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Mehmet Küçük; Tarik Talan; Muhammet Demirbilek – Informatics in Education, 2024
This study investigated the effects of 3D model building activities with block codes on students' spatial thinking and computational thinking skills. The study group consists of 5th grade students in a secondary school in the Central Anatolia region of Turkey. For the study, a pretestposttest control group was utilized within the experimental…
Descriptors: Computation, Thinking Skills, Spatial Ability, Programming
Rowan, Christopher J.; Mulvey, Bridget K. – Journal of Geoscience Education, 2023
Scaled analog modeling ("sandbox modeling") allows deformational processes, such as the development of a mountain belt, to be observed in real time in a classroom setting. However, the actual learning gains from exposure to sandbox modeling in geology courses in higher education settings have not been explicitly studied. We begin to…
Descriptors: Teaching Methods, Instructional Innovation, Models, Geology
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
McLaughlin, Jessica A.; Bailey, Janelle M. – Studies in Science Education, 2023
Myriad research in a variety of contexts shows spatial skills benefit students; however, they are not given enough attention in classroom instruction. In this review we systematically explore geoscience education literature focusing on spatial interventions to answer research questions on trends in spatial skills and other characteristics. We…
Descriptors: Spatial Ability, Earth Science, STEM Education, Research Reports
Miranda, César Briseño; Sánchez, Ernesto Sánchez – North American Chapter of the International Group for the Psychology of Mathematics Education, 2019
The research this report belongs to aims at exploring the functional reasoning of high-school students from a covariation approach and proposing a framework to describe and predict the student's responses to modeling tasks in Dynamic Geometrical Situations. Items were designed for the students to build/construct the corresponding function guided…
Descriptors: High School Students, Mathematical Logic, Thinking Skills, Spatial Ability
Totikova, Guldana A.; Yessaliyev, Aidarbek A.; Madiyarov, Nurlybai K.; Medetbekova, Nurgul – European Journal of Contemporary Education, 2020
The use of planar and volumetric geometric figures in the form of didactic games and exercises, the participants in the experiment showed a significant improvement in the results of the level of spatial representation compared with the control group. The methodology of the use of didactic games and exercises with geometric figures showed the…
Descriptors: Thinking Skills, Skill Development, Spatial Ability, Visualization
Bock, Camden; Dimmel, Justin – North American Chapter of the International Group for the Psychology of Mathematics Education, 2021
This paper reports on a study of learners' use of immersive spatial diagrams to make arguments about three-dimensional geometric figures. Immersive spatial diagrams allow learners to use the movement of their bodies to control their point of view, while immersed in three-dimensional digital renderings. We present analysis of two pairs of…
Descriptors: Visual Aids, Mathematics Instruction, Geometric Concepts, Spatial Ability
Choo, Sam; Park, Sunhi; Nelson, Nancy J. – Learning Disability Quarterly, 2021
Science, Technology, Engineering, and Mathematics (STEM) education initiatives have placed pressure on teachers to bring technology tools into classroom, including three-dimensional (3D) printing. Yet, little research has examined what specific math skills are required for 3D printing technology. This article describes a follow-up analysis of…
Descriptors: Spatial Ability, Thinking Skills, Mathematics Instruction, Mathematics Skills
Singer, Bethany; Shafer, Kathryn G. – Teaching Children Mathematics, 2018
Building physical models is a natural activity for children and provides a context for lessons on two-dimensional (2D) and three-dimensional (3D) shapes. However, children do not think of their models as prisms, cylinders, and pyramids. Their creations are spaceships, tunnels, castles, and nets on the floor. Creating these types of shapes with…
Descriptors: Kindergarten, Young Children, Mathematics Education, Mathematics Skills
Estwick, Noel M.; Griffin, Richard W.; James, Annette A.; Roberson, Samuel G. – Journal of Extension, 2016
There have been numerous efforts aimed at improving geographic literacy in order to address societal challenges. Extension educators can use geographic information system (GIS) technology to help their clients cultivate spatial thinking skills and solve problems. Researchers can use it to model relationships and better answer questions. A program…
Descriptors: Extension Education, Geographic Information Systems, Experiential Learning, Science Education
Swanson, H. Lee – Developmental Psychology, 2017
This study investigates whether age-related changes in the structure of 5 complex working memory (WM) tasks (a) reflect a general or domain specific system, (b) follows a similar trajectory across different age spans, and (c) contribute domain general or domain specific resources to achievement measures. The study parsed the sample (N = 2,471)…
Descriptors: Visual Perception, Spatial Ability, Verbal Ability, Short Term Memory
Rule, Audrey C.; Tallakson, Denise A.; Glascock, Alex L.; Chao, Astoria – Science Activities: Classroom Projects and Curriculum Ideas, 2015
This article describes an arts- and spatial thinking skill--integrated inquiry project applied to life science concepts from the Next Generation Science Standards for fourth grade students that focuses on two unifying or crosscutting themes: (1) structure (or "form") and function and (2) use of models. Students made observations and…
Descriptors: Thinking Skills, Inquiry, Science Activities, Models
Yurt, Eyup; Sunbul, Ali Murat – Educational Sciences: Theory and Practice, 2012
In this study, the effect of modeling based activities using virtual environments and concrete objects on spatial thinking and mental rotation skills was investigated. The study was designed as a pretest-posttest model with a control group, which is one of the experimental research models. The study was carried out on sixth grade students…
Descriptors: Foreign Countries, Spatial Ability, Visualization, Thinking Skills
Ben Youssef, Belgacem; Berry, Barbara – International Journal of Technology and Design Education, 2012
Spatial thinking skills are vital for success in everyday living and work, not to mention the centrality of spatial reasoning in scientific discoveries, design-based disciplines, medicine, geosciences and mathematics to name a few. This case study describes a course in spatial thinking and communicating designed and delivered by an…
Descriptors: Thinking Skills, Spatial Ability, Communication Skills, Undergraduate Students
Schonborn, Konrad J.; Anderson, Trevor R. – Biochemistry and Molecular Biology Education, 2010
External representations (ERs), such as diagrams, animations, and dynamic models are vital tools for communicating and constructing knowledge in biochemistry. To build a meaningful understanding of structure, function, and process, it is essential that students become visually literate by mastering key cognitive skills that are essential for…
Descriptors: Biochemistry, Visual Literacy, Thinking Skills, Influences
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