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Showing 1 to 15 of 18 results Save | Export
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Anne Flick; Joni M. Lakin – Grantee Submission, 2024
Decades of research point to the value and importance of spatial skills and have demonstrated the malleability, durability, and teachability of spatial skills across the lifespan. Teachers and caregivers can apply this research in their classrooms or homes through a wide range of strategies. In this article, we offer specific, engaging activities…
Descriptors: Spatial Ability, Academically Gifted, Talent Development, Skill Development
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Anne R. Flick; Joni M. Lakin – Gifted Child Today, 2024
Decades of research point to the value and importance of spatial skills and have demonstrated the malleability, durability, and teachability of spatial skills across the lifespan. Teachers and caregivers can apply this research in their classrooms or homes through a wide range of strategies. In this article, we offer specific, engaging activities…
Descriptors: Spatial Ability, Academically Gifted, Talent Development, Skill Development
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MengWei Pang; XueLu Tong; XiaoHan Zhao; JiaWu Wan; HuBin Yin; Na Yu; ChaoYi Ma; WeiYi Zhang; YiHan Xu; YingQi Ren; ManYu Xiong; WeiJie Kong; ZeXin Luo; LanXin Yang; FaBing Tan; Yi Li; XiaoMing Fu; YuanDing Huang; Jinlin Song; Sheng Yang; Ping Ji – Anatomical Sciences Education, 2024
Dental anatomy education for dental technology students should be developed in alignment with digital dental laboratory practices. We hypothesized that a virtually assisted sketching-based dental anatomy teaching module could improve students' acquisition of skills essential for digital restoration design. The second-year dental technology…
Descriptors: Dentistry, Medical Education, Anatomy, Skill Development
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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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Alvin G. Bansil; Erna V. Yabut – Journal of Practical Studies in Education, 2025
Physical manipulatives enhanced knowledge acquisition by engaging learners in hands-on experiences that supported spatial reasoning. These tools allowed learners to see, touch, and manipulate objects, improving their ability to mentally rotate and visualize structures. This study challenged the assumption that most learners are purely visual by…
Descriptors: Grade 7, Skill Development, Spatial Ability, Abstract Reasoning
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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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S. Fowler; J. P. Kennedy; C. Cutting; F. Gabriel; S. N. Leonard – International Journal of Technology and Design Education, 2024
This study examines the impact of a learning design focussed on providing guided autonomy within a virtual makerspace on the spatial thinking, anxiety and learning creativity of participating students. The learning design deployed within the virtual makerspace was consistent with the learning principles espoused by Self-Determination Theory in…
Descriptors: Self Determination, Shared Resources and Services, Electronic Learning, Spatial Ability
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Alvin Vista; Helyn Kim – Educational and Developmental Psychologist, 2025
Objective: Measurement tools for children's foundational skills provide important insights towards the developmental mechanisms of these domains. This study examines the structure of sensorimotor, visuospatial processing (VP), executive function (EF) skills and their interrelationship. The NEPSY is a widely-used neuropsychological instrument, but…
Descriptors: Spatial Ability, Elementary School Students, Perceptual Motor Learning, Multisensory Learning
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Muhammad Aliman; Sumarmi; Silvia Marni – Journal of Social Studies Education Research, 2024
The purpose of this study is to determine the spatial thinking ability of high school students using indicators from Sharpe-Huynh model. These indicators include analysis, spatial interaction, scale, representation, comprehensiveness, and application. Furthermore, this study examined the effect of Earthcomm learning on student's spatial thinking…
Descriptors: Spatial Ability, Thinking Skills, Skill Development, Earth Science
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Grace Bennett-Pierre; Thomas F. Shipley; Nora S. Newcombe; Elizabeth A. Gunderson – Cognitive Research: Principles and Implications, 2025
Non-rigid spatial thinking, or mental transformations where the distance between two points in an object changes (e.g., folding, breaking, bending), is required for many STEM fields but remains critically understudied. We developed and tested a non-rigid, ductile spatial skill measure based on reasoning about knots with 279 US adults (M = 30.90,…
Descriptors: STEM Education, Spatial Ability, Gender Differences, Object Manipulation
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Yannick Noah Layer – Journal of Geography in Higher Education, 2025
In recent years, the field of geography in higher education has increasingly embraced the integration of visual and audio-visual methods as it enables enhanced understanding, multimodal learning, and geospatial literacy. Therefore, there is ample opportunity to incorporate new techniques from various disciplines to improve modern education for…
Descriptors: Geography Instruction, Higher Education, Job Skills, Skill Development
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Samuel Fowler; Simon N. Leonard – Professional Development in Education, 2024
Emerging digital technologies offer a transformative potential to redefine learning tasks and many examples of this potential are now available. The scaling of the innovative pedagogies emerging from the research into widespread and sustainable practice, however, remains problematic. This paper addresses the issue of scaling by using Design Based…
Descriptors: Design, Educational Innovation, Educational Research, Faculty Development
Slki Narae Lim – ProQuest LLC, 2024
Computational thinking (CT) is a critical problem-solving skill that can help students be successful in school and the 21st-century workplace (Wing, 2006). This project builds on past research showing that educational robotics can be a useful and cost-effective means to teach CT to primary school students. Past research has not yet resolved…
Descriptors: Elementary School Students, Computation, Thinking Skills, Skill Development
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Mehtap Kus; Nora S. Newcombe – International Journal of STEM Education, 2025
Background: Disembedding is a crucial spatial thinking skill in visual arts and mathematics education. It is important in creating and analyzing artworks by separating a figure from its background, as well as for solving geometric problems where shapes must be viewed from new perspectives. Drawing upon research in psychology, arts, and mathematics…
Descriptors: Middle School Students, Grade 6, Middle School Mathematics, Mathematics Education
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Marten B. Westerhof; Colm O’Kane; Gavin Duffy – Design and Technology Education, 2024
Spatial skills are crucial to STEM disciplines and involve a variety of cognitive processes and skills related to visualising, reasoning and communicating about spatial relations. Particularly in the primary school years, attaining 'spatial literacy' gives children a valuable set of skills and knowledge that can aid them in successful…
Descriptors: Spatial Ability, Handicrafts, Creative Activities, Design
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