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Adem Koç; Sedat Kanadli – Journal of Science Education and Technology, 2025
This study used network meta-analysis to investigate the impact of the use of interactive learning environments (ILE) tools (augmented reality (AR), virtual reality (VR), mixed reality (MIX), and interactive digital games (GAME)) in science education on learning outcomes. A total of 53 primary studies were retrieved from the literature according…
Descriptors: Interaction, Cooperative Learning, Educational Environment, Outcomes of Education
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Burç Çeken; Nazim Taskin – Journal of Computer Assisted Learning, 2025
Background: Multimedia learning, encapsulating both visual and verbal information, has become pivotal in educational settings, with extensive research underscoring its influence. However, a notable research gap exists concerning the application and effectiveness of multimedia learning principles, precisely segmenting, pre-training and modality,…
Descriptors: Multimedia Instruction, Computer Simulation, Educational Environment, Instructional Effectiveness
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Reza Ruhbani Amarulloh; Viqhi Aswie – Science Education International, 2024
This study aims to conduct a bibliometric analysis of the use of virtual reality in science education over three decades (1993-2023). The method involved data from Google Scholar-indexed publications using Publish or Perish with keywords related to "virtual reality" and" education" over the past 3 decades. Nine hundred and…
Descriptors: Science Education, Computer Simulation, Longitudinal Studies, Bibliometrics
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Brian Shambare; Thuthukile Jita – Rural Educator, 2025
Despite the promising advantages of cutting-edge technologies like virtual laboratories (VL) for enhancing science education, a significant gap remains between their theoretical benefits and practical application, particularly in rural schools in the Global South. This article argues that the effective integration of VL is largely dependent on…
Descriptors: Rural Schools, Secondary Schools, Computer Simulation, Computer Uses in Education
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Rebecca L. Hite; Gina M. Childers; Jill Hoffman – International Journal of Science Education, Part B: Communication and Public Engagement, 2025
The transformation of natural history and science museums from receptacles (temples) to facilitators (forums) of knowledge fosters discourse around issues relating to science and society, known as social scientific issues (SSI). To assist guests with enhanced object-based learning, extended reality (XR) technologies are thought to leverage the…
Descriptors: Social Theories, Science and Society, Science Education, Museums
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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
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Jyoti Wadmare; Dakshita Kolte; Kapil Bhatia; Palak Desai; Ganesh Wadmare – Journal of Information Technology Education: Innovations in Practice, 2024
Aim/Purpose: This paper highlights an innovative and impactful online operating system algorithms e-learning tool in engineering education. Background: Common teaching methodologies make it difficult to teach complex algorithms of operating systems. This paper presents a solution to this problem by providing simulations of different complex…
Descriptors: Engineering, Science Education, Material Development, Computer Simulation
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Corinna S. Martarelli; Josua Dubach; Natalie Schelleis; Trix Cacchione; Sebastian Tempelmann – Educational Technology Research and Development, 2025
Virtual reality (VR) can provide access to otherwise inaccessible aspects of the world and thus promote science learning. We developed a VR learning tool about the water cycle, with 11 lessons for classroom teaching at the primary level. We assessed prior knowledge before a four-week intervention and learning outcomes directly after the…
Descriptors: Computer Simulation, Elementary School Science, Science Education, Water
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Mhamed Ben Ouahi; Mohamed Droui; Elyazid Hida; Taoufik Hassouni; El Mehdi AL Ibrahmi – Knowledge Management & E-Learning, 2025
Science education, particularly physics, remains a priority for many countries, as their future economic prosperity is closely linked to student success in science and technology. Given the persistent challenges faced by teachers in stimulating students' interest in this discipline, the integration of innovative teaching methods has become…
Descriptors: Science Education, Physics, Student Attitudes, Middle School Students
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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
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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
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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
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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
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de Souza, Renata Torres Mattos P.; Kasseboehmer, Ana Cla´udia – Journal of Chemical Education, 2022
This paper reports the development of a digital escape room for high school students using Genially, a web-based media platform. The escape room was used to aid understanding of basic concepts in chemistry and mostly enhance students' classes participation during the COVID-19 pandemic. The activity entitled "The thalidomide mystery"…
Descriptors: Science Education, Secondary School Science, Educational Games, High School Students
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Tammy D. Lee; Carrie Lee; Mark Newton; Paul Vos; Jennifer Gallagher; Daniel Dickerson; Camryn Regenthal – Journal of Science Teacher Education, 2024
Learning science is a social enterprise that involves students communicating ideas, observations, and findings. Navigating talk between students about scientific concepts and practices is a complex task for teachers. Traditionally, science educators have used a method called microteaching (teaching to peers) as a context for practicing teaching.…
Descriptors: Microteaching, Computer Simulation, Preservice Teachers, Computer Software
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