Markandan Nagalaxmy, Osman Kamisah, Halim Lilia
Faculty of Education, National University of Malaysia, Bangi, Malaysia.
Front Psychol. 2022 Jun 9;13:872593. doi: 10.3389/fpsyg.2022.872593. eCollection 2022.
Education digitization highly enthuses learners for deeper learning and developing thought processes in formulating problems and their solutions effectively in their real-life circumstances. Implementing computational thinking skills through programming in Malaysian primary and secondary school STEM curriculum create huge challenges, especially among STEM educators. This study highlights the integration of four major theories in developing the Metacognitive Empowerment by Computational Thinking (ME-CoT) learning module by cultivating computational thinking through programming skills to promote metacognitive awareness in Biology students. Pilot research was conducted to investigate the reliability of the ME-CoT learning module. Since the study sample was less than 30 students then, the consistency of the measurements, Pearson's r was calculated to identify stability reliability. Findings revealed that the ME-CoT learning module has very strong stability reliability with a value of = 0.974 and provides advantages such as assisting students to understand the content of the lesson more actively and in a fun way.
教育数字化极大地激发了学习者进行深度学习,并在现实生活情境中有效提出问题及其解决方案的过程中培养思维能力。通过编程在马来西亚中小学STEM课程中培养计算思维技能带来了巨大挑战,尤其是在STEM教育工作者中。本研究强调了整合四种主要理论来开发计算思维赋能元认知(ME-CoT)学习模块,即通过编程技能培养计算思维,以提高生物学专业学生的元认知意识。开展了试点研究以调查ME-CoT学习模块的可靠性。由于当时研究样本少于30名学生,因此计算了测量值的一致性,即皮尔逊相关系数r,以确定稳定性可靠性。研究结果显示,ME-CoT学习模块具有非常强的稳定性可靠性,值为 = 0.974,并且具有帮助学生更积极且有趣地理解课程内容等优点。