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Gianmarc Grazioli; Adam Ingwerson; David Santiago Jr.; Patrick Regan; Heekun Cho – Journal of Chemical Education, 2023
Computational chemistry instructional activities are often based around students running chemical simulations via a graphical user interface (GUI). GUI-based activities offer many advantages, as they enable students to run chemical simulations with a few mouse clicks. Although these activities are excellent for introducing students to the…
Descriptors: Computation, Chemistry, Teaching Methods, Science Education
Ishan Sudeera Abeywardena – International Review of Research in Open and Distributed Learning, 2023
Extended reality (XR), which encompasses virtual reality (VR), augmented reality (AR), and mixed reality (MR), offers powerful affordances for improving teaching and learning experiences in a post-pandemic world. Increasingly, many governments and institutions around the world are making major investments in XR technologies to prepare education…
Descriptors: Computer Simulation, Technology Uses in Education, Sustainable Development, Barriers
Rodri´guez, FabioCorte´s; Frattini, Gianfranco; Krapp, Lucien F.; Martinez-Hung, Hassan; Moreno, Diego M.; Rolda´n, Mariana; Salomo´n, Jorge; Stemkoski, Lee; Traeger, Sylvain; Dal Peraro, Matteo; Abriata, Luciano A. – Journal of Chemical Education, 2021
Augmented/virtual realities (ARs/VRs) promise to revolutionize STEM education. However, most easy-to-use tools are limited to static visualizations, which limits the approachable content, whereas more interactive and dynamic alternatives require costly hardware, preventing large-scale use and evaluation of pedagogical effects. Here, we introduce…
Descriptors: Molecular Structure, Biochemistry, Organic Chemistry, STEM Education
Lee, Sukmock; Guthery, Charlotte; Kim, Daewook; Calkins, Addison – Physics Teacher, 2022
An essential goal for physics and optical science instructors is to encourage students to find excitement and beauty in physical and optical phenomena while helping them learn the theoretical concepts and conducting experiments that can test the validity of the concepts. Such motivation largely relies on realistic hands-on lab opportunities where…
Descriptors: Physics, Optics, Science Instruction, Hands on Science
Sagrans, Jacob; Mokros, Janice; Voyer, Christine; Harvey, Meggie – Science Teacher, 2022
The use of large, open-source data sets is ubiquitous in scientific research. Scientists--ranging from meteorologists to chemists to epidemiologists--are researching and investigating critical questions using data that they have not themselves collected. To contribute to the growing effort to bring data science into classrooms, the authors have…
Descriptors: Data Analysis, Science Instruction, High School Teachers, Science Teachers
Lee, Ning Yuan; Tucker-Kellogg, Greg – Biochemistry and Molecular Biology Education, 2020
Understanding macromolecular structures is essential for biology education. Augmented reality (AR) applications have shown promise in science, technology, engineering, and mathematics (STEM) education, but are not widely used for protein visualization. While there are some tools for AR protein visualization, none of them are accessible to the…
Descriptors: Visualization, Molecular Structure, Computer Simulation, STEM Education
Walsh, Tom – Physics Teacher, 2017
I have long incorporated physics simulations in my physics teaching, and truly appreciate those who have made their simulations available to the public. I often would think of an idea for a simulation I would love to be able to use, but with no real programming background I did not know how I could make my own. That was the case until I discovered…
Descriptors: Physics, Science Instruction, Teaching Methods, Computer Simulation
Wang, Shuo; Wang, Jing; Gao, Yanjing – Journal of Chemical Education, 2017
An open-source electrochemistry simulation package has been developed that simulates the electrode processes of four reaction mechanisms and two typical electroanalysis techniques: cyclic voltammetry and chronoamperometry. Unlike other open-source simulation software, this package balances the features with ease of learning and implementation and…
Descriptors: Open Source Technology, Computer Simulation, Chemistry, Graduate Students
Rodrigues, João P. G. L. M.; Melquiond, Adrien S. J.; Bonvin, Alexandre M. J. J. – Biochemistry and Molecular Biology Education, 2016
Molecular modelling and simulations are nowadays an integral part of research in areas ranging from physics to chemistry to structural biology, as well as pharmaceutical drug design. This popularity is due to the development of high-performance hardware and of accurate and efficient molecular mechanics algorithms by the scientific community. These…
Descriptors: Molecular Structure, Hands on Science, Undergraduate Students, Open Source Technology
Bradley, Elizabeth G. – Journal of Educational Technology Systems, 2015
In this increasingly digital age, student plagiarism is rampant. Roughly half of college students admit to plagiarizing using content found online, directly copying and pasting the work of others. Digital technology and social media have greatly changed the landscape of how knowledge is acquired and disseminated; thus, students must be explicitly…
Descriptors: Prevention, Plagiarism, Computer Simulation, Teaching Methods
O'Connor, Eileen A. – Journal of Educational Technology Systems, 2015
Opening with the history, recent advances, and emerging ways to use avatar-based virtual reality, an instructor who has used virtual environments since 2007 shares how these environments bring more options to community building, teaching, and education. With the open-source movement, where the source code for virtual environments was made…
Descriptors: Electronic Learning, Virtual Classrooms, Simulated Environment, Open Source Technology
Johnson, L.; Adams Becker, S.; Hall, C. – New Media Consortium, 2015
The purpose of the report is to inform Australian campus leaders and decision-makers about important developments in technologies supporting teaching, learning, and creative inquiry in tertiary education across the continent. It was produced to explore important developments in technology and forecast their potential impact expressly in an…
Descriptors: Higher Education, Decision Making, College Administration, Educational Technology
Besada-Portas, E.; Lopez-Orozco, J. A.; de la Torre, L.; de la Cruz, J. M. – IEEE Transactions on Education, 2013
This paper presents a new methodology to develop remote laboratories for systems engineering and automation control courses, based on the combined use of TwinCAT, a laboratory Java server application, and Easy Java Simulations (EJS). The TwinCAT system is used to close the control loop for the selected plants by means of programmable logic…
Descriptors: Laboratories, Engineering, Computer Simulation, Web Sites
Minovic, Miroslav; Milovanovic, Milos; Minovic, Jelena; Starcevic, Dusan – International Journal of Distance Education Technologies, 2012
The authors present a learning platform based on a computer game. Learning games combine two industries: education and entertainment, which is often called "Edutainment." The game is realized as a strategic game (similar to Risk[TM]), implemented as a module for Moodle CMS, utilizing Java Applet technology. Moodle is an open-source course…
Descriptors: Educational Games, Computer Games, Web Browsers, Computer Interfaces
Ramaswami, Rama – Campus Technology, 2011
Just a few years ago, virtual worlds were credited with the power to transform the universe. Used since the late 1990s in military and medical applications, virtual worlds first gained mainstream media attention when Linden Lab released Second Life in 2003. While other worlds, including open source environments, have launched since then (examples…
Descriptors: Foreign Countries, Computer Software, Technical Support, Computer Uses in Education
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