Publication Date
| In 2026 | 5 |
| Since 2025 | 425 |
| Since 2022 (last 5 years) | 2413 |
| Since 2017 (last 10 years) | 5527 |
| Since 2007 (last 20 years) | 9227 |
Descriptor
Source
Author
| Knight, David B. | 35 |
| Basta, Nicholas | 34 |
| Borrego, Maura | 25 |
| Felder, Richard M. | 24 |
| Godwin, Allison | 24 |
| Alden, John D. | 23 |
| Moye, Johnny J. | 22 |
| Kelley, Todd R. | 21 |
| Woods, Donald R. | 21 |
| Ernst, Jeremy V. | 20 |
| Defore, Jesse J. | 18 |
| More ▼ | |
Publication Type
Education Level
Audience
| Practitioners | 1079 |
| Teachers | 652 |
| Policymakers | 256 |
| Researchers | 192 |
| Administrators | 171 |
| Students | 131 |
| Counselors | 11 |
| Community | 7 |
| Parents | 7 |
| Media Staff | 4 |
| Support Staff | 2 |
| More ▼ | |
Location
| Australia | 328 |
| Spain | 277 |
| United Kingdom | 234 |
| India | 211 |
| China | 210 |
| United States | 194 |
| Canada | 175 |
| Sweden | 174 |
| South Africa | 157 |
| Turkey | 148 |
| Germany | 139 |
| More ▼ | |
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
| Meets WWC Standards without Reservations | 1 |
| Meets WWC Standards with or without Reservations | 3 |
| Does not meet standards | 5 |
Early Career Engineers' Perspectives on Leadership Competency Development in Undergraduate Education
Tracey Ann Carbonetto – ProQuest LLC, 2024
The purpose of this qualitative, phenomenological study was to investigate the perceptions of early career engineers regarding leadership competency development within the undergraduate engineering curricula. Participants were selected using purposeful, convenience, and snowball sampling. Study participants represented the early career engineering…
Descriptors: Novices, Engineering, Attitudes, Competence
Canan Mesutoglu; Dury Bayram; Annemieke Vennix; Anne Limburg; Jan van der Veen – European Journal of Engineering Education, 2024
Higher engineering education programmes increasingly include courses characterised by real-world problems and student collaboration in multidisciplinary teams. Research findings demonstrate that students remain limited in perceiving and meaningfully bridging disciplinary differences in these course contexts. Drawing on the literature on boundaries…
Descriptors: Interdisciplinary Approach, Physics, Engineering, Engineering Education
Samuel A. Acuña – Biomedical Engineering Education, 2024
Should your department offer a course on how to be a scientist and a successful graduate student? We offer this course at George Mason University as a mandatory part of the graduate curriculum, but this is not common practice for graduate biomedical engineering programs. Graduate education in biomedical engineering is evolving rapidly, with an…
Descriptors: Biomedicine, Engineering Education, Graduate Students, Courses
Marissa Gray; Jennifer R. Amos; Soraya Bailey; K. Jane Grande-Allen; Celinda Kofron; Sabriya Stukes – Biomedical Engineering Education, 2024
Authored by six current and former Biomedical Engineering (BME) Master's Program Directors, this article aims to summarize the types of BME master's programs that are offered in the U.S., delve into the value of BME master's programs, and reveal concerns of BME master's students and directors that are exacerbated among international and…
Descriptors: Biomedicine, Masters Programs, Engineering Education, Student Attitudes
Alexander Vincent Struck Jannini – ProQuest LLC, 2024
Improving student motivation and changing students from a negative motivational mindset to a positive one can be a viable way to ensure that students stay in their programs and obtain academic success. While educators and administrators are interested in improving motivation, they may not have the full body of knowledge about motivational theories…
Descriptors: Engineering Education, College Freshmen, Student Motivation, Class Activities
Svitlana Rogovchenko; Yuriy Rogovchenko – IEEE Transactions on Education, 2024
Contribution: This article identifies possible ruptures between the ways fundamental notions of exact differential and exact differential equations (EDEs) are employed in mathematics courses and professional engineering disciplines. Background: Engineering students often experience difficulties with mathematics courses which may even lead to…
Descriptors: Engineering Education, Difficulty Level, Calculus, Learning Problems
Zeyu Wang; Yixin Liu; Lingling Wang; Li Fu – IEEE Transactions on Education, 2024
Contribution: This article presents a Mars Exploration Control Virtual Simulation Experiment Platform (MEC-vslab), which aims to address the current challenge of limited integration between control engineering education and engineering practice. MEC-vslab is oriented toward the practical needs of Mars exploration engineering. It offers…
Descriptors: Engineering Education, Space Exploration, Astronomy, Computer Simulation
Katherine Goodman; Heather Lynn Johnson; Maryam Darbeheshti; Tom Altman; David C. Mays – International Journal of Designs for Learning, 2024
This design case describes a Welcome Academy for New Faculty in Engineering. To situate the design, this work is motivated by the documented need to make STEM education more inclusive. This need has prompted extensive research on best practices for inclusive teaching, but less is known about how to translate that research into actual teaching…
Descriptors: Teacher Orientation, College Faculty, Engineering Education, Inclusion
Rottmann, Cindy; Kendall, Meagan R. – New Directions for Student Leadership, 2022
The concluding article of this engineering leadership (EL) development sourcebook looks to the future of the field by exploring four key purposes of EL education: the pursuit of knowledge, personal growth, professional preparation and social transformation.
Descriptors: Engineering Education, Leadership Training, Role of Education
Wolfinbarger, Kim Graves – New Directions for Student Leadership, 2022
Teamwork is an integral part of leadership, and many teamwork skills are also leadership skills. This chapter explains how instructors can help engineering students build their capacity for leadership while working in teams.
Descriptors: Teamwork, Leadership Qualities, Engineering Education, Capacity Building
Al Mamun, Md Abdullah; Azad, Md Abul Kalam; Al Mamun, Md Abdullah; Boyle, Michael – Education and Information Technologies, 2022
The COVID-19 pandemic makes flipped learning more relevant to address the challenges of remote learning. Therefore, renewed attention is warranted in critically appraising the implications on which flipped learning is built. Though several studies have reviewed the flipped learning research in the past, the majority has qualitatively synthesized…
Descriptors: Flipped Classroom, Engineering Education, Educational Research, Bibliometrics
Cano-Moreno, Juan David; Arenas Reina, José Manuel; Sánchez Martínez, Francisca Victoria; Cabanellas Becerra, José María – International Journal of Technology and Design Education, 2022
One of the popular creativity methods to solve technical problems is the Theory of Inventive Problem Solving, (TRIZ), however, requires a considerable investment of time. A teaching methodology for a simplified version of TRIZ (TRIZ10) has been developed for reducing learning time and improving the creative process in solving technical problems.…
Descriptors: Problem Solving, Creativity, Engineering Education, Design
Crockett, Caroline; Powell, Harry C.; Finelli, Cynthia J. – IEEE Transactions on Education, 2023
Contribution: This article proposes a new definition of conceptual understanding (CU) specific to engineering. It then measures CU of signals and systems (S&S) in senior undergraduate students and describes how students approach conceptual problems. Background: Previous studies across multiple engineering subjects show students have low CU at…
Descriptors: Engineering Education, Undergraduate Students, Concept Formation, Student Attitudes
Olaniba, Oyetunji Steven – ProQuest LLC, 2023
This research investigated Lean and Industry 4.0 competencies required by the manufacturing industry and taught in Applied Engineering, Technology, Technology Management, Manufacturing, and Related (AETTMMR) program curricula. The aim was to identify the misalignment between the manufacturing industry competency need and the AETTMMR academic…
Descriptors: Manufacturing Industry, Engineering Education, Competence, Curriculum
Gunckel, Kristin L. – Cultural Studies of Science Education, 2023
Science education and science education research have long taken a lead in educating the public about climate change by arguing that the public needs to understand the scientific models that explain the mechanisms of global warming and predict future impacts. However, as of yet, this focus on understanding climate models has failed to have an…
Descriptors: Science Education, Engineering Education, Climate, Caring

Direct link
Peer reviewed
