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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
Xu, Xiaoqian; Allen, William; Miao, Ziwei; Yao, Jiang; Sha, Lei; Chen, Yuhua – Biochemistry and Molecular Biology Education, 2018
Biochemistry and molecular techniques are used for the development of the scientific practice of students. To improve both the teaching and learning quality and promote the students' motivation, this article outlines an interactive "Virtual Simulation and Actual Operation Combined" approach by using a tailored virtual practice-learning…
Descriptors: Biochemistry, Molecular Biology, Science Process Skills, Science Instruction
Gan, Hong Seng; Tee, Nicholas Yee Kwang; Bin Mamtaz, Mohammad Raziun; Xiao, Kevin; Cheong, Brandon Huey-Ping; Liew, Oi Wah; Ng, Tuck Wah – Biochemistry and Molecular Biology Education, 2018
The appreciation and understanding of gas generation through processes is vital in biochemical education. In this work, an augmented reality tool is reported to depict the redox reaction between hydrogen peroxide and sodium hypochlorite solutions, two ubiquitous oxidizing agents, to create oxygen, a combustible gas. As it operates out of…
Descriptors: Science Instruction, Teaching Methods, Simulated Environment, Scientific Concepts
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
Winkelmann, Kurt; Keeney-Kennicutt, Wendy; Fowler, Debra; Macik, Maria – Journal of Chemical Education, 2017
Virtual worlds are a potential medium for teaching college-level chemistry laboratory courses. To determine the feasibility of conducting chemistry experiments in such an environment, undergraduate students performed two experiments in the immersive virtual world of Second Life (SL) as part of their regular General Chemistry 2 laboratory course.…
Descriptors: Science Instruction, Chemistry, Science Laboratories, Laboratory Experiments
Ullah, Sehat; Ali, Numan; Rahman, Sami Ur – Journal of Chemical Education, 2016
Various cognitive aids (such as change of color, arrows, etc.) are provided in virtual environments to assist users in task realization. These aids increase users' performance but lead to reduced learning because there is less cognitive load on the users. In this paper we present a new concept of procedural guidance in which textual information…
Descriptors: Science Instruction, Secondary School Science, High School Students, Technology Uses in Education
Burkett, Vent Curtis; Smith, Clinton – Electronic Journal of Science Education, 2016
Virtual reality software has evolved to create ever more realistic virtual environments. Sophisticated virtual education laboratory experiments are now possible. Some educators and researchers question the value of hands-on laboratories relative to virtual laboratories. Researchers have investigated students' acceptance of virtual laboratories and…
Descriptors: Computer Simulation, Simulated Environment, Science Laboratories, Hands on Science
Liu, Chang; Zhong, Ying – International Journal of Virtual and Personal Learning Environments, 2014
Multi-level adaptation in end-user development (EUD) is an effective way to enable non-technical end users such as educators to gradually introduce more functionality with increasing complexity to 3D virtual learning environments developed by themselves using EUD approaches. Parameterization, integration, and extension are three levels of…
Descriptors: Chemistry, Science Instruction, Educational Technology, Technology Uses in Education
Wang, Hung-Yuan; Duh, Henry Been-Lirn; Li, Nai; Lin, Tzung-Jin; Tsai, Chin-Chung – Journal of Science Education and Technology, 2014
The purpose of this study is to investigate and compare students' collaborative inquiry learning behaviors and their behavior patterns in an augmented reality (AR) simulation system and a traditional 2D simulation system. Their inquiry and discussion processes were analyzed by content analysis and lag sequential analysis (LSA). Forty…
Descriptors: Cooperative Learning, Inquiry, Student Behavior, Simulated Environment
Ibáñez, María-Blanca; Di-Serio, Ángela; Villarán-Molina, Diego; Delgado-Kloos, Carlos – IEEE Transactions on Education, 2015
This paper reports empirical evidence on having students use AR-SaBEr, a simulation tool based on augmented reality (AR), to discover the basic principles of electricity through a series of experiments. AR-SaBEr was enhanced with knowledge-based support and inquiry-based scaffolding mechanisms, which proved useful for discovery learning in…
Descriptors: Simulated Environment, Computer Simulation, Energy, Science Experiments
Winkelmann, Kurt; Scott, Matthew; Wong, Deborah – Journal of Chemical Education, 2014
A small group of high school students performed a virtual laboratory experiment in Second Life that mimicked a real experiment in both its appearance and procedure. Lab report grades were equivalent to report grades for hands-on experiments, and the quality of students' results was similar. Results of an attitudinal survey show that students…
Descriptors: High School Students, Secondary School Science, Science Instruction, Science Laboratories
Gobert, Janice D.; Sao Pedro, Michael; Raziuddin, Juelaila; Baker, Ryan S. – Journal of the Learning Sciences, 2013
We present a method for assessing science inquiry performance, specifically for the inquiry skill of designing and conducting experiments, using educational data mining on students' log data from online microworlds in the Inq-ITS system (Inquiry Intelligent Tutoring System; www.inq-its.org). In our approach, we use a 2-step process: First we use…
Descriptors: Intelligent Tutoring Systems, Science Education, Inquiry, Science Process Skills
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
Ketelhut, Diane Jass; Nelson, Brian C. – Educational Research, 2010
Background: Most policy doctrines promote the use of scientific inquiry in the K-12 classroom, but good inquiry is hard to implement, particularly for schools with fiscal and safety constraints and for teachers struggling with understanding how to do so. Purpose: In this paper, we present the design of a multi-user virtual environment (MUVE)…
Descriptors: Suburban Schools, Student Attitudes, Virtual Classrooms, Science Curriculum
Keller, Harry E.; Keller, Edward E. – Science Education Review, 2005
Francis Bacon began defining scientific methodology in the early 17th century, and secondary school science classes began to implement science labs in the mid-19th century. By the early 20th century, leading educators were suggesting that science labs be used to develop scientific thinking habits in young students, and at the beginning of the 21st…
Descriptors: Science Instruction, Science Experiments, Science Laboratories, Educational Technology
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