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Showing 1 to 15 of 51 results Save | Export
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Alexis Topete; Chuanxiuyue He; Mary Hegarty – Cognitive Research: Principles and Implications, 2025
People navigate in various types of spaces, including indoor and outdoor environments. These differ in availability of navigational cues, such as distal landmarks, clear boundaries, and regular grid structures. Does learning the layout of different types of environments rely on the same or diverse cognitive abilities? Do separate measures of…
Descriptors: Navigation, Cognitive Ability, Adjustment (to Environment), Adults
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Tatli, Zeynep; Çelenk, Göksel; Altinisik, Derya – Education and Information Technologies, 2023
In this study, it is aimed to examine and analyze virtual museums in accordance with design and perception of social presence. In this context, virtual museums that offer free access internationally were identified and accepted as documents. Document analysis, one of the qualitative research methods, was used in the study. Each of the virtual…
Descriptors: Museums, Computer Simulation, Art, Design
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Muffato, Veronica; Miola, Laura; Pellegrini, Marilina; Pazzaglia, Francesca; Meneghetti, Chiara – Cognitive Research: Principles and Implications, 2023
When learning an environment from virtual navigation people gain knowledge about landmarks, their locations, and the paths that connect them. The present study newly aimed to investigate all these domains of knowledge and how cognitive factors such as visuospatial abilities and wayfinding inclinations might support virtual passive navigation. A…
Descriptors: Navigation, Computer Simulation, Environment, Spatial Ability
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Antony, James W.; Stiver, Caroline A.; Graves, Kathryn N.; Osborne, Jarryd; Turk-Browne, Nicholas B.; Bennion, Kelly A. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2022
Theories of memory consolidation suggest that initially rich, vivid memories become more gist-like over time. However, it is unclear whether gist-like representations reflect a loss of detail through degradation or the blending of experiences into statistical averages, and whether the strength of these representations increases, decreases, or…
Descriptors: Memory, Behavioral Science Research, Undergraduate Students, Computer Simulation
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Aylward, Katie; Dahlman, Joakim; Nordby, Kjetil; Lundh, Monica – Education Sciences, 2021
Maritime user interfaces for ships' bridges are highly dependent on the context in which they are used, and rich maritime context is difficult to recreate in the early stages of user-centered design processes. Operations in Arctic waters where crews are faced with extreme environmental conditions, technology limitations and a lack of accurate…
Descriptors: Computer Simulation, Vignettes, Design, Concept Formation
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Onime, Clement; Uhomoibhi, James; Wang, Hui; Santachiara, Mattia – International Journal of Information and Learning Technology, 2021
Purpose: This paper presents a reclassification of markers for mixed reality environments that is also applicable to the use of markers in robot navigation systems and 3D modelling. In the case of Augmented Reality (AR) mixed reality environments, markers are used to integrate computer generated (virtual) objects into a predominantly real world,…
Descriptors: Simulated Environment, Computer Simulation, Classification, Robotics
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Jia Liu; Avinash Kumar Singh; Anna Wunderlich; Klaus Gramann; Chin-Teng Lin – npj Science of Learning, 2022
Although beacon- and map-based spatial strategies are the default strategies for navigation activities, today's navigational aids mostly follow a beacon-based design where one is provided with turn-by-turn instructions. Recent research, however, shows that our reliance on these navigational aids is causing a decline in our spatial skills. We are…
Descriptors: Navigation, Physical Environment, Simulated Environment, Computer Simulation
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Negen, James; Sandri, Angela; Lee, Sang Ah; Nardini, Marko – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2020
Large walls and other typical boundaries strongly influence neural activity related to navigation and the representations of spatial layouts. They are also major aids to reliable navigation behavior in young children and nonhuman animals. Is this because they are physical boundaries (barriers to movement), or because they present certain visual…
Descriptors: Spatial Ability, Memory, Navigation, Computer Simulation
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Nguyen, Kim V.; Tansan, Merve; Newcombe, Nora S. – Journal of Cognition and Development, 2023
Research on spatial navigation is essential to understanding how mobile species adapt to their environments. Such research increasingly uses virtual environments (VEs) because, although VE has drawbacks, it allows for standardization of procedures, precision in measuring behaviors, ease in introducing variation, and cross-investigator…
Descriptors: Computer Simulation, Spatial Ability, Navigation, Research Methodology
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Joseph M. Furner – International Journal of Education in Mathematics, Science and Technology, 2024
This paper will provide several examples of science and mathematics integration: navigation/map-reading, ecology/ecosystems/population growth, and chemistry/molecular structures. This paper underscores integrating STEM subjects with problem-based learning with technology such as video/computer simulations/programming/coding and the dynamic free…
Descriptors: Problem Based Learning, Mathematics Instruction, Educational Technology, Geometry
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Margherita Malanchini; Kaili Rimfeld; Nicholas G. Shakeshaft; Andrew McMillan; Kerry L. Schofield; Maja Rodic; Valerio Rossi; Yulia Kovas; Philip S. Dale; Elliot M. Tucker-Drob; Robert Plomin – npj Science of Learning, 2020
Performance in everyday spatial orientation tasks (e.g., map reading and navigation) has been considered functionally separate from performance on more abstract object-based spatial abilities (e.g., mental rotation and visualization). However, few studies have examined the link between spatial orientation and object-based spatial skills, and even…
Descriptors: Intelligence, Spatial Ability, Twins, Task Analysis
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Craig, Emory; Georgieva, Maya – Current Issues in Education, 2020
Spatial computing is the fourth paradigm of the digital revolution and could profoundly transform learning. It is the convergence of several technological developments, including Augmented and Virtual Reality (XR), Artificial Intelligence, haptic feedback, motion-capture, and situational awareness engines. This article explores how the shift from…
Descriptors: Computer Simulation, Simulated Environment, Artificial Intelligence, Assistive Technology
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Lei, Xuehui; Mou, Weimin; Zhang, Lei – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2020
This study investigated the extent to which people can develop a global representation of local environments through across-boundary navigation. Participants learned objects' locations in two misaligned rectangular rooms in an immersive virtual environment. After learning, they adopted a local view in one room and judged directions of objects…
Descriptors: Spatial Ability, Computer Simulation, Navigation, Learning Processes
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Sellberg, Charlott; Lundin, Mona; Säljö, Roger – Classroom Discourse, 2022
The background of this article is an interest in analysing how assessment of professional skills is conducted in higher education contexts, drawing on video data from a course on maritime navigation. The empirical study focuses on a) how students working in a bridge simulator are able to display their knowledge about how to calculate the relation…
Descriptors: Higher Education, Video Technology, Marine Education, Navigation
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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
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