2,969 research outputs found

    The Effect of Augmented Reality on Spatial Visualization Ability of Elementary School Student

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    The invention of Augmented Reality (AR) has provided a platform for individuals to see virtual and real objects simultaneously in a real-life setting. As compared to other technologies being implemented in education setting, it may contribute a new method to educate. This study investigated the possible effect of AR technology on students’ spatial visualization ability. AR-Science Magic Book Learning System (AR-SMB) is a learning tool based on the AR technology which was developed in this study to facilitate students in learning science concept, hence enhancing their spatial visualization ability. The type of data collection methodology used is the quantitative approach in which pre-test and post-test design were implemented and the participant comprised of 34 fifth-grade students. According to the results, it was found that the scores of the Mental Rotation Test (MRT) post-test were significantly greater than the pre-test, thus AR technology can be considered to be beneficial in enhancing students’ spatial visualization ability. There is a huge difference in terms of the scores of MRT between the pre-test and post-test which concludes that the treatment given can significantly improve and contribute towards their spatial visualization ability. The findings of this research enable the educators to incorporate AR learning into their teaching process in order for students to understand the rotation and transformation of objects that are related to each other. As a result, this study has shown a significant implication for the understanding of AR’s effect in enhancing spatial visualization ability among primary school students

    A Review Of The Features Of Augmented Reality Science Textbook

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    This paper reviews several literatures concerning the features of Augmented Reality (AR) based textbook that could be applied for science learning in schools in order to make the learning process effective and interesting. The intervention of AR in science textbook could bring a tremendous impact on students’ attitude towards the science subject. Even though there are several other proven and astonishing technologies for learning, AR has been chosen because of its highly potential and immersive characteristics. AR overlays real and virtual environment and displays them simultaneously on a computer screen. This technology offers students with the ultimate imaginary and makes them feel the real experience with scientific concepts which is impossible to experience in real life. This paper identifies several interesting features that could be applied in science textbook. These features are able to cultivate positive attitude and motivate the students to perform well in the science subject. Even though, the existing textbook is comprehensive, there are some limitations that might influence students’ performance in the science subject. By adding some additional features into the textbook, it could overcome the limitations and motivates the students in the learning process. This paper will be of interest to researchers in the areas of Augmented Reality in education as well as science teachers in general. This paper aims to introduce AR based textbook so that it can be widely used in schools especially for science learning so as to motivate students to be more interested in science. The information about the features of Augmented Reality (AR) based textbook that have been discussed in this paper will hopefully be a very useful guidance for other researchers as well as science teachers in planning and developing their own AR based textboo

    Augmented reality based educational tool on Live Solar System (LSS)

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    Augmented Reality (AR) has its own potential in the education field, because AR can provide a seamless interaction between real and virtual objects. Hence, it draws many researchers’ interest in recent years on applying AR in the education field.This paper intends to give an overview of AR and the workflow of AR application.Besides, this paper also highlights the methodology of developing Live Solar System (LSS) based on the iterative prototype software engineering life cycle model, and the LSS overview which can be divided into software and hardware components

    The Effect of Augmented Reality Treatment on Learning, Cognitive Load, and Spatial Visualization Abilities

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    This study investigated the effects of Augmented Reality (AR) on learning, cognitive load and spatial abilities. More specifically, it measured learning gains, perceived cognitive load, and the role spatial abilities play with students engaged in an astronomy lesson about lunar phases. Research participants were 182 students from a public university in southeastern United States, and were recruited from psychology research pool. Participants were randomly assigned to two groups: (a) Augmented Reality and Text Astronomy Treatment (ARTAT); and (b) Images and Text Astronomy Treatment (ITAT). Upon entering the experimental classroom, participants were given (a) Paper Folding Test to measure their spatial abilities; (b) the Lunar Phases Concept Inventory (LPCI) pre-test; (c) lesson on Lunar Phases; (d) NASA-TLX to measure participants’ cognitive load; and (e) LPCI post-test. Statistical analysis found (a) no statistical difference for learning gains between the ARTAT and ITAT groups; (b) statistically significant difference for cognitive load; and (c) no significant difference for spatial abilities scores

    Augmented Reality in Astrophysics

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    Augmented Reality consists of merging live images with virtual layers of information. The rapid growth in the popularity of smartphones and tablets over recent years has provided a large base of potential users of Augmented Reality technology, and virtual layers of information can now be attached to a wide variety of physical objects. In this article, we explore the potential of Augmented Reality for astrophysical research with two distinct experiments: (1) Augmented Posters and (2) Augmented Articles. We demonstrate that the emerging technology of Augmented Reality can already be used and implemented without expert knowledge using currently available apps. Our experiments highlight the potential of Augmented Reality to improve the communication of scientific results in the field of astrophysics. We also present feedback gathered from the Australian astrophysics community that reveals evidence of some interest in this technology by astronomers who experimented with Augmented Posters. In addition, we discuss possible future trends for Augmented Reality applications in astrophysics, and explore the current limitations associated with the technology. This Augmented Article, the first of its kind, is designed to allow the reader to directly experiment with this technology.Comment: 15 pages, 11 figures. Accepted for publication in Ap&SS. The final publication will be available at link.springer.co

    Latex gloves

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    All things considered 13,700 specialists were harmed hands on consistently in 2011. Around 20% of these wounds were dealing with related, so guaranteeing laborers are wearing the right safety gloves is absolutely critical and fundamental for dodging damage, maintaining the right wellbeing and security guidelines and staying away from costly days off because of damage. Keeping up an abnormal state of wellbeing and security is fundamental in all organizations regardless of their size. As a business or entrepreneur, keeping staff and laborers sheltered and sound is the most elevated need to most. Guaranteeing workers are wearing the right security articles of clothing are obviously a major piece of this as organizations hold a lawful obligation to give this wellbeing hardware. It is fundamental that businesses recognize what models should be clung to for their particular industry. It is their duty to ensure gloves fulfilling this guideline are given to their team that are appropriate for that specific dealing with circumstance or scope of taking care of circumstances. This not just guarantees the wellbeing of staff - solid workforce endures less damage related days off, as roughly 235 million days of generation time were lost because of wounds in 2011. By clinging to the right business security guidelines an entrepreneur maintains the uprightness of their business, limits the danger of moves made against them from the law and furthermore keeps away from the impacts of negative press

    Exploring Immersive Learning Experiences: A Survey

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    Immersive technologies have been shown to significantly improve learning as they can simplify and simulate complicated concepts in various fields. However, there is a lack of studies that analyze the recent evidence-based immersive learning experiences applied in a classroom setting or offered to the public. This study presents a systematic review of 42 papers to understand, compare, and reflect on recent attempts to integrate immersive technologies in education using seven dimensions: application field, the technology used, educational role, interaction techniques, evaluation methods, and challenges. The results show that most studies covered STEM (science, technology, engineering, math) topics and mostly used head-mounted display (HMD) virtual reality in addition to marker-based augmented reality, while mixed reality was only represented in two studies. Further, the studies mostly used a form of active learning, and highlighted touch and hardware-based interactions enabling viewpoint and select tasks. Moreover, the studies utilized experiments, questionnaires, and evaluation studies for evaluating the immersive experiences. The evaluations show improved performance and engagement, but also point to various usability issues. Finally, we discuss implications and future research directions, and compare our findings with related review studies

    Visualization Based on Geographic Information in Augmented Reality

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    Co-design of augmented reality book for collaborative learning experience in primary education

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    Through co-design of Augmented Reality (AR) based teaching material, this research aims to enhance collaborative learning experience in primary school education. It will introduce an interactive AR Book based on primary school textbook using tablets as the real time interface. The development of this AR Book employs co-design methods to involve children, teachers, educators and HCI experts from the early stages of the design process. Research insights from the co-design phase will be implemented in the AR Book design. The final outcome of the AR Book will be evaluated in the classroom to explore its effect on the collaborative experience of primary school students. The research aims to answer the question - Can Augmented Books be designed for primary school students in order to support collaboration? This main research question is divided into two sub-questions as follows - How can co-design methods be applied in designing Augmented Book with and for primary school children? And what is the effect of the proposed Augmented Book on primary school students' collaboration? This research will not only present a practical application of co-designing AR Book for and with primary school children, it will also clarify the benefit of AR for education in terms of collaborative experience
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