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Ruipérez-Valiente, Jose A.; Muñoz-Merino, Pedro J.; Kloos, Carlos Delgado; Niemann, Katja; Scheffel, Maren; Wolpers, Martin – IEEE Transactions on Learning Technologies, 2016
Self-regulated learning (SRL) environments provide students with activities to improve their learning (e.g., by solving exercises), but they might also provide optional activities (e.g., changing an avatar image or setting goals) where students can decide whether they would like to use or do them and how. Few works have dealt with the use of…
Descriptors: Metacognition, Learning Processes, Case Studies, Learning Activities
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Chang, Hsin-Yi; Hsu, Ying-Shao; Wu, Hsin-Kai – Interactive Learning Environments, 2016
We investigated the impact of an augmented reality (AR) versus interactive simulation (IS) activity incorporated in a computer learning environment to facilitate students' learning of a socio-scientific issue (SSI) on nuclear power plants and radiation pollution. We employed a quasi-experimental research design. Two classes (a total of 45…
Descriptors: Comparative Analysis, Computer Simulation, Computer Uses in Education, Science and Society
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Dohn, Niels Bonderup; Fago, Angela; Overgaard, Johannes; Madsen, Peter Teglberg; Malte, Hans – Advances in Physiology Education, 2016
The laboratory has been given a central role in physiology education, and teachers report that it is motivating for students to undertake experimental work on live animals or measuring physiological responses on the students themselves. Since motivation is a critical variable for academic learning and achievement, then we must concern ourselves…
Descriptors: Physiology, Science Instruction, Teaching Methods, Correlation
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Stewart, Jefferson; Vincent, Daniel – Science and Children, 2013
The authors describes their experiences incorporating the virtual lab into a simple circuit lesson during an energy unit in a sixth-grade class. The lesson included a hands-on group experiment using wire, batteries, and light bulbs to make a circuit and an online simulation, using a virtual lab. Class discussions, student inquiries, and the study…
Descriptors: Science Laboratories, Computer Simulation, Hands on Science, Equipment
Mukherjee, Maheswari S. – ProQuest LLC, 2012
Traditionally, cytotechnology (CT) students have been trained by using light microscopy (LM) and glass slides. However, this method of training has some drawbacks. Several other educational programs with similar issues have incorporated virtual microscopy (VM) in their curricula. In VM, the specimens on glass slides are converted into virtual…
Descriptors: Cytology, Laboratory Equipment, Computer Simulation, Science Instruction
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Vicovaro, Michele – Psicologica: International Journal of Methodology and Experimental Psychology, 2012
This is an intuitive physics study of collision events. In two experiments the participants were presented with a simulated 3D scene showing one sphere moving horizontally towards another stationary sphere. The moving sphere stopped just before colliding with the stationary one. Participants were asked to rate the positions which both spheres…
Descriptors: Physics, Experiments, Computer Simulation, Comparative Analysis
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Wee, Loo Kang; Ning, Hwee Tiang – Physics Education, 2014
This paper presents the customization of Easy Java Simulation models, used with actual laboratory instruments, to create active experiential learning for measurements. The laboratory instruments are the vernier caliper and the micrometer. Three computer model design ideas that complement real equipment are discussed. These ideas involve (1) a…
Descriptors: Science Instruction, Computer Simulation, Computer Uses in Education, Educational Technology
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Moore, Emily B.; Chamberlain, Julia M.; Parson, Robert; Perkins, Katherine K. – Journal of Chemical Education, 2014
Developing fluency across symbolic-, macroscopic-, and particulate-level representations is central to learning chemistry. Within the chemistry education community, animations and simulations that support multi-representational fluency are considered critical. With advances in the accessibility and sophistication of technology,…
Descriptors: Science Instruction, Chemistry, College Science, Undergraduate Study
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Lui, Michelle; Slotta, James D. – Technology, Pedagogy and Education, 2014
This article presents the design of an immersive simulation and inquiry activity for technology-enhanced classrooms. Using a co-design method, researchers worked with a high school biology teacher to create a rainforest simulation, distributed across several large displays in the room to immerse students in the environment. The authors created and…
Descriptors: Secondary School Science, Science Instruction, Computer Simulation, Computer Uses in Education
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Yoon, Susan A.; Wang, Joyce – TechTrends: Linking Research and Practice to Improve Learning, 2014
Despite the potential of augmented reality (AR) in enabling students to construct new understanding, little is known about how the processes and interactions with the multimedia lead to increased learning. This study seeks to explore the affordances of an AR tool on learning that is focused on the science concept of magnets and magnetic fields.…
Descriptors: Simulated Environment, Computer Simulation, Interaction, Multimedia Instruction
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Ülen, Simon; Cagran, Branka; Slavinec, Mitja; Gerlic, Ivan – Journal of Science Education and Technology, 2014
Many educational researchers have investigated how best to support conceptual learning in science education. In this study, the aim was to design learning materials using Physlets, small computer simulations, and to evaluate the effectiveness of these materials in supporting conceptual learning in secondary school physics. Students were taught in…
Descriptors: Science Instruction, Secondary School Science, Physics, Concept Formation
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Toth, Eva Erdosne; Ludvico, Lisa R.; Morrow, Becky L. – Interactive Learning Environments, 2014
This study examined the characteristics of virtual and hands-on inquiry environments for the development of blended learning in a popular domain of bio-nanotechnology: the separation of different-sized DNA fragments using gel-electrophoresis, also known as DNA-fingerprinting. Since the latest scientific developments in nano- and micro-scale tools…
Descriptors: Blended Learning, Hands on Science, Inquiry, Active Learning
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Akpinar, Yavuz; Ardac, Dilek; Er Amuce, Neslihan – Journal of Online Learning Research, 2015
Technological advancements have made it possible to design learning environments which support multiple representations, discussions and experimentations. This study designed and developed a web based argumentation environment, Argümantaryum. It provides virtual experimentation with, visually rich multi-representations of contents, video, and…
Descriptors: Educational Technology, Technology Uses in Education, Web Based Instruction, Persuasive Discourse
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Richardson, Daniel – Advances in Physiology Education, 2011
This opinion statement points out some of the considerations and pitfalls in using virtual reality computer programs in the teaching of life sciences. Emphasis is placed on the possibility of such programs leading to reductionist thinking including how reductionist thinking could foster the formation of misconceptions. Negative feedback is used as…
Descriptors: Evidence, Computer Simulation, Physiology, Science Instruction
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Günersel, Adalet B.; Fleming, Steven A. – Journal of Chemical Education, 2013
Research shows that computer-based simulations and animations are especially helpful in fields such as chemistry where concepts are abstract and cannot be directly observed. Bio-Organic Reaction Animations (BioORA) is a freely available 3D visualization software program developed to help students understand the chemistry of biomolecular events.…
Descriptors: Computer Simulation, Animation, Chemistry, Science Instruction
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