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Mélanie Gallot; Franck di Rienzo; Marion Binay; Christian Collet; Nady Hoyek – Anatomical Sciences Education, 2024
Human anatomy requires understanding spatial relationships among anatomical structures and is often perceived as difficult to learn by students. To overcome this concern, several digital tools exist with some strengths and limitations among which the lack of interactivity especially for complex functional anatomy learning. In this way, a new…
Descriptors: Anatomy, Technology Uses in Education, Interaction, Kinesiology
Xi Xiang; Di Xi – British Journal of Educational Technology, 2025
Spatial thinking is essential for nurturing spatially literate graduates in tertiary education. However, there is limited research on individual differences in cognitive processes and their impact on spatial problem solving in disciplinary contexts. This study aimed to investigate cognitive processes involved in spatial thinking in geography…
Descriptors: College Students, Cognitive Processes, Spatial Ability, Geography Instruction
Kathy A. Mills; Alinta Brown – Learning, Media and Technology, 2025
Extended reality technologies -- mixed, augmented, and virtual reality, and future-related technologies -- are rapidly expanding in many fields, with underexplored potentials for multimodal composition in digital media environments. This research generates new knowledge about the novel wearable technology -- smart glasses -- to support elementary…
Descriptors: Elementary School Students, Technology Uses in Education, Geometric Concepts, Spatial Ability
Lea Dorel – International Journal for Technology in Mathematics Education, 2023
Spatial geometry is one of the multi-purpose fields of mathematics and is tightly linked to the development of mathematical and intellectual thinking. Spatial thinking is necessary in various areas of life such as civil engineering, mechanical engineering, interior design, graphic design and other. At present, teaching spatial geometry is mainly…
Descriptors: Visual Perception, Spatial Ability, Geometry, Mathematics Instruction
Akkus, Ilyas; Arslan, Pelin Yüksel – Journal of Learning and Teaching in Digital Age, 2022
The purpose of this study is to investigate the effects of Augmented Reality (AR) intervention on students' spatial skills and academic achievement. The study was conducted in a freshman technical drawing course at Mechanical Engineering Department. An exploratory quasi-experimental method was used for the study. The study was conducted in two…
Descriptors: Computer Simulation, Drafting, Engineering Education, Spatial Ability
Tang Minh Dung; Le Thai Bao Thien Trung; Nguyen Thi Nga – Journal of Pedagogical Research, 2025
This study investigates whether Vietnamese students face specific challenges when visualizing skew versus intersecting lines and whether using the anaglyph feature of GeoGebra can help overcome these difficulties. Employing a design-based research approach over four phases with 12th-grade students, the study involved tasks in traditional…
Descriptors: Mathematics Instruction, Computer Software, Grade 12, High School Seniors
Nor Farhah Saidin; Noor Dayana Abd Halim; Noraffandy Yahaya; Nurul Nadwa Zulkifli – Knowledge Management & E-Learning, 2024
Augmented Reality (AR) has emerged in our educational paradigm as a new tool to accelerate change in the teaching and learning process. This technology can improve students' visualisation skills, which helps them understand abstract concepts, especially in Chemistry. Furthermore, visualisation skills help improve students' critical thinking. This…
Descriptors: Critical Thinking, Visualization, Simulated Environment, Computer Simulation
Ajay Shankar Tiwari; Kaushal Kumar Bhagat – Australasian Journal of Educational Technology, 2024
This study examined the impact of augmented reality (AR) on engineering education, focusing on spatial visualisation skills and cognitive load in an engineering drawing course. The research is based on cognitive load theory and spatial visualisation frameworks. It compares three AR methods--marker-based (MBAR), markerless (MLAR) and Web-based…
Descriptors: Computer Simulation, Engineering Education, Drafting, Visualization
Elena N. Laricheva; Armen Ilikchyan – Journal of Chemical Education, 2023
Studies have demonstrated that visual-spatial skills correlate with student performance and success in science, technology, engineering, and math (STEM). The ability to reason with spatial information is essential for conceptual subjects like chemistry, a deep understanding of which requires dealing with the invisible world of atoms and molecules…
Descriptors: Visual Perception, Spatial Ability, Low Achievement, Chemistry
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
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
Sumardani, Dadan; Sipayung, Elly Ramadhani; Chiu, Po-Sheng – Innovations in Education and Teaching International, 2023
The crystal structure is an important topic in the STEM field and the basic knowledge to determine the material structure and its behaviour. There is a wealth of literature on three-dimensional (3D) and augmented reality (AR) technology to represent 3D crystal environments to provide a new way of visualisation and to foster spatial skills. This…
Descriptors: Spatial Ability, Thinking Skills, Computer Simulation, Physical Sciences
Kristin Herman; Miguel Ramlatchan; Ross Herman – TechTrends: Linking Research and Practice to Improve Learning, 2024
Over the past decade, geospatial technologies have emerged as a tool for developing spatial reasoning and cognitive processes. While the foundational Learning to Think Spatially report from the National Research Center (2006) launched research into the use of geospatial technologies in isolation, more recently, cloud-based simulation software have…
Descriptors: Geographic Information Systems, Spatial Ability, Computer Simulation, Instructional Design
Yi Zhang; Yun Pan; Ziyan Wu; Zhongling Pi; Jiumin Yang – Education and Information Technologies, 2024
Videos are pivotal tools in pre-service teacher training. First-person, third-person, and 360-degree perspectives are commonly used types and the optimal type remains undetermined. In our study involving pre-service teachers (PSTs), we evaluated the efficacy of 360-degree videos against the first-person and third-person perspective videos…
Descriptors: Cognitive Processes, Difficulty Level, Video Technology, Preservice Teachers
Xin Gong; Weiqi Xu; Shufan Yu; Jingjing Ma; Ailing Qiao – British Journal of Educational Technology, 2025
Tangible programming tools have become a mainstream teaching aid in gamification programming learning (GPL) due to their interactivity and ability to enhance novice learners' computational thinking and spatial reasoning skills. However, comparing the relative efficacy of different programming tools that simultaneously support these skills was not…
Descriptors: Computation, Thinking Skills, Spatial Ability, Gamification