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Anil Erkan; Sumeyra Akkaya – Journal of Education in Science, Environment and Health, 2025
This study aims to examine the views of fourth-grade primary school students on coding education given through the Scratch program by determining the students' skills in using the program and algorithmic thinking skills. The study was conducted as a one-group study with an embedded mixed design. The study group consisted of 32 students attending…
Descriptors: Elementary School Students, Grade 4, Programming, STEM Education
Monjelat, Natalia; Lantz-Andersson, Annika – Education and Information Technologies, 2020
In recent years, there has been a renewed interest in the introduction of programming in teacher education and professional development, highlighting its importance for the development of so-called computational thinking. This study explored primary education teachers' participation in programming practices. By focusing on their views of creating…
Descriptors: Faculty Development, Thinking Skills, Elementary School Teachers, Programming
Zha, Shenghua; Jin, Yi; Moore, Pamela; Gaston, Joe – Journal of Digital Learning in Teacher Education, 2020
Informed by the person-object theory of interest, this study deployed a mixed-method concurrent triangulation design and investigated the impact of major/specialization, gender, and module design on preservice teachers' interest in teaching computational thinking. The study was conducted in a flipped computational thinking module hosted in three…
Descriptors: Blended Learning, Preservice Teachers, Teacher Attitudes, Interests
Ray, Beverly B.; Rogers, Reenay R. H.; Gallup, Jennifer – Journal of Digital Learning in Teacher Education, 2022
Research explored the change in perspectives of PK-12 social studies teachers regarding coding as a useful instructional tool. Using exploratory methods, researchers examined to what extent participants (n = 26) were willing to embrace coding as a teaching and learning strategy. Findings suggest that participants' perspectives on the utility of…
Descriptors: Elementary Secondary Education, Preschool Education, Teachers, Social Studies
Camila Porto; Emiliano Pereiro; María Eugenia Curi; Victor Koleszar; Alar Urruticoechea – Journal of Research on Technology in Education, 2025
The Uruguayan computational thinking (CT) program promotes CT skills for students in fourth, fifth, and sixth grades. Since 2017, it has reached over 70,000 students, with participation and Bebras challenge performance equally distributed by gender. This study examines gender perspectives in the program, focusing on teacher perceptions, student…
Descriptors: Computation, Thinking Skills, Foreign Countries, Teacher Attitudes
Filiz Kuskaya Mumcu; Branko Andic; Mirjana Maricic; Mathias Tejera; Zsolt Lavicza – Journal of Educational Technology and Online Learning, 2025
Many education policy strategy documents at the European Union level, as well as national strategies of various countries, recommend including computational thinking as a fundamental skill in curricula. The professional development of teachers should be supported to disseminate computational thinking in K12 education. Teachers' value beliefs about…
Descriptors: Teacher Attitudes, Value Judgment, Beliefs, Computation
Suters, Leslie; Suters, Henry; Anderson, Adam – Contemporary Issues in Technology and Teacher Education (CITE Journal), 2021
This paper describes a 54-hour summer institute for grades 6-12 mathematics and science teachers (N = 19) with a comprehensive approach to preparing teachers to use computational thinking (CT) in their classrooms, including training in Python computer programming with Lego® Mindstorms® robotics, mathematics content sessions, and opportunities to…
Descriptors: Algebra, Mathematics Instruction, Pedagogical Content Knowledge, Programming
Calder, Nigel; Rhodes, Kate – Mathematics Education Research Group of Australasia, 2021
This paper reports on two teachers' perceptions as part of a project examining the learning that took place when 9 and 10-year-old children used "ScratchMaths" in their programme. The project used design-based methodology, which incorporated video-recorded classroom excerpts, teacher interviews, and teacher analysis and review of their…
Descriptors: Programming, Mathematics Education, Cooperative Learning, Thinking Skills
Justin Gambrell; Eric Brewe – Physical Review Physics Education Research, 2024
Computational thinking in physics has many different forms, definitions, and implementations depending on the level of physics or the institution it is presented in. To better integrate computational thinking in introductory physics, we need to understand what physicists find important about computational thinking in introductory physics. We…
Descriptors: Physics, Introductory Courses, Science Instruction, Thinking Skills
Avci, Canan; Deniz, Mine Nur – Education and Information Technologies, 2022
Computational thinking (CT) is considered a group of problem-solving skills that the next generations are expected to possess. The most efficient way to make them acquire these skills is to incorporate CT into K-12 education. To this end, various education programs have been designed to improve teachers' and prospective teachers' competence in CT.…
Descriptors: Early Childhood Teachers, Preservice Teachers, Computation, Thinking Skills
Irons, Jeanette; Hartnett, Maggie – Journal of Open, Flexible and Distance Learning, 2020
From 2020, the New Zealand technology curriculum includes computational thinking. The new curriculum content is being introduced to students from 5 years' old. In preparation for its introduction, online resources have been developed for teachers (including junior teachers who teach new entrants, up to Year 3), that contain progress outcomes,…
Descriptors: Computation, Thinking Skills, Foreign Countries, Faculty Development
Baroutsis, Aspa; White, Sonia L. J.; Ferdinands, Ella; Goldsmith, William; Lambert, Elizabeth – Australian Primary Mathematics Classroom, 2019
Computational thinking can be defined as "solving problems, designing systems, and understanding human behaviour, by drawing on the concepts fundamental to computer science" (Wing, 2006, p. 33). There are strong links between computational thinking associated with coding and mathematical thinking (Wing, 2006). The digital technologies…
Descriptors: Computation, Thinking Skills, Programming, Learner Engagement
Rich, Peter J.; Larsen, Ross A.; Mason, Stacie L. – Journal of Research on Technology in Education, 2021
This study sought to identify factors that affect teachers' beliefs about teaching computing in their classrooms. By reviewing existing scales and research on computing, we created the Teacher Beliefs about Coding and Computational Thinking (TBaCCT) scale. Through confirmatory factor analysis and structural equation modeling we validated the scale…
Descriptors: Teacher Attitudes, Elementary School Teachers, Attitude Measures, Test Construction
Bubica, Nikolina; Boljat, Ivica – Informatics in Education, 2022
The new Croatian Informatics curriculum, which introduces computational thinking concepts into learning outcomes has been put into practice. A computational thinking assessment model reflecting the learning outcomes of the Croatian curriculum was created using an evidence-centered design approach. The possibility of assessing the computational…
Descriptors: Thinking Skills, Foreign Countries, Information Science Education, Computer Science Education
Cabrera, Lautaro – Journal of Technology and Teacher Education, 2019
Computational Thinking (CT) is an increasingly relevant concept that researchers are promoting in formal learning contexts. In their mission to prepare teachers to integrate CT into K-12 schooling, teacher educators would benefit from understanding the different kinds of preconceptions of CT that their students bring to the classroom in order to…
Descriptors: Teacher Attitudes, Computation, Thinking Skills, Misconceptions
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