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Yu Lei; Xin Fu; Jingjie Zhao; Baolin Yi – Education and Information Technologies, 2025
Grouping students according to their abilities and promoting deeper interaction and moderation are key issues in improving computational thinking in collaborative programming. However, the distribution characteristics and evolving pathways of computational thinking in different groups have not been deeply explored. During the course of a…
Descriptors: Ability Grouping, Computation, Programming, Cooperative Learning
Belén Palop; Irene Díaz; Luis J. Rodríguez-Muñiz; Juan José Santaengracia – Education and Information Technologies, 2025
In the realm of K-12 Education, the growing significance of Computational Thinking has sparked extensive inquiry into its nature and instructional methodologies. Despite a wealth of literature on the subject, ongoing debates persist regarding its fundamental components. Across global educational landscapes, Computational Thinking is being…
Descriptors: Computation, Thinking Skills, Holistic Approach, Elementary Secondary Education
Sheng-Yi Wu; Yu-Sheng Su – Asia Pacific Education Review, 2025
Education on computational thinking skills has been a focus in many countries. Previous studies have investigated educational board games based on computational thinking skills. However, there is a lack of research on the cognitive behaviors and cognitive styles promoted by these educational board games. Therefore, in this study, educational board…
Descriptors: Outcomes of Education, Computation, Thinking Skills, Educational Games
Chuyan Qu; Feng Sheng; Ruining Wang; Elizabeth M. Brannon – Journal of Numerical Cognition, 2025
Understanding how non-numerical visual features systematically distort numerosity perception holds promise for unveiling the processes that give rise to our visual number sense. Recent studies show that increasing visual coherence systematically increases perceived numerosity, with this effect strengthening over development (DeWind et al., 2020;…
Descriptors: Number Concepts, Mathematical Models, Decision Making, Visual Stimuli
Eunsung Park; Jongpil Cheon – Journal of Educational Computing Research, 2025
Debugging is essential for identifying and rectifying errors in programming, yet time constraints and students' trivialization of errors often hinder progress. This study examines differences in debugging challenges and strategies among students with varying computational thinking (CT) competencies using weekly coding journals from an online…
Descriptors: Undergraduate Students, Programming, Computer Software, Troubleshooting
Alberto Ruiz-Ariza; Sara Suárez-Manzano; Alberto Mezcua-Hidalgo; Emilio J. Martínez-López – Educational Studies, 2025
The aim was to determine the effect of an 8-week programme of active breaks on memory, attention-concentration, mathematical calculation, linguistic reasoning and creativity in adolescent students. One-hundred-sixty-two adolescents (12.27 ± 0.47 years; range = 12-13 years) participated in this study. The intervention was based on four daily active…
Descriptors: Cognitive Processes, School Schedules, Memory, Attention
Yoonhee Shin; Jaewon Jung; Seohyun Choi; Bokmoon Jung – Education and Information Technologies, 2025
This study investigates the effects of metacognitive and cognitive strategies for computational thinking (CT) on managing cognitive load and enhancing problem-solving skills in collaborative programming. Four different scaffolding conditions were provided to help learners optimize cognitive load and improve their problem-solving abilities. A total…
Descriptors: Scaffolding (Teaching Technique), Mental Computation, Cognitive Processes, Difficulty Level
Timothy H. Lehmann – Research in Mathematics Education, 2025
This study addresses a gap in the empirical research about how students use computational thinking (CT) skills throughout the problem-solving process, which is a crucial skill for STEM learning. I conducted task-based interviews with two pairs of Year 8 students with strong mathematical problem-solving skills and previous experience in solving…
Descriptors: Computation, Thinking Skills, Problem Solving, STEM Education
Monica Maheshwari; Priyanka Bhatt – Discover Education, 2025
Innovation competencies represent critical determinants for human capital development within contemporary organizational frameworks. This empirical investigation proposes a comprehensive theoretical model examining self-regulated learning (SRL) as a foundational mechanism driving innovation skill acquisition among management graduates. The study…
Descriptors: Learning Strategies, Self Management, Metacognition, Cognitive Processes
Mária Cujdíková; Ivan Kalaš – Informatics in Education, 2025
Tables are fundamental tools for handling data and play a crucial role in developing both computational thinking (CT) and mathematical thinking (MT). Despite this, they receive limited attention in research and design. This study investigates pupils' attitudes toward and approaches to working with tables in informatics education, focusing on the…
Descriptors: Foreign Countries, Elementary School Curriculum, Programming, Computation
Hebatalla Nazmy; Merida Valentin-Mendez – Journal of Educational Technology Systems, 2025
Knowledge of building code is required for most building design licenses. However, designers often find the process confusing and overwhelming. The cognitive load theory suggests dividing information between visual and verbal formats reduces working memory burden, while concept mapping and mobile apps enhance learning. This study tests the…
Descriptors: Building Design, Design Requirements, Interior Design, Handheld Devices
Ümmühan Avci – Research in Science & Technological Education, 2025
Aim and background: Today, students are encouraged to develop spatial visualization ability to meet the challenges of digital technologies impacting their daily life and education when exposed more time to a virtual 3D environment. This study investigated the effect of cognitive flexibility levels on students' spatial visualization abilities and…
Descriptors: Spatial Ability, Educational Technology, Technology Uses in Education, Cognitive Processes
Fangli Xia; Mitchell J. Nathan; Kelsey E. Schenck; Michael I. Swart – Cognitive Science, 2025
Task-relevant actions can facilitate mathematical thinking, even for complex topics, such as mathematical proof. We investigated whether such cognitive benefits also occur for action predictions. The action-cognition transduction (ACT) model posits a reciprocal relationship between movements and reasoning. Movements--imagined as well as real ones…
Descriptors: Undergraduate Students, Geometry, Mathematical Concepts, Mathematics Instruction
Xiaoxuan Fang; Davy Tsz Kit Ng; Manwai Yuen – Education and Information Technologies, 2025
To promote computational thinking in mathematics education, Scratch is used to foster students' computational thinking and mathematical understanding. However, students face challenges in block-based programming environments, such as having low motivation, high anxiety, and cognitive loads. This study combined the pedagogical values of Geogebra…
Descriptors: Computer Software, Mental Computation, Elementary School Mathematics, Grade 5
Taweesak Emsawas; Tsukasa Kimura; Shintaro Ogura; Hironori Morita; Ergashov Abdullajon; Bernard Grundlehner; Mototsugu Ogura; Masayuki Numao – Discover Education, 2025
Second-language (L2) knowledge of English is an essential communication tool in the contemporary era of globalization in many research and business fields. Among the important tasks in English education is the measurement of student proficiency. While various tests purport to measure proficiency in learning English, repeated preparation and…
Descriptors: Second Language Learning, English (Second Language), Language Proficiency, Cognitive Processes
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