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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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Claire E. Marino; Pavel Rjabtsenkov; Caitlin Sharp; Zonia Ali; Evelyn Pineda; Shreya Y. Bavdekar; Tanya Garg; Kendal Jordan; Mary Halvorsen; Carlos Aponte; Julie Blue; Xi Zhu; Benjamin Suarez-Jimenez – npj Science of Learning, 2025
Using spatial mapping processes to discriminate between threat and safety is crucial for survival. Little is known why some fail to discriminate during contextual conditioning. We used a virtual reality (VR) contextual conditioning paradigm to elucidate the effects of state and trait anxiety on contextual threat learning. Participants (n = 70)…
Descriptors: Computer Uses in Education, Computer Simulation, Educational Research, Spatial Ability
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Hodgson, Michael E.; Piovan, Silvia E. – Journal of Geography in Higher Education, 2022
An introduction in the use of small unmanned aerial systems for mapping is becoming a desirable course for undergraduate students. The controllability of drone aircraft and quality cameras, even in less expensive aerial models, offers opportunities for students to learn and collect their own imagery for a variety of applications. This opportunity…
Descriptors: Undergraduate Students, Map Skills, Aviation Technology, Computer Uses in Education
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Johnson, Elijah T.; McNeal, Karen S. – Journal of Geoscience Education, 2022
Spatial thinking skills are crucial for success in any of the STEM (science, technology, engineering, and mathematics) domains, and they are malleable. One approach to support the development of student spatial skills is through the use of innovative technologies, like the augmented reality (AR) sandbox, that can also effectively teach geoscience…
Descriptors: Undergraduate Students, Student Attitudes, Spatial Ability, Topography
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Baumann, Sarah; Arthurs, Leilani A. – Journal of Science Education and Technology, 2023
Topographic map-reading skills are critical for certain professions but can be difficult to learn. The purpose of this pilot study is to provide insight on the role augmented reality technology can play in the development of topographic map-reading skills. Using a situated cognition theoretical framework, this study tracks the development of…
Descriptors: Map Skills, Topography, Computer Simulation, Skill Development
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White, Holly; Forbes, Cory T. – Journal of Geography in Higher Education, 2023
Undergraduate students may possess underdeveloped knowledge about water systems, particularly groundwater. The use of models and modeling have been employed in undergraduate classrooms to support students' learning about water. However, effective modeling requires spatial thinking skills, which undergraduate students may also need to develop.…
Descriptors: Undergraduate Students, Water, Environmental Education, College Science
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Yupei Duan; Xinhao Xu; Hao He; Shangman Li; Yuanyuan Gu – Journal of Interactive Learning Research, 2025
This study examines "VirtualGeo", a Mixed Reality and Generative AI platform designed to enhance U.S. geography knowledge among international students. By integrating immersive technologies, VirtualGeo allows students to engage with spatial content within an interactive digital landscape. Using a mixed-methods approach, the study…
Descriptors: Computer Simulation, Artificial Intelligence, Geography Instruction, Educational Environment