we have not seen a significant increase in matriculation, retention, and graduation rates in certain engineering fields. For decades, academic institutions have received…
Descriptors: Engineering Education, Disproportionate Representation, Access to Education, Minority Group Students
Steven Higbee; Devany Harrell; Anthony Chase; Sharon Miller – Biomedical Engineering Education, 2025
Purpose: Engineering students gain confidence and competency through continual practice of key skills. The social cognitive theory construct of self-efficacy provides a useful measure to assess students' beliefs in their ability to succeed or perform tasks. Research focused on the impacts of curricular engineering design experiences on student…
Descriptors: Biomedicine, Engineering Education, Undergraduate Students, Self Efficacy
Sy-Yi Tzeng; Kuang-Chao Yu; Pai-Hsing Wu; Szu-Chun Fan – International Journal of Technology and Design Education, 2025
Many studies have investigated students' attitudes toward engineering (ATE), but few have examined the changes in attitudes after attending an engineering design curriculum. This study analyzes these attitudinal changes in students attending an engineering-focused science, technology, engineering, and mathematics (EF-STEM) curriculum and…
Descriptors: Student Attitudes, Engineering Education, Performance, STEM Education
Abt Global, 2024
The purpose of this report is to provide findings from the Abt Global independent evaluation of the PreK-12 STEM Pathway program. The Community Training and Assistance Center (CTAC), a nonprofit organization focused on supporting educational innovation and community change, received an Education Innovation and Research (EIR) Early Phase grant from…
Descriptors: STEM Education, Guided Pathways, Evaluation, Elementary Secondary Education