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Teaching programming based on Computational Thinking

机译:基于计算思维的教学程序设计

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Computational Thinking was an important way to study computer science and it explained the relationships between human, calculation and computer in terms of thinking. The computer science was raised from the theory of tools to the height of thinking. This paper introduced three levels of Computational Thinking: Computational Thinking in computer science, Computational Thinking in computing science and Computational Thinking in all subjects and analyzed the thinking characteristic of calculation and the calculation attribute of thinking. Through Computational Thinking, human can solve problems by using computer more efficiently. Therefore, the cultivation of Computational Thinking's ability was particularly important in teaching. But Computational Thinking cannot be taught without carrier and the programing course was the best way for they were closely related with each other. The paper took the Maze Problem as an example to express the differences between human and computer in the aspects of storage structure, thinking mode, solving procedure, etc. and it compared the human brain's multi-dimension and multi-forms characteristics with the computer's ne-dimension and one-form characteristics. The paper thought the goal of teaching was not to learn knowledge itself, but to form problem solving thinking.
机译:计算思维是研究计算机科学的重要方法,它从思维角度解释了人,计算和计算机之间的关系。计算机科学已经从工具理论发展到思维的高度。本文介绍了计算思维的三个层次:计算机科学中的计算思维,计算机科学中的计算思维和所有学科中的计算思维,并分析了计算的思维特征和思维的计算属性。通过计算思维,人类可以通过更有效地使用计算机来解决问题。因此,计算思维能力的培养在教学中尤为重要。但是如果没有载体,就不能教授计算思维,而编程课程是彼此密切联系的最好方法。本文以迷宫问题为例,从存储结构,思维方式,求解过程等方面来表达人与计算机之间的差异,并将人脑的多维,多形式特征与计算机网络的差异进行了比较。尺寸和一种形式的特征。该论文认为,教学的目的不是学习知识本身,而是形成解决问题的思维。

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