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Sadra Jafari Ghalehkohneh; Jared Arnell; Kaden Hart; Hillary Swanson; Boyd Edwards; John Edwards – Physical Review Physics Education Research, 2025
Digital simulations are powerful instructional tools for physics education. They are often designed to visualize canonical physical phenomena, with adjustable parameters for influencing the system. While this is sufficient for developing conceptual and qualitative intuitions, it does little to help physics students build connections between…
Descriptors: Physics, Computer Simulation, Science Education, Equations (Mathematics)
Rebecca L. Hite; Gina M. Childers; Jill Hoffman – International Journal of Science Education, Part B: Communication and Public Engagement, 2025
The transformation of natural history and science museums from receptacles (temples) to facilitators (forums) of knowledge fosters discourse around issues relating to science and society, known as social scientific issues (SSI). To assist guests with enhanced object-based learning, extended reality (XR) technologies are thought to leverage the…
Descriptors: Social Theories, Science and Society, Science Education, Museums
A. Lynn Stephens – Journal of Research in Science Teaching, 2024
It is widely recognized that we need to prepare students to think with data. This study investigates student interactions with digital data graphs and seeks to identify what might prompt them to shift toward using their graphs as thinking tools in the authentic activity of doing science. Drawing from video screencast data of three small groups…
Descriptors: Graphs, Data, Interaction, Electronic Learning
Tu, Xintian; Danish, Joshua; Humburg, Megan; Zhou, Mengxi; Mathayas, Nitasha; Enyedy, Noel; Jen, Tessaly – International Journal of Computer-Supported Collaborative Learning, 2023
While there is increased interest in using movement and embodiment to support learning due to the rise in theories of embodied cognition and learning, additional work needs to be done to explore how we can make sense of students collectively developing their understanding within a mixed-reality environment. In this paper, we explore embodied…
Descriptors: Science Education, Computer Simulation, Nonverbal Communication, Concept Formation
Priyanka Parekh; Joseph L. Polman; Shaun Kane; R. Benjamin Shapiro – Journal of the Learning Sciences, 2023
Background: Natureculture (Fuentes, 2010; Haraway, 2003) constructs offer a powerful framework for science education to explore learners' interactions with and understanding of the natural world. Technologies such as Augmented Reality (AR) designed to reveal pets' sensory worlds and companionship with pets can facilitate learners' harmonious…
Descriptors: Science Education, Caring, Inquiry, Summer Programs
Marc A. Zambri; John R. De Backere – Journal of Chemical Education, 2024
Molecular symmetry and orbitals are two important chemical concepts which can be difficult for students to visualize in three dimensions; as such, instructors have traditionally adopted a variety of approaches to teach them including the use of physical models and digital renderings/resources. This paper describes a new mobile device application…
Descriptors: Molecular Structure, Science Education, Chemistry, Handheld Devices
Gallagher, Shaun – Educational Theory, 2018
On an enactivist conception of cognition, the unit of explanation is not just the brain, not just the body, and not just the environment, but the body--brain--environment understood as a dynamically coupled structure or gestalt. On this view, referencing Viktor von Weizsäcker's metaphor of the gestalt circle (Gestaltkreis), the brain is not in the…
Descriptors: Learning Processes, Brain, Human Body, Interaction
O'Connor, Eileen A. – Journal of Educational Technology Systems, 2018
Within an online science teacher education course, an important although secondary goal was to prepare students for a high-stakes licensure portfolio at some time after course completion. Thus, various communication technologies including synchronous virtual reality meetings and asynchronous student self-created video commentaries were interwoven…
Descriptors: Computer Simulation, Virtual Classrooms, Online Courses, Science Education
Lee, Carrie W.; Lee, Tammy D.; Castles, Ricky; Dickerson, Daniel; Fales, Holly; Wilson, Christine M. – Journal of Interdisciplinary Teacher Leadership, 2018
This study investigated the influence of immersive classroom simulation activities on the development of elementary pre-service teachers in two separate mathematics and science education courses that simultaneously focus on pedagogy and content. Participants submitted written personal reflections about their teaching experiences using the…
Descriptors: Preservice Teachers, Elementary School Teachers, Science Education, Mathematics Education
Chang, Hsin-Yi – Interactive Learning Environments, 2017
Two investigations were conducted in this study. In the first experiment, the effects of two types of interactivity with a computer simulation were compared: experimentation versus observation interactivity. Experimentation interactivity allows students to use simulations to conduct virtual experiments, whereas observation interactivity allows…
Descriptors: Computer Simulation, Interaction, Scaffolding (Teaching Technique), Experiments
Krange, Ingeborg; Arnseth, Hans Christian – Cultural Studies of Science Education, 2012
The aim of this study is to scrutinize the characteristics of conceptual meaning making when students engage with virtual worlds in combination with a spreadsheet with the aim to develop graphs. We study how these tools and the representations they contain or enable students to construct serve to influence their understanding of energy resource…
Descriptors: Science Education, Scientific Concepts, Virtual Classrooms, Secondary School Science
Johnson-Glenberg, Mina C.; Birchfield, David A.; Tolentino, Lisa; Koziupa, Tatyana – Journal of Educational Psychology, 2014
These 2 studies investigate the extent to which an Embodied Mixed Reality Learning Environment (EMRELE) can enhance science learning compared to regular classroom instruction. Mixed reality means that physical tangible and digital components were present. The content for the EMRELE required that students map abstract concepts and relations onto…
Descriptors: Cooperative Learning, Human Body, Science Education, Science Instruction
Hsiao, Hsien-Sheng; Chang, Cheng-Sian; Lin, Chien-Yu; Wang, Yau-Zng – Interactive Learning Environments, 2016
This study focused on how to enhance the interactivity and usefulness of augmented reality (AR) by integrating manipulative interactive tools with a real-world environment. A manipulative AR (MAR) system, which included 3D interactive models and manipulative aids, was designed and developed to teach the unit "Understanding Weather" in a…
Descriptors: Foreign Countries, Weather, Elementary School Science, Science Education
Quellmalz, Edys S.; Davenport, Jodi L.; Timms, Michael J.; DeBoer, George E.; Jordan, Kevin A.; Huang, Chun-Wei; Buckley, Barbara C. – Journal of Educational Psychology, 2013
How can assessments measure complex science learning? Although traditional, multiple-choice items can effectively measure declarative knowledge such as scientific facts or definitions, they are considered less well suited for providing evidence of science inquiry practices such as making observations or designing and conducting investigations.…
Descriptors: Science Education, Educational Assessment, Psychometrics, Science Tests
Granshaw, Frank Douglas – ProQuest LLC, 2011
Virtual reality (VR) is increasingly used to acquaint geoscience novices with some of the observation, data gathering, and problem solving done in actual field situations by geoscientists. VR environments in a variety of forms are used to prepare students for doing geologic fieldwork, as well as to provide proxies for such experience when…
Descriptors: Expertise, Field Instruction, Field Trips, Middle Schools
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