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S. Bahar Sener; Ariel Starr – Journal of Cognition and Development, 2025
Although we cannot see or touch time, across many cultures, we use spatial representations to think about this abstract concept. Spatial representations of time are thought to support temporal concepts that might otherwise be difficult to represent and reason about, such as the temporal component of episodic memory. One common form of spatially…
Descriptors: Memory, Cultural Pluralism, Spatial Ability, Time
Krieglstein, Felix; Schneider, Sascha; Beege, Maik; Rey, Günter Daniel – Educational Technology Research and Development, 2022
Concept maps are assumed to enhance learning as their inherent structure makes relations between information more salient. Nevertheless, research on how to design concept maps as conducive to learning as possible is still rare. In particular, the salience of spatial arrangement of thematically related concepts within the map as well as the…
Descriptors: Cognitive Processes, Concept Mapping, Instructional Design, Learning Processes
Yohannan, Doris George; Oommen, Aswathy Maria; Amogh, Bhaskaran Jayaprasad; Raju, Nithin Kadakampallil; Suresh, Rakesh Omana; Nair, Santhanu Jagannath – Anatomical Sciences Education, 2022
Spatial understanding of complex anatomical concepts is often a challenge for learners, as well as for educators. It is even more challenging for students with low mental spatial abilities. There are many options to teach spatial relationships, ranging from simple models to high-end three-dimensional (3D) virtual reality tools. Using a randomized…
Descriptors: Anatomy, Spatial Ability, Nonverbal Communication, Lecture Method
Solange Denervaud; Alexander P. Christensen; Yoed. N. Kenett; Roger E. Beaty – npj Science of Learning, 2021
Education is central to the acquisition of knowledge, such as when children learn new concepts. It is unknown, however, whether educational differences impact not only what concepts children learn, but how those concepts come to be represented in semantic memory--a system that supports higher cognitive functions, such as creative thinking. Here we…
Descriptors: Creative Thinking, Semantics, Memory, Concept Formation
Problem-Solving Styles in Autism Spectrum Disorder and the Development of Higher Cognitive Functions
Constable, Paul A.; Ring, Melanie; Gaigg, Sebastian B.; Bowler, Dermot M. – Autism: The International Journal of Research and Practice, 2018
The Vygotsky Blocks Test assesses problem-solving styles within a theoretical framework for the development of higher mental processes devised by Vygotsky. Because both the theory and the associated test situate cognitive development within the child's social and linguistic context, they address conceptual issues around the developmental relation…
Descriptors: Problem Solving, Cognitive Ability, Autism, Pervasive Developmental Disorders
Rahmawati, Yuli; Dianhar, Hanhan; Arifin, Fadhillah – Education Sciences, 2021
Students often have difficulty understanding abstract concepts in chemistry and a low spatial ability, especially in visualizing intermolecular interactions at the submicroscopic level. Therefore, this study aims to analyze the spatial ability of students by using a 3D virtual representation as they study the curriculum topic of molecular…
Descriptors: Spatial Ability, Chemistry, Science Instruction, Secondary School Students
Bintoro, Henry Suryo; Sukestiyarno, Y. L.; Mulyono; Walid – European Journal of Educational Research, 2021
Spatial thinking has roles to facilitate learners to remember, understand, reason, and communicate objects and the connections among objects that are represented in space. This research aims to analyze the spatial thinking process of students in constructing new knowledge seen from the field-independent cognitive style learners based on…
Descriptors: Foreign Countries, Spatial Ability, Thinking Skills, Cognitive Processes
Young, Christopher J.; Levine, Susan C.; Mix, Kelly S. – Grantee Submission, 2018
In this article, we review approaches to modeling a connection between spatial and mathematical thinking across development. We critically evaluate the strengths and weaknesses of factor analyses, meta-analyses, and experimental literatures. We examine those studies that set out to describe the nature and number of spatial and mathematical skills…
Descriptors: Spatial Ability, Mathematics Skills, Thinking Skills, Factor Analysis
Chen, Yi-Chun; Yang, Fang-Ying – International Journal of Science and Mathematics Education, 2014
There were two purposes in the study. One was to explore the cognitive activities during spatial problem solving and the other to probe the relationship between spatial ability and science concept learning. Twenty university students participated in the study. The Purdue Visualization of Rotations Test (PVRT) was used to assess the spatial…
Descriptors: Cognitive Ability, Spatial Ability, Problem Solving, Science Instruction
Francis, Wendy S.; Strobach, E. Natalia; Penalver, Renee M.; Martínez, Michelle; Gurrola, Bianca V.; Soltero, Amaris – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2019
Three source-memory experiments were conducted with Spanish-English bilinguals and monolingual English speakers matched on age, education, nonverbal cognitive ability and socioeconomic status. Bilingual language proficiency and dominance were assessed using standardized objective measures. In Experiment 1, source was manipulated visuo-spatially,…
Descriptors: Associative Learning, Short Term Memory, Context Effect, Concept Formation
Phillips, B. Allyson; Conners, Frances A.; Merrill, Edward; Klinger, Mark R. – American Journal on Intellectual and Developmental Disabilities, 2014
Rule-based category learning was examined in youths with Down syndrome (DS), youths with intellectual disability (ID), and typically developing (TD) youths. Two tasks measured category learning: the Modified Card Sort task (MCST) and the Concept Formation test of the Woodcock-Johnson-III (Woodcock, McGrew, & Mather, 2001). In regression-based…
Descriptors: Down Syndrome, Mental Retardation, Youth, Comparative Analysis
Michels, Kristin K.; Michels, Zachary D.; Hotchkiss, Sara C. – Natural Sciences Education, 2016
Although spatial reasoning and penetrative thinking skills are essential for many disciplines, these concepts are difficult for students to comprehend. In microscopy, traditional educational materials (i.e., photographs) are static. Conversely, video-based training methods convey dimensionality. We implemented a real-time digital video imaging…
Descriptors: Spatial Ability, Laboratory Equipment, Teaching Methods, Video Technology
Önal, Gökçe Ketizmen – Design and Technology Education, 2017
This study is mainly about developing an approach for fostering creativity in design education through analyzing the interactions among creative dimensions resembling spatial and organizational pattern of folding as a technique and also by the help of cognitive action of designers: workshop participants. In order to make an assessment, a case…
Descriptors: Creativity, Design, Interaction, Spatial Ability
Walkington, Candace; Nathan, Mitchell J.; Woods, Dawn M. – North American Chapter of the International Group for the Psychology of Mathematics Education, 2017
Research in mathematics education has established that gestures--spontaneous movements of the hand that accompany speech--are important for learning. In the present study, we examine how students use gestures to communicate with each other while proving geometric conjectures, arguing that this communication represents an example of extended…
Descriptors: Mathematics Instruction, Nonverbal Communication, Teaching Methods, Geometry
Twissell, Adrian – Educational Technology & Society, 2014
This literature review explores visualisation within the context of learning in design, engineering and technology education. The investigation first defines visualisation, providing examples of activities that utilise visualisation skills within an applied field. Then exploration of the mental mechanisms of visualisation used to engage with those…
Descriptors: Literature Reviews, Visualization, Technology Education, Scientific Concepts