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Showing 1 to 15 of 21 results Save | Export
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Anna Eckerdal; Anders Berglund; Michael Thuné – European Journal of Engineering Education, 2024
Learning in the computer laboratory is an important component when students learn computer programming. In this article, we analyse empirical data on novice students working in pairs in the laboratory. Using an approach inspired by phenomenography and variation theory, we specifically focus on how students' learning of theory and their learning of…
Descriptors: Programming, Theory Practice Relationship, Higher Education, Computer Science Education
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Cecilia Axell; Astrid Berg – International Journal of Technology and Design Education, 2024
Although digital technology is an important part of young people's lives, previous research implies that they have a limited understanding of what programming is and its connection to the digital devices they encounter every day. In order to create conditions for meaningful teaching in and about programming in technology education, more knowledge…
Descriptors: Elementary School Students, Programming, Computer Science Education, Grade 1
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Anna Perez; Maria Svensson; Jonas Hallström – Design and Technology Education, 2024
This study explores the changing landscape of technology teacher education, in relation to the increasing integration of digital content, especially programming, in teacher education for grades 4-6 (pupils 10-12 years old) and how student teachers in Sweden perceive this content. Limited research exists on student teachers in technology,…
Descriptors: Teacher Education, Programming, Computer Science Education, Student Teachers
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Strömbäck, Filip; Mannila, Linda; Kamkar, Mariam – Informatics in Education, 2021
Concurrency is often perceived as difficult by students. One reason for this may be due to the fact that abstractions used in concurrent programs leave more situations undefined compared to sequential programs (e.g., in what order statements are executed), which makes it harder to create a proper mental model of the execution environment. Students…
Descriptors: College Students, Programming, Programming Languages, Concept Formation
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Williamson, Ben; Bergviken Rensfeldt, Annika; Player-Koro, Catarina; Selwyn, Neil – Journal of Education Policy, 2019
Education policy increasingly takes place across borders and sectors, involving a variety of both human and nonhuman actors. This comparative policy paper traces the 'policy mobilities,' 'fast policy' processes and distributed 'policy assemblages' that have led to the introduction of new computer programming practices into schools and curricula in…
Descriptors: Educational Policy, Computer Science Education, Programming, Foreign Countries
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Mohsen Asgari; Fong-Chun Tsai; Linda Mannila; Filip Strömbäck; Kazi Masum Sadique – Discover Education, 2024
As programming emerges as a critical skill in the digital age and digital tools continue to evolve, understanding students' perspectives on the integration of such technologies into their education is crucial. This empirical study explores the perspectives of students in Sweden and Taiwan on the use of digital tools in their programming courses.…
Descriptors: Foreign Countries, Comparative Education, Student Attitudes, Technology Uses in Education
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Bråting, Kajsa; Kilhamn, Cecilia – Scandinavian Journal of Educational Research, 2022
We characterize the recently included programming content in Swedish mathematics textbooks for elementary school. Especially, the connection between programming content and traditional mathematical content has been considered. The analytical tools used are based on the so-called 5E's, a theoretical framework of action, developed within the…
Descriptors: Foreign Countries, Programming, Computer Science Education, Mathematics Instruction
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Bjursten, Eva-Lena; Nilsson, Tor; Gumaelius, Lena – International Journal of Technology and Design Education, 2023
There is a recognized need for research on how to teach computer programming in primary schools in Sweden grades 4-6 (10-12-year-old pupils). Studies of teaching show the importance of teachers' knowledge of content and pedagogy and how these two parts affect each other (i.e. pedagogical content knowledge [PCK]). Most teachers in Sweden have…
Descriptors: Computer Science Education, Programming, Technological Literacy, Pedagogical Content Knowledge
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Sparf, Maria – Designs for Learning, 2021
Within a theoretical framework grounded in design for learning, this article presents a research project about pupils' engagement during programming education. In a design-theoretical perspective, everyone who is somehow engaged in a learning process is a designer. The results show that how pupils design their learning when programming is related…
Descriptors: Learner Engagement, Programming, Computer Science Education, Foreign Countries
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Thuné, Michael; Eckerdal, Anna – European Journal of Engineering Education, 2019
Previous research shows that many students find it difficult to learn computer programming. To learn computer programming includes both gaining theoretical understanding and learning to develop programmes in practice. To this end, teachers commonly design programming exercises for the students in the computer laboratory. To be able to improve the…
Descriptors: Programming, Computer Science Education, Theory Practice Relationship, Science Laboratories
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Riese, Emma; Bälter, Olle – ACM Transactions on Computing Education, 2022
Assessment plays an important role in education and can both guide and motivate learning. Assessment can, however, be carried out with different aims: providing the students with feedback that supports the learning (formative assessment) and judging to which degree the students have fulfilled the intended learning outcomes (summative assessment).…
Descriptors: Introductory Courses, Programming, Computer Science Education, Learning Motivation
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Kjällander, Susanne; Mannila, Linda; Åkerfeldt, Anna; Heintz, Fredrik – Education Sciences, 2021
Digital competence and programming are actively highlighted areas in education worldwide. They are becoming part of curricula all over the world, including the Swedish elementary school curriculum, Children are expected to develop "computational thinking" through programming activities, mainly in mathematics--which are supposed to be…
Descriptors: Elementary School Students, National Curriculum, Computer Science Education, Programming
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Eckerdal, Anna – Studies in Higher Education, 2015
Computer programming education has practice-oriented as well as theory-oriented learning goals. Here, lab work plays an important role in students' learning. It is however widely reported that many students face great difficulties in learning theory as well as practice. This paper investigates the important but problematic relation between the…
Descriptors: Theory Practice Relationship, Computer Science Education, Programming, Laboratories
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Svedin, Maria; Bälter, Olle – Computer Science Education, 2016
The purpose of the present study was to investigate if we could improve retention by redesigning an online programming course from a gender perspective, while maintaining the focus on preferable and sustainable learning approaches. The study builds on results from an earlier study that investigated the relationship between approaches to learning…
Descriptors: Online Courses, Programming, Computer Science Education, Gender Differences
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Ronaldsson, Lennart; Skogh, Inga-Britt – ACM Transactions on Computing Education, 2014
In this article, the development of the Swedish informatics curriculum during the 1970s, 1980s and 1990s is studied and described. The study's design is inspired by the curriculum theory presented by Lindensjö and Lundgren [2000], who suggest using the concept of arenas (the arenas of enactment, transformation and realisation) when discussing…
Descriptors: Foreign Countries, Information Science, Curriculum Development, Educational History
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