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Developing a Model of Increasing the Learners’ Bilingual Professional Capacity in the Virtual Laboratory Environment

机译:制定越来越多的学习者双语专业能力在虚拟实验室环境中的模型

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摘要

The article considers industrial applications of digital twins and their contribution to decision-making and prevention of failures in manufacturing. Virtual laboratories are described as an example of using digital twins not only in industry but also for educational purposes. The article is also focused on the value of physical and virtual investigations through the prism of content and language integrated learning approach (CLIL) and it offers recommendations for combining the two to strengthen science inquiry learning and job-relevant learning. Students conduct online investigations resulting in interdisciplinary team interaction and knowledge integration. Adopting the CLIL approach changes engineering students’ attitudes to learning a foreign language, drums up their academic interest, and strengthens their motivation. In addition, the article describes how neural networks are applied for the simulation of physical processes in a virtual laboratory. The advantages of using virtual laboratories for professional-oriented training include linking observable and unobservable phenomena, pointing out essential information, and providing online, adaptive guidance. To evaluate the efficiency of the virtual laboratory environment, we conducted an experiment to assess the effectiveness of an integrated learning course with the elements of a virtual laboratory. The sample was 48 students (23 of them were enrolled on the course based on integrated learning with elements of virtual environment; 25 students studied professional discipline and professional English separately). To collect the data two online testing on English were conducted. The professional discipline was evaluated once at the end of the semester. In addition, we conducted an online survey on motivation for students of both groups to reveal the influence of educational process organization on this indicator. The results of the experiment allowed us to ascertain that the CLIL approach in the virtual laboratory environment resulted in better outcomes and helped the students adopt a more positive attitude to learning English.
机译:该文章考虑了数字双胞胎的工业应用及其对制造业失败的决策和预防失败的贡献。虚拟实验室被描述为不仅在工业中使用数字双胞胎的示例,也可以用于教育目的。本文还专注于通过内容和语言综合学习方法(CLIL)的棱镜的身体和虚拟调查的价值,并为组合两者加强科学探究学习和工作相关学习的建议提供了建议。学生进行在线调查导致跨学科团队互动和知识整合。采用CLIL方法改变工程学生对学习外语的态度,鼓起他们的学术兴趣,并加强他们的动力。此外,本文介绍了神经网络如何应用于虚拟实验室中的物理过程的模拟。使用虚拟实验室的专业培训的优势包括连接可观察和不可观察的现象,指出基本信息,并提供在线,适应性指导。为了评估虚拟实验室环境的效率,我们进行了一个实验,以评估综合学习课程与虚拟实验室的要素的有效性。该样本是48名学生(其中23名是根据综合学习与虚拟环境元素的课程注册; 25名学生分别研究专业纪律和专业英语)。要收集数据,进行了两次英语在线测试。专业纪律在学期结束时进行了一次评估。此外,我们对两组学生的动机进行了在线调查,以揭示教育过程组织对此指标的影响。实验结果允许我们确定虚拟实验室环境中的CLIL方法导致更好的结果,并帮助学生采取更积极的学习英语。

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