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No Child Left Behind Act 20012
Showing 1 to 15 of 618 results Save | Export
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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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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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Salmon-Mordekovich, Nirit; Leikin, Mark – Journal of Creative Behavior, 2022
This study aimed to portray insightful problem solvers. Participants solved classic insight problems and rebuses and completed cognitive and creativity tasks. Grouping the participants based on their success in solving insight problems of different modalities revealed that 95% of the spatial problem solvers succeeded in solving verbal ones…
Descriptors: Problem Solving, Spatial Ability, Verbal Ability, Intuition
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Feyza Kurban – Problems of Education in the 21st Century, 2024
This study explores how pre-service mathematics teachers' spatial visualisation skills evolved during a Cognitive Load Theory (CLT) based education. The study used the qualitative theory-testing case study method, which guided the identification of participants, the design of technology-supported education, and the data collection and analysis…
Descriptors: Preservice Teachers, Mathematics Teachers, Spatial Ability, Visualization
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Tejaswini Dalvi; Kristen Wendell – School Science and Mathematics, 2024
Insights on students' own authentic design practices--nascent design practices without much adult guidance--are crucial to informing responsive facilitation of engineering design tasks. This study unpacks how elementary students interpret teacher given information about a design task, and interact with each other and given resources, to traverse a…
Descriptors: Elementary School Students, Navigation, Engineering, Design
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Pelizzari, Federica; Marangi, Michele; Rivoltella, Pier Cesare; Peretti, Giulia; Massaro, Davide; Villani, Daniela – Research on Education and Media, 2023
We propose the results of a research that combines the educational and psychological media approach, to verify the pedagogical potential of coding and robotics in the learning processes of 4-year-old children at the cognitive and socio-relational level. The study investigated the impact of unplugged and plugged coding on the skills of spatiality,…
Descriptors: Programming, Play, Young Children, Robotics
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Xi Xiang; Di Xi – British Journal of Educational Technology, 2025
Spatial thinking is essential for nurturing spatially literate graduates in tertiary education. However, there is limited research on individual differences in cognitive processes and their impact on spatial problem solving in disciplinary contexts. This study aimed to investigate cognitive processes involved in spatial thinking in geography…
Descriptors: College Students, Cognitive Processes, Spatial Ability, Geography Instruction
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Hsing, Hsiang-Wen; Bairaktarova, Diana; Lau, Nathan – Journal of Engineering Education, 2023
Background: Spatial problem-solving is an essential skill for success in many engineering disciplines; thus, understanding the cognitive processes involved could help inform the design of training interventions for students trying to improve this skill. Prior research has yet to investigate the differences in cognitive processes between spatial…
Descriptors: Eye Movements, Cognitive Processes, Problem Solving, Engineering Education
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T. Vessonen; H. Hellstrand; P. Aunio; A. Laine – International Journal of Early Childhood, 2024
The aim of this study was to investigate individual differences in mathematical problem-solving among 3- to 5-year-old children (N = 328; n[subscript 3-year-olds] = 115, n[subscript 4-year-olds] = 167, n[subscript 5-year-olds] = 46). First, we examined the extent to which children in this age group were able to solve open and closed non-routine…
Descriptors: Individual Differences, Mathematics Skills, Problem Solving, Preschool Children
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Hatice Yildiz Durak; Nilüfer Atman Uslu – Interactive Learning Environments, 2023
The 3D game development process is significant in improving knowledge and skills, such as literacy of information technologies, computational, analytical, and algorithmic thinking, programming, and spatial abilities. Besides, the 3D game development is a difficult and complex learning process. Within this context, it was decided that teaching…
Descriptors: College Students, Visual Aids, Games, Gamification
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Maddatuang; Arsad Bahri; Muhammad Ansarullah S. Tabbu – Journal of Baltic Science Education, 2025
Computational thinking and spatial thinking ability play a critical role in enabling students to respond effectively to disasters. However, limited research has examined the impact of digital literacy, disaster education, and cognitive skills in secondary school students. This study aims to assess the impact of digital literacy and disaster…
Descriptors: Digital Literacy, Spatial Ability, Thinking Skills, Natural Disasters
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Dewi D. Hariri; Hilda Mahmudah; Fayza S. Wibawa; Nia Kania – Pedagogical Research, 2025
Mathematics is an essential subject in schools, helping develop cognitive skills such as critical analysis, logical reasoning, and problem-solving. However, academic achievement in mathematics often declines, with some students having difficulty understanding mathematical ideas. Many factors influence mathematics achievement, including students'…
Descriptors: Correlation, Cognitive Style, Mathematics Achievement, Logical Thinking
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Nicola A. Kiernan; Andrew Manches; Michael K. Seery – Chemistry Education Research and Practice, 2024
Central to conceptual understanding of STEM disciplines is visuospatial processing. Despite its acknowledged role in assuring learners' success, less is known about the underlying reasoning students must employ when solving 3-D problems and the ways in which gaining an understanding of this can inform formative assessment and learning in STEM…
Descriptors: Logical Thinking, Chemistry, Scientific Concepts, Molecular Structure
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Feyza Kurban; Hüseyin Bahadir Yanik – Journal of Pedagogical Research, 2024
The study aims to define the processes of pre-service mathematics teachers in reaching spatial visualisation generalisations within the context of drawing surface nets of solids. Two theories, Polya's problem-solving steps and novice-to-expert problem-solving schemas, were used as reference frameworks to describe the participants' spatial…
Descriptors: Preservice Teachers, Mathematics Teachers, Mathematics Instruction, Visualization
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Król, Michal; Król, Magdalena E. – Cognitive Science, 2022
Existing research demonstrates that pre-decisional information sampling strategies are often stable within a given person while varying greatly across people. However, it remains largely unknown what drives these individual differences, that is, why in some circumstances we collect information more idiosyncratically. In this brief report, we…
Descriptors: Spatial Ability, Information Seeking, Sampling, Decision Making
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