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Dilek, Ufuk; Erol, Mustafa – Physics Education, 2018
ARKit is a framework which allows developers to create augmented reality apps for the iPhone and iPad. In a previous study, we had shown that it could be used to detect position in educational physics experiments and emphasized that the ability to provide position data in real-time was one of the prominent features of this newly emerging…
Descriptors: Graphs, Physics, Science Experiments, Computer Graphics
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Mobbs, Robin – School Science Review, 2016
While on the International Space Station, Tim Peake undertook and recorded video files of experiments suitable for physics teaching coordinated by the National Space Academy. This article describes how the video of these experiments was prepared for use with tracking software. The tracking files of the videos are suitable for use by teachers or…
Descriptors: Space Sciences, Science Experiments, Physics, Video Technology
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Eylem Yildiz Feyzioglu; Ercan Akpinar; Nilgün Tatar – Journal of Baltic Science Education, 2018
The aim of this research was to explore the effect of a Technology-enhanced Metacognitive Learning Platform (TeMLP) on student's monitoring accuracy and understanding of electricity. An interactive TeMLP was prepared on the electricity unit covering the topics of static and current electricityfor 7th graders; the platform contained computer…
Descriptors: Grade 7, Energy, Units of Study, Metacognition
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Tira, Michael D.; Tagliabue, Mariaelena; Vidotto, Giulio – Psicologica: International Journal of Methodology and Experimental Psychology, 2014
In two experiments, participants judged the average numerosity between two sequentially presented dot patterns to perform an approximate arithmetic task. In Experiment 1, the response was given on a 0-20 numerical scale (categorical scaling), and in Experiment 2, the response was given by the production of a dot pattern of the desired numerosity…
Descriptors: Number Concepts, Number Systems, Numbers, Science Experiments
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Priest, Samuel J.; Pyke, Simon M.; Williamson, Natalie M. – Journal of Chemical Education, 2014
Microcomputer based laboratory activities have been suggested to have a number of benefits in science education. However, their implementation produces mixed results, and student perception data have in the past yielded responses that are negative regarding the technology. This work presents a case study of three first year undergraduate chemistry…
Descriptors: Student Attitudes, Science Experiments, Chemistry, Comparative Analysis
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Nguyen, Ngan; Wilson, Timothy D. – Anatomical Sciences Education, 2009
Advances in computer and interface technologies have made it possible to create three-dimensional (3D) computerized models of anatomical structures for visualization, manipulation, and interaction in a virtual 3D environment. In the past few decades, a multitude of digital models have been developed to facilitate complex spatial learning of the…
Descriptors: Computer Simulation, Anatomy, Human Body, Science Course Improvement Projects
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Kong, Siu Cheung; Yeung, Yau Yuen; Wu, Xian Qiu – Computers & Education, 2009
In order to facilitate senior primary school students in Hong Kong to engage in learning by observation of the phenomena related to electrical circuits, a design of a specific courseware system, of which the interactive human-machine interface was created with the use of an open-source software called the LabVNC, for conducting online…
Descriptors: Observational Learning, Foreign Countries, Teaching Methods, Elementary School Students
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McCarthy, John; Moore, R. A. – European Journal of Engineering Education, 2006
The present paper focuses on the application of a structured template, maximum impact flow (MIF), in order to encourage young students in the area of optics and optical engineering. MIF introduces a template in terms of individual steps and linked functionality and is shown to fuse separate learning tools together into a cohesive unit.…
Descriptors: Engineering Education, Optics, Engineering, Engineering Technology
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Mitford, Hazel – School Science Review, 1986
Describes 46 activities, investigations, and experiments which deal with a variety of topics in high school and college biology, chemistry, and physics. Includes photographs, diagrams, descriptions of computer software, and detailed procedures for conducting teaching activities on topics ranging from energy to water recycling. (TW)
Descriptors: Biology, Chemistry, College Science, Computer Uses in Education