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Showing 1 to 15 of 285 results Save | Export
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Caiwei Zhu; Remke Klapwijk; Miroslava Silva-Ordaz; Jeroen Spandaw; Marc J. de Vries – International Journal of Technology and Design Education, 2024
Spatial thinking is ubiquitous in design. Design education across all age groups encompasses a range of spatially challenging activities, such as forming and modifying mental representations of ideas, and visualizing the scenarios of design prototypes being used. While extensive research has examined the cognitive processes of spatial thinking and…
Descriptors: Spatial Ability, Thinking Skills, Concept Formation, Childrens Attitudes
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Helen Crompton; Sarah Ferguson – European Journal of Science and Mathematics Education, 2024
Geometry and spatial reasoning form the foundations of learning in mathematics. However, geometry is a subject often ignored by curriculum writers and teachers until high school, leading to students lacking in critical skills in geometric reasoning. As the United States moves into a new curriculum epoch, heralding the commencement of the national…
Descriptors: Geometry, Spatial Ability, Elementary Education, National Standards
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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
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Sarah N. Abdo; Jeremy L. Hsu; Constantine Kapetanakis; Dina L. Newman; L. Kate Wright; Jennifer Bailey – Journal of Chemical Education, 2024
Effective spatial visualization and reasoning skills are often credited for students' success in science and engineering courses. However, students enrolled in these science courses are not always exposed to or trained properly on the best ways to utilize models to aid in their learning. Improving spatial visualization techniques with 3D models,…
Descriptors: Models, Visual Aids, Concept Formation, Molecular Structure
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Merryn Cole; Thomas Ryan; Jennifer Wilhelm – Taboo: The Journal of Culture and Education, 2023
While scientific vocabulary is important, it can often become problematic for students. Sometimes, those words can become a barrier to participation or act as a gatekeeper to success in the science classroom. Under the Next Generation Science Standards, middle school students are expected to model Earth-Moon-Sun motions to explain Moon phases,…
Descriptors: Middle School Students, Science Instruction, Vocabulary, Astronomy
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Dewi D. Hariri; Hilda Mahmudah; Fayza S. Wibawa; Nia Kania – Pedagogical Research, 2025
Mathematics is an essential subject in schools, helping develop cognitive skills such as critical analysis, logical reasoning, and problem-solving. However, academic achievement in mathematics often declines, with some students having difficulty understanding mathematical ideas. Many factors influence mathematics achievement, including students'…
Descriptors: Correlation, Cognitive Style, Mathematics Achievement, Logical Thinking
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Yi-Chun Chen – Journal of Baltic Science Education, 2024
This study examined the impact of spatial ability on science achievement by distinguishing between domain-general and domain-specific spatial abilities, focusing on their relationship with the conceptual understanding of the apparent path of the sun. Additionally, the mediating effects of domain-specific spatial knowledge on the relationships…
Descriptors: Astronomy, Science Instruction, Spatial Ability, Science Achievement
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Michael R. Brudzinski; Thomas F. Shipley; Joy Ham – Journal of Geoscience Education, 2025
Recent studies have identified an incomplete student understanding of how elastic rebound causes earthquakes. We hypothesized that realistic imaging of spatial patterns in ground motions over the course of the earthquake cycle would improve student understanding. Incorporating spatial change information in the form of both motion vectors and…
Descriptors: Natural Disasters, Concept Formation, Geographic Information Systems, Undergraduate Students
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Chaumba, Jeff B.; Chaumba, Josphine – Journal of College Science Teaching, 2023
Spatial reasoning is one of the most challenging skills to master in the science, technology, engineering, and mathematics (STEM) fields. This article reports the results of a teaching intervention that involved using wooden blocks to enhance the development of spatial reasoning in an undergraduate-level introductory geology course. Wooden blocks…
Descriptors: Spatial Ability, Geology, College Science, Undergraduate Study
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Sirin Küçük-Avci; Özcan Erkan Akgün; Fatime Balkan-Kiyici – Education and Information Technologies, 2024
This study aimed to juxtapose the impacts of the Problem-Based Learning (PBL) methodology implemented within a three-dimensional (3D) virtual environment against PBL in a conventional face-to-face setting, along with a control group, on students' learning performance, conceptual comprehension, and spatial aptitude. The investigation concentrated…
Descriptors: Problem Based Learning, Educational Technology, Electronic Learning, In Person Learning
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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
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Deepti Prit Kaur; Archana Mantri – Education and Information Technologies, 2024
Student perception is an essential component in education; especially in engineering courses, which involve complex spatial processes, manipulation and interpretation of graphs, diagrams, and concepts. Incorporation of special training instructions improve spatial skills of learners, assisting them to acquire enhanced conceptual knowledge. Through…
Descriptors: Computer Simulation, Interaction, Visual Aids, Engineering Education
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Lucy Robertson; Jeana Kriewaldt; Natasha Ziebell – Geographical Education, 2023
Humans use space as a lens to navigate and make sense of the world, thus successfully applying spatial concepts is an important life skill. Spatial thinking and developing spatial concepts are core components of school Geography curricula. Teachers teach geographical skills systematically aligning to the curriculum; however, students can struggle…
Descriptors: Urban Areas, Parks, Geography Instruction, Design
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Vasfiye Karabiyik; Cahit Nuri; Basak Baglama; Meltem Haksiz – Pegem Journal of Education and Instruction, 2024
This study aims to compare the efficacy of simultaneous prompting presented via tablets and visual cards in the instruction of spatial concepts to students with intellectual disabilities. A mobile learning software was developed within portable devices by using simultaneous prompting method to teach spatial concepts. The adapted alternating…
Descriptors: Mild Intellectual Disability, Elementary School Students, Teaching Methods, Spatial Ability
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Nicholas O. Awuor; Cathy Weng; Isaac M. Matere; Jeng-Hu Chen; Dani Puspitasari; Khanh Nguyen Phuong Tran – Interactive Learning Environments, 2024
Engineering drawing is valuable in capturing geometric features, conveying engineering ideas, and creating a blueprint of the intended product. Engineering students usually perform orthographic projections, imagining a 3D situation and sketching its 2D representation. That requires imagination and mental visualization, determined by the learner's…
Descriptors: Foreign Countries, Vocational High Schools, High School Students, Engineering Education
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