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Moran P. Lee; Abubakir Siedahmed; Neil T. Heffernan – Grantee Submission, 2024
Contextual multi-armed bandits have previously been used to personalize student support messages given to learners by supplying a model with relevant context about the user, problem, and available student supports. In this work, we propose using careful feature selection with relevant domain knowledge to improve the quality of student support…
Descriptors: Artificial Intelligence, Educational Technology, Technology Uses in Education, Reinforcement
Candace Walkington; Mitchell J. Nathan; Wen Huang; Jonathan Hunnicutt; Julianna Washington – Grantee Submission, 2023
The emergence of immersive digital technologies, such as shared Augmented Reality (shAR), Virtual Reality (VR) and Motion Capture (MC) offers promising new opportunities to advance our understanding of human cognition and design innovative technology-enhanced learning experiences. Theoretical frameworks for embodied and extended cognition can…
Descriptors: Computer Simulation, Educational Technology, Technology Uses in Education, Motion
Candace Walkington; Mitchell J. Nathan; Jonathan Hunnicutt; Julianna Washington; Monique Zhou – Grantee Submission, 2024
Dynamic geometry software (DGS) has long been studied in mathematics education as a way for students to explore and interact with geometric objects and figures. Recent advances in Augmented Reality (AR) technologies that allow dynamic three-dimensional mathematical objects to appear in students' environment as holograms have changed the nature of…
Descriptors: Computer Software, Geometry, Computer Simulation, Educational Technology
Julianna Washington; Candace Walkington – Grantee Submission, 2024
This article explores the use of Extended Reality (XR) technologies, such as Augmented Reality (AR) and motion capture, in mathematics instruction, specifically focusing on geometry learning. Our research highlights the challenges students face in learning geometry due to its abstract nature and the potential of XR technologies to create…
Descriptors: Mathematics Instruction, Geometry, Physical Environment, Simulated Environment
Jonathan Hunnicutt; Julianna Washington; Candace Walkington – Grantee Submission, 2024
Augmented Reality (AR) technologies allow for holograms to be layered over the real-world, "augmenting" human vision by overlaying illustrations onto 3D space. Here we explore the question: What affordances does AR in a collaborative environment have for the future of mathematics education in uncertain times? We conducted a study where…
Descriptors: High School Students, Mathematics Instruction, Geometry, Technology Uses in Education
Julianna Washington; Candace Walkington – Grantee Submission, 2024
Recent developments in Augmented Reality (AR) headset technologies have allowed for users to see and manipulate the same 3D hologram at the same time, allowing for collaborative, embodied interactions using gestures and actions. Three-dimensional geometry has traditionally been taught largely through 2D projections of 3D figures on pages or…
Descriptors: Mathematics Instruction, Mathematical Logic, Nonverbal Communication, Computer Simulation
Candace Walkington; Mitchell J. Nathan; Julianna Washington; Jonathan Hunnicutt; Taylor Darwin; LeaAnne Daughrity; Kelsey Schenck – Grantee Submission, 2025
Augmented Reality (AR) technologies allow for holograms to be layered over the real-world, "augmenting" human vision by adding technical information or illustrations onto 3D space. Although AR-based applications are showing positive effects in many systematic reviews and meta-analyses, well-designed, rigorous studies with strong control…
Descriptors: Geometry, Mathematics Education, Computer Simulation, Tablet Computers
Candace Walkington; Julianna Washington; Jonathan Hunnicutt; Mitchell J. Nathan – Grantee Submission, 2025
Augmented reality (AR), where digital holograms are layered over the real world, is rapidly being applied to different educational domains, including mathematics education. However, little is known about how AR can be effectively designed for collaborative use. There are both practical and theory-based reasons to set up collaboration in AR in…
Descriptors: Mathematics Instruction, Problem Solving, Computer Simulation, Technology Uses in Education
McNamara, Danielle S. – Grantee Submission, 2021
An overarching motivation driving my research has been to further our theoretical understanding of how readers successfully comprehend challenging text. This article describes the theoretical origins of this research program and my quest to understand comprehension processes through the use of technology. Coh-Metrix was developed to measure, and…
Descriptors: Educational Research, Reading Comprehension, Difficulty Level, Educational Technology
Piety, Philip J. – Grantee Submission, 2021
The paper discusses the use of "Productive Disciplinary Engagement" (PDE) for a curricular project that features a technology-based alternate reality game (ARG) with the objective of teaching undergraduate students about the collaborative nature of STEM careers. Much of the PDE research uses PDE as either a design-principle or as an…
Descriptors: Educational Technology, Technology Uses in Education, Undergraduate Students, Educational Games
LeaAnne Daughrity; Candace Walkington; Max Sherard – Grantee Submission, 2025
This study investigates the use of GeoGebra, a Dynamic Geometry Software (DGS) for math learning in Virtual Reality (VR) using head-mounted displays. We conducted a study with n = 20 middle school students receiving a mathematics tutoring intervention over time in a VR environment. Using theories of embodied cognition and playful mathematics, this…
Descriptors: Mathematics Education, Computer Software, Educational Technology, Computer Simulation
Julie Cohen; Vivian C. Wong; Anandita Krishnamachari; Steffen Erickson – Grantee Submission, 2023
Many novice teachers learn to teach "on the job," leading to burnout and attrition among teachers and negative outcomes for students in the long term. Preservice teacher education is tasked with optimizing teacher readiness, but there is a lack of causal evidence regarding effective ways to prepare new teachers. In this paper, we use a…
Descriptors: Preservice Teacher Education, Preservice Teachers, Teacher Education Programs, Coaching (Performance)
Walkington, Candace; Gravell, Jamie; Huang, Wen – Grantee Submission, 2021
Extended Reality (XR) experiences for mathematics teachers can allow them to understand both pedagogy and the mathematics itself in new ways. In this study, we explore a virtual reality (VR) simulation for learning about geometric shapes where teachers could engage in joint, shared manipulation of holograms in three dimensions. We examine what…
Descriptors: Computer Simulation, Distance Education, Mathematics Teachers, Geometry
Candace Walkington; Mitchell J. Nathan; Jonathan Hunnicutt; Julianna Washington; Kasi Holcomb-Webb – Grantee Submission, 2022
Novel forms of technology, like shared Augmented Reality (AR) holograms, can spur the discovery of new hypotheses about cognition and how it is embodied and distributed. These holograms have affordances for exploration, collaboration, and learning that have never been seen before. In the present study, we examine the multimodal ways that high…
Descriptors: Geometry, Mathematics Instruction, Schemata (Cognition), Teaching Methods
Julianna Washington; Taylor Darwin; Theodora Beauchamp; Candace Walkington – Grantee Submission, 2024
Prisms VR, a secondary math learning application, allows for users to see, manipulate, and engage with mathematical concepts in an embodied way in Virtual Reality (VR) environment. We examine cases in which mathematics teachers and middle school students worked through Prisms and reflected upon their experiences. Findings indicate that VR…
Descriptors: Mathematics Instruction, Teacher Attitudes, Computer Simulation, Algebra
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