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Henry Matovu; Mihye Won; Ricardo Bruno Hernandez-Alvarado; Dewi Ayu Kencana Ungu; David F. Treagust; Chin-Chung Tsai; Mauro Mocerino; Roy Tasker – Journal of Science Education and Technology, 2024
This study investigated how different learning tasks influence students' collaborative interactions in immersive Virtual Reality (iVR). A set of chemistry learning activities was designed with iVR, and 35 pairs of undergraduate students went through the activities. Videos of students' interactions were analysed to identify patterns in students'…
Descriptors: Cooperative Learning, Intention, Computer Simulation, Chemistry
Samuel Jere; Mamotena Mpeta – Research in Science Education, 2024
One of the critical goals of teaching chemistry is to enable learners to gain conceptual understanding. Traditional instruction has often been associated with rote memorisation, resulting in learners failing to explain observed chemical phenomena, make predictions based on acquired concepts, advance convincing arguments, and engage in meaningful…
Descriptors: Computer Simulation, Concept Formation, Energy, Scientific Concepts
Leonora Kaldaras; Hope O. Akaeze; Joseph Krajcik – Journal of Research in Science Teaching, 2024
Chemical bonding is central to explaining many phenomena. Research in chemical education and the Framework for K-12 Science Education (the "Framework") argue for new approaches to learning chemical bonding grounded in (1) using ideas of the balance of electric forces and energy minimization to explain bond formation, (2) using learning…
Descriptors: Science Education, Academic Standards, Chemistry, Energy
Morgan I. D. Johnson; Lavinia Mbongo; Amy J. Managh – Journal of Chemical Education, 2023
An ICP-MS simulation was developed to support the teaching of inductively coupled plasma-mass spectrometry. The app enables students to conduct the quantification of selenium in a nutritional supplement, monitor the uptake of metallodrugs by cells, and perform qualitative analysis of gunshot residue. The experiments teach a range of analytical…
Descriptors: Computer Software, Undergraduate Study, College Science, Science Education
Matovu, Henry; Won, Mihye; Treagust, David Franklin; Ungu, Dewi Ayu Kencana; Mocerino, Mauro; Tsai, Chin-Chung; Tasker, Roy – Chemistry Education Research and Practice, 2023
In recent years, chemistry educators are increasingly adopting immersive virtual reality (IVR) technology to help learners visualise molecular interactions. However, educational studies on IVR mostly investigated its usability and user perceptions leaving out its impact on improving conceptual understanding. If they evaluated students' knowledge…
Descriptors: Science Education, Chemistry, Computer Simulation, Undergraduate Students
Andre´ A. Souto – Journal of Chemical Education, 2023
Augmented reality (AR) filters are digital interactions applied to users' faces or environment to add to or change what they are seeing in the real world. By using free software, it is possible to easily make many AR filters for learning chemistry. Here I show how to make AR filters of molecular models and post them on social media in just two…
Descriptors: Computer Simulation, Visual Aids, Chemistry, Science Education
Oladejo, Adekunle I.; Nwaboku, Nwabuno C.; Okebukola, Peter A.; Ademola, Ibukunolu A. – Research in Science & Technological Education, 2023
Background: Science educators around the world have recognised that difference in performance exists between male and female students in chemistry and there have been several efforts and interventions through research and workshops to bridge this gap. Purpose: Owing to the current growth of the effects of the use of computer simulations on…
Descriptors: Gender Differences, Science Education, Science Achievement, Chemistry
Zipeng Qi; Lei Xu; Yun Chen; Shuanglian Cai – Journal of Chemical Education, 2024
This study revamps and optimizes the teaching and learning process and instrument for the classic binary vapor-liquid equilibrium experiment by combining activity coefficient model simulations and practical exercises. Our teaching process combines a software simulation and practical exercises. Utilizing Aspen software, students can predict phase…
Descriptors: Learning Processes, Instruction, Instructional Improvement, Educational Improvement
Brenna Sermania; Nicholas VanFossen; Ray Steen; Michael Stewart; Paul L. Raston – Journal of Chemical Education, 2024
We developed a gas-phase Fourier Transform InfraRed Scientific Instrument Simulator (FTIR-SIS, https://ftir.rastonlab.org/) in response to the unavailability of one during the COVID-19 pandemic lockdown of 2020. It features an interactive interface that encourages students to explore different components of a typical FTIR, and it allows them to…
Descriptors: Science Education, Science Instruction, Chemistry, Computer Simulation
Jean-Baptiste Ndagijimana; Jeannette Musengimana; Henriette Mushimiyimana; Evode Mukama; Olivier Habimana; Paulin Manirakiza; Jean Claude Dushimimana; Jean Pierre Alpha Munyaruhengeri; Samia Khan; Elizabeth Lakin – Chemistry Education Research and Practice, 2025
The current study ascertained the influence an instructional module had on enhancing students' understanding of chemical reactions and acid-base topics. The sample size for this study consisted of 197 students, including 101 in an "experimental" group and 96 in a "control" group, selected from schools in two Districts…
Descriptors: Foreign Countries, Secondary School Science, Secondary School Students, Chemistry
Adam J. Jeffery; Steven L. Rogers; Jamie K. Pringle; Vladimir L. Zholobenko; Kelly L. A. Jeffery; Kristopher D. Wisniewski; Katherine J. Haxton; David W. Emley – Journal of Chemical Education, 2022
Access to laboratory facilities and associated instrumentation represents a major barrier to learning in physical science education, due to constraints introduced by limited time and financial resources, cost of acquisition, and health and safety requirements. Virtualized laboratories offer some mitigation of these problems but may also introduce…
Descriptors: Science Laboratories, Science Education, Computer Simulation, Program Effectiveness
Du Juan; Dorothy DeWitt – Journal of Education and Learning (EduLearn), 2024
Numerous studies have delved into the application of augmented reality (AR) in chemistry education, focusing on specific topics, equipment requirements, and advantages. However, there remains a notable dearth of research examining the evolutionary characteristics of AR in this context. This study, employing bibliometric analysis on 66 articles…
Descriptors: Journal Articles, Chemistry, Science Education, Simulation
Yousri Attia Mohamed Abouelenein; Shaimaa Abdul Salam Selim; Mohamed Ali Nagy Elmaadaway – Education and Information Technologies, 2024
It might be challenging for pre-service science teachers to apply their theoretical knowledge in the laboratory. Any attempt to shift the perspective in chemistry will necessitate the creation of novel techniques for elucidating theoretical themes. Examining how a virtual chemistry lab has affected the evolution and trend of scientific practice…
Descriptors: Laboratories, Virtual Classrooms, Chemistry, Science Education
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
Chen, Ying-Chih; Terada, Takeshi; Aguirre-Mendez, Claudia – Reading and Writing: An Interdisciplinary Journal, 2023
Non-science majors often lack motivation to take science courses required for their graduation, because these courses are usually taught in a lecture format and are disconnected from their everyday life and needs related to future careers. This two-phase action research, utilizing argumentative writing (AW) supported with online simulation, was…
Descriptors: Science Education, Nonmajors, Persuasive Discourse, Writing (Composition)