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Komarek, Rebecca L. D. – New Directions for Student Leadership, 2022
Despite an elusive definition of engineering leadership, educators and researchers forge ahead to identify disparate and complementary theories which frame engineering leadership.
Descriptors: Leadership Training, Engineering, Teachers, Researchers
Sigahi, Tiago F. A. C.; Sznelwar, Laerte Idal – Journal of Engineering Education, 2022
Background: Complexity theory (CT) has been used in response to the need for a different mindset than the classical engineering paradigm. The engineering education research (EER) community may benefit from the knowledge of how CT has been used in the field. Purpose: Aiming to provide a broad view of CT in EER, the following research questions…
Descriptors: Engineering Education, Educational Research, Systems Approach
Niloufar Bayati; Cameron Denson – Journal of Research in Technical Careers, 2025
Using the Parental Socialization Framework, this research provides a detailed analysis of how early STEM exposure, parental confidence in abilities, and gender-neutral upbringing contribute to the development of STEM identities among women. Employing a hermeneutic phenomenological approach, six undergraduate women engineering majors were…
Descriptors: Parent Influence, Females, STEM Education, Engineering Education
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
Hanxiang Du; Gaoxia Zhu; Wanli Xing; Charles Xie – Journal of Science Education and Technology, 2025
Engineering design that requires mathematical analysis, scientific understanding, and technology is critical for preparing students for solving engineering problems. In simulated design environments, students are expected to learn about science and engineering through their design. However, there is a lack of understanding concerning linking…
Descriptors: Engineering, Design, Scientific Concepts, Problem Solving
Jacqueline Handley – Science Education, 2025
An increased interest in expanding engineering education with youth brings with it a multitude of approaches toward developing engineering programming. In this article, I explore how developing programming for the purpose of fostering liberatory design offers a means of supporting young people in both personally consequential and technically…
Descriptors: Design, Engineering Education, Justice, Program Development
Amy J. Richardson; David B. Knight – Inquiry: The Journal of the Virginia Community Colleges, 2025
One of the issues at the heart of transfer is the mobility of credits across institutions--moving credits from one institution to another is a crucial process for the transfer pathway to be a viable option. Credit loss is a critical issue for transfer students enrolled in highly sequential degrees, such as engineering. A student could be set back…
Descriptors: College Credits, Engineering Education, College Science, College Transfer Students
Jihyun Rho; Martina A. Rau; Barry Van Veen – Journal of Engineering Education, 2025
Background: Visual representations are pervasive in electrical engineering instruction in various instructional settings. Further, electrical engineering instruction often requires students to extend simple visual representations to learn about more complex visualization in subsequent instruction. Yet, students often struggle to understand…
Descriptors: Engineering Education, Undergraduate Students, Learning Processes, Learning Strategies
M. R. Islam; K. J. Chua – European Journal of Education, 2025
A concept-heavy engineering module was offered to introduce the experience of solving full-scale real-world energy-related engineering problems within a classroom environment and prepare students to be professionally ready for the industry. The widely practiced hybrid problem-based learning (h-PBL) pedagogical approach was adopted for the first 2…
Descriptors: Engineering Education, Problem Based Learning, Concept Formation, Energy
Alexandra Jackson; Cheryl Bodnar; Elise Barrella; Juan Cruz; Krista Kecskemety – Journal of STEM Education: Innovations and Research, 2025
Recent curricular interventions in engineering education have focused on encouraging students to develop an entrepreneurial mindset (EM) to equip them with the skills needed to generate innovative ideas and address complex global problems upon entering the workforce. Methods to evaluate these interventions have been inconsistent due to the lack of…
Descriptors: Engineering Education, Entrepreneurship, Concept Mapping, Student Evaluation
Hsiao-Ping Hsu – TechTrends: Linking Research and Practice to Improve Learning, 2025
The advancement of large language model-based generative artificial intelligence (LLM-based GenAI) has sparked significant interest in its potential to address challenges in computational thinking (CT) education. CT, a critical problem-solving approach in the digital age, encompasses elements such as abstraction, iteration, and generalisation.…
Descriptors: Programming, Prompting, Computation, Thinking Skills
Simone Porcu; Alessandro Floris; Luigi Atzori – IEEE Transactions on Learning Technologies, 2025
In this article, we preliminarily discuss the limitations of current video conferencing platforms in online synchronous learning. Research has shown that while the involved technologies are appropriate for collaborative video calls, they often fail to replicate the rich nature of face-to-face interactions among students and between students and…
Descriptors: Computer Simulation, Electronic Learning, Synchronous Communication, Videoconferencing
Trevion S. Henderson; Avis Carrero; Jessica O. Michel – Journal of Engineering Education, 2025
Background: Engineering students will be responsible for building new technologies that either mitigate or exacerbate future sustainability problems. Engineering educators are thus tasked with educating engineering students on the knowledge, attitudes, and behaviors that will make them change makers of the future. Purpose: The purpose of this…
Descriptors: College Students, Engineering Education, Learning Experience, Learning Processes
Luka Doric; Nikola Luburic; Jelena Slivka; Simona Prokic; Anica Ðukic – ACM Transactions on Computing Education, 2025
Teamwork is crucial in software engineering. However, recent literature concludes that software engineering graduates have underdeveloped teamwork skills. Instructors wishing to develop teamwork skills are faced with many teamwork models and a lack of empirical studies that examine their utility in higher education. We conducted an exploratory…
Descriptors: Teamwork, Cooperative Learning, Computer Software, Undergraduate Students
Kurt Coppens; Lynn Van den Broeck; Naomi Winstone; Greet Langie – Assessment & Evaluation in Higher Education, 2025
When students enter university, they become increasingly accountable for their own learning. Feedback and self-reflection processes are an important part of this. Therefore, the primary aim of this mixed methods study is to contribute to the understanding of how feedback literacy and self-reflection can be measured, interact, and support each…
Descriptors: Feedback (Response), Knowledge Level, Student Attitudes, Reflection

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