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Showing 1 to 15 of 26 results Save | Export
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Tamayo Avila, Daymy; Van Petegem, Wim; Snoeck, Monique – IEEE Transactions on Education, 2022
Contribution: This article presents agile software engineers stick together (ASEST+), an improved version of a framework called ASEST that aims to develop team cohesion, leading to better team learning and software engineering student teams. Background: Effective teamwork is crucial for agile software development's success and is, therefore, a key…
Descriptors: Computer Software, Teamwork, Engineering Education, College Students
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Siqing Wei; Li Tan; Yiyao Zhang; Matthew Ohland – European Journal of Engineering Education, 2024
In spite of the sudden onset of the COVID-19 pandemic, many instructors who used team-based pedagogies shifted them online rather than suspending them entirely, but with limited time and resources. To examine the difference in team dynamics and outcomes for courses in Spring 2019 and Spring 2020 of over 1500 first-year engineering students per…
Descriptors: Educational Technology, Electronic Learning, Teamwork, Group Dynamics
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Batbayar, Bilguun – International Society for Technology, Education, and Science, 2022
Entrepreneurship is still young and developing in Mongolia, yet it is the main driver of the Mongolian economy. According to The National Statistics Office of Mongolia, small and medium businesses create 52.5% of all jobs in Mongolia. To ensure more qualified entrepreneurs join the labor market, educators and instructors can help with resources…
Descriptors: Foreign Countries, Student Projects, Active Learning, Entrepreneurship
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Havenga, Marietjie; Swart, Athur James – European Journal of Engineering Education, 2022
Problem-based learning is an active student-centred approach, which requires engineering students to work together in solving real-world problems. This study aims to review the incorporation of cooperative learning principles in an introductory first-year engineering course that aimed to develop students' group skills while working on…
Descriptors: Engineering Education, Problem Based Learning, Student Projects, Undergraduate Students
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Brisco, Ross; Whitfield, Robert Ian; Grierson, Hilary – Design and Technology Education, 2022
Based on observations of global design classes at different institutions, students selected technologies without justification for the suitability of the technology to support their collaborative design activities. To best support students in their collaborative endeavours, a short online course in computer-supported collaborative design was…
Descriptors: Design, Computer Assisted Instruction, Engineering Education, Online Courses
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Geraskin, Nikolay I.; Krasnoborodko, Andrey A.; Glebov, Vasily B. – Industry and Higher Education, 2020
This article summarises the results of a preliminary feasibility study and the experience of implementing Conceive-Design-Implement-Operate (CDIO) ideas during 2016-2019 in the education of nuclear specialists. The study is a form of empirical research. The results and findings regarding implementation of the CDIO approach are presented in…
Descriptors: Engineering Education, Nuclear Energy, Foreign Countries, Graduate Students
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Murray, Mike; Hendry, Gillian; McQuade, Robert – European Journal of Engineering Education, 2020
Vocational disciplines such as engineering provide an ideal opportunity for contextualising the curriculum. The provision of co-curricular activities can stimulate students to assimilate their prior knowledge and skills whilst enhancing employability attributes. Team-based co-curricular activities linked to problem-based learning can offer…
Descriptors: Civil Engineering, Extracurricular Activities, Undergraduate Students, Engineering Education
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Rethman, Callie; Perry, Jonathan; Donaldson, Jonan Phillip; Choi, Daniel; Erukhimova, Tatiana – Physical Review Physics Education Research, 2021
Physics outreach programs provide a critical context for informal experiences that promote the transition from new student to contributing physicist. Prior studies have suggested a positive link between participation in informal physics outreach programs and the development of a student's physics identity. In this study, we adopt a student-focused…
Descriptors: Informal Education, Outreach Programs, Program Effectiveness, Physics
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Burden, Håkan; Sprei, Frances – International Journal of Sustainability in Higher Education, 2021
Purpose: The purpose of this study is to address the challenges of teaching sustainable development to computer engineering students. Part of the problem is that they perceive the topic as irrelevant for their future profession. Design/methodology/approach: To address this challenge, we introduced a project element into a course on sustainable…
Descriptors: Sustainable Development, Ethics, Entrepreneurship, Computer Science Education
Siverling, Emilie Amanda – ProQuest LLC, 2019
In the United States, there has been an increased emphasis on science, technology, engineering, and mathematics (STEM), and especially engineering, in pre-college settings. There are several potential benefits of this, including: increasing the quantity and diversity of students who pursue STEM careers, improving all students' technological…
Descriptors: STEM Education, Engineering Education, Student Diversity, Technological Literacy
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McLean, Mandy; Nation, Jasmine M.; Spina, Alexis; Susko, Tyler; Harlow, Danielle; Bianchini, Julie – Journal of Pre-College Engineering Education Research, 2020
Research suggests that, to narrow the gender gap in engineering, we should focus on helping young girls identify with engineering both because gendered attitudes emerge around kindergarten and because identity is more predictive than performance on persistence in the field. This qualitative study sought to understand the impact of collaborative…
Descriptors: Gender Differences, Females, Disproportionate Representation, Engineering Education
Conway Hughston, Veronica – ProQuest LLC, 2014
Since 1996 ABET has mandated that undergraduate engineering degree granting institutions focus on learning outcomes such as professional skills (i.e. solving unstructured problems and working in teams). As a result, engineering curricula were restructured to include team based learning--including team charters. Team charters were diffused into…
Descriptors: Engineering Education, Undergraduate Students, Teamwork, Contracts
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Pozzi, Rossella; Noè, Carlo; Rossi, Tommaso – European Journal of Engineering Education, 2015
According to the literature, in recent years, developing experiential learning has fulfilled the requirement of a deep understanding of lean philosophy by engineering students, demonstrating the advantages and disadvantages of some of the key principles of lean manufacturing. On the other hand, the literature evidences how some kinds of game-based…
Descriptors: Experiential Learning, Engineering Education, Manufacturing, Engineering Technology
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Varney, M. W.; Janoudi, A.; Aslam, D. M.; Graham, D. – IEEE Transactions on Education, 2012
Following the success of summer-camp-based programs, a new program has been developed for in-school sessions focused around LEGO robotics to foster interest in STEM topics at a young age. The program has been implemented in a very diverse school, and preliminary results on the efficacy of the program are presented. (Contains 1 table and 6 figures.)
Descriptors: Grade 3, STEM Education, Program Effectiveness, Summer Programs
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Peeters, Marie-Christine; Londers, Elsje; Van der Hoeven, Wouter – European Journal of Engineering Education, 2014
Following the decision at the KU Leuven to implement the educational concept of guided independent learning and to encourage students to participate in scientific research, the Faculty of Bioscience Engineering decided to introduce a bachelor thesis. Competencies, such as communication, scientific research and teamwork, need to be present in the…
Descriptors: Integrated Activities, Integrated Curriculum, Teamwork, Biological Sciences
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