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Herbert Kalthoff; Fabian Koelsch – British Journal of Sociology of Education, 2025
University examinations categorise students according to their individual achievements determined by teaching staff. This procedure serves the elicitation and certification of student knowledge and thus reproduces academic hierarchies. Drawing on empirical evidence from ethnographic fieldwork in Engineering and History departments, this article…
Descriptors: College Students, Student Evaluation, Testing, History Instruction
Tengteng Zhuang; Alan C. K. Cheung; Wilfred W. F. Lau; Yang Su – Asia Pacific Journal of Education, 2025
This study uses China as a case country to investigate the factors that influence university instructors' teaching agency by drawing on experiences in the engineering field using Margaret Archer's social realist framework. With survey results including 659 valid responses, the findings reveal that instructors' delivery of contextual instruction…
Descriptors: Foreign Countries, Professional Autonomy, Universities, Teacher Attitudes
Erik Hombre Cuevas; Daniel Zaldivar; Marco Perez – International Journal of Information and Communication Technology Education, 2025
The integration of various programming languages into the undergraduate engineering curriculum often occurs without adequate evaluation of their effectiveness within specific disciplines. Recently, Python and MATLAB have garnered significant attention as preferred languages for teaching subjects such as image processing and computer vision.…
Descriptors: Influence of Technology, Technology Uses in Education, Programming Languages, Academic Achievement
Paul Mayer; Rich Baraniuk – ACM Transactions on Computing Education, 2025
It is argued that logic, and in particular mathematical logic, should play a key role in the undergraduate curriculum for students in the computing fields, which include electrical engineering (EE), computer engineering (CE), and computer science (CS). This is based on (1) the history of the field of computing and its close ties with logic, (2)…
Descriptors: Teaching Methods, Logical Thinking, Computer Science Education, Engineering Education
Qiuyue Yang; Xiaofeng Li; Jianjun Gu; Jon-Chao Hong; Tiancong Hao – International Journal of Technology and Design Education, 2025
Previous research has demonstrated that stereotypes associated with the female gender can impact technology and engineering education results. However, it remains unclear whether these stereotypes affect other relevant factors in technology and engineering education performance. The research used quantitative methods to investigate the correlation…
Descriptors: Foreign Countries, Junior High School Students, Self Efficacy, Creative Thinking
Christine E. King; Beth A. Lopour – Biomedical Engineering Education, 2025
Challenge: In engineering classrooms, generative artificial intelligence (AI) tools, such as ChatGPT, can supplement traditional teaching methods and have the potential to improve learning outcomes. However, there are also significant drawbacks, including the possibility of over-reliance on the tools and the hindrance of critical thinking, which…
Descriptors: Critical Thinking, Artificial Intelligence, Technology Uses in Education, Concept Formation
Steven Higbee; Sharon Miller; Karen Alfrey – Biomedical Engineering Education, 2025
Challenge: The Hodgkin-Huxley membrane conductance model has been featured in biomedical engineering (BME) curricula for decades. A typical BME assignment might require students to apply the relevant equations and parameters to model the generation of action potentials; however, there is opportunity for students to build and explore both…
Descriptors: Scientific Concepts, Biomedicine, Engineering Education, Models
Cui Ping; Marloes Hendrickx; Ad Kleingeld; Sonja Rispens; Shakila Sewnarain Sukul; Ruurd Taconis – European Journal of Engineering Education, 2025
International teamwork skills are becoming more and more important for future engineers. Engineering projects with diverse students working towards solving an issue together could cultivate such skills. However, social exclusion may rise when faultlines emerge: dividing lines that split a group into relatively homogeneous subgroups. This study…
Descriptors: Foreign Countries, College Students, Engineering Education, Teamwork
Hye Yeon Lee; Joseph M. Le Doux – European Journal of Engineering Education, 2025
This study explores "story-driven learning," an educational approach that leverages personal narratives to enhance learning outcomes. Although prior work has provided evidence for the benefits of using personal narratives to drive learning, a repertoire of pedagogical practices used in story-driven learning has yet to be established.…
Descriptors: Higher Education, College Students, Biomedicine, Engineering Education
Deepti Reddy Patil; Sridhar Iyer; Sasikumar – ACM Transactions on Computing Education, 2025
Design problems are often ill-structured as the requirements are broadly defined and have multiple correct solutions. Experts solve such problems by applying various cognitive and metacognitive skills before the formal specifications and solution designs are documented. Novices often need help solving ill-structured design problems as they lack…
Descriptors: Educational Environment, Problem Solving, Design, Technology Uses in Education
Oklahoma State Regents for Higher Education, 2025
The 2024 Employment Outcomes Report analyzes employment data for graduates of Oklahoma public colleges and universities one year and five years after graduation, 2022-2023 and 2018-2019. The current study supports national data that link salary to educational attainment. Oklahoma data for graduates of the state's public colleges and universities…
Descriptors: Employment Patterns, College Graduates, Education Work Relationship, Salaries
Brayan Diaz; Cesar Delgado; John Bacher; Collin Lynch; Kevin Han – International Journal of STEM Education, 2025
Background: Policy documents call for supporting STEM students in developing collaborative abilities for working in multidisciplinary teams. Courses with intra- and inter-group collaboration are therefore essential to prepare STEM students to participate in modern multidisciplinary professional environments. To analyze those courses, this paper…
Descriptors: Graduate Students, Cooperation, Teamwork, Computer Mediated Communication
Rogers, Helen L.; Hitt, Sarah J.; Allan, Dave G. – Journal of Problem Based Learning in Higher Education, 2021
NMITE's Master's in Integrated Engineering (MEng) was created with a unique philosophy of integrating not only traditionally separate strands of engineering, but also of integrating engineering with other disciplines such as arts, humanities, and business. This broad and deep integration is made possible by adopting the principles and practices of…
Descriptors: Problem Based Learning, Curriculum Design, Engineering Education, Interdisciplinary Approach
Gold, Zachary S.; Elicker, James; Evich, Carly D.; Mishra, Aura A.; Howe, Nina; Weil, Abigail E. – Journal of Engineering Education, 2021
Background: Engineering play is an emerging framework for understanding young children's constructive block play as an engineering design process. Few studies have evaluated engineering thinking, language, or behavior in preschool-age children, especially quantitative evaluations that systematically document specific early engineering behavior.…
Descriptors: Engineering Education, Play, Toys, Executive Function
Magarian, James N.; Seering, Warren P. – Journal of Engineering Education, 2021
Background: Engineering education research frequently examines students' persistence (or intentions to persist) into engineering careers from engineering school. However, the variety of engineering-related occupations has increased substantially in recent years, challenging researchers' abilities to discern what constitutes persistence in…
Descriptors: College Students, Engineering Education, Education Work Relationship, Expectation

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