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Learning Approaches in a 3D Virtual Environment for Learning Energy Generation from Renewable Sources

机译:从可再生源学习能源生成3D虚拟环境中的学习方法

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Virtual worlds open up new horizons in education. Given the technological characteristics of virtual environments, a primary research area concerns the consideration of the pedagogical approaches that efficiently leverage their unique capabilities and enhance students learning. In this work, we examine the efficiency of learning approaches in a 3D virtual world environment developed to assist tutors in teaching and students in learning topics of the domain of renewable energy sources. In the 3D virtual environment, several types of power plants, factories and constructions have been designed to simulate their real world operations. The environment provides learners the possibility to interact with 3D machines and constructions and manipulate their parts, aiming at getting a deeper understanding of their functionality. Various learning activities based on the principles of constructivism have been designed, aiming to actively engage students and make learning more entertaining and efficient. The platform has been evaluated in real classroom conditions and the results indicate that the utilization of suitable learning activities in terms of students' active engagement and constructivism knowledge acquisition can motivate students and improve learning efficiency.
机译:虚拟世界中的教育开辟新的地平线。由于虚拟环境的技术特点,主要研究领域涉及到教学的考虑接近于有效地利用他们的独特能力,提高学生的学习。在这项工作中,我们将考察学习的效率发展,以协助教学教师和学生在学习的可再生能源领域的主题3D虚拟世界环境接近。在3D虚拟环境中,多种类型的发电厂,工厂和结构已经被设计来模拟他们的真实世界的运作。环境为学习者提供与3D的机器和结构操作和控制他们的部分,目的是让它们的功能有了更深的了解的可能性。基于建构主义的原则,各种学习活动的设计,旨在积极参与学生和使学习更有趣和高效。该平台在实际课堂教学情况进行了评估,结果表明,适当的学习活动,学生的积极参与和建构知识获取方面的利用率能激励学生提高学习效率。

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