Publication Date
In 2025 | 1 |
Since 2024 | 19 |
Since 2021 (last 5 years) | 74 |
Since 2016 (last 10 years) | 153 |
Since 2006 (last 20 years) | 270 |
Descriptor
Engineering Education | 682 |
Industry | 478 |
Higher Education | 387 |
Science Education | 222 |
Foreign Countries | 184 |
School Business Relationship | 176 |
Engineering | 165 |
College Science | 113 |
Technology | 79 |
Chemical Industry | 74 |
Program Descriptions | 68 |
More ▼ |
Source
Author
Publication Type
Education Level
Audience
Practitioners | 92 |
Policymakers | 25 |
Teachers | 14 |
Students | 12 |
Researchers | 9 |
Administrators | 5 |
Location
United Kingdom | 28 |
Australia | 17 |
Germany | 12 |
India | 12 |
Japan | 12 |
Sweden | 12 |
United Kingdom (Great Britain) | 12 |
China | 9 |
Spain | 8 |
United States | 8 |
Ireland | 7 |
More ▼ |
Laws, Policies, & Programs
School to Work Opportunities… | 1 |
Assessments and Surveys
Early Childhood Longitudinal… | 1 |
National Assessment of… | 1 |
Program for International… | 1 |
What Works Clearinghouse Rating
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
Yimin Zhu; Amirhosein Jafari; Amir H. Behzadan; Raja R. A. Issa – Journal of Civil Engineering Education, 2024
The architecture, engineering, and construction (AEC) education communities are increasingly facing challenges caused by social, technological, economic, environmental, and political changes. Addressing these issues requires AEC educators and practitioners to systematically rethink and reform many of their current practices. Anecdotal evidence in…
Descriptors: Architectural Education, Engineering Education, Vocational Education, Construction Industry
Garcia, Stephanie A.; Bonner, Emily P.; Nelson, Robin; Yuen, Timothy T.; Marone, Vittorio; Browning, JoAnn – College Teaching, 2022
The transition from industry to academia can present unique challenges for new faculty members in STEM (Science, Technology, Engineering, and Mathematics) fields. Considering high drop, fail, withdraw (DFW) rates in undergraduate STEM courses and the need to increase the number of well-prepared graduates in these areas, it is important to better…
Descriptors: STEM Education, College Faculty, Beginning Teachers, Engineering Education
Yoto; Agus Suyetno; Aji Prasetya Wibawa; Paryono; Achmad Romadin – Open Education Studies, 2024
This study examines vocational schools (VS) collaborative ventures, focusing on the VS Center of Excellence and its partnerships with local industries. The research explores how these collaborations shape a skilled workforce by investigating the Link and Match policy's impact. Specifically studying machining engineering and construction in East…
Descriptors: Vocational Schools, Vocational Education, School Business Relationship, Industry
McCord, Kieren H.; Ayer, Steven K.; Perry, Logan A.; Patil, Karan R.; London, Jeremi S.; Khoury, Vanessa; Wu, Wei – Education Sciences, 2022
In civil and construction engineering education research, a focus has been on using 3D models to support students' design comprehension. Despite this trend, the predominant mode of design communication in the industry relies on 2D plans and specifications, which typically supersede other modes of communication. Rather than focusing on the…
Descriptors: Computer Simulation, Engineering Education, Civil Engineering, Design
Singh, Pooja; Singh, Lalit Kumar – IEEE Transactions on Education, 2021
Contribution: This article shares the learning ecosystem of a project-based safety-critical systems (SCS) course, identifying course contents that support self-directed learning and how assignments develop students' knowledge and understanding toward meeting the demand of industries. Background: The syllabus for undergraduate and postgraduate…
Descriptors: Engineering Education, Safety, Student Projects, Active Learning
Mingheng Li – Chemical Engineering Education, 2024
Project-based learning (PBL) empowers students to become active learners. In this work computational reverse osmosis (RO) projects developed from industrial case studies and research were implemented in several chemical engineering courses to enhance student learning experience. Students not only gained knowledge in water treatment, but also…
Descriptors: Chemical Engineering, Engineering Education, Learning Experience, Student Projects
Anwesa Das; Vinay Kumar; Aditya Narayan Hati; Sharda Bharti – IEEE Transactions on Education, 2024
Machine learning (ML) is increasingly utilized in the development and assurance of safety-critical systems (SCSs) nowadays, much like other complex problems. Safety is the topmost priority in SCS, hence, developers who are working in this area must possess extensive knowledge of both ML and SCS. This article presents a methodical investigation…
Descriptors: Artificial Intelligence, Computer Security, Engineering Education, Engineering
Chang, Jen-Chia; Shih, Hsiao-Fang; Liao, Fan-Ru – Education & Training, 2022
Purpose: This study used the industry-oriented capstone course to increase the employability of electrical engineering and computer science (EECS) students in technological university. Design/methodology/approach: In this study, EECS students were selected and divided into groups, and the non-equivalent pretest-posttest quasi-experimental research…
Descriptors: Industry, Capstone Experiences, Employment Potential, Engineering Education
Ellis, Brett D.; Graveson, Jeff – Advances in Engineering Education, 2022
Graduating approximately 150,000 engineering and engineering technology students per year, the engineering education system seeks to teach students to solve problems via analysis and design. Unfortunately, many curricula emphasize analysis at the expense of design, often relegating design activities to cornerstone and capstone design courses and…
Descriptors: Engineering Education, Capstone Experiences, Class Activities, Active Learning
Molly F. Schaefer – ProQuest LLC, 2022
Partnerships and collaborations between higher education and industry have a long history in the United States. Numerous partnerships have contributed to advancements in the economy, education and training, humanity, and innovation. The subject areas of science, engineering, and technology are fields in which many of the collaborations occur, and…
Descriptors: Higher Education, Engineering Education, College Faculty, School Business Relationship
Maware, Catherine; Parsley, David M.; Huang, Kun; Swan, Gerry M.; Akafuah, Nelson – Journal of Computer Assisted Learning, 2023
Background: Online learning has recently surged due to the COVID-19 global pandemic. Because of the pandemic, many universities were forced to move to online learning, and various online teaching and learning environments emerged, both asynchronous and synchronous. Objective: This study explores how a large university in the Southeastern United…
Descriptors: COVID-19, Pandemics, Online Courses, Higher Education
Fonseca, Cecilia S.; Rosa, Clarissa H.; Lopes, Toni J.; Rosa, Gilber R. – Journal of Chemical Education, 2020
This report presents a miniproject for teaching sustainability through the production of adsorbents from sewage sludge. The activity was tested during the Physical Chemistry II portion of an Agro-Industrial Engineering Course and lasted 4 weeks. The activities developed by the students included preparing the adsorbents ("in natura,"…
Descriptors: Sustainability, Chemistry, Science Instruction, Industry
Zhu, Jiabin; Hu, Yu; Zheng, Tianyi; Li, Yike – Journal of Engineering Education, 2021
Background: Over the past two decades, state policies and industrial associations have challenged engineering educators to expand the training of future engineers beyond technical competencies to the broader domain of professional skills development, with one key aspect being engineering leadership. Purpose: This study adopted the four…
Descriptors: Foreign Countries, Engineering Education, Leadership, Leadership Training
Eva Beke; Andrea Tick – Journal of Technology and Science Education, 2024
The purpose of the study is to examine how Industry 4.0, and the digital environment, have together created a new situation for companies and universities in terms of soft skills for employability. While companies aim to introduce a new structure, universities try to align with these changes by developing new educational methods, curricula, and…
Descriptors: Foreign Countries, Undergraduate Students, Engineering Education, College Students