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Laura P. Ford; Kevin D. Dahm; Daniel A. Crowl; Christopher J. Barr; Janie Brennan; Tracy Carter; Luke Landherr; David L. Silverstein; Stephen W. Thiel; Bruce K. Vaughen; Troy Vogel – Chemical Engineering Education, 2025
This paper presents a history of process safety education and the results of a Spring 2023 survey of US and Canadian departments. The number of departments with process safety education throughout the curriculum and those with a required process safety course both continue to increase. Lower-level learning outcomes are expected in departments…
Descriptors: Safety Education, Educational History, Cross Cultural Studies, Required Courses
Yulianti Talar; Jimmy Gozaly – Journal of Education and Learning (EduLearn), 2025
In Indonesia, the percentage of students dropping out from private universities is always much higher than that of public universities, and the second-highest number of dropouts comes from the engineering field. This study aims to improve the sustainability of engineering faculty in Indonesian private universities by obtaining variables that…
Descriptors: Foreign Countries, Engineering Education, Case Studies, Private Colleges
Diana Adela Martin; Gunter Bombaerts – European Journal of Engineering Education, 2025
Challenge Based Learning (CBL) is an educational approach that has gained popularity in response to the need for authentic learning environments. While the CBL literature is predominantly focused on cases of pedagogical implementations, the actual processes by which students develop CBL projects remain under-investigated. This shortitudinal study…
Descriptors: Student Projects, Active Learning, Difficulty Level, Student Behavior
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
Harun Cigdem; Semiral Oncu – TechTrends: Linking Research and Practice to Improve Learning, 2025
Despite efforts to implement innovative approaches such as flipped learning leveraging computer technology, the challenge of student failure persists. Understanding the factors that contribute to student success in flipped engineering courses remains a critical issue. This study addresses this issue by investigating the impact of student…
Descriptors: Gamification, Flipped Classroom, Learner Engagement, Learning Readiness
Melikhan Tanyeri – Biomedical Engineering Education, 2025
Purpose: This paper describes a senior-level biomedical engineering course designed to educate students on primary literature analysis and effective scientific communication. The course integrates elements from both disciplines through in-class discussions of primary research articles and an innovative annotation project utilizing the Science in…
Descriptors: Documentation, Biomedicine, Engineering Education, Science Process Skills
Mercedes Fernández-Paradas; José Joaquín Luque-García – History of Education, 2025
The "Escuela de Ingenieros Industriales de Barcelona (School of Industrial Engineers of Barcelona)" (EIIB) was founded in 1851 within the context of a reorganisation of technical education in Spain. From 1867 to 1899 it was the only Industrial Engineering school in the country, which emphasises its relevance in the development and…
Descriptors: Foreign Countries, Educational History, Industrial Education, Organizational Change
Ting-Ting Wu; Edi Sarwono; Yueh-Min Huang – Social Psychology of Education: An International Journal, 2025
Laboratories play a central role in engineering education. Current technology enables virtual experiences that challenge the traditional concept of teaching laboratories for undergraduate engineering students. Integrating technology, such as virtual laboratories, allows students to learn foundational experimental skills; however, it lacks…
Descriptors: Engineering Education, Laboratories, Computer Simulation, Undergraduate Students
Hannah Huvard; Hengameh Bayat; Sandra M. Way; Catherine E. Brewer – Journal of STEM Education: Innovations and Research, 2025
A co-curricular program was initiated to increase the opportunities for engineering undergraduates to engage in self-directed and industry-relevant learning. The program included three track options: professional certifications, design projects, and entrepreneurship training. The goals of the program are to increase degree completion, industry…
Descriptors: Undergraduate Students, Curriculum Enrichment, Engineering Education, Self Efficacy
Hamad Aljassmi; Babitha Philip; Mohammad Issam Younes – Advances in Engineering Education, 2025
Construction planning is vital to civil engineering projects, involving task coordination, resource estimation, and risk assessment. Traditional educational methods in Engineering management courses frequently lack real-world feedback, hindering understanding of students. To bridge this gap, this study aims to propose an educational approach…
Descriptors: Engineering Education, Decision Making, Student Projects, Risk Assessment
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
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
Paul Ashwin – Higher Education: The International Journal of Higher Education Research, 2025
There are strong concerns about students perceiving their undergraduate education in instrumental, rather than transformational, ways. However, it is not clear whether seeing education instrumentally undermines students' capacity to see their education as transformational. Based on data from a 7-year longitudinal study of chemical engineering…
Descriptors: Undergraduate Students, Undergraduate Study, Student Attitudes, Transformative Learning
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
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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