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Assiya Maimatayeva; Baktygul Assilbekova; Kalampyr Zhumagulova; Nurzhanar Galymova; Gani Issayev – Education and Information Technologies, 2025
The educational environment frequently encounters the issue of the inadequacy of traditional teaching approaches, which limits students' ability not only to reproduce acquired knowledge but also to apply it in practice. The aim of our research is to investigate the impact of a virtual reality (VR) based educational program in biology on students'…
Descriptors: Training, Computer Simulation, Scientific Literacy, Secondary School Science
Jiang, Shiyan; Tatar, Cansu; Huang, Xudong; Sung, Shannon H.; Xie, Charles – Journal of Educational Computing Research, 2022
Augmented reality (AR) has the potential to fundamentally transform science education by making learning of abstract science ideas tangible and engaging. However, little is known about how students interacted with AR technologies and how these interactions may affect learning performance in science laboratories. This study examined high school…
Descriptors: Computer Simulation, Science Instruction, Science Laboratories, High School Students
Liu, Qingtang; Yu, Shufan; Chen, Wenli; Wang, Qiyun; Xu, Suxiao – Journal of Computer Assisted Learning, 2021
While the use of experiments is important for developing students' scientific knowledge and skills, challenges may arise when teachers and students are conducting experiments in class, such as non-reusable experimental resources, safety issues and difficulties simulating some specific effects. Augmented reality (AR) technology affords an…
Descriptors: Science Experiments, Computer Simulation, Magnets, Junior High School Students
Blikstein, Paulo; Fuhrmann, Tamar; Salehi, Shima – Journal of Science Education and Technology, 2016
In this paper, we investigate an approach to supporting students' learning in science through a combination of physical experimentation and virtual modeling. We present a study that utilizes a scientific inquiry framework, which we call "bifocal modeling," to link student-designed experiments and computer models in real time. In this…
Descriptors: High School Students, Secondary School Science, Science Education, Models
Raven, Sara – Research in Science & Technological Education, 2015
Background: Studies have shown that students' knowledge of osmosis and diffusion and the concepts associated with these processes is often inaccurate. This is important to address, as these concepts not only provide the foundation for more advanced topics in biology and chemistry, but are also threaded throughout both state and national science…
Descriptors: Scientific Concepts, Knowledge Level, Molecular Structure, Biology
Beal, Carole R.; Stevens, Ronald H. – Technology, Instruction, Cognition and Learning, 2011
The goal of the study was to improve high school students' problem solving performance as they worked with IMMEX, an online chemistry problem solving simulation. The intervention included brief text messages added to the simulation to encourage students to reflect on their problem solving strategies and to adopt more effective problem solving…
Descriptors: High School Students, Grade 9, Secondary School Science, Chemistry
Lin, Li-Fen; Hsu, Ying-Shao; Yeh, Yi-Fen – Journal of Science Education and Technology, 2012
Several researchers have investigated the effects of computer simulations on students' learning. However, few have focused on how simulations with authentic contexts influences students' inquiry skills. Therefore, for the purposes of this study, we developed a computer simulation (FossilSim) embedded in an authentic inquiry lesson. FossilSim…
Descriptors: Investigations, Computer Simulation, Inquiry, Active Learning
Eseryel, Deniz; Law, Victor – Technology, Instruction, Cognition and Learning, 2012
Understanding complex systems is fundamental to understanding science. The complexity of science systems makes them very difficult to understand because they are composed of large number of variables with dynamic interdependencies that determines the behavior of the systems. Hence, understanding complex system requires students to build an…
Descriptors: Cognitive Processes, Systems Approach, Inquiry, Active Learning
Johnson-Glenberg, Mina C.; Birchfield, David; Usyal, Sibel – Educational Media International, 2009
We present a new and innovative interface that allows the learner's body to move freely in a multimodal learning environment. The Situated Multimedia Arts Learning Laboratory ("SMALLab") uses 3D object tracking, real time graphics, and surround-sound to enhance embodied learning. Our hypothesis is that optimal learning and retention occur when…
Descriptors: Virtual Classrooms, Intermode Differences, Learning Modalities, Computer Interfaces
Goldenberg, Lauren B.; Heinze, Juliette; Ba, Harouna – Education Development Center, Inc., 2004
The JASON Multimedia Science Curriculum (JMSC) was developed in 1989 by the JASON Foundation for Education (www.jason.org), and is a multimedia, interdisciplinary, inquiry-based science curriculum that responds to the dual demands of teachers having to teach state standards while engaging students in scientific inquiry. The JMSC encourages…
Descriptors: State Standards, Computer Uses in Education, Computer Simulation, Science Curriculum