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Computational Thinking Curriculum for K-12 Education -- A Delphi Survey

机译:K-12教育的计算思维课程-Delphi调查

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The purpose of this study is to design a computational thinking curriculum standard for K-12 education. The Delphi technique was employed to collect different views and derive consensus from a panel of thirteen experts, including computer scientists, computer science educators, K-12 computer teachers, and industry experts. The first draft of Delphi survey questionnaire, consisting of nine themes (problem solving, problem decomposition, algorithms, data representation, data analysis, modeling and simulation, abstraction, automation, and others) and 60 competence indicators, was developed based on our investigation of the nature of computational thinking. After three rounds of survey and a final round-table discussion, the expert panel derived 49 essential competence indicators (13 for grades K to 6, nine for grades 7 to 9 and 27 of grades 10 to 12) and eight optional competence indicators (one for grades 7 to 9 and seven for grades 10 to 12). According to the results, the core ability and training of computational thinking are different in grades. In grades K to 6, students develop logical thinking and problem solving skills in personal and family life. In grades 7 to 9, students must understand the basic concepts of programming and write basic programs. Finally, in grades 10 to 12, they will use high-level skills to apply the concepts of abstraction, modeling, and structured problem decomposition to solve problems in different fields. The results serve as useful references for developing Taiwan's new K-12 computing curriculum.
机译:这项研究的目的是为K-12教育设计计算思维课程标准。 Delphi技术被用来收集不同的观点,并从包括计算机科学家,计算机科学教育家,K-12计算机教师和行业专家在内的13名专家组成的小组中获得共识。在对以下内容的调查基础上,开发了Delphi调查问卷的初稿,该问卷包含9个主题(问题解决,问题分解,算法,数据表示,数据分析,建模与仿真,抽象,自动化等)和60个能力指标。计算思维的本质。经过三轮调查和最后一次圆桌讨论,专家小组得出了49个基本能力指标(13至6年级为13个,7至9年级为9个,10至12年级为27个)和8个可选能力指标(一个7至9年级,七至10至12年级)。根据结果​​,计算能力的核心能力和训练在年级上是不同的。在K至6年级,学生将发展个人和家庭生活中的逻辑思维和解决问题的能力。在7至9年级,学生必须了解编程的基本概念并编写基本程序。最后,在10到12年级,他们将使用高级技能来应用抽象,建模和结构化问题分解的概念来解决不同领域中的问题。研究结果可为开发台湾新的K-12计算课程提供有用的参考。

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