网络技术在智障学生计算思维发展中的作用

A. Assainova, D. Abykenova, Zhanara T. Aubakirova, Kymbatsha M. Mukhamediyeva, Kymbat A. Kozhageldinova
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引用次数: 0

摘要

计算思维是现代人思维中重要而必要的组成部分。事实证明,智障学生的这种思维方式的发展使他们能够在现代世界中快速导航,识别问题并创造复杂的解决方案。2019冠状病毒病大流行期间的在线教育证明了在精神残疾儿童教育中使用网络技术的可能性。本研究旨在评估网络技术对精神障碍学生计算思维发展的影响。实验涉及14名8-12岁的学生和4名导师。孩子们接受了为期8周的计算思维和计算机科学训练。实验前后采用El-Hamamsi等人的cct测验对计算思维进行评估。在使用网络技术进行计算机科学课程后,与初步测试的结果(M=5,93, SD=2,3)相比,受访者显示出更高水平的计算思维(M=15,7, SD=3,69)。网络技术可以显著提高全纳教学的有效性,这表明在通识教育学校的全纳课堂中,将网络技术融入教学系统的重要性。
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Web Technologies in the Development of Computational Thinking of Students with Mental Disabilities
Computational thinking is an important and necessary part of a modern person’s thinking. It has been proven that the development of this way of thinking in students with mental disabilities allows them to navigate quickly in the modern world, identify problems and create complex solutions. Online schooling during the COVID-19 pandemic demonstrated the possibilities of the usage of web technologies in the education of children with mental disabilities. This study aims to evaluate the impact of web technologies on the development of computational thinking of students with mental disorders. The experiment involved 14 students aged 8-12 and 4 tutors. For 8 weeks children were trained in computational thinking and computer science. Assessment of computational thinking was performed with cCT-test by El-Hamamsi et al. before and after the experiment. After conducting computer science lessons using web technologies the respondents showed a higher level of computational thinking (M=15,7, SD=3,69), compared to the results of preliminary testing (M=5,93, SD=2,3). Web technologies can significantly increase the effectiveness of inclusive pedagogy, which establishes the importance of integrating web technologies into the teaching system in inclusive classes of general education schools.
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来源期刊
自引率
0.00%
发文量
352
审稿时长
12 weeks
期刊介绍: This interdisciplinary journal focuses on the exchange of relevant trends and research results and presents practical experiences gained while developing and testing elements of technology enhanced learning. It bridges the gap between pure academic research journals and more practical publications. So it covers the full range from research, application development to experience reports and product descriptions. Fields of interest include, but are not limited to: -Software / Distributed Systems -Knowledge Management -Semantic Web -MashUp Technologies -Platforms and Content Authoring -New Learning Models and Applications -Pedagogical and Psychological Issues -Trust / Security -Internet Applications -Networked Tools -Mobile / wireless -Electronics -Visualisation -Bio- / Neuroinformatics -Language /Speech -Collaboration Tools / Collaborative Networks
期刊最新文献
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