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Andres Neyem; Luis A. Gonzalez; Marcelo Mendoza; Juan Pablo Sandoval Alcocer; Leonardo Centellas; Carlos Paredes – IEEE Transactions on Learning Technologies, 2024
Software assistants have significantly impacted software development for both practitioners and students, particularly in capstone projects. The effectiveness of these tools varies based on their knowledge sources; assistants with localized domain-specific knowledge may have limitations, while tools, such as ChatGPT, using broad datasets, might…
Descriptors: Computer Software, Artificial Intelligence, Intelligent Tutoring Systems, Capstone Experiences
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Shao-Chen Chang; Charoenchai Wongwatkit – Education and Information Technologies, 2024
As computational thinking becomes increasingly essential, the challenge of designing effective teaching approaches to foster students' abilities in this area persists, especially for higher order thinking skills. This study addresses this challenge by proposing and implementing a peer assessment-based Scrum project (PA-SP) learning approach in…
Descriptors: Peer Evaluation, Computer Science Education, Programming, Mental Computation
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Santos, José; Escórcio, Patrícia – European Journal of Engineering Education, 2022
Building Information Modelling (BIM) has changed the way many civil engineers organise and execute their job in recent years. Many universities around the world have been adapting their curricula to include BIM education. However, this adaptation has been incomplete, occurring only in a small number of subjects. To fill this gap, this paper…
Descriptors: Civil Engineering, Engineering Education, Construction (Process), Construction Management
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Saeedi, Kawther; Visvizi, Anna – Education Sciences, 2021
Progressing digitalization of business, economy, and the society places higher education institutions (HEIs) in the center of the debate on how to effectively respond to challenges and opportunities that are thus triggered. Several facets of this process and corresponding challenges exist, including the complex question of how to match students'…
Descriptors: Computer Software, Colleges, Higher Education, Technological Literacy
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Saltz, Jeffrey; Heckman, Robert – Journal of Information Systems Education, 2020
This paper reports on a case study of the Agile Kanban project methodology, which while growing in popularity, has had far less analysis on its usefulness in the classroom as compared to other frameworks such as Agile Scrum. Our study provides insight into why the Kanban methodology is useful by mapping student comments about the methodology to…
Descriptors: Higher Education, Student Projects, Program Administration, Computer Software
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Ng, Davy Tsz Kit; Lee, Min; Tan, Roy Jun Yi; Hu, Xiao; Downie, J. Stephen; Chu, Samuel Kai Wah – Education and Information Technologies, 2023
In recent years, with the popularity of AI technologies in our everyday life, researchers have begun to discuss an emerging term "AI literacy". However, there is a lack of review to understand how AI teaching and learning (AITL) research looks like over the past two decades to provide the research basis for AI literacy education. To…
Descriptors: Artificial Intelligence, Technology Uses in Education, Technological Literacy, Literacy Education
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Bosnic, Ivana; Cavrak, Igor; Žagar, Mario – ACM Transactions on Computing Education, 2019
Various software engineering (SE) curricula in higher education have started including courses on global software engineering (GSE), carried out as internationally distributed project-based courses. These courses, known for their closeness to "real-world" work experience, emphasize the importance of involving industry partners as…
Descriptors: Computer Software, Higher Education, Student Projects, Experiential Learning
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Semushin, I. V.; Tsyganova, J. V.; Ugarov, V. V.; Afanasova, A. I. – European Journal of Engineering Education, 2018
Russian higher education institutions' tradition of teaching large-enrolled classes is impairing student striving for individual prominence, one-upmanship, and hopes for originality. Intending to converting these drawbacks into benefits, a Project-Centred Education Model (PCEM) has been introduced to deliver Computational Mathematics and…
Descriptors: Student Projects, Engineering Education, Active Learning, Teaching Methods
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Dewit, Ivo; Rohaert, Sarah; Corradi, David – Design and Technology Education, 2021
This study responds to calls to further investigate ways to make feedback more effective for students in the context of higher education. More specifically it scrutinizes the feedback practice, adapted to the exceptional reality of a partly on Campus, partly online semester-long Product-Service System (PSS) design project for first Master students…
Descriptors: Design, Teaching Methods, Feedback (Response), Masters Programs
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Muoka, Polycarp I.; Haque, Md. Enamul; Gargoom, Ameen; Negnetvitsky, Michael – IEEE Transactions on Education, 2015
This paper presents a new photovoltaic (PV) power systems laboratory module that was developed to experimentally reinforce students' understanding of design principles, operation, and control of photovoltaic power conversion systems. The laboratory module is project-based and is designed to support a renewable energy course. By using MATLAB…
Descriptors: Energy, Laboratory Experiments, Design, Computer Software
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Takala, Tuukka M.; Malmi, Lauri; Pugliese, Roberto; Takala, Tapio – Informatics in Education, 2016
In this paper we present our experiences of teaching an annually organized virtual reality (VR) capstone course. We review three iterations of the course, during which a total of 45 students completed the course and 16 VR applications were implemented. Our comparative analysis describes the students' evaluation of the course, the applications…
Descriptors: Curriculum, Simulated Environment, Computer Simulation, Educational Technology
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Chaves, Rafael Oliveira; von Wangenheim, Christiane Gresse; Furtado, Julio Cezar Costa; Oliveira, Sandro Ronaldo Bezerra; Santos, Alex; Favero, Eloi Luiz – IEEE Transactions on Education, 2015
Software process modeling (SPM) is an important area of software engineering because it provides a basis for managing, automating, and supporting software process improvement (SPI). Teaching SPM is a challenging task, mainly because it lays great emphasis on theory and offers few practical exercises. Furthermore, as yet few teaching approaches…
Descriptors: Computer Software, Computer Science Education, Student Projects, Teaching Methods
Kröber, Cindy; Münster, Sander – International Association for Development of the Information Society, 2014
This project seminar aims at creating and evaluating a manual for interdisciplinary projects as part of a learning process. Working together, pedagogies and students from different disciplines assess tools and recommendations for successful collaborations while developing an app for the cathedral in Freiberg. As part of the project the students…
Descriptors: Interdisciplinary Approach, Seminars, Learning Processes, Cooperative Learning
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Salinas, Jesús; Marín, Victoria I.; Escandell, Catalina – International Journal of Virtual and Personal Learning Environments, 2013
This paper presents an exploratory study on the potential for offering students elements to construct their own personal learning environments, by integrating an institutional virtual learning environment and an e-portfolio system. The study was conducted in the University of the Balearic Islands (Spain) and 73 students enrolled on a graduate…
Descriptors: Higher Education, Educational Technology, Technology Uses in Education, Electronic Publishing
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Yelamarthi, Kumar – Journal of STEM Education: Innovations and Research, 2012
Multidisciplinary projects involving electrical engineering (EE), mechanical engineering (ME), and computer engineering (CE) students are both exciting and difficult to conceptualize. Answering this challenge, this paper presents a multidisciplinary educational platform on radio frequency identification-based assistive devices. The combination of…
Descriptors: Computer Assisted Instruction, Educational Technology, Assistive Technology, Engineering
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