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Sergio Santander-Jiménez; Miguel A. Vega-Rodríguez; José M. Granado-Criado; Álvaro Rubio-Largo; Juan A. Gómez-Pulido; César Gómez-Martín; Arturo Durán-Domínguez – Education and Information Technologies, 2024
Peer assessment has traditionally represented a key tool to enhance active learning and critical thinking. However, the success of this approach is governed by different factors, which have been accentuated in recent years. The implementation of peer assessment is consequently a challenging task in the current context. This work investigates peer…
Descriptors: Peer Evaluation, Engineering Education, Learning Strategies, Educational Environment
Gestson, Sean L.; Brown, Shane; Ahmed, Ananna; Hurwitz, David; Bornasal, Floraliza; Desing, Renee M. – Journal of Civil Engineering Education, 2024
Problem solving is a common activity for engineering students and practicing engineers as they learn and practice the use of engineering concepts. Understanding the approach to a problem provides a glimpse at unique problem-solving behaviors that can be used as a means to compare different problem solvers. Engineering education research has…
Descriptors: Undergraduate Students, Engineering, Technical Occupations, Problem Solving
Johanna Lönngren; Alberto Bellocchi; Maria Berge; Pia Bøgelund; Inês Direito; James L. Huff; Khairiyah Mohd-Yusof; Homero Murzi; Nor Farahwahidah Abdul Rahman; Roland Tormey – Journal of Engineering Education, 2024
Background: The study of emotions in engineering education (EEE) has increased in recent years, but this emerging, multidisciplinary body of research is dispersed and not well consolidated. This paper reports on the first systematic review of EEE research and scholarship. Purpose: The review aimed to critically assess how researchers and scholars…
Descriptors: Psychological Patterns, Engineering Education, Educational Research, Research Methodology
Aida Guerra; Dan Jiang; Xiangyun Du – International Journal of Sustainability in Higher Education, 2024
Purpose: Student engagement has become increasingly significant in sustainability education for engineers because it enables future engineers to develop competencies, knowledge and values relevant to acting for sustainability. Therefore, this paper aims to examine characteristics of student engineer engagement with sustainability and to discuss…
Descriptors: Learner Engagement, Sustainability, Engineering Education, Educational Research
Saurav Shrestha; Yongwei Shan; Robert Emerson; Zahrasadat Hosseini – IEEE Transactions on Learning Technologies, 2025
This article introduces the development process of social presence-enabled augmented reality (SPEAR) tool, an innovative augmented reality (AR) based learning application tailored for online engineering education. SPEAR focuses on a learning module of structural beam-bending, empowering users to seamlessly integrate 3-D virtual beams into their…
Descriptors: Computer Simulation, Educational Technology, Online Courses, Engineering Education
Imre Kocsis; Sandor Hajdu; Robert Mikuska; Peter Korondi – IEEE Transactions on Education, 2025
We have introduced a novel approach to competency-based education in mechatronics from the undergraduate to the postgraduate level. What distinguishes this approach is the integration of modeling and control of sampled systems right from the beginning of the undergraduate education. It is achieved by changing the structure of the first-semester…
Descriptors: Competency Based Education, Undergraduate Study, Electromechanical Technology, Calculus
Julie P. Martin; Isabel Miller; Karin J. Jensen; Deepthi E. Suresh – IEEE Transactions on Education, 2025
Contribution: Our work focuses on building research capacity in engineering education research (EER). We operationalize enculturation of novice researchers into the EER community by studying temporal changes in the social networks of engineering faculty participating in a mentorship-based training grant. Background: The U.S. National Science…
Descriptors: Social Networks, Network Analysis, Capacity Building, Teacher Researchers
Mirjam S. Glessmer; Peter Persson; Rachel Forsyth – International Journal for Academic Development, 2025
Trust is an important aspect of learning. However, there is little published research on how students perceive its value. In this article, we report on engineering students' perceptions of the role of trust in their learning and their experiences of what teachers do in their courses that builds trust. Nine students participated in semi-structured…
Descriptors: Engineering Education, Trust (Psychology), Leadership Responsibility, Teaching Skills
Simon Kormla Donkor; Charles Domfeh – African Educational Research Journal, 2025
This study investigates the prevalence, physical complaints, and impacts of heavy backpack use among junior high school students, with a focus on understanding how the weight and design of backpacks affect students' physical well-being and academic efficiency. The study was underpinned by the ergonomic theory. Using a descriptive survey design,…
Descriptors: Foreign Countries, Junior High School Students, Human Posture, Pain

Megan N. Imundo; Maria Goldshtein; Micah Watanabe; Jiachen Gong; Nicole Crosby; Tracy Arner; Rod D. Roscoe; Danielle S. McNamara – Grantee Submission, 2025
Academic Status Reports (ASRs) are submitted by an instructor to indicate that a student is succeeding in the course or, more commonly, that the instructor is concerned about their progress or participation in the course (e.g., not attending class or not submitting assignments). ASR notifications are sent to students and may also be shared with…
Descriptors: Undergraduate Students, Academic Achievement, Identification, Early Intervention
Samuel B. Gavitte; Milo D. Koretsky; Jeffrey A. Nason – Journal of Computing in Higher Education, 2025
Laboratory activities are central to undergraduate student learning in science and engineering. With advancements in computer technology, many laboratory activities have shifted from providing students experiments in a physical mode to providing them in a virtual mode. Further, physical and virtual modes can be combined to address a single topic,…
Descriptors: Affordances, Computer Simulation, Science Laboratories, Engineering Education
Ting-Ting Wu; Edi Sarwono; Yueh-Min Huang – Journal of Computer Assisted Learning, 2025
Background: Virtual laboratories are used to supplement or even replace physical laboratories in engineering education. Although these virtual laboratories allow students to learn foundational experimental skills, they do not provide the learners with the chance to develop higher-order thinking skills (HOTS). Computational thinking (CT) is an…
Descriptors: Computation, Thinking Skills, Computer Simulation, Laboratories
Fleer, Marilyn – Research in Science Education, 2022
It is reported that engineering for play-based settings is a new body of knowledge under debate and contradictory. Many studies show how play-based settings are full of engineering possibilities for young children, whilst others have identified missed engineering teaching possibilities. In order to better understand the research, this paper…
Descriptors: Engineering Education, Play, Preschool Education, Gender Bias
Oliveira, Sonja; Olsen, Luke; Malki-Epshtein, Liora; Mumovic, Dejan; D'Ayala, Dina – International Journal of Technology and Design Education, 2022
This paper reflects upon the mechanisms that enable development of curricular approaches to multidisciplinary architecture/engineering higher education. Building upon recent calls for integrated multidisciplinary building design practice, academics at UCL, industry partners and respective professional bodies embarked upon developing a new course…
Descriptors: Architectural Education, Engineering Education, Higher Education, Interdisciplinary Approach
Burkholder, Eric; Hwang, Lisa; Wieman, Carl – Chemical Engineering Education, 2021
We have developed an assessment of authentic problem-solving in chemical engineering, which we used to measure students' problem-solving at the beginning and end of a cornerstone design course. We measured how much problem-solving students learned, and how these students compared with data collected from seniors at the beginning of the capstone…
Descriptors: Authentic Learning, Problem Solving, Chemical Engineering, Student Evaluation