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David Menendez; Sarah A. Brown; Martha W. Alibali – Cognitive Science, 2023
Why do people shift their strategies for solving problems? Past work has focused on the roles of contextual and individual factors in explaining whether people adopt new strategies when they are exposed to them. In this study, we examined a factor not considered in prior work: people's evaluations of the strategies themselves. We presented…
Descriptors: Individual Differences, Problem Solving, Learning Strategies, Self Evaluation (Individuals)
Ajay Shankar Tiwari; Kaushal Kumar Bhagat; Georgios Lampropoulos – Smart Learning Environments, 2024
Currently, augmented reality (AR) is one of the emerging technologies which is being widely used in the education sector. In engineering drawing, AR has been implemented to enhance learners' spatial ability but not their conceptual knowledge yet. Therefore, this study aims to evaluate the effect of AR on engineering drawing students' learning…
Descriptors: College Freshmen, Engineering Education, Physical Environment, Simulated Environment
Li-Chih Wang; Duo Liu; He-Hsiu Lin; Kevin Kien-Hoa Chung; Zhengye Xu – Exceptional Children, 2024
One of the most well-known instructional methods used to enhance Chinese character reading (CCR) is Chinese stem-deriving instruction (CSDI). In this method, CCR is taught via a group of characters (e.g., [foreign character omitted], [foreign character omitted], and [foreign character omitted]) that share the same stem (e.g., [foreign character…
Descriptors: Foreign Countries, Teaching Methods, Curriculum Design, Dyslexia
Linda Castañeda; Victoria I. Marín; Daniel Villar-Onrubia – Educational Technology Research and Development, 2024
Technology-mediated interactions and datafication are increasingly central in contemporary social dynamics and institutions, including teaching and learning processes. In order to fully understand the complex entanglements of human and non-human actants that emerge in postdigital education, it is essential to imagine new methodological approaches…
Descriptors: Learning Activities, Topology, Learning Processes, Technology Uses in Education
Ben Rydal Shapiro; Ilana Seidel Horn; Sierra Gilliam; Brette Garner – Educational Researcher, 2024
In conversations about pedagogy, researchers often overlook how physical space and movement shape teacher sensemaking. This article offers a comparative case study of classroom videos using a dynamic visual method to map embodied interaction called "interaction geography." Our analysis proposes an integrative framework to study classroom…
Descriptors: Motion, Teaching Methods, Physical Environment, Geography
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
Kejun Zheng; Baolige Chao; Xiaoran Xue; Li Zhang – Early Child Development and Care, 2024
To examine the relationship between early number sense and later symbolic arithmetic competence and how they are connected in young Chinese children. The present study utilized a longitudinal sample of 115 Chinese children aged 3 to 6. Young children completed measures to assess number sense, visual spatial skills (in the fall of their second…
Descriptors: Foreign Countries, Young Children, Numeracy, Arithmetic
Joseph Antonides; Anderson Norton; Rachel Arnold – For the Learning of Mathematics, 2024
This theoretical article explores the affordances and challenges of Euler diagrams as tools for supporting undergraduate introduction-to-proof students to make sense of, and reason about, logical implications. To theoretically frame students' meaning making with Euler diagrams, we introduce the notion of logico-spatial linked structuring (or…
Descriptors: Mathematical Concepts, Visual Aids, Relationship, Schematic Studies
Robert C. Wilbur; Kinnari Atit; Prashansa Agrawal; Bryan Carrillo; Catherine M. Lussier; Dylan Noack; Yat Sun Poon; David Weisbart – Journal of Numerical Cognition, 2024
Passing the introductory calculus sequence is critical to undergraduate students' retention in STEM programs. This study examines the relations between three interrelated processes found to influence mathematics learning and achievement: spatial skills, spatial anxiety, and math anxiety. Additionally, it examines the role of gender on these…
Descriptors: Calculus, Undergraduate Students, STEM Education, Mathematics Instruction
Gonzales, Rene A.; Ferns, Gordon; Vorstenbosch, Marc A. T. M.; Smith, Claire F. – Anatomical Sciences Education, 2020
Spatial ability (SA) is the cognitive capacity to understand and mentally manipulate concepts of objects, remembering relationships among their parts and those of their surroundings. Spatial ability provides a learning advantage in science and may be useful in anatomy and technical skills in health care. This study aimed to assess the relationship…
Descriptors: Spatial Ability, Anatomy, Medical Students, Scores
Poling, Lisa; Weiland, Travis – Teaching Statistics: An International Journal for Teachers, 2020
With the creation of interactive tasks that allow students to explore spatial ways of knowing in conjunction with their other ways of knowing the world, we create a space where students can make sense of information as they organize these new ideas into their already existing schema. Through the use of a Common Online Data Analysis Platform…
Descriptors: Data Analysis, Data Collection, Spatial Ability, Statistics
Lauren Baade; Effie Kartsonaki; Hassan Khosravi; Gwendolyn A. Lawrie – Chemistry Education Research and Practice, 2025
Effective learning in chemistry education requires students to understand visual representations across multiple conceptual levels. Essential to this process are visuospatial skills which enable students to interpret and manipulate these representations effectively. These abilities allow students to construct mental models that support problem…
Descriptors: Visualization, Thinking Skills, Spatial Ability, Problem Solving
Kerry Chappell; Sharon Witt; Heather Wren; Leonie Hampton; Pam Woods; Lizzie Swinford; Martin Hampton – Journal of Creative Behavior, 2025
This study marks a resting point within ongoing explorations of creativity, transdisciplinarity, materiality, and spatiality in Higher Education (HE) pedagogy. It interrogates how different materialities and spatialities shape learning to re-create practices to better respond to societal challenges. This is situated within an imperative to move…
Descriptors: Higher Education, Educational Development, Educational Change, Spatial Ability
Manuela Glaser; Laura Hug; Stephan Werner; Stephan Schwan – Educational Technology Research and Development, 2025
The present paper examines possible benefits of spatial audio guides on learning outcomes in the spatial learning setting of an experimental exhibition and attempts to differentiate between different mechanisms underlying such an effect. In Experiment 1, we examined whether the spatial contiguity principle may be such a mechanism. A spatial audio…
Descriptors: Museums, Exhibits, Audiovisual Communications, Audiovisual Aids
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