在灵活的混合学习模式下,以遗传学为重点的生物课上发展学童科学素养的有效性

Tatiana A. Sedykh, L. Amirova, A. Fazlutdinova, G. F. Galikeeva, Elvira Mansurovna Galimova, N. V. Sukhanova, V. Sattarov
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介绍。本文探讨了混合学习框架下小学生功能性读写能力的形成问题。本研究的目的是证实利用电子教育资源实现义务教育阶段科学素养指标稳定增长的有效性。材料与方法。研究方法以人性化、学童功能素养形成的创新性、以学习者为中心的学习生物学和遗传学组织的系统化方法以及整个教育过程为基础。在巴什科尔托斯坦共和国的7种教育机构中进行了实验工作:深入学习若干科目的学校、个别教育学校、私立学校、综合中学、基础普通教育学校、礼堂和体育馆。191名学生,9名教师,112名家长参与了这项研究。采用理论分析、元分析、类比法、比较法、修正法、问卷法、访谈法;测试和统计数据处理。结果。在研究过程中,论证了开发教育技术和工具的必要性,以实施通识教育阶段科学素养形成和发展的综合方法。阐明了遗传学在小学生科学素养形成中的作用;揭示了学校遗传学教学实践的趋势和需求。作者确定并描述了以下使用混合学习技术和面向学童和家长的电子教育课程的前景,该课程被称为“每个人的遗传学:关于困难”:更新关于研究遗传学对生物科学兴趣形成和发展的影响的知识,增加掌握微观世界中发生的复杂过程的知识的动力,以及在混合学习课程中使用电子教育材料时扩大学生个性化的新教育范式的发展前景。结论。研究结果证明了实施灵活模式对小学生科学素养形成的有效性;为学生和家长提出的电子教育资源“每个人的遗传学:关于困难”有助于发展学生的主观立场,为提高知识质量和对遗传学作为一门科学的兴趣提供了一个稳定的趋势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effectiveness of developing schoolchildren's science literacy in biology classes with a focus on the study of Genetics within a flexible blended learning model
Introduction. The article is devoted to the problem of schoolchildren’s functional literacy formation within the framework of blended learning. The purpose of the study is to substantiate the effectiveness of the use of an electronic educational resource to achieve a stable increase in indicators of science literacy at the stage of compulsory education. Materials and Methods. The research methodology is based on the ideas of humanization, innovativeness in the formation of schoolchildren’s functional literacy, learner-centered and systematic approach to the organization of learning biology and genetics, and the educational process as a whole. Experimental work was conducted in 7 types of educational organizations of the Republic of Bashkortostan: schools with in-depth study of a number of subjects, individual education schools, private schools, comprehensive secondary schools, basic general education schools, lyceums and gymnasiums. 191 schoolchildren, 9 teachers, 112 parents participated in the study. The following methods were used: theoretical analysis, meta-analysis, methods of analogy, comparison, modification, questionnaires, interviews; tests, and statistical data processing. Results. In the process of the research, the necessity of developing educational technologies and tools for implementing an integrated approach to the formation and development of science literacy at the stage of general education are substantiated. The role of studying Genetics in the formation of schoolchildren’s science literacy is clarified; trends and needs of school practice in teaching Genetics are revealed. The authors identify and describe the following prospects of using the technology of mixed learning and the electronic educational course for schoolchildren and parents called ‘Genetics for everyone: about the difficult’: updating knowledge about the influence of studying genetics on the formation and development of interest in biological sciences, increasing motivation to master knowledge about complex processes occurring in the microcosm, as well as expanding the prospects for the development of a new educational paradigm of personalization of students when using electronic educational materials in mixed learning courses. Conclusions. The results obtained prove the effectiveness of schoolchildren’s science literacy formation within the implementation of a flexible model; the proposed electronic educational resource ‘Genetics for everyone: about the difficult’ for schoolchildren and parents contributes to the development of the subjective position of schoolchildren, provides a steady trend towards improving the quality of knowledge, and interest in Genetics as a science.
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