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Showing 1 to 15 of 35 results Save | Export
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Tess Levinson; Marina Bers – International Journal of Technology and Design Education, 2025
Policy emphases on early childhood and elementary computer science education have led to the development of many developmentally appropriate computer science and robotics tools, pedagogies, and high-quality curricula. One example is the integrated Coding as Another Language pedagogy for coding, literacy, and social and emotional learning. The…
Descriptors: Robotics, Preschool Education, Coding, Program Effectiveness
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Xiao-Fan Lin; Yue Zhou; Weipeng Shen; Guoyu Luo; Xiaoqing Xian; Bo Pang – Education and Information Technologies, 2024
K-12 artificial intelligence (AI) education requires cultivating students' computational thinking in the school curriculum so as to transfer their computational thinking to diverse problems and authentic contexts. However, students may be limited by traditional computational thinking development activities because they may have a lower degree of…
Descriptors: Secondary School Students, Artificial Intelligence, Foreign Countries, Computation
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Bei Zeng; Zuofei Geng; Danyao Zhu; Liping Guo – Education and Information Technologies, 2025
Although computational thinking (CT) has emerged as an essential competence across all educational levels, limited research has focused on teachers' readiness for CT education, particularly within the context of early childhood education (ECE). This study involved 1,387 Chinese ECE teachers to identify their CT readiness profiles based on…
Descriptors: Computation, Thinking Skills, Readiness, Early Childhood Teachers
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Andrew A. Tawfik; Linda Payne; Andrew M. Olney – Technology, Knowledge and Learning, 2024
Theorists and educators increasingly highlight the importance of computational thinking in STEM education. While various scaffolding strategies describe how to best support this skillset (i.e., paired programming, worked examples), less research has focused on the design and development of these digital tools. One way to support computational…
Descriptors: Thinking Skills, Computation, STEM Education, Scaffolding (Teaching Technique)
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Atalay, Nurhan; Mutlu, Mehmet – Elementary School Forum (Mimbar Sekolah Dasar), 2023
Today, teaching strategies and methods changing with technology require a radical transformation in the teaching of science laws, which form the basis of science subjects. In this study, computational thinking skills, which will allow students to use information and communication technologies in today's conditions and the effect of these skills on…
Descriptors: Computer Simulation, Science Education, Knowledge Level, Scientific Concepts
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Gutiérrez-Núñez, Sandra Erika; Cordero-Hidalgo, Aixchel; Tarango, Javier – Contemporary Educational Technology, 2022
This article analyzes the way in which educators and researchers have pronounced themselves for incorporating computer programming in the K-12 curricula (basic and secondary education), recognizing its cognitive benefits in those who practice it, which can be useful in contexts other than computing, by influencing the development of higher order…
Descriptors: Knowledge Level, Communication (Thought Transfer), Computation, Thinking Skills
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David Muñez; Josetxu Orrantia; Rosario Sanchez; Verónica Carreton; Laura Matilla – Journal of Cognition and Development, 2024
This study investigates how the approximate number system (ANS) and young children's symbolic skills jointly develop and interact. Specifically, the study aims at disentangling the directionality of the association between ANS acuity and a wide range of symbolic skills that reflect 4- to 5-year-olds' symbolic quantitative knowledge (enumeration…
Descriptors: Number Systems, Numeracy, Symbols (Mathematics), Young Children
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Holo, O. E.; Kveim, E. N.; Lysne, M. S.; Taraldsen, L. H.; Haara, F. O. – Education Inquiry, 2023
This review article focuses on the teaching of computer programming in primary school mathematics, as reported by 37 empirical studies. Our findings show that a variety of research methods are used, which often combine qualitative and quantitative approaches. Furthermore, we found the focus of attention to vary from emphasis on the teacher and the…
Descriptors: Literature Reviews, Computer Science Education, Programming, Elementary School Mathematics
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Xuanyan Zhong; Zehui Zhan – Interactive Technology and Smart Education, 2025
Purpose: The purpose of this study is to develop an intelligent tutoring system (ITS) for programming learning based on information tutoring feedback (ITF) to provide real-time guidance and feedback to self-directed learners during programming problem-solving and to improve learners' computational thinking. Design/methodology/approach: By…
Descriptors: Intelligent Tutoring Systems, Computer Science Education, Programming, Independent Study
Erika Gaylor; Sarah Nixon Gerard; Ryan Grimm; Maricela Morales – SRI Education, a Division of SRI International, 2025
To address the gap in students' exposure to and knowledge of science, technology, engineering, and math (STEM) content, Young Academic Music (YAM) was designed to integrate music, math, and computational thinking in a way that teachers can implement as a supplemental curriculum in their kindergarten classrooms to meet the needs of their students.…
Descriptors: STEM Education, Knowledge Level, Music Activities, Mathematics Activities
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Christensen, Dana; Lombardi, Doug – International Journal of Science Education, 2023
The purpose of this study was to quantitatively assess the integration of computational thinking with learning about biological evolution. Specifically, we investigated the effectiveness of a framework from a recently developed learning progression that emphasises the complex nature of teaching both computational thinking and biological evolution.…
Descriptors: Computation, Thinking Skills, Biology, Evolution
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Alejandro Espinal; Camilo Vieira; Alejandra J. Magana – ACM Transactions on Computing Education, 2024
This paper presents a systematic literature review of professional development programs in computational thinking (CT). CT has emerged as an essential set of skills that everyone should develop to participate in a global society. However, there were no pre-service or in-service teacher programs to integrate CT into the K-12 classrooms until very…
Descriptors: Faculty Development, Computation, Thinking Skills, Skill Development
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Kaup, Camilla Finsterbach; Pedersen, Pernille Ladegaard; Tvedebrink, Torben – Journal of Pedagogical Research, 2023
This study aimed to examine whether a computational thinking (CT) intervention related to (a) number knowledge and arithmetic (b) algebra, and (c) geometry impacts students' learning performance in primary schools. To this end, a quasi-experimental, nonequivalent group design was employed, with 61 students assigned to the experimental group and 47…
Descriptors: Foreign Countries, Elementary School Students, Control Groups, Grade 2
Lise E. Welch Bond – ProQuest LLC, 2023
Research has shown that computational thinking and kindergarten mathematics instruction can be integrated; however, evidence of how specific mathematical knowledge relates to computational thinking remains scarce. Additionally, we do not know if and how children's mathematical knowledge co-occurs with computational thinking and how these…
Descriptors: Mathematics, Mathematics Skills, Thinking Skills, Computation
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João Piedade; Nuno Dorotea – Informatics in Education, 2023
Computational Thinking (CT) has emerged in recent years as a thematic trend in education in many countries and several initiatives have been developed for its inclusion in school curricula. There are many pedagogical strategies to promote the development of elementary school students' CT skills and knowledge. Unplugged learning tasks, block-based…
Descriptors: Programming, Programming Languages, Grade 4, Elementary School Students
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