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Showing 1 to 15 of 28 results Save | Export
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Angeles Lopez; M. Asunción Castaño; M. Victoria Ibáñez; Ismael Sanz; Lledó Museros; Reyes Grangel – ACM Transactions on Computing Education, 2025
The Bachelor's Degree in Computer Engineering at University Jaume I has a capstone project in which the student develops, during a 300-hour internship in an enterprise, a real-world project. We collected data for five academic years to analyze the assessment process to propose a new hybrid model, which combines analytic and holistic assessment and…
Descriptors: Capstone Experiences, Internship Programs, Student Projects, Undergraduate Students
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Ting, Ying; Brockman, Morgan L.; Patil, Sameer – ACM Transactions on Computing Education, 2021
Nearly all software built today impinges upon end-user privacy and needs to comply with relevant regulations. Therefore, there have been increasing calls for integrating considerations of compliance with privacy regulations throughout the software engineering lifecycle. However, software engineers are typically trained in the technical fields and…
Descriptors: Privacy, Capstone Experiences, Computer Software, Instructional Materials
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Domínguez, César; Jaime, Arturo; García-Izquierdo, Francisco José; Olarte, Juan José – ACM Transactions on Computing Education, 2020
A capstone project is an extensive learning experience traditionally developed during a student's final academic year. Assessing such a complex assignment involves several challenges and is usually based upon the evaluations of at least two different people: the capstone project advisor, and one or more other assessors. Quantitative studies…
Descriptors: Computer Science Education, Capstone Experiences, Student Evaluation, Student Projects
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Sánchez, Ana; Domínguez, César; Blanco, Jose Miguel; Jaime, Arturo – ACM Transactions on Computing Education, 2019
It is important for both computer science academics and students to clearly comprehend the differences between academic and professional perspectives in terms of assessing a deliverable. It is especially interesting to determine whether the aspects deemed important to evaluate by a computer science expert are the same as those established by…
Descriptors: Alternative Assessment, Student Evaluation, Industry, College Faculty
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Bosnic, Ivana; Ciccozzi, Federico; Crnkovic, Ivica; Cavrak, Igor; Di Nitto, Elisabetta; Mirandola, Raffaela; Žagar, Mario – ACM Transactions on Computing Education, 2019
Teaching Distributed Software Development with real distributed settings is a challenging and rewarding task. Distributed courses are idiosyncratically more challenging than standard local courses. We have experienced this during our distributed course, which has been run for 14 consecutive years. In this article, we present and analyze the…
Descriptors: Computer Software, Computer Science Education, Active Learning, Student Projects
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Saltz, Jeffrey S.; Heckman, Robert R. – ACM Transactions on Computing Education, 2018
This article reports on a sequential mixed-methods research study, which compared different approaches on how to guide students through a semester-long data science project. Four different methodologies, ranging from a traditional "just assign some intermediate milestones" to other more Agile methodologies, were first compared via a…
Descriptors: Cooperative Learning, Student Projects, Computer Science Education, Methods
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Isomöttönen, Ville; Daniels, Mats; Cajander, Åsa; Pears, Arnold; Mcdermott, Roger – ACM Transactions on Computing Education, 2019
Literature on global employability signifies "enabling" learning environments where students encounter ill-formed and open-ended problems and are required to adapt and be creative. Varying forms of "projects," co-located and distributed, have populated computing curricula for decades and are generally deemed an answer to this…
Descriptors: Employment Qualifications, Student Projects, Student Motivation, Computer Software
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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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Larraza-Mendiluze, Edurne; Garay-Vitoria, Nestor; Soraluze, Iratxe; Martín, José; Muguerza, Javier; Ruiz-Vazquez, Txelo – ACM Transactions on Computing Education, 2016
The computer input/output (I/O) subsystem and its functioning are very abstract concepts that are difficult for undergraduate freshmen to understand. However, it is important that freshmen assimilate these low-level concepts if they are going to be taught about the operating systems (OS) working over that architecture layer, or working directly…
Descriptors: Active Learning, Student Projects, Computer Science Education, College Freshmen
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Steghöfer, Jan-Philipp; Burden, Håkan; Hebig, Regina; Calikli, Gul; Feldt, Robert; Hammouda, Imed; Horkoff, Jennifer; Knauss, Eric; Liebel, Grischa – ACM Transactions on Computing Education, 2018
Problem: The involvement of external stakeholders in capstone projects and project courses is desirable due to its potential positive effects on the students. Capstone projects particularly profit from the inclusion of an industrial partner to make the project relevant and help students acquire professional skills. In addition, an increasing push…
Descriptors: Stakeholders, Capstone Experiences, Student Projects, School Business Relationship
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Clarke, Peter J.; Davis, Debra L.; Chang-Lau, Raymond; King, Tariq M. – ACM Transactions on Computing Education, 2017
Software continues to affect a major part of our daily lives, including the way we use our phones, home appliances, medical devices, and cars. The pervasiveness of software has led to a growing demand for software developers over the next decade. To ensure the high quality of software developed in industry, students being trained in software…
Descriptors: Computer Software, Undergraduate Students, Computer Science Education, Online Catalogs
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Braught, Grant; MacCormick, John; Bowring, James; Burke, Quinn; Cutler, Barbara; Goldschmidt, David; Krishnamoorthy, Mukkai; Turner, Wesley; Huss-Lederman, Steven; Mackellar, Bonnie; Tucker, Allen – ACM Transactions on Computing Education, 2018
Many computer science programs have capstone experiences or project courses that allow students to integrate knowledge from the full breadth of their major. Such capstone projects may be student-designed, instructor-designed, designed in conjunction with outside companies, or integrated with ongoing free and open source (FOSS) projects. The…
Descriptors: Computer Science Education, Open Source Technology, Computer Software, Social Values
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Billingsley, William; Torbay, Rosemary; Fletcher, Peter R.; Thomas, Richard N.; Steel, Jim R. H.; Süß, Jörn Guy – ACM Transactions on Computing Education, 2019
One of the challenges of global software engineering courses is to bring the practices and experience of large geographically distributed teams into the local and time-limited environment of a classroom. Over the last 6 years, an on-campus studio course for software engineering has been developed at the University of Queensland (UQ) that places…
Descriptors: Computer Science Education, Universities, Undergraduate Students, Teaching Methods
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Schneider, Kurt; Liskin, Olga; Paulsen, Hilko; Kauffeld, Simone – ACM Transactions on Computing Education, 2015
This article investigates relationships between media, mood, and communication in teams, and studies how they are related to project success. Team projects are an essential part of the software engineering curriculum. Student teams carry out full software projects, including requirements elicitation, project management, implementation, and…
Descriptors: Teamwork, Student Projects, Computer Software, Interpersonal Communication
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Mitra, Sandeep – ACM Transactions on Computing Education, 2014
This article presents the use of a model-centric approach to facilitate software development projects conforming to the three-tier architecture in undergraduate software engineering courses. Many instructors intend that such projects create software applications for use by real-world customers. While it is important that the first version of these…
Descriptors: Computer Science Education, Computer Software, Models, Undergraduate Students
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