• Title/Summary/Keyword: Creative Ability

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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.

Analysis of Correlation and Group Difference for Selection of Elementary Fusion Gifted Students (초등융합영재 선발요소의 상관관계 및 그룹 차이 분석)

  • Min, Meekyung;Kim, Kapsu
    • Journal of The Korean Association of Information Education
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    • v.22 no.4
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    • pp.491-500
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    • 2018
  • In the era of the Fourth Industrial Revolution, talents should not be subordinated to a particular discipline, but must be able to converge a variety of disciplines. It is important to have a fused thinking because elementary school students are likely to make various changes. Therefore, when selecting elementary gifted students, they are selecting students for fusion gifted students. This study examines the effects of creative problem solving ability, document evaluation, and interview factors on student selection when selecting students for gifted students. The results show that creative problem solving ability has the most influence on selection. In the case of the fifth graders, the creative problem solving ability and the document evaluation influence the selection. In fourth graders, the creative problem solving ability and interview affect the selection. In the case of female students, it was found that creative problem solving ability and document evaluation influenced selection. In addition, there was a gender difference in the evaluation of documents in the gender difference analysis. There is no significant difference between the three groups in the grade-by-grade difference analysis.

TA Longitudinal Study of the Effect of Creativity Educational Program (창의성 프로그램이 창의성에 미치는 영향에 대한 단기종단적 연구)

  • Lew, Kyoung-Hoon
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.13 no.10
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    • pp.4536-4542
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    • 2012
  • The purpose of this study was to investigate the long-term effects of creativity educational program for students. For this study 79 elementary students(the fourth: experimental group) who had been trained creative educational program were compared with 74 elementary students(the fourth: control group) who had not been trained creative educational program. The results of the study were as follows: the creative thinking ability and creative personality are higher in the experimental group compare with the control group in the long-term effect. This study is valuable in that it showed not only the importance creative educational program but also suggestion of effective creativity education program improving continued promoting effects for children.

Difference between Gifted and Regular Students in Mathematical Creativity and Mathematical Self-Efficacy

  • Seo, Jong Jin;Hwang, Dong Jou
    • Research in Mathematical Education
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    • v.8 no.3
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    • pp.183-202
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    • 2004
  • The former study results demonstrate that differences between people of creativity and non-creativity lie in differences of the self-efficacies rather than those of cognitive aspects and a man of higher self-efficacy has a tendency to set up a higher goal of achievement and higher self-efficacy influences his or her achievement results as well (Zimmerman & Bandura 1994). Using the method of mathematical creative responses of open-ended approach (Lee, Hwang & Seo 2003), difference of mathematical self-efficacies has been surveyed in the study. Results of the survey showed that some students of a high mathematical self-efficacy even had bad marks in the originality or creativity but, in some cases, some students of a low mathematical self-efficacy rather had good marks in the fluency. Therefore, the response results mathematical creativity ability may be a special ability and not just a combination of self-efficacy ability. The fluency of the mathematical creative ability may be a combination of mathematical motivation ability that have been surveyed in the study suggest that not only cognitive components but also social and emotional components should be included in a development process of new creative method for teaching and learning mathematics.

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An Informatics Education Program for Enhancing Creative Problem Solving Ability (창의적 문제해결력 향상을 위한 정보 교육 프로그램)

  • Lee, Young-Jun;Lim, Woong;Lee, Eun-Kyoung
    • The Journal of Korean Association of Computer Education
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    • v.13 no.1
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    • pp.1-8
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    • 2010
  • In the knowledge based society, it is very important to have an ability to solve problem with knowledge and information. In addition, the number of problems that can not be solved only with existing knowledge are increasing. Therefore, we developed an informatics education program that enhances creative problem solving abilities through systematic collection of information. This program designed to enhance both divergent thinking and convergent thinking. The developed program improves the problem solving ability with learner's internal knowledge as well as new information that is collected from external world. More practical and effective program can be provided through continuous program improvement.

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Development and Application of Teaching Strategy Focused on Problem Solving Process in the 'Separation of Mixture' Unit of Third Grade Elementary School (초등학교 3학년 '혼합물의 분리' 단원에서 문제해결 과정을 강조한 수업 전략 개발 및 적용)

  • Lee, Shin Hyun;Choi, Sun-Young
    • Journal of Korean Elementary Science Education
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    • v.33 no.1
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    • pp.105-114
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    • 2014
  • The purpose of this study was to develop a teaching strategy focused on problem solving process and explore its effects on science creative problem solving ability, science process skills, science academic achievements and scientific attitudes of students after applying it. Teaching strategy focused on problem solving process employed brainstorming and PMI thinking strategies. The participants were the third grade students of both an experimental class(26 students) and a comparative class(25 students) at the S elementary school located in Goyang-City, Kyonggi Province. The developed strategy was applied to the experimental class for 9 periods of 'Separation of mixture' unit. The results of the tests on the science creative problem solving ability, the science process skills, scientific achievement and scientific attitude were statistically higher in the experimental class.

수학 영재 판별 도구 개발 - 수학 창의적 문제 해결력 검사를 중심으로 -

  • 김홍원
    • Journal of Gifted/Talented Education
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    • v.8 no.2
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    • pp.69-89
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    • 1998
  • The purpose of this study is to develop a test which can be used in identification of the gifted students in the area of mathematics. This study was carried out for two years from 1996. Mathematical giftedness is, in this study, regarded as a result of interaction of mathematical thinking ability, mathematical creativity, mathematical task committment, background knowledge. This study presumed that mathematical thinking ability is composed of seven thinking abilities: intuitive insights, ability for information organization, ability for visualization, ability for mathematical abstraction, inferential thinking ability(both inductive and deductive thinking abilities), generalization and application ability, and reflective thinking. This study also presupposed that mathematical creativity is composed of 3 characteristics: fluency, flexibility, originality. The test for mathematical creative problem solving ability was developed for primary, middle, and high school students. The test is composed of two parts: the first part is concentrated more on divergent thinking, while the second part is more on convergent thinking. The major targets of the test were the students whose achievement level in mathematics belong to top 15~20% in each school. The goodness of the test was examined in the aspects of reliability, validity, difficulty, and discrimination power. Cronbach $\alpha$ was in the range of .60~.75, suggesting that the test is fairly reliable. The validity of the test was examined through the correlation among the test results for mathematical creative problem solving ability, I. Q., and academic achievement scores in mathematics and through the correlation between the scores in the first part and the scores in the second part of the test for mathematical creative problem solving ability. The test was found to be very difficult for the subjects. However, the discrimination power of the test was at the acceptable level.

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Contemplation of Creative Practice Book though Art Activity in Creative Education (창의교육에 있어 예술 활동을 통한 창의실습도서에 대한 고찰)

  • Ahn, Jong-Hyeck
    • The Journal of the Korea Contents Association
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    • v.12 no.10
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    • pp.106-115
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    • 2012
  • The 21st century is the era of the center of the Originality(of thought). It also emphasizes creativity and creative education policy based on the new changes are dreaming. Creative education through art grasp the essence of things, seek express oneself, and brings cognitive ability. An educatee promote the development of creativity and insight on things other than the existing. New thinking will gain the ability to make rational faculty of the mind and principle. Creative education implement in homes, schools, communities, public agencies, private organizations, and running through the creative environment, but the number of trainees are exposed to extremely rare. The creative practice book in charge of creative education of the dissemination insufficient of research and development in reality. The creative practice book requires a new approach. It can be seen easily accessible environment where everyone should be able to provide for nationwide. In this respect, the creative practice book through art to begin consideration, is studied a whole spectrum, and be published in variety of practice books.

A Study on Information Education and School Library (정보교육과 학교도서관에 관한 연구)

  • Yoo So-Young
    • Journal of the Korean Society for Library and Information Science
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    • v.26
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    • pp.53-74
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    • 1994
  • Creative thinking in education is a common assumption to be accomplish in this information age. Information education can contribute to build the ability to think creatively. The Author explored how information education conduces the creative thinking ability that is necessary to the development of independent and competent study for students themselves. The writer also expressed the integrated education makes students think synthetically and synthetic educational experience derives creative thinking. She based her arguments upon the theory of the psychology of memory and the Piaget's cognitive structure. To increase the effects of information education, it is necessary to integrate the curriculums and learning method of the information education and those of other areas of learning, i,e., languages, literatures, social sciences, sciences, mathematics, etc. Here, author asserted that the teaching of information skill within classroom curriculums for all subject areas can make the integrated effects on various classroom curriculums. On the basis of the findings of this study, the author recommended that every school needs to prepare enough books and other media for the students to drill information skill. Consequently, to build creative thinking ability for He students, librarians, classroom teachers and school principals who have influence on the information education, have to cooperate to initiate integrated information education for the student.

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A Development of the Test for Mathematical Creative Problem Solving Ability

  • Lee, Kang-Sup;Hwang, Dong jou;Seo, Jong-Jin
    • Research in Mathematical Education
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    • v.7 no.3
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    • pp.163-189
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    • 2003
  • The purpose of this study is to develop a test, which can be used in creative problem solving ability in mathematics of the mathematically gifted and the regular students. This test tool is composed of three categories; fluency (number of responses), flexibility (number of different kinds of responses), and originality (degree of uniqueness of responses) which are the factors of the creativity. After applying to 462 middle school students, this test was analyzed into item analysis. As a results of item analysis, it turned out to be meaningful (reliability: 0.80, validity: item 1(1.05), item 2(1.10), item 3(0.85), item 4(0.90), item 5(1.08), item difficulty: item 1(-0.22), item 2(-0.41), item 3(0.23), item 4(0.40), item 5(-0.01), item discriminating power: item 1(0.73), item 2(0.73), item 3(0.67), item 4(0.51), item 5(0.56), over the level of a standard basis. This means that the test tool was useful in the test process of creative problem solving ability in mathematics

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