Digital ecosystem for enhancing research and innovation activities of master's students

M. S. Chvanova
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Abstract

Introduction. The dynamic development of modern digital technologies emphasizes the need for the development of new tools to activate the research and innovation activities of master's students. A digital ecosystem holds significant pedagogical potential not only in the academic activities of students but also in research and innovation. However, its creation is complicated by a lack of understanding of the essence, structure, and emergent properties of the system. The purpose of the study is to identify the features, mechanisms, and functionality of the digital educational ecosystem to enhance the research and innovation activities of undergraduates. Materials and methods. Bibliographic databases such as Scopus, Web of Science, Lens, and other international information systems of peer-reviewed scientific literature were used for the analysis of publications. System analysis and analysis of internet resources were employed to address the research objectives. The results of the study. The functional capabilities of the digital educational ecosystem for activating the research and innovation activities of master's students were identified, including access to information systems and databases of scientific information, automation of research management, creation and administration of electronic surveys, access to tools for processing and analyzing large volumes of data, access to data visualization tools, collaboration systems for working on research projects, automation of planning, tracking, and organizing research or educational projects, access to electronic systems for applying for research grants and scholarships, access to specialized plagiarism detection systems, electronic portfolios, access to publication management systems, automation of the creation and formatting of scientific articles and presentations, automation of publication formatting, access to virtual laboratories and modeling environments. Conclusion. The presented analysis allowed for the identification and justification of the pedagogical potential of the digital ecosystem for the core research and project activities of master's students, specifically: providing research with information resources; improving data collection and analysis; optimizing collaborative and network interactions; automating project management; digitally supporting the research process; digital technologies for stimulating creativity; digital support for publication preparation; expanding research boundaries; self-development; supporting distance learning; supporting virtual laboratories and modeling environments; ensuring data visualization; instrumental support for research quality analysis.
加强硕士生研究和创新活动的数字生态系统
引言现代数字技术的蓬勃发展强调了开发新工具以激活硕士生研究和创新活动的必要性。数字生态系统不仅在学生的学术活动中,而且在研究和创新方面都具有巨大的教学潜力。然而,由于对系统的本质、结构和突发特性缺乏了解,创建生态系统的工作变得十分复杂。本研究旨在确定数字教育生态系统的特征、机制和功能,以加强大学生的研究与创新活动。材料与方法。使用 Scopus、Web of Science、Lens 等书目数据库以及同行评审科学文献的其他国际信息系统对出版物进行分析。采用系统分析和互联网资源分析来实现研究目标。研究结果确定了数字教育生态系统激活硕士生研究和创新活动的功能能力,包括访问信息系统和科学信息数据库、研究管理自动化、创建和管理电子调查、访问处理和分析大量数据的工具、访问数据可视化工具、研究项目工作协作系统、自动规划、跟踪和组织研究或教育项目;使用电子系统申请研究补助金和奖学金; 使用专门的剽窃检测系统;电子作品集;使用出版管理系统;自动创建和格式化科学文 章和演示文稿;自动格式化出版物;使用虚拟实验室和建模环境。结论所做的分析有助于确定和论证数字生态系统在硕士生的核心研究和项目活动中的教学潜力,具体包括:为研究提供信息资源;改进数据收集和分析;优化协作和网络互动;项目管理自动化;以数字方式支持研究过程;激发创造力的数字技术;为出版准备工作提供数字支持;扩大研究范围;自我发展;支持远程学习;支持虚拟实验室和建模环境;确保数据可视化;为研究质量分析提供工具支持。
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