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Bruno Bousquet; Martin Hachet; Vincent Casamayou; Erwan Normand; Jean-Paul Guillet; Lionel Canioni – Discover Education, 2024
HOBIT, which stands for "Hybrid Optical Bench for Innovative Teaching and learning" is an educational platform that leverages the combination of numerical simulation and physical manipulation to facilitate learning of complex phenomena and motivate users about wave optics in practical work. HOBIT operates in real time and is…
Descriptors: Physics, Scientific Concepts, Optics, Science Education
Jairo Sánchez; Mario Humberto Ramírez Diaz – European Journal of Physics Education, 2022
In this work a review of the research on augmented reality (AR) and its use of the learning of physics in the classroom is carried out. These two concepts of technology and learning are interrelated. Teachers have pre-teaching concepts and methods (conceptual changes), with the aim of having a deeper understanding of physical concepts that occur…
Descriptors: Physical Environment, Simulated Environment, Synthesis, Information Technology
Strzys, M. P.; Kapp, S.; Thees, M.; Kuhn, J.; Lukowicz, P.; Knierim, P.; Schmidt, A. – Physics Teacher, 2017
In the field of Virtual Reality (VR) and Augmented Reality (AR), technologies have made huge progress during the last years and also reached the field of education. The virtuality continuum, ranging from pure virtuality on one side to the real world on the other, has been successfully covered by the use of immersive technologies like head-mounted…
Descriptors: Science Instruction, Physics, Simulated Environment, Educational Technology
Tscholl, Michael; Lindgren, Robb – Science Education, 2016
This research investigates the social learning affordances of a room-sized, immersive, and interactive augmented reality simulation environment designed to support children's understanding of basic physics concepts in a science center. Conversations between 97 parent-child pairs were analyzed in relation to categories of talk through which…
Descriptors: Science Instruction, Simulated Environment, Scientific Concepts, Physics
Martin-Gonzalez, Anabel; Chi-Poot, Angel; Uc-Cetina, Victor – Innovations in Education and Teaching International, 2016
Augmented reality (AR) is one of the emerging technologies that has demonstrated to be an efficient technological tool to enhance learning techniques. In this paper, we describe the development and evaluation of an AR system for teaching Euclidean vectors in physics and mathematics. The goal of this pedagogical tool is to facilitate user's…
Descriptors: Teaching Methods, Mathematics Instruction, Physics, Science Instruction
Adams, Deanne M.; Pilegard, Celeste; Mayer, Richard E. – Journal of Educational Computing Research, 2016
Learning physics often requires overcoming common misconceptions based on naïve interpretations of observations in the everyday world. One proposed way to help learners build appropriate physics intuitions is to expose them to computer simulations in which motion is based on Newtonian principles. In addition, playing video games that require…
Descriptors: Video Games, Teaching Methods, Technology Uses in Education, Simulated Environment
Cai, Su; Chiang, Feng-Kuang; Sun, Yuchen; Lin, Chenglong; Lee, Joey J. – Interactive Learning Environments, 2017
Educators must address several challenges inherent to the instruction of scientific disciplines such as physics -- expensive or insufficient laboratory equipment, equipment error, difficulty in simulating certain experimental conditions. Augmented reality (AR) can be a promising approach to address these challenges. In this paper, we discuss the…
Descriptors: Computer Simulation, Simulated Environment, Science Instruction, Physics
Enyedy, Noel; Danish, Joshua A.; Delacruz, Girlie; Kumar, Melissa – International Journal of Computer-Supported Collaborative Learning, 2012
The Learning Physics through Play Project (LPP) engaged 6-8-year old students (n = 43) in a series of scientific investigations of Newtonian force and motion including a series of augmented reality activities. We outline the two design principles behind the LPP curriculum: 1) the use of socio-dramatic, embodied play in the form of participatory…
Descriptors: Play, Test Results, Investigations, Physics
Han, Insook – Journal of Educational Computing Research, 2013
The purpose of this study is to provide a new perspective for evaluating physicality in learning with a preliminary experimental study based on embodied cognition. While there are studies showing no superiority of physical manipulation over virtual manipulation, there are also studies that seem to advocate adding more physicality in simulations…
Descriptors: Teaching Methods, Graduate Students, Simulated Environment, Hands on Science
Chen, Sufen; Lo, Hao-Chang; Lin, Jing-Wen; Liang, Jyh-Chong; Chang, Hsin-Yi; Hwang, Fu-Kwun; Chiou, Guo-Li; Wu, Ying-Tien; Lee, Silvia Wen-Yu; Wu, Hsin-Kai; Wang, Chia-Yu; Tsai, Chin-Chung – Physical Review Special Topics - Physics Education Research, 2012
Technology has been widely involved in science research. Researchers are now applying it to science education in an attempt to bring students' science activities closer to authentic science activities. The present study synthesizes the research to discuss the development of technology-enhanced laboratories and how technology may contribute to…
Descriptors: Physics, Educational Change, Science Instruction, Laboratories
Civelek, Turhan; Ucar, Erdem; Ustunel, Hakan; Aydin, Mehmet Kemal – EURASIA Journal of Mathematics, Science & Technology Education, 2014
The current research aims to explore the effects of a haptic augmented simulation on students' achievement and their attitudes towards Physics in an immersive virtual reality environment (VRE). A quasi-experimental post-test design was employed utilizing experiment and control groups. The participants were 215 students from a K-12 school in…
Descriptors: Physics, Science Achievement, Student Attitudes, Experimental Groups
Singh, Gurmukh – Journal of Educational Technology Systems, 2012
The present article is primarily targeted for the advanced college/university undergraduate students of chemistry/physics education, computational physics/chemistry, and computer science. The most recent software system such as MS Visual Studio .NET version 2010 is employed to perform computer simulations for modeling Bohr's quantum theory of…
Descriptors: Undergraduate Students, Quantum Mechanics, Physics, Chemistry
Hannes Kaufmann; Bernd Meyer – Themes in Science and Technology Education, 2009
We present an immersive virtual reality (VR) application for physics education. It utilizes a recent physics engine developed for the PC gaming market to simulate physical experiments correctly and accurately. Students are enabled to actively build their own experiments and study them. A variety of tools are provided to analyze forces, mass, paths…
Descriptors: Physics, Science Instruction, Simulated Environment, Computer Simulation
Ingerman, Ake; Linder, Cedric; Marshall, Delia – Instructional Science: An International Journal of the Learning Sciences, 2009
This article attempts to describe students' process of learning physics using the notion of experiencing variation as the basic mechanism for learning, and thus explores what variation, with respect to a particular object of learning, that students experience in their process of constituting understanding. Theoretically, the analysis relies on…
Descriptors: Learning Theories, Computer Simulation, Physics, Anatomy
Urban-Woldron, Hildegard – Journal of Computers in Mathematics and Science Teaching, 2009
Appropriate educational technologies have the potential to make physics' concepts more accessible through visualization, modeling and multiple representations. Students are engaged in more powerful scientific activities and they are able to perform investigations that would not be possible without the use of technology. This paper presents…
Descriptors: Physics, Computer Software, Educational Technology, Internet
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