采用国际文凭(IB)小学学年计划(PYP)方法开发和应用小学人工智能教育课程

Bom-sol Kim, Eun-jung Go, Woo-jong Moon, Bong-chul Kim, Jong -hoon Kim
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引用次数: 0

摘要

本研究的目的是加强小学生对人工智能(AI)的基础理解,培养他们的计算思维。为了实现这一目标,我们结合 ADDIE 模型和国际文凭(IB)小学课程(PYP)的教学方法,创建了一个人工智能教育项目。在制定教育计划之前,我们根据 ADDIE 模型的各个阶段,对 60 名来自 IB 世界学校 P 小学部的五年级学生和 36 名教职员工进行了初步需求分析。根据初步需求分析的结果,我们选择了 "世界是如何运转的 "这一跨学科主题,因为根据参与的教育工作者的判断,这一主题与人工智能相关内容最能产生共鸣。基于现实生活的人工智能概念被完美地融入到教材中。在整个计划中,学生们围绕选定的跨学科主题和中心概念积极开展探索活动。他们在团队项目中开展合作,共同解决问题,完成旨在培养自主学习能力的活动和作业。为了评估所开发的教育计划对学生计算思维的影响,进行了前后测试。验证结果表明,该项目对提高参与学生的计算思维能力做出了重大贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development and Application of Elementary School AI Education Program Using the International Baccalaureate (IB) Primary Years Programme (PYP) Approach
The objective of this study is to enhance elementary school students' foundational understanding of artificial intelligence (AI) and to foster their Computational thinking. This goal was realized through the creation of an AI education program integrating the ADDIE model and the International Baccalaureate (IB) Primary Years Programme (PYP) teaching methodology. Before developing the educational program, we conducted a preliminary needs analysis with 60 fifth-grade students from IB World School P Elementary and 36 staff members, aligning with the stages of the ADDIE model. Drawing from the outcomes of this preliminary needs analysis, we opted for the transdisciplinary theme 'How the world works,' as it resonated most aptly with AI-related content, as determined by participating educators. Real-life AI-based concepts were seamlessly woven into the educational material. Throughout the program, students actively engaged in exploratory activities centered on the chosen transdisciplinary theme and central concept. Collaborating on team projects, they collectively tackled problem-solving processes, completing activities and assignments aimed at fostering self-directed learning. To assess the effectiveness of the developed educational program on students' computational thinking, pre- and post-tests were administered. Validation results underscored that the program made a significant contribution to the enhancement of Computational Thinking among the participating students.
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