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Valiente Bermejo, M. A.; Eynian, M.; Malmsköld, L.; Scotti, A. – Industry and Higher Education, 2022
The advantages and importance of university-industry collaboration, particularly in curriculum design and delivery, are well-known. However, although curriculum development models are available in the literature, very few are sufficiently concrete to be applicable in practice or are generalizable beyond their discipline of origin. In this paper, a…
Descriptors: Universities, Industry, School Business Relationship, Curriculum Design
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Antti Vuoriainen; Pauliina Rikala; Ville Heilala; Sami Lehesvuori; Sahsenem Oz; Lauri Kettunen; Raija Hämäläinen – European Journal of Engineering Education, 2025
This systematic literature review provides an overview of how higher education in engineering, in collaboration with industry, supports student transitions to work life. A qualitative content analysis of 36 articles published between 2013 and 2023 indicated that this collaboration provides numerous benefits for all stakeholders; however,…
Descriptors: Engineering Education, School Business Relationship, Industry, Higher Education
William Domenick Euefueno – ProQuest LLC, 2024
The problem of the study was to determine if the use of a reflective writing assessment at the beginning, middle, and end of a college semester indicated an industrial technology student's knowledge and skills related to technological and engineering literacy. Experiences gained during project-based learning activities were used as the basis for…
Descriptors: Writing Tests, Reflection, Knowledge Level, Industry
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Mercedes Fernández-Paradas; José Joaquín Luque-García – History of Education, 2025
The "Escuela de Ingenieros Industriales de Barcelona (School of Industrial Engineers of Barcelona)" (EIIB) was founded in 1851 within the context of a reorganisation of technical education in Spain. From 1867 to 1899 it was the only Industrial Engineering school in the country, which emphasises its relevance in the development and…
Descriptors: Foreign Countries, Educational History, Industrial Education, Organizational Change
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Zhuang, Tengteng; Zhou, Haitao – Asia Pacific Education Review, 2023
This article examines the intents and effects of China's national policies to promote a synergistic approach to university-industry collaborative education. These policies set out to reduce the academia-industry disconnection for engineering education. Based on document analysis and interviews with various types of stakeholders, the study reveals…
Descriptors: Foreign Countries, Engineering Education, School Business Relationship, Universities
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Steve Sternberg; Lyndon Ramrattan; Richard Davis; Moe Benda; Victor Lai; Michael Rother; Guy Sander; Tsutomu Shimotori; Sam Toan; Zhihua Xu; Weiguo Xie – Chemical Engineering Education, 2024
CACAO (Chocolate Across the Curriculum and Outreach) is a vertical curriculum augmentation designed to help students across the ChE undergraduate program. The students use a chocolate-based food engineering lab to make connections between core chemical engineering topics using hands-on and project-based learning. Costs to create this component are…
Descriptors: Food, Industry, Integrated Curriculum, Chemistry
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Wang, Liyuan; Huang, Meiping; Zhang, Xiaohua; Yan, Xueyuan; Jin, Ruoyu; Wanatowski, Dariusz; Cheshmehzangi, Ali; Chohan, Navpreet – European Journal of Engineering Education, 2023
This pedagogical study aimed to demonstrate an updated Building Information Modelling (BIM) educational activity in CEM (i.e., construction engineering and management) students' final semester project. It investigated students' perceptions of BIM and the project. Student feedback provided insights for linking education to practice, for example,…
Descriptors: Engineering Education, Construction Industry, Civil Engineering, Construction Management
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Boyle, Fiona; Walsh, Joseph; Riordan, Daniel; Geary, Cathal; Kelly, Padraig; Broderick, Eilish – Education Sciences, 2022
Universities are coming under increasing pressure to re-invent the way that engineering is taught in order to produce graduates that are capable of meeting the skills needs of the country's industries. This paper described an active project where Design Thinking (DT) methodology is being applied in a novel way to Engineering Curriculum…
Descriptors: Engineering Education, Curriculum Development, Design, Innovation
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Frederick Berry; Wanju Huang; Marisa Exter – International Journal of Designs for Learning, 2024
This paper outlines the continuous improvement enhancements of a two-semester multidisciplinary capstone program tailored for senior students within the School of Engineering Technology. These courses revolve around collaborative teamwork and focus on the development of innovative solutions for industry-sponsored projects. The overarching goal of…
Descriptors: Capstone Experiences, Intervention, Communication Skills, Teamwork
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Kaygan, Pinar – International Journal of Technology and Design Education, 2023
This article aims to expand our knowledge on interdisciplinary design education by focusing on team development, which has remained a less explored aspect of interdisciplinary collaboration so far. An interdisciplinary design studio course, Collaborative Design, for food engineering and industrial design students in higher education provides the…
Descriptors: Interdisciplinary Approach, Design, Food, Engineering Education
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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
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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
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Lucas Thadeu Vulcão da Rocha; Lucas Ryu Morotomi Pereira; Reimison Moreira Fernandes; André Cristiano Silva Melo; Dirceu da Silva; Izabela Simon Rampasso; Rosley Anholon; Vitor William Batista Martins – Higher Education, Skills and Work-based Learning, 2025
Purpose: Manufacturing systems have undergone radical changes because of the implementation of physical and digital innovating technologies with high levels of connectivity, interoperability and autonomy. In this regard, the objective of this study was to investigate whether industrial engineers graduated in recent years in Brazil are prepared or…
Descriptors: Manufacturing, Technology Integration, Industrial Education, Engineering
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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
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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
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