• Title/Summary/Keyword: Definition of the Gifted

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Mathematical Creativity in Mathematics Education (수학교육과 수학적 창의성)

  • Whang, Woo-Hyung;Choi, Kye-Hyen;Kim, Kyung-Mi;Lee, Myeong-Hui
    • Communications of Mathematical Education
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    • v.20 no.4 s.28
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    • pp.561-574
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    • 2006
  • Mathematical creativity has been confused with general creativity or mathematical problem solving ability in many studies. Also, it is considered as a special talent that only a few mathematicians and gifted students could possess. However, this paper revisited the mathematical creativity from a mathematics educator's point of view and attempted to redefine its definition. This paper proposes a model of creativity in school mathematics. It also proposes that the basis for mathematical creativity is in the understanding of basic mathematical concept and structure.

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A Study on The Effect of Software Education on Writing Ability -For Elementary Gifted Students in Science- (SW교육이 쓰기 능력에 미치는 영향에 대한 연구-초등과학영재를 대상으로-)

  • Lee, Jaeho;Chun, Myunggeun
    • Journal of Creative Information Culture
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    • v.5 no.3
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    • pp.255-264
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    • 2019
  • In the previous study on the effectiveness of SW education, the educational goals were mainly focused on developing computational thinking ability and researching changes in computational thinking ability. But the word "computational thinking" is difficult to the public. Also the definition of computational thinking is varies from scholar to scholar. Therefore, this study aims to inform the public of the excellence and effectiveness of SW education through the change of "writing ability" which is more familiar to us. To achieve this goal, 10 lectures of SW training materials were produced and conducted in elementary science gifted class. As a result, significant changes have been made in the fluency and quality of writing skills, proving that SW training improves students' writing skills. Through this, we confirmed the visible results through SW education, which can be called justification of SW education. Furthermore, it is expected that various educational attempts will be developed using SW in other subjects.

An Analytical Study on Studies of Creativity Education in Korea: Focusing on Categories and Levels of Creativity (국내 창의성 교육 연구 동향분석: 창의성의 범주 및 수준을 중심으로)

  • Cho, Youn-Soon;Jeong, Ji-Eun
    • Journal of Gifted/Talented Education
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    • v.22 no.2
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    • pp.333-352
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    • 2012
  • Creativity has been suggested as a prime educational objective by national curriculum of Korea and research on creativity education has been increased since 2000s. How the researcher conceptualizes and approaches creativity affects the research. The purpose of this study is to explore directions of creativity research in education by analyzing its approach based on its categories and levels of creativity. The results of the study shows the following: (1)studies with a definition of creativity are more than without it but the former has been decreasing and the latter increasing little by little. (2)Studies which focus on person, cognitive or emotional characteristics, are the most. And process, environment, and product follow. (3)Regarding the levels of creativity, most was done on little-c creativity level, on the other hand, very limited studies conceptualized the creativity in educational context. Studies having an interest in mini-c creativity level were hardly found.

Research on Establishing Master Plan to Foster Creative Human Resources (창의인재육성 마스터플랜 수립을 위한 기초연구)

  • Seo, Ji-Yeon;Kim, Sung-Kook;Byon, Jae-Gyu
    • Journal of Gifted/Talented Education
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    • v.21 no.2
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    • pp.357-372
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    • 2011
  • Enhancing individual competitiveness as well as national competitiveness by fostering creative human resources are one of the important visions of the nation. Thus, fostering creative human resources should be important mission of the nation. The purpose of this study is to identify what type of creative human resources is possible, based on Korean culture and background. Qualitative research experts was given to six experts of academics, institutes, and industries in science, humanities, social science, and art. The result indicated that key words for fostering creative human resources in Korea are 'fusion' and 'integration', and the definition and factors of creative human resources as well as educational strategy to foster it depend upon them. How to foster creative human resources in life-long learning also discussed.

The Concept of Creativity and Its Enhancement in Mathematics Education (수학교육에서 창의성의 개념 및 신장 방안)

  • Park, Man-Goo
    • Communications of Mathematical Education
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    • v.23 no.3
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    • pp.803-822
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    • 2009
  • Creativity is emerging as one of the key components in every areas. In mathematics education, creativity or mathematical creativity is emphasized even though the definition of the term is inconsistence among every research. The purpose of this research was to identify the nature of mathematical creativity and provide the ways of strengthening it in the mathematics classroom. For this, students' mathematical strategies and problems in the elementary mathematics textbook were analyzed. The results showed that mathematically gifted students used a limited strategies and the problems in the textbooks were too simple to stimulate students' mathematical creativity. For the enhancement of students' mathematical creativity, we need to develop mathematically rich tasks and refine teacher education programs.

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Exploring the Creativity of the Scientific Gifted from Analyzing Descriptive Experiment-Design (서술적 실험 설계분석을 통한 과학 영재 창의성 탐색)

  • Kim, Se-Mi;Cho, Mi-Young;Kim, Sung-Won
    • Journal of The Korean Association For Science Education
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    • v.32 no.1
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    • pp.129-145
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    • 2012
  • This study investigated factors of creativity and interaction between factors that are revealed when gifted students designed scientific experiments. For this, we firstly developed items which required the written process of designing experiments to explore creativity factors. Then, we used these items as a part for letters of self-introduction to students who applied for 2011 correspondence education of general physics for the Korea Physics Olympiad. 513th letters of self-introduction which were analyzed to investigate factors of creativity in view of creativity definition after researchers' consultation, which specifically means a combination of divergent and convergent thinking. The results were as follows; (1) in the step of hypothesis building, we could not only find Originality and the Flexibility & Fluency, which were factors of divergent thinking, but also Coherency and Elaborateness, which were factors of convergent thinking. (2) in the step of the hypothesis testing, we could explore Originality, Flexibility & Fluency in divergent thinking and Coherency, Reliability, Clarity, Elaborateness in convergent thinking. (3) we also figured out three creativity types of gifted students from the viewpoint that creativity is a consequence of interaction between divergent thinking and convergent thinking; a) Type A showed divergent and convergent factors of creativity in the step of hypothesis building. However, type A did not include divergent factors of creativity on the process of the hypothesis testing. b) Type B had divergent and convergent factors of creativity on the process of the hypothesis testing, but it had not convergent factors of creativity on the step of hypothesis building. c) Finally, in Type C, only divergent factors of creativity appeared on the process of the hypothesis testing, but convergent factors of creativity could be found on the step of hypothesis building and hypothesis testing.

An Analysis on the Actual Conditions of the Mathematical Misconceptions Held by the Gifted Education Learners (수학영재교육 대상자의 수학용어에 대한 오개념 실태 조사)

  • Nam, Seung-In
    • Journal of Elementary Mathematics Education in Korea
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    • v.15 no.1
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    • pp.179-198
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    • 2011
  • The understanding of mathematical concepts should be backed up on a constant basis in oder to grow problem-solving skills which is one of the ultimate goals of math education. The purpose of the study was to provide readers with the information which could be considered valuably for the math educators trying both to prevent mathematical misconceptions and to develop curricular program by estimating the actual conditions and developing backgrounds of the mathematical misconceptions held by the gifted education learners. Accordingly, this study, as the first step, theoretically examined the meaning and the developing background of mathematical misconception. As the second step, this study examined the actual conditions of mathematical misconceptions held by the participant students who were enrolled in the CTY(Center for Talented Youth) program run by a university. The results showed that the percentage of the correct statements made by participant students is only 35%. The results also showed that most of the participant students belonged either to the level 2 requiring students to distinguish examples from non-examples of the mathematical concepts or the level 3 requiring students to recognize and describe the common nature of the mathematical concepts with their own expressions based on the four-level of concept formulation. The causes could be traced to the presentation of limited example, wrong preconcept, the imbalance of conceptual definition and conceptual image. Based on the estimation, this study summarized a general plan preventing the mathematical misconceptions in a math classroom.

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An Analysis on Perception of Students on Elementary Mathematics Gifted Program (초등 수학 영재 프로그램에 참가하는 학생의 인식 분석)

  • Lee, Jung;Kang, Wan
    • Communications of Mathematical Education
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    • v.21 no.1 s.29
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    • pp.107-124
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    • 2007
  • This study, at this point where a national attention is being focused on the special education for brilliant children after the enactment of the law regarding the promotion of the special education for brilliant children and the establishments of various policies on the education of excellence, investigated and analyzed the perceptions of students who are participating in the program for elementary school brilliant children on mathematics. First, the understanding of the area of the definition of brilliant students by the teachers with the institutions for the special education for brilliant children that use the program for elementary school brilliant children on mathematics should be increased. Second, the professionality of the teachers should be secured for an efficient operation of the program for elementary school brilliant children on mathematics. Third, the students who participated in the special education lot brilliant children tended to be self-initiative in participating in the program but the self-initiative aspect was insufficient in the lessons. Fourth, the students who are participating in the special education for brilliant children have positive opinions on the contents and methods of the lessons. Fifth, as for the materials for brilliant children's learning supplied to the program for elementary school brilliant children on mathematics, the brilliant students perceive them as the teaching materials for brilliant children. In this thesis, the program for special education for brilliant children was assessed and analyzed through the questionnaires to the teachers and students participating in the program. More abundant brilliant children programs should be developed so that the programs suitable the brilliant students can be provided to the students and the studies to improve the programs with regards to the effectiveness etc should be continually done from now on.

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Analysis of Explanations and Examples of the Brønsted-Lowry Model Presented in Chemistry Textbooks Developed by 2009 Revised Curriculum (2009 개정교육과정의 화학교과서에 제시된 Brønsted-Lowry 모델에 관한 설명과 예시의 문제점 분석)

  • Choi, Hee;Park, Chul-Yong;Kim, Sungki;Paik, Seoung-Hey
    • Journal of the Korean Chemical Society
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    • v.62 no.4
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    • pp.279-287
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    • 2018
  • In this study, we analyzed the explanations and examples of Brønsted-Lowry model in Chemistry I and Chemistry II textbooks of the 2009 revised curriculum. In particular, the definition of the Brønsted-Lowry model, the examples, and the content of experiments were analyzed by the process perspective of chemical equilibrium, emergent process. The analyzed textbooks were 4 kinds of Chemistry I textbooks and 4 kinds of Chemistry II textbooks in 2009 revision curriculum. As a result, Chemical I textbooks did not adequately show the chemical equilibrium viewpoint when explaining the Brønsted-Lowry model. In the Chemistry II textbooks, the examples of Brønsted-Lowry model were not present emergent process viewpoint, and those were described as sequential viewpoint of Arrhenius model. In addition, examples of experiments to demonstrate the Brønsted-Lowry model of Chemistry II textbooks were insufficient. The experimental examples related to the definition of acid bases were at the level of classification by the color change of indicators. The experimental examples for explaining the strength of acid and base were to compare current intensity or amount of hydrogen gas generated from the reaction with metal. In addition, all textbooks presented the state of aqueous solution when describing the Brønsted-Lowry model, causing problems with differentiation from the Arrhenius model. Therefore, it is necessary to develop examples of experiments to help students understand Brønsted-Lowry model by presenting acid and base reaction in the non-aqueous solution state.

Analysis of Problems in the Submicro Representations of Acid·Base Models in Chemistry I and II Textbooks of the 2009 & 2015 Revised Curricula (2009 개정교육과정과 2015 개정교육과정의 화학 I 및 화학 II 교과서에서 산·염기 모델의 준미시적 표상에 대한 문제점 분석)

  • Park, Chul-Yong;Won, Jeong-Ae;Kim, Sungki;Choi, Hee;Paik, Seoung-Hey
    • Journal of the Korean Chemical Society
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    • v.64 no.1
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    • pp.19-29
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    • 2020
  • We analyzed the representations of acid-base models in 4 kinds of Chemistry I and 4 kinds of Chemistry II textbooks of the 2009 revised curriculum, and 9 kinds of Chemistry I textbooks and 6 kinds of chemistry II textbooks of the 2015 revised curriculum in this study. The problems of the textbook were divided into the problems of definitions and the representations of the logical thinking. As a result of the study, the lack of the concept of chemical equilibrium had a problem with the representation of reversible reactions in the definition of the Brønsted-Lowry model in the Chemistry I textbooks of 2009 revised curriculum, it also appeared to persist in Chemistry I textbooks of 2015 revised curriculum which contains the concept of chemical equilibrium. The representations of logical thinking were related to particle kinds of conservation logic, combinational logic, particle number conservation logic, and proportion logic. There were few problems related to representation of logical thinking in Chemistry I textbook in 2009 revision curriculum, but more problems of representations related to logics are presented in Chemistry I textbooks in 2015 revision curriculum. Therefore, as the curriculum is revised, the representations of chemistry textbooks related to acid and base models need to be changed in a way that can help students' understanding.