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Unplugged Approaches to Computational Thinking: a Historical Perspective

机译:未插入的计算思维方法:历史视角

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In the recent years, there has been a push to engage primary and secondary students in computer science to prepare them to live and work in a world influenced by computation. One of the efforts involves getting primary and secondary students to think computationally by introducing computational ideas such as, algorithms and abstraction. Majority of this work around computational thinking has focused on the use of digital technologies, in particular programming environments (Yadav, Stephenson, and Hong 2017). In today's highly digitalized world, we often associate computational problem-solving processes with the use of computers. Yet, solving problems computationally by designing solutions and processing data is not a digital skill, rather a mental skill. Humans have solved problems for eons and before anyone even thought about the types of digital technologies and devices we know today. The purpose of this article is to examine the historical route of computational thinking and how history can inspire and inform initiatives today. We introduce how computational thinking skills are rooted in non-digital (unplugged) human approaches to problem solving, and discuss how mainstream focus changed to digital (plugged) computer approaches, particularly on programming. In addition, we connect past research with current work in computer science education to argue that computational thinking skills and computing principles need to be taught in both unplugged and plugged ways for learners to develop deeper understanding of computational thinking ideas and their relevance in today's society.
机译:近年来,有一大堆计算机科学中的中学生和中学生,以便在受到计算影响的世界中生活和工作。其中一个努力涉及获得中小学学生通过引入计算思想等算法和抽象来计算地思考。计算思维周围的大部分工作都集中在使用数字技术,特别是编程环境(Yadav,Stephenson和Hong 2017)的使用。在当今高度数字化的世界中,我们经常将计算问题解决过程与计算机的使用联系起来。然而,通过设计解决方案和处理数据来计算问题,而不是数字技能,而不是心理技能。人类已经解决了eons的问题,并且在任何人甚至想到我们今天所知道的数字技术和设备类型之前。本文的目的是审查计算思维的历史途径以及历史如何激励今天激励和通知举措。我们介绍计算思维技能如何植根于非数字(拔出)人类的问题解决方面,并讨论主流焦点如何改变为数字(插入的)计算机方法,特别是在编程方面。此外,我们将过去的研究与计算机科学教育中的当前工作联系起来,需要在学习者中展开和插头的方式教授计算思维技能和计算原则,以便更深入地了解对当今社会中的计算思想思想及其相关性。

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