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Lampinen, Andrew K.; McClelland, James L. – Journal of Educational Psychology, 2018
Previous research has found that different presentations of the same concept can result in different patterns of transfer to isomorphic instances of that concept. Much of this work has framed these effects in terms of advantages and disadvantages of concreteness or abstractness. We note that mathematics is a richly structured field, with deeply…
Descriptors: Teaching Methods, Mathematics Instruction, Mathematical Concepts, Adult Education
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Costa, H. M.; Nicholson, B.; Donlan, C.; Van Herwegen, J. – Journal of Intellectual Disability Research, 2018
Background: Different domain-specific and domain-general cognitive precursors play a key role in the development of mathematical abilities. The contribution of these domains to mathematical ability changes during development. Primary school-aged children who show mathematical difficulties form a heterogeneous group, but it is not clear whether…
Descriptors: Preschool Children, Mathematics Skills, Low Achievement, Multivariate Analysis
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Yun, Hongoak; Choi, Soonja – Cognitive Science, 2018
This study has two goals. First, we present much-needed empirical linguistic data and systematic analyses on the spatial semantic systems in English and Korean, two languages that have been extensively compared to date in the debate on spatial language and spatial cognition. We conduct our linguistic investigation comprehensively, encompassing the…
Descriptors: Semantics, Spatial Ability, Contrastive Linguistics, Korean
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McLaughlin, Jessica A.; Lombardi, Doug; Davatzes, Alexandra; Shipley, Thomas F.; Holzer, Margaret A.; Hopkins, Jenelle D.; Jaeger, Allison J. – Science Teacher, 2018
Understanding the spatial nature of the world is necessary in everyday life. Not only do people move about in 3D space, but spatial thinking is also important in many science, technology, engineering, and mathematics (STEM) disciplines. This may be especially true in the geosciences, where learners often encounter unique spatial reasoning…
Descriptors: Spatial Ability, STEM Education, Earth Science, Visualization
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Starr, Ariel; Srinivasan, Mahesh – Developmental Psychology, 2018
Spatial language is often used metaphorically to describe other domains, including time (long sound) and pitch (high sound). How does experience with these metaphors shape the ability to associate space with other domains? Here, we tested 3- to 6-year-old English-speaking children and adults with a cross-domain matching task. We probed…
Descriptors: Figurative Language, Spatial Ability, Young Children, Adults
Seah, Rebecca; Horne, Marj – Mathematics Education Research Group of Australasia, 2018
Although spatial thinking and reasoning is recognised as a key component for promoting STEM discipline, very little research has been done on its promotion in middle years in Australia. How do students perceive three dimensional geometrical objects? Are they able to recognise the objects from different perspectives and explain their reasoning for…
Descriptors: Geometry, Geometric Concepts, Middle School Students, Spatial Ability
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Dudschig, Carolin; Kaup, Barbara – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2017
Associations between language and space are of central interest for grounded models of language comprehension. Various studies show that reading words such as "bird" or "shoe" results in faster responses toward the typical location of the corresponding entity (e.g., after "bird", upward responses are faster than…
Descriptors: Language Processing, Responses, Association (Psychology), Spatial Ability
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Brunec, Iva K.; Ozubko, Jason D.; Barense, Morgan D.; Moscovitch, Morris – Learning & Memory, 2017
Time and space represent two key aspects of episodic memories, forming the spatiotemporal context of events in a sequence. Little is known, however, about how temporal information, such as the duration and the order of particular events, are encoded into memory, and if it matters whether the memory representation is based on recollection or…
Descriptors: Recall (Psychology), Memory, Time, Spatial Ability
Corinne A. Bower – ProQuest LLC, 2017
Science, technology, engineering, and mathematics domains draw heavily on spatial reasoning (NRC, 2006). One particular science thought to be especially spatially-complex is astronomy. Understanding astronomy requires using a "space-based perspective" to explain phenomena we see from an "Earth-based perspective." That is, it…
Descriptors: Astronomy, Children, Spatial Ability, Intervention
Robert P. Semmens – ProQuest LLC, 2017
Spatial inscriptions of information--visualizations--can be a great asset to problem solving. Calendars and Cartesian graphs are two examples of visualizations that reorganize non-spatial information (temporal and quantitative) into a visual format. People readily rely on these visualizations to plan and see patterns, which intuitively attests to…
Descriptors: Problem Solving, Program Administration, Visual Aids, Transfer of Training
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Dhlamini, Zwelithini Bongani; Chuene, Kabelo; Masha, Kwena; Kibirige, Israel – EURASIA Journal of Mathematics, Science and Technology Education, 2019
The purpose of this study was to explore geometry spatial mathematical reasoning in Grade nine Annual National Assessments, South Africa. Conceptual Blending was the guiding theory. Document analysis within the exploratory case study was used to explore available data, the 2014 Annual National Assessment learners' scripts (n=1250). Results…
Descriptors: Grade 9, Spatial Ability, Geometric Concepts, Mathematical Logic
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Ren, Kexin; Lin, Ying; Gunderson, Elizabeth A. – Developmental Psychology, 2019
Elementary school students often lack a conceptual understanding of linear measurement, which is revealed by their poor performance when the object to be measured is not aligned with the start of the ruler. Instead of correctly counting the units that correspond to the object (e.g., inches or centimeters), children often use 1 of 2 incorrect…
Descriptors: Inhibition, Elementary School Students, Measurement Techniques, Grade 1
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Connor, Megan C.; Finkenstaedt-Quinn, Solaire A.; Shultz, Ginger V. – Chemistry Education Research and Practice, 2019
Promoting students' ability to engage in discipline-specific practices is a central goal of chemistry education. Yet if instruction is to meaningfully foster such ability, we must first understand students' reasoning during these practices. By characterizing constraints on chemistry students' reasoning, we can design instruction that targets this…
Descriptors: Science Instruction, Organic Chemistry, College Science, Logical Thinking
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Altanis, Ioannis; Retalis, Symeon – Educational Media International, 2019
In the last few years, engaging students to create digital games has been a pole of attraction for many teachers and researchers, resulting in highly positive learning experiences and promoting their thinking skills, e.g., programming and computational thinking (CT) skills. Researchers have already stated about the need for further research not…
Descriptors: Thinking Skills, Computation, Skill Development, Motion
Zimmermann, Laura; Foster, Lindsey; Golinkoff, Roberta Michnick; Hirsh-Pasek, Kathy – American Educator, 2019
The last 15 years have witnessed a quiet revolution in the understanding of spatial skills, and the authors are finding that these all-important science, technology, engineering, and math (STEM) competencies are rooted in spatial knowledge. Spatial skills are the tools use to visualize and navigate the world. Spatial skills allows people to…
Descriptors: Spatial Ability, STEM Education, Play, Toys
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