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Julie A. Lockman; Cerasela Zoica Dinu – Advances in Engineering Education, 2025
This paper explores the impact of sessions with sophomore biomedical engineering students at an R1 university focused on individualized talent discovery and development to create effective teams of contributing individuals and future professionals. The rationale was that the identification and exploration of individual strengths early in the…
Descriptors: Undergraduate Study, Biomedicine, Engineering Education, Undergraduate Students
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Xing Du; Zihan Zhou; Ying Hu; Duoyi Chen; Yiming Bai – Asia-Pacific Education Researcher, 2025
Critical thinking (CT) is essential for students engaged in multidisciplinary innovation and complex problem-solving, yet disciplinary differences in CT remain underexplored. This study investigates the unique characteristics of CT among students from various disciplines when tackling complex problems. Using a quasi-experimental design, this study…
Descriptors: Interdisciplinary Approach, Critical Thinking, Transfer of Training, Cooperative Learning
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Aatif Ali Khan – Discover Education, 2025
In the postgraduate fire safety engineering programme, students come from diverse educational backgrounds, leading to varying levels of familiarity with the fundamental principles essential for understanding fire engineering concepts. As a result, a significant amount of new knowledge must be delivered, which often increases the cognitive load on…
Descriptors: Graduate Students, Fire Protection, Safety, Engineering Education
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Ming Hu; K. C. Fryer; Adam Heet; Jacob Mathis – Journal of Civil Engineering Education, 2025
This study explores the integration of immersive virtual reality (IVR) in teaching carbon-neutral development, focusing on experiential learning. Utilizing a case study approach with the Hafencity project in Hamburg, Germany, the research evaluates IVR as an educational tool to deliver an immersive learning experience in carbon-neutral development…
Descriptors: Foreign Countries, Computer Simulation, Technology Uses in Education, Experiential Learning
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Saira Anwar; Ahmed Ashraf Butt; Muhsin Menekse – International Journal of STEM Education, 2025
Background: Technology-enhanced classrooms now integrate a range of educational apps designed to improve student outcomes. The effectiveness of these applications is influenced by multiple factors related to the courses and the applications themselves. A critical factor is student engagement, which involves interacting with the course content…
Descriptors: Natural Language Processing, Handheld Devices, Computer Oriented Programs, Learner Engagement
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Sarah Ilkhanipour Rooney; Christine Elizabeth King; Laura Christian; Mahendra Kavdia; Joshua C. Kays; Sally F. Shady – Biomedical Engineering Education, 2025
Student engagement is critical to academic success, particularly in the interdisciplinary field of biomedical engineering (BME). However, engaging and motivating students in class have become increasingly challenging, with the COVID-19 pandemic exacerbating this difficulty. This Perspectives paper synthesizes the insights from three faculty…
Descriptors: Biomedicine, Learner Engagement, College Faculty, Engineering Education
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Daniel I. Castaneda; Joi D. Merritt; Joel A. Mejia – Advances in Engineering Education, 2025
Engineering learners must develop skills to design holistic solutions that take competing and complex economic, environmental, and social factors into account. Yet, these skills are not simply cognitive in nature. To develop holistic solutions, engineering learners must develop their affective attitudes so that they can gain an awareness of…
Descriptors: Engineering Education, Student Projects, Active Learning, Culturally Relevant Education
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Russell Korte; Cory Brozina; Brent Jesiek; Aditya Johri – European Journal of Engineering Education, 2025
Research on engineering practice and its relationship with engineering education is getting increased attention in the engineering education literature recently. In this article, we present a study of engineering practice in an electrical power utility company that focused specifically on the learning practices of professional engineers. Through…
Descriptors: Workplace Learning, Classification, Engineering Education, Learning Processes
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Christopher V. H.-H. Chen; Lisa G. Bullard; Adam Melvin; Sandra L. Pettit – Chemical Engineering Education, 2025
In 2024 the AIChE Education Division surveyed departments over how they prepared graduate student instructors (GSIs) and the roles these GSIs have. This survey was completed by 70 departments, reaching departments big and small; with and without graduate teaching requirements; and a wide range GSI training programs. This first-of-its-kind survey…
Descriptors: Graduate Students, Teaching Assistants, College Faculty, Chemical Engineering
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E. S. Uma Maheswari – Journal on English Language Teaching, 2025
The integration of Information and Communication Technology (ICT) in engineering education has significantly transformed the learning process, particularly in developing technical writing skills. This study investigates how specific ICT tools such as Grammarly, Turnitin, Google Docs, and Moodle enhance technical writing proficiency among…
Descriptors: Technical Writing, Writing Skills, Engineering Education, Educational Technology
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Shuqi Zhou; Zehua Dong; Hui Hui Wang; Ming Ming Chiu – Research in Science Education, 2025
This meta-analysis examined whether learning outcomes differ (a) for STEM integration versus traditional instruction and (b) across STEM integration implementations. Based on 79 effect sizes from 40 studies of 15,577 students, those learning via STEM integration outperformed other students on academic achievement tests (g = 0.661; 95% CI [0.548,…
Descriptors: Meta Analysis, STEM Education, Academic Achievement, Effect Size
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Dogan Yuksel; Kenan Dikilitas; Rhian Webb; Sibel Kaya – International Journal of Bilingual Education and Bilingualism, 2025
The current study explores the discipline-based differences in terms of the relationship between English language proficiency and attitudes towards translanguaging in partial English Medium Instruction (EMI) programmes at a Turkish university. Quantitative data were collected from undergraduates in the Faculty of Engineering (n = 173) and the…
Descriptors: Language Proficiency, Language of Instruction, English (Second Language), Undergraduate Students
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Maya Usher; Miri Barak; Sibel Erduran – International Journal of STEM Education, 2025
Background: The rapid advancement of artificial intelligence (AI) has raised significant ethical concerns, prompting higher education institutions to reconsider how they prepare future STEM professionals to navigate such concerns responsibly. Despite growing efforts to integrate AI ethics into higher education, a lack of consensus and standardized…
Descriptors: Artificial Intelligence, Ethics, Ethical Instruction, Higher Education
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Xiao, Hui; Hu, Wenshan; Liu, Guo-Ping – IEEE Transactions on Learning Technologies, 2023
In conventional laboratories, engineering students must attend in person to conduct experiments with real equipment in a physical place, where their work is mainly assessed through self-reports and attendance records. By comparison, online labs can record and analyze students' activities and behaviors automatically. Thus, this article proposes a…
Descriptors: Electronic Learning, Science Laboratories, Engineering Education, Distance Education
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Lim, Woong; Yoon, Hyunkyoung; Bae, Younggon; Kwon, Oh Nam – Educational Studies in Mathematics, 2023
This study investigates social, mathematical, and sociomathematical norms perceived by college students in an engineering mathematics course and examines the students' sense of mathematics as signals of individual merit. Data sources include a survey and one-on-one interviews with 38 students. The findings help illustrate student perceptions of…
Descriptors: Social Attitudes, Mathematics Education, Engineering Education, College Students
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