Computational thinking in programming language and compiler design (keynote)

Author(s):  
Alfred V. Aho
2014 ◽  
Vol 644-650 ◽  
pp. 6185-6188
Author(s):  
Zhao Hua Wang

The author carried on the thorough research on computing thinking (CT) and interactive teaching. Computational thinking can improve college students' ability to use computers to solve problems. Interactive teaching can improve the effect of classroom teaching. The mobile Internet has the serious influence on classroom teaching. The existing interactive teaching systems have some disadvantages. According to the survey, most college students like to use, or own an apple mobile phone. The author has carried on the reform of classroom teaching and the curriculum design of C programming language, designed the interactive teaching software on iOS platform based on computational thinking. This paper presents that the computational thinking is introduced into the teaching software can contribute to the development of interactive teaching mode.


2022 ◽  
pp. 253-269
Author(s):  
Hüseyin Özçınar

The idea that computational thinking or algorithmic thinking should be taught to everyone dates back to the 1960s. First in 1960s, Alan Perlis argued that computer programming should be taught to everyone because it can be used as a mental tool for understanding and solving every kind of problem. In 1980s, under the leadership of Seymour Papert, students at the level of primary education were attempted to be taught LOGO programming language with the aim of gaining procedural thinking skill. After the publication of Jeannette Wing's “computational thinking” in Communications of the ACM in 2006, the idea that the basic concepts of computer science should be learned by all was started to be debated widely again. In the present paper, the justifications for teaching computational thinking and applicability of teaching computational thinking within the context of existing conditions will be discussed.


2018 ◽  
Vol 7 (2.29) ◽  
pp. 140
Author(s):  
Le Diem Bui ◽  
Yong Gi Kim ◽  
Won Ho ◽  
Ho Thi Thu Ho ◽  
Nguyen Khang Pham

In this paper, we propose a new WebQuest model using Web 2.0 services to organize online learning activities by using OKMindmap for building WebQuest and suggest Scratch projects created by students for outcome. WebQuest is an inquiry-oriented lesson format in which most or all the information that learners work with comes from the web. WebQuests can be a valuable addition to a collaborative classroom. One of the goals is to increase critical thinking by employing higher levels of Bloom’s Taxonomy and Webb’s Depth of Knowledge. WebQuests can be a versatile tool for teaching students. OKMindmap is a useful, free, easy to use knowledge manipulation tool for content creation and management. It helps building an innovative collaborating environment for online class and provides a way to embed web service as a node. With this capability, any web service can be embedded as a node on a single map. Moreover, many users (about 40) can work on a same map together. Scratch is a free educational programming language that was developed by the Lifelong Kindergarten Group at the Massachusetts Institute of Technology (MIT) with over 21 million registered users and 25 million shared projects. Scratch is designed to be fun, educational, and easy to learn. It’s a programming language for all with the tools for creating interactive stories, games, art, simulations, and more, using block-based programming. Facebook is also used as a tool for connecting and sharing WebQuest with students. This model was experimented at the School of Education at Can Tho University, which brought us positive results through blended learning. Our desire is to build a WebQuest library in a simple, cost-effective way through this STEM-style education so that inservice and preservice teachers can share together for the best professional development during the current industrial revolution 4.0.  


2015 ◽  
pp. 79-82
Author(s):  
HongBing Wang ◽  
YanRui Liang ◽  
Lin Yao ◽  
Jun Cai ◽  
LiJuan Zhu

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