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Showing 1 to 15 of 65 results Save | Export
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Kristy L. Armitage; Sam J. Gilbert – Child Development Perspectives, 2025
Humans routinely use external thinking tools, like pencil and paper, maps, and calculators, to solve cognitive problems that would have once been solved internally. As many youth face unprecedented exposure to increasingly capable technological aids, there is a growing pressure to understand children's cognitive offloading capacities and…
Descriptors: Cognitive Processes, Cognitive Ability, Children, Problem Solving
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Dane C. Hilton; Will H. Canu; Matthew A. Jarrett – Journal of American College Health, 2024
Objective: Executive Functioning (EF) is a construct that is considered central to cognitive development and has recently garnered attention for its potential role in social functioning. This study investigated the relationship between EF and social skill using both multiple regression and relative weights analyses. Participants: A sample of…
Descriptors: Undergraduate Students, Executive Function, Interpersonal Competence, Public Colleges
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Irene Polo-Blanco; Paula Suárez-Pinilla; Juncal Goñi-Cervera; Marta Suárez-Pinilla; Beatriz Payá – Journal of Autism and Developmental Disorders, 2024
This study examines relationships between mathematical problem-solving performance (in terms of strategies used and accuracy) and the main cognitive domains associated with mathematical learning (i.e. executive functions, verbal comprehension and social perception) of children with and without autism spectrum disorder (ASD and non-ASD resp.). The…
Descriptors: Mathematics Achievement, Problem Solving, Executive Function, Verbal Ability
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Selma Boz – European Journal of Psychology and Educational Research, 2024
This study investigates school-age children's arithmetic operations performance while solving larger-size problems which produces interferences in memory. Complex problems can trigger competing responses in working memory, which are irrelevant to a task goal and increase the likelihood of interference from previously learned problems (De Visscher…
Descriptors: Problem Solving, Mathematics Instruction, Elementary School Students, Reaction Time
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Caiwei Zhu; Remke Klapwijk; Miroslava Silva-Ordaz; Jeroen Spandaw; Marc J. de Vries – International Journal of Technology and Design Education, 2024
Spatial thinking is ubiquitous in design. Design education across all age groups encompasses a range of spatially challenging activities, such as forming and modifying mental representations of ideas, and visualizing the scenarios of design prototypes being used. While extensive research has examined the cognitive processes of spatial thinking and…
Descriptors: Spatial Ability, Thinking Skills, Concept Formation, Childrens Attitudes
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Eva Hejnová; Petr Eisenmann; Lucie Loukotová; Jirí Pribyl – Journal on Efficiency and Responsibility in Education and Science, 2024
The paper describes the results of a study whose main aim was to find the interrelationship between pupils' school grades in Czech language (native), mathematics, and physics and pupils' cognitive predispositions to problem-solving in science and mathematics diagnosed by the Lawson Classroom Test of Scientific Reasoning and the Culture of Problem…
Descriptors: Cognitive Ability, Problem Solving, Slavic Languages, Grades (Scholastic)
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Jinju Lee; Jongchan Park; Dongsik Kim – Instructional Science: An International Journal of the Learning Sciences, 2024
This study investigates when and how awareness of knowledge gaps (AKG) manifests by observing the problem-solving phase of the educational approach known as problem-solving followed by instruction (PS-I). By comprehensively exploring cognitive and metacognitive process of learners during this phase and categorizing students' judgements of…
Descriptors: Knowledge Level, Problem Solving, Metacognition, Cognitive Ability
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Joni M. Lakin; Jon Wai; Paula Olszewski-Kubilius; Susan Corwith; Danielle Rothschild; David Uttal – Grantee Submission, 2024
Spatial thinking permeates much of our lives and is an asset when solving problems involving well-structured visual information or imagining solutions in physical or digital space. However, an estimated three million US school children have spatial talents that go unrecognized because of the tools commonly used for identification of academic…
Descriptors: Spatial Ability, Thinking Skills, Problem Solving, Mathematics
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Joni M. Lakin; Jonathan Wai; Paula Olszewski-Kubilius; Susan Corwith; Danielle Rothschild; David H. Uttal – Gifted Child Today, 2024
Spatial thinking permeates much of our lives and is an asset when solving problems involving well-structured visual information or imagining solutions in physical or digital space. However, an estimated three million US school children have spatial talents that go unrecognized because of the tools commonly used for identification of academic…
Descriptors: Spatial Ability, Thinking Skills, Problem Solving, Mathematics
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Giorgia Adorni; Alberto Piatti; Engin Bumbacher; Lucio Negrini; Francesco Mondada; Dorit Assaf; Francesca Mangili; Luca Maria Gambardella – Technology, Knowledge and Learning, 2025
In recent years, the emphasis on computational thinking (CT) has intensified as an effect of accelerated digitalisation. While most researchers are concentrating on defining CT and developing tools for its instruction and assessment, we focus on the characteristics of computational thinking problems (CTPs) -- activities requiring CT to be…
Descriptors: Computation, Thinking Skills, Problem Solving, Learning Activities
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Nurma Angkotasan; Hery Suharna; In Hi. Abdullah; Suryani Dahlan – International Education Studies, 2024
The identification in this study with the aim is to describe how difficult it is for students to think reflectively when solving math problems, especially in linear programming material. Based on the purpose of this study, the type of research is qualitative with a descriptive exploratory approach. Data collection techniques used are: (1) test…
Descriptors: Reflection, Thinking Skills, Problem Solving, Mathematics Education
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Susan Boyd; Liza Bondurant; Annalise Johnson – Mathematics Teacher: Learning and Teaching PK-12, 2024
Building activities can be used any time in the school year in mathematics classes to promote problem solving, perseverance, and to develop students' spatial thinking. Spatial visualization skills are the "ability to mentally manipulate, rotate, twist, or invert a pictorially presented stimulus object." The authors were guided by the…
Descriptors: Mathematics Instruction, Puzzles, Manipulative Materials, Visualization
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Alice Hein; Klaus Diepold – Cognitive Science, 2024
Early number skills represent critical milestones in children's cognitive development and are shaped over years of interacting with quantities and numerals in various contexts. Several connectionist computational models have attempted to emulate how certain number concepts may be learned, represented, and processed in the brain. However, these…
Descriptors: Numeracy, Child Development, Cognitive Ability, Video Technology
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Mónica Mora; Rafael Ramírez; Angel Gutiérrez; Adela Jaime – ZDM: Mathematics Education, 2024
Identifying mathematically gifted students is an important objective in mathematics education. To describe skills typical of these students, researchers pose problems in several mathematical domains whose solutions require using different mathematical capacities, such as visualization, generalization, proof, creativity, etc. This paper presents an…
Descriptors: Generalization, Problem Solving, Gifted, Mathematics Education
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Jonas Schäfer; Timo Reuter; Julia Karbach; Miriam Leuchter – British Journal of Educational Psychology, 2024
Background: Problem-solving in early and middle childhood is of high relevance for cognitive developmental research and educational support. Previous research on science problem-solving has focussed on the process and strategies of children handling challenging tasks, but less on providing insights into the cognitive network that enables science…
Descriptors: Problem Solving, Elementary School Students, Correlation, Task Analysis
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