在线教育是否支持高影响教育实践(HIEPs)?

IF 0.5 Q4 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Majed Alenezi
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引用次数: 0

摘要

随着资讯科技的发展,教育的数码化已以高影响力教育实践(HIEPs)的形式出现。然而,2020年的新冠肺炎疫情导致了传统教育向在线教育的转变。然而,尽管在线教育工具服务于不同的教育目的,但它们仍然与收入不平等、缺乏技术专长或资源有限等挑战有关,这些挑战往往会阻碍高等教育中hiep的有效性。因此,本研究旨在确定使用在线教育工具对高等教育机构发展HIEPs的影响。对来自北方边境大学(NBU)的220名受访者的实证研究表明,在线教育在提供更好的信息理解或更好的沟通设施方面发挥了作用。对在线教育在支持HIEPs实施有效性中的作用的研究表明,在线教育的情境因素、制度因素和性格因素激励了学生和教师,从而促进了HIEPs实施的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Does Online Education Support High Impact Educational Practices (HIEPs)?
With the advancement of information technologies, the digitalisation of education has taken place in the form of High Impact Educational Practices (HIEPs). However, the COVID-19 outbreak in 2020 led to transition from traditional education to online education. However, while online education tools serve different educational purposes they are still associated with challenges like income inequalities, lack of technical expertise, or limited availability of resources, which tend to hamper HIEPs effectiveness in higher education. Thus, this study aims to determine the impact of using online educational tools on developing HIEPs in higher educational institutions. Empirical examination of (220) respondents from the Northern Border University (NBU) showed the role of online education in providing better understanding of information or better communication facility. Examination of online education role in supporting effectiveness of implementing HIEPs stated that situational factors, institutional factors, and dispositional factors of online education motivate students and faculty members, thus contributing to effectiveness in HIEPs implementation.
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来源期刊
International Journal of Embedded Systems
International Journal of Embedded Systems COMPUTER SCIENCE, HARDWARE & ARCHITECTURE-
CiteScore
2.50
自引率
41.70%
发文量
56
期刊介绍: With the advent of VLSI system level integration and system-on-chip, the centre of gravity of the computer industry is now moving from personal computing into embedded computing. Embedded systems are increasingly becoming a key technological component of all kinds of complex technical systems, ranging from vehicles, telephones, audio-video-equipment, aircraft, toys, security systems, medical diagnostics, to weapons, pacemakers, climate control systems, manufacturing systems, intelligent power systems etc. IJES addresses the state of the art of all aspects of embedded computing systems with emphasis on algorithms, systems, models, compilers, architectures, tools, design methodologies, test and applications.
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