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Daniel Lee; Edward Palmer – International Journal of Educational Technology in Higher Education, 2025
This paper presents a systematic review of the role of prompt engineering during interactions with Generative Artificial Intelligence (GenAI) in Higher Education (HE) to discover potential methods of improving educational outcomes. Drawing on a comprehensive search of academic databases and relevant literature, key trends, including multiple…
Descriptors: Engineering, Artificial Intelligence, Higher Education, Technology Uses in Education
Payne, Corey; Crippen, Kent J. – Journal of Research in Science Teaching, 2023
Persistence is a major issue facing students, particularly those who are both female and from underrepresented ethnic minorities (URM). A closer look at the variables affecting their commitment and capacity for continuing the pursuit of their goal allows us to better design support systems that bolster persistence. This study tests a structural…
Descriptors: Chemistry, Science Instruction, Correlation, Teaching Methods
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
Laura A. Lukes; Larissa Rocha – International Journal for Students as Partners, 2025
Students as partners (SaP) has emerged as a way to innovate curriculum development and create more inclusive learning experiences for students in postsecondary settings. Popular models of SaP are time intensive, involving student and instructor dyads that meet frequently. Less is known about short-term consultant models of SaP and the impact on…
Descriptors: Partnerships in Education, Curriculum Development, Student Attitudes, Consultation Programs
Ellis, Brittney; Larsen, Sean; Voigt, Matthew; Vroom, Kristen – International Journal of Research in Undergraduate Mathematics Education, 2021
Calls to increase the number of STEM graduates on a global scale have created pressure on universities to graduate higher numbers of quality engineers. In response, many engineering and mathematics departments have begun to develop variations of calculus courses specifically for engineering majors. Using a mixed methods research design, we…
Descriptors: Calculus, Engineering Education, Educational Change, Majors (Students)
Beagon, Una; Bowe, Brian – Journal of Engineering Education, 2023
Background: Globalization and socially complex problems will greatly affect the way engineers work in the future. Therefore, efforts to transform engineering education must focus on professional skills and engagement of faculty as key change agents. Purpose/Hypotheses: For engineering programs to address the needs of society, graduates must have…
Descriptors: Job Skills, Engineering Education, Teacher Attitudes, College Faculty
Lewin, Daniel Roberto; Barzilai, Abigail – Chemical Engineering Education, 2021
The capstone design sequence provides chemical engineering students with the opportunity to demonstrate mastery in process engineering, acquired during their entire degree, and is the ultimate "reality check" in outcome verification. This paper describes the current status of the design sequence followed by chemical engineering students…
Descriptors: Capstone Experiences, Flipped Classroom, Chemical Engineering, Engineering Education
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
Andrew J. Collins; Brandon M. Butler; James F. Leathrum; Christopher J. Lynch – Studying Teacher Education, 2024
As the COVID-19 pandemic caused severe disruption to education enterprises throughout the world, the main response by educational institutions was to move to online learning environments. The purpose of this study was to understand better how instructors could improve online learning for a professional-level week-long short course in a highly…
Descriptors: COVID-19, Pandemics, Engineering Education, Electronic Learning
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
Eidenskog, Maria; Leifler, Ola; Sefyrin, Johanna; Johnson, Ericka; Asplund, Mikael – International Journal of Sustainability in Higher Education, 2023
Purpose: The information technology (IT) sector has been seen as central to society's transformation to a more just and sustainable society, which underlines teachers' responsibility to foster engineers who can contribute specifically to such ends. This study aims to report an effort to significantly update an existing engineering programme in IT…
Descriptors: Engineering Education, Sustainability, Information Technology, Curriculum Development
Boyle, Fiona; Walsh, Joseph; Riordan, Daniel; Geary, Cathal; Kelly, Padraig; Broderick, Eilish – Education Sciences, 2022
Universities are coming under increasing pressure to re-invent the way that engineering is taught in order to produce graduates that are capable of meeting the skills needs of the country's industries. This paper described an active project where Design Thinking (DT) methodology is being applied in a novel way to Engineering Curriculum…
Descriptors: Engineering Education, Curriculum Development, Design, Innovation
John R. Reisel – Journal of STEM Education: Innovations and Research, 2023
Surveys and interviews were conducted among faculty and students regarding undergraduate research experiences (URE) in an engineering program at an urban research university. In the student survey, students were asked to self-identify if they felt that their URE had provided them with 11 potential benefits. In the faculty survey, faculty were…
Descriptors: Engineering Education, Undergraduate Students, Student Attitudes, Teacher Attitudes
Butrus, Salwan; Greenman, Kevin; Khera, Eshita; Kopyeva, Irina; Nishii, Akira – Chemical Engineering Education, 2020
The interdisciplinary roots of chemical engineering have shaped its history and fostered its rapidly evolving nature. Through ongoing research, graduate students in chemical engineering departments remain abreast of the field's evolution. Yet core undergraduate curricula often fall short of introducing students to the breadth of current research…
Descriptors: Chemical Engineering, Student Research, Research Skills, Lecture Method
Rita Prestigiacomo; Chun Chuen Chan; Lauren Kark – European Journal of Education, 2024
Biomedical engineering is critical in improving people's lives through innovative solutions to biological and medical challenges. In the face of today's rapidly evolving climate, the field of biomedical engineering encounters numerous pressures that demand up-to-date skills and competencies. The (re-)development of curricula aligning with industry…
Descriptors: Biomedicine, Engineering Education, Curriculum Development, Stakeholders

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