• Title/Summary/Keyword: Computer Thinking

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A Meta-Analysis on the Effects of Educational Programming Language on High-level Thinking

  • Kim, Dong-Man;Lee, Tae-Wuk
    • Journal of the Korea Society of Computer and Information
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    • v.23 no.6
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    • pp.81-89
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    • 2018
  • In this paper, we propose to investigate the existing EPL education related studies and to collect the total effect size for the improvement of high-level thinking through meta-analysis and to confirm the effect size according to various variables. So, we have objectively identified and generalized the practical effects of EPL education on the various elements of high-level thinking and high-level thinking. The results of the meta-analysis showed that 1) EPL is a teaching-learning tool that greatly improves students' high-level thinking. 2) Education based EPL has greatly contributed to the enhancement of creative thinking and logical thinking among high-level thinking. 3) Kodu, App Inventor, Scratch, and Dolittle was confirmed that the effect on the improvement of high-level thinking was great.

An Analysis of 'Informatics' Curriculum from the Perspective of $21^{st}$ Century Skills and Computational Thinking ($21^{st}$ Century Skills와 Computational Thinking 관점에서의 '정보' 교육과정 분석)

  • Choi, Sook-Young
    • The Journal of Korean Association of Computer Education
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    • v.14 no.6
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    • pp.19-30
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    • 2011
  • This study analyzed characteristics of computer education from the perspective of $21^{st}$ Century Skills and Computational thinking. $21^{st}$ Century Skills are essential skills for success in today's world. They include critical thinking, problem solving, communication and collaboration. Computational thinking is a necessary ability in the age of convergence and a core concept of computer science education. This study first examined characteristics of $21^{st}$ Century Skills and Computational thinking. Then, it analyzed the relationship between these two skills and 'Informatics' curriculum. 'Informatics' is an elective course in K-12. The results of this study emphasized the importance and the necessity of computer education in the K-12 level.

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For the development Computer Game, using the Creative Group Thinking System (컴퓨터 게임 개발을 위한 아이디어 발상에 관한 연구)

  • Han Kyung-Don
    • Journal of the Korea Society of Computer and Information
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    • v.11 no.4 s.42
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    • pp.175-180
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    • 2006
  • The primary concern here is to discover the what and how of the computer same development. In other words, the goal of this research is help the evaluation of Creative Croup Thinking System (CGTS), become aware of areas of need for the development computer game. For the development computer game, the creative thinking is one of the most important principles. The creative thinking is the first step of the development computer game of process. In order to save time, effective qualifies, and achieve the goals, the researcher has studied the web programing on the Creative Croup Thinking System (CGTS).

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Development of Digital Contents to Improve Computational Thinking

  • Ryu, Mi-Young;Han, Sun-Gwan
    • Journal of the Korea Society of Computer and Information
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    • v.22 no.12
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    • pp.87-93
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    • 2017
  • The purpose of this study is to design and develop of digital contents to improve computational thinking in the online education environment. First, we planned the design and development of contents with 19 experts of Software education. Digital content was designed from the point of view of improving the educational quality and the quality of contents for the improve of computing thinking. The content type is classified into the SW education area; computer science, programming, physical computing, convergent computing, computing thinking, and software education that improves the computing thinking. And we designed 45 learning programs for each SW education area. Designed learning contents were developed in 464 lessons to suit the online education environment. The content validity of the proposed content was verified by the expert group and the average CVI value was over .83. Through this, we could analyze that the developed contents will help learners to expand their computing thinking.

A Study on the Development and Implementation of Computational Thinking Education Framework

  • Choe, Hyun-Jong;Lee, Tae-Wuk
    • Journal of the Korea Society of Computer and Information
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    • v.21 no.9
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    • pp.177-182
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    • 2016
  • In this paper, we propose the computational thinking education framework which provides three steps of computational thinking process and three kind of activities about computational thinking learning in class. The key idea of this framework is to provide the guidelines of designing activity steps of teaching and learning computational thinking in class using three axles of framework such as problem area, process of learning, and steps of computational thinking process. After designing a framework, we show that sample course of programming education program containing contents of Informatics subject in middle school by implementing our framework. Proposed framework and programming education program in middle school will be the good case study and guide to implement computational thinking concerned education programs in elementary, secondary, and universities.

Design of Algorithm Thinking-Based Software Basic Education for Nonmajors (비전공자를 위한 알고리즘씽킹 기반 소프트웨어 기초교육 설계)

  • PARK, So-Hyun
    • The Journal of Industrial Distribution & Business
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    • v.10 no.11
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    • pp.71-80
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    • 2019
  • Purpose: The purpose of this study is to design the curriculum of Basic College Software Programming to develop creative and logical-thinking. This course is guided by algorithmic thinking and logical thinking that can be solved by computing for problem-solving, and it helps to develop by software through basic programming education. Through the stage of problem analysis, abstraction, algorithm, data structure, and algorithm implementation, the curriculum is designed to help learners experience algorithm problem-solving in various areas to develop diffusion thinking. For Learners aim to achieve the balanced development of divergent and convergent-thinking needed in their creative problem-solving skills. Research design, data and methodology: This study is to design a basic software education for improving algorithm-thinking for non-major. The curriculum designed in this paper is necessary to non-majors students who have completed the 'Creative Thinking and Coding Course' Design Thinking based are targeted. For this, contents were extracted through advanced research analysis at home and abroad, and experts in computer education, computer engineering, SW education, and education were surveyed in the form of quasi-openness. Results: In this study, based on ADD Thinking's algorithm thinking, we divided the unit college majors into five groups so that students of each major could accomplish the goal of "the ability to internalize their own ideas into computing," and extracted and designed different content areas, content elements and sub-components from each group. Through three expert surveys, we established a strategy for characterization by demand analysis and major/textbook category and verified the appropriateness of the design direction to ensure that the subjects and contents of the curriculum are appropriate for each family in order to improve algorithm-thinking. Conclusions: This study helps develop software by enhancing the ability of students who practice various subjects and exercises to explore creative expressions in various areas, such as 'how to think like a computer' that can implement and execute their ideas in computing. And it helps increase the ability to think logical and algorithmic computing based on creative solutions, improving problem-solving ability based on computing thinking and fundamental understanding of computer coding and development of logical thinking ability through programming.

The study of potentiality and constraints of the one board computer to teach computational thinking in school (Computational Thinking의 학교 현장 적용을 고려한 원보드컴퓨터의 가능성과 제한점에 관한 연구)

  • Kim, SugHee;Yu, HeonChang
    • The Journal of Korean Association of Computer Education
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    • v.17 no.6
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    • pp.9-20
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    • 2014
  • With the change of global awareness of Computing education and introspection about Computer education focused on ICT literacy, efforts are being made to reflect computational thinking in the new curriculum. But if computational thinking would be possible at school, it require tremendous cost to prepare computers for school. In this study, we investigate potentiality and constraints of the one board computer to teach computational thinking in school. We study fundamental performance, application of physical computing and programming education, maintenance of the computers, power consumption of the one board computers which is raspberry pi, beagle bone black, and pcduino3. The result of the study show that one board computer can substitute desktop of the school unless tasks related to require massive data storage and processing. We draw a conclusion that Pcduino3 is well-suited for computational thinking education.

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Analysis about the Initial Process of Learning Transfer in Computational Thinking Education (Computational Thinking 교육에서 나타난 초기 학습전이에 대한 분석)

  • Kim, Soohwan
    • The Journal of Korean Association of Computer Education
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    • v.20 no.6
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    • pp.61-69
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    • 2017
  • The Goal of SW education is to improve computational thinking. Especially, non computer majors need to apply computational thinking to their problem solving in their fields after computational thinking class. In this paper, we verified what factors affect the improvement of computational thinking through mixed research method after teaching computational thinking to non major students. Also, we analysed the characteristics of initial learning transfer of computational thinking, and establish the reason about he validity and justification for non major in SW education. The result shows learning satisfaction, learning transfer motivation, and self-CT efficacy affect the perception about improvement of computational thinking. Also, we found that there is application of computational thinking was coming up with problem solving process because the initial learning transfer process of computational thinking has characteristics about concepts and practices of it in programming steps. The effectiveness and learning transfer process of computational thinking for non majors will give the validity and justification to teach SW education for all students.

The Concept of Computational Thinking through Analysis of Computer Education Framework in the United States and its Implications for the Curriculum of Software Education (미국 컴퓨터교육 프레임워크 분석을 통한 Computational Thinking의 개념과 교육과정 편성의 시사점 분석)

  • Shin, Seungki;Bae, Youngkwon
    • Journal of The Korean Association of Information Education
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    • v.22 no.2
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    • pp.251-262
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    • 2018
  • In this study, we conducted to derive some implications by analyzing the computer education framework proposed by K12CS in the United States in order to organize the software curriculum and conceptualization of computational thinking in Korea. First, we discussed the use of the term Computational Thinking as a Computing Thinking in Korea and compare it with the concept presented in the US curriculum. we derived that Computing Thinking and Computational Thinking are different in the focus and scope of problem solving. Second, considering the fact that Korean software curriculum does not consider the hierarchy according to the school and the grade, we reconstructed the curriculum based on the core practices and concepts which were suggested by the organization of K-12 Computer Science in the United States.

Analysis of Difference in Computer Programming Understanding Ability focused on Statement Structures between Genders and Abstract Thinking Levels of High School Students (문장구조 중심의 컴퓨터 프로그래밍 이해력에 관한 고등학생들의 성별 및 추상적 사고수준별 차이 분석)

  • Park, Chan Jung;Hyun, Jung Suk;Jin, Heuilan
    • The Journal of Korean Association of Computer Education
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    • v.19 no.6
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    • pp.69-80
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    • 2016
  • As a 21C core skill, computational thinking has been focused recently, and computer programming education is popular in primary and secondary schools. This paper aims to analyze the computer programming learning results based on gender difference and verify the reasons causing the difference. In this research, we focused on students' abstract thinking level as a variable and used C programming language and the RUR-PLE. Also, in this research, we focused on the concept of abstraction, one of the main component of computational thinking. And then, we analyze 587 high school students' abstract thinking level and survey them in order to find a new method for enhancing programming skill. In addition, we analyzed the causes for the difference in how the abstract thinking level applies when the students understand various structures of computer programs. From the results, we can propose a computer programming education method that enhances students' merits and compensates their drawbacks in the near future.