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Mukarramah Mustari; Hartono; Sunyoto Eko Nugroho; Sugianto – Journal of Educators Online, 2025
This paper explores the development and evaluation of a MOOCs-based virtual physics measurement laboratory module designed to overcome common barriers in physics education, such as limited physical lab access, high costs, and safety concerns. Utilizing the Borg and Gall Research and Development model, this module integrates structured layouts,…
Descriptors: Physics, MOOCs, Science Education, Computer Simulation
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)
Kathryn M. Abrams; Donald D. McMahon; Jonah Firestone; Holly Whittenburg; Lauren Bruno – Journal of Inclusive Postsecondary Education, 2024
The purpose of this study was to examine the use of virtual reality, an emerging technology, to teach college-age students with intellectual disability and autism to acquire science vocabulary words relating to human anatomy. One student with autism and two students with an intellectual disability participated in a multiple baseline across skills…
Descriptors: Educational Technology, Students with Disabilities, Intellectual Disability, Autism Spectrum Disorders
Atalay, Nurhan; Mutlu, Mehmet – Elementary School Forum (Mimbar Sekolah Dasar), 2023
Today, teaching strategies and methods changing with technology require a radical transformation in the teaching of science laws, which form the basis of science subjects. In this study, computational thinking skills, which will allow students to use information and communication technologies in today's conditions and the effect of these skills on…
Descriptors: Computer Simulation, Science Education, Knowledge Level, Scientific Concepts
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
Federico De Lorenzis; Alessandro Visconti; Simone Restivo; Francesca Mazzini; Serena Esposito; Silvia Fraterrigo Garofalo; Luca Marmo; Debora Fino; Fabrizio Lamberti – Smart Learning Environments, 2024
The use of Virtual Reality (VR) in education is getting more and more common, especially when hands-on learning experiences have to be delivered. With VR it becomes possible, e.g., to simulate dangerous or costly procedures that could hardly be implemented in real settings. However, engaging large classes in immersive laboratory activities may be…
Descriptors: Computer Simulation, Cooperative Learning, Chemistry, Science Education
Ruben Aleman; Karen Vaughan; Kyle Summerfield; Janel Seeley – Natural Sciences Education, 2023
As the use of online education increases, technologies to improve the quality of learning have been improving alongside it. One method of information dissemination is virtual learning environments (VLE), in which educators can tailor digital lessons according to their subject and the needs of their students. For soil science, and field-based…
Descriptors: Computer Simulation, Simulated Environment, Electronic Learning, Educational Environment
Lamb, Richard L.; Etopio, Elisabeth – Journal of Science Education and Technology, 2019
This study investigates the role that textbooks, virtual reality (VR), and mixed approaches (i.e., text and VR) can play in the development of the two writing types, summary and argument writing. This study uses hemodynamics as a proxy for learning. Differences in hemodynamic responses during writing tasks were measured across four different…
Descriptors: Computer Simulation, Writing (Composition), Neurosciences, Science Education
Saunders, Colin P.; Bennett, Jennifer A. – Educational Media and Technology Yearbook, 2019
This chapter provides an overview on how the use of Virtual Reality apps and related activities enhanced student learning in conjunction with a low-tech, team-based, active learning assessment. Our approach for integrating emerging immersive technology in a Cell Biology class, a first of its kind at Otterbein University in Westerville, Ohio, was…
Descriptors: Computer Simulation, Computer Oriented Programs, Active Learning, Educational Technology
Salar, Riza; Arici, Faruk; Caliklar, Seyma; Yilmaz, Rabia M. – Journal of Science Education and Technology, 2020
The aim of this study is to investigate the augmented reality (AR) immersion experiences of university students studying in science education. The relationship between interest, usability, emotional investment, focus of attention, presence and flow was examined for university students studying in the science education department who used AR…
Descriptors: College Students, Science Education, Usability, Correlation
Al-Moameri, Harith H.; Jaf, Luay A.; Suppes, Galen J. – Journal of Chemical Education, 2018
Traditional engineering textbooks are substantially limited by approaches relying on analytical solutions where most of the applications are described by differential equations without simple analytical solutions. An alternative is to design a textbook around computer-program-based simulations, where the simulations progressively evolve through…
Descriptors: Plastics, Textbooks, Chemistry, Engineering
Heinimäki, Olli-Pekka; Volet, Simone; Vauras, Marja – Frontline Learning Research, 2020
Prior research on the significance of roles in collaborative learning has explored their impact when they are pre-assigned to group members. In this article, it is argued that focusing on assigned roles downplays the spontaneous, emergent, and interactional nature of roles in small task groups and that this focus has limited the development of…
Descriptors: Cooperative Learning, Science Education, Role, Group Dynamics
Makransky, Guido; Lilleholt, Lau – Educational Technology Research and Development, 2018
Virtual reality (VR) is projected to play an important role in education by increasing student engagement and motivation. However, little is known about the impact and utility of immersive VR for administering e-learning tools, or the underlying mechanisms that impact learners' emotional processes while learning. This paper explores whether…
Descriptors: Computer Simulation, Computer Uses in Education, Psychological Patterns, Emotional Response
Luo, Wei; Smith, Thomas J.; Whalley, Kyle; Darling, Andrew; Ormand, Carol; Hung, Wei-Chen; Chiang, Jui-Ling; Pelletier, Jon; Duffin, Kirk – British Journal of Educational Technology, 2019
This paper presents results from a randomized experimental design replicated over four semesters that compared students' performance in understanding landform evolution processes as measured by the pretest to posttest score growth between two treatment methods: an online interactive simulation tool and a paper-based exercise. While both methods…
Descriptors: Earth Science, Models, Science Tests, Computer Simulation
Bumbacher, Engin; Salehi, Shima; Wieman, Carl; Blikstein, Paulo – Journal of Science Education and Technology, 2018
Manipulative environments play a fundamental role in inquiry-based science learning, yet how they impact learning is not fully understood. In a series of two studies, we develop the argument that manipulative environments (MEs) influence the kind of inquiry behaviors students engage in, and that this influence realizes through the affordances of…
Descriptors: Manipulative Materials, Active Learning, Inquiry, Science Education