• Title/Summary/Keyword: 초등 과학 영재

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Effects of the Classes on the Path of the Light through the Lens Focused on Substantial Concepts for the Elementary School Gifted in Science (렌즈를 지나는 빛의 경로 학습에서 기본 개념을 강화한 초등 과학 영재 수업의 효과)

  • Lee, In-Ho;Hong, Jun-Euy;Jhun, Young-Seok
    • Journal of Korean Elementary Science Education
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    • v.25 no.spc5
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    • pp.548-555
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    • 2007
  • In this paper, we suggested that those elementary school students who are gifted in science should be taught basic and fundamental concepts to solve applied problems. We developed a teaching model based on a lesson regarding the path that light takes when passing through a lens on the base of refraction of light. We applied the teaching model to scientifically-gifted elementary school students and analyzed the results. The teaching model is based on the circulation loaming model appropriate for learning such concepts. The problems were designed and applied in order to determine the students' level of concept skills held and also to develop new teaching tools to help their understanding of concepts. As a result, we confirmed that the students, who were unable to describe the path of the light before the course of instruction was given, were able to draw and explain the path of light passing trough lens by using the law of refraction following the instruction.

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Conceptual Change via Instruction based on PhET Simulation Visualizing Flow of Electric Charge for Science Gifted Students in Elementary School (전하이동을 시각화한 PhET 기반 수업을 통한 초등과학영재의 전류개념변화)

  • Lee, Jiwon;Shin, Eun-Jin;Kim, Jung Bog
    • Journal of Korean Elementary Science Education
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    • v.34 no.4
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    • pp.357-371
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    • 2015
  • Even after learning electric current, elementary school students have various non-scientific conceptions and difficulties. Because flow of charge is not visible. Also elementary school students do not learn theory but phenomena, so they cannot transfer theoretical perspective to new situation. In this research, we have designed instruction based on PhET simulation visualizing flow of electric charge and applied it to 37 science-gifted students in elementary school for measuring conceptual understanding. As a result, six out of the seven Hake gains of question set are high gain and just one is middle gain because the students have understood the flow pattern of the charge through circuit elements such as light bulbs, wire, as well as battery with PhET simulation and it gives a chance to create various questions spontaneously about electric current. Also they become able to do spontaneous mental simulation without PhET simulation about flow of charges. This research, suggest that developed materials using PhET simulation could be used as not only program for gifted students in elementary school, but also the electrical circuit section in an elementary science curriculum.

A Comparison of Self-Regulation and Sociality between Elementary Scientific Gifted Students and General Students (초등과학영재 학생과 일반학생의 자기조절능력과 사회성의 비교)

  • Lee, Yeo Jin;Choi, Sun Young
    • Journal of Korean Elementary Science Education
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    • v.35 no.4
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    • pp.406-415
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    • 2016
  • The purpose of this study was to compare self-regulation and sociality between elementary scientific gifted students and general students. The subjective students are composed of fifth and sixth grade elementary school students. A survey on self-regulation and sociality had been conducted to 106 general students, 38 gifted class students and 43 students in science educational institute for the gifted. The results of this study were as follows: First, the results of ANOVA test showed that the scientific gifted students were significantly better than general students on all subscales of self-regulation and sociality. Second, the results of correlation analysis indicated that self-regulation and sociality and their subscales were all highly positive relationship on students in science educational institute for the gifted, gifted class students and general students. Third, the results of multiple regression analysis showed that the motivational factor of self-regulation gave the greatest effect to the sociality of students in science educational institute for the gifted, whereas, the cognitive factor of self-regulation gave the greatest effect to the sociality of the general students and gifted class students.

A Comparison of Grit, Failure Tolerance and Psychological Well-Being between Elementary Science-Gifted and the General Students (초등 과학영재와 일반학생의 그릿(Grit)과 학업적 실패내성 및 심리적 안녕감과의 비교)

  • Youn, Sang-Chon;Choi, Sun Young
    • Journal of Korean Elementary Science Education
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    • v.36 no.4
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    • pp.439-446
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    • 2017
  • The purpose of this study was to compare Grit, failure tolerance and psychological well-being between elementary science gifted and general students. The subjects of this study were 48 science gifted students and 70 general students in the 5th and 6th grade of elementary school in Gyeonggi province. The results of this study were as follows: First, Grit, failure tolerance and psychological well-being of science gifted students were higher than those of the general students, there was a statistically significant difference. Second, science gifted students showed higher correlation between grit and failure tolerance, grit and psychological well-being than general students. Grit of science gifted students had a positive correlation with all sub-factors of academic failure tolerance and psychological well-being. In general students, there was a positive correlation with all sub-factors of Grit, academic failure tolerance, and psychological well-being except for the emotion sub-factor of academic failure tolerance. Thirdly, as a result of the regression analysis on the elements of failure tolerance affecting the Grit, science gifted students showed emotional factor but general students had behavioral factors. Also, as a sub-factor of psychological well-being on Grit, both science gifted and general students showed autonomy.

Analysis on the Characteristics of Free Inquiry Products for Scientifically-Gifted Elementary School Students (초등 과학영재학생들의 자유탐구 산출물 특성 분석)

  • Yang, Hyunjeong;Kang, Hunsik
    • Journal of Korean Elementary Science Education
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    • v.39 no.2
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    • pp.243-254
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    • 2020
  • This study analyzed the characteristics of "free inquiry" products for scientifically-gifted elementary school students. To do this, 5~6 graders (n=99) at a gifted science education institutes in Seoul were selected. The products (n=82) of "free inquiry" submitted by the students in 2018 and 2019 were analyzed according to their contents and method types. The analysis of the results showed that the free inquiry outputs of scientifically-gifted students tended to not include the scientific knowledge of the upper grades than the corresponding students. In the outputs, the scientific knowledge in different grades were often not linked. There were relatively many cases of convergence of knowledge in various science and/or non-science subjects and knowledge of 'physics', whereas knowledge of 'earth science' were the least. The outputs were more often aimed at "finding scientific facts" than "development and invention" and tended to target non-living things rather than living things. The scientifically-gifted students tended to conduct free inquiry using 'experimental-centered inquiry' by themselves rather than by group. They were also most likely to conduct experiments only once, and did not clearly write down the period of their inquiry. Educational implications of these findings are discussed.

The Comparison of the Gifted Students and General Students' Verbal Interactions in Cooperative Science Learning (초등학교 과학 협동학습에서 영재 학생과 일반 학생의 언어적 상호작용 비교)

  • Lim Suk-Young;Yeo Sang-Ihn;Lim Heejun
    • Journal of Korean Elementary Science Education
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    • v.24 no.5
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    • pp.595-601
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    • 2005
  • In this study, the scientifically gifted students and the general students were compared in terms of the following components in cooperative teaming: whom they interacted with, to/from whom they gave/received help and why, and what kinds of the verbal interaction patterns they engaged in. The subjects were 4th graders. The data were collected through the investigation of the students' perception and videotaping of the small group interactions of each group. The results showed that the gifted students interacted with most students in their groups. They complemented each others' opinions and their discussion was enriched through their interactions. On the other hand, the interactions of the general students occurred mostly around a leader, and more teamed students explained the content to the less teamed students. Predominantly, the gifted students' most verbal behaviors were related with the teaming contents. Most frequent verbal behavior were a giving specific information and an explanation of their opinions. The general students, however, gave simple and short information, and more often they showed the management behaviors, such as encouraging participation and suggesting their directions.

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Comparison of Characteristics of Analogies on Saturated Solution Generated by Elementary School Teachers, General and Science-Gifted Students (포화 용액 개념에 대해 초등학교 교사와 일반 학생 및 과학영재 학생들이 만든 비유의 특성 비교)

  • Kang, Hun-Sik
    • Journal of Korean Elementary Science Education
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    • v.30 no.3
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    • pp.305-314
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    • 2011
  • In this study, the analogies on saturated solution generated by elementary school teachers were analyzed in their numbers, materials, and types aspects. The results were also compared with those of general and science-gifted elementary students. A test on the self-generating analogies on the target concept was administered to 111 elementary school teachers, 60 fifth graders at four science-gifted education institutes and 91 fifth graders at three elementary schools. The results revealed that the teachers made more analogies than the general and science-gifted students. In general, both the teachers and the students tended to make the analogies using the materials in family, riding, digestive, and school situations. However, there were a little difference between the teachers and the students in the cases of the analogies using other situations including body/physical activity. Similarly to the cases of the students, the teachers made more functional analogies than structural or structural/functional ones and did more concrete ones than abstract ones. However, they made more verbal, artificial, and enriched analogies than the students. They also made more highly systematic analogies than the general students, and did less ones than the science-gifted students. Educational implications of these findings are discussed.

The Types of Analogy Generation Processes and the Perceptions of Analogy Generation on Saturated Solution of Fifth Grade Scientifically-gifted and General Elementary Students (초등학교 5학년 과학영재와 일반 학생들의 포화 용액 개념에 대한 비유 만들기 과정의 유형과 비유 만들기에 대한 인식)

  • Noh, Tae-Hee;Yang, Chan-Ho;Kang, Hun-Sik
    • Journal of Korean Elementary Science Education
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    • v.29 no.2
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    • pp.219-232
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    • 2010
  • In this study, we investigated and compared the types of analogy generation processes and the perceptions of analogy generation on saturated solution of fifth grade scientifically-gifted and general elementary students. After the instruction of self-generating analogies on 'saturated solution' concept for two classes, 12 scientifically-gifted and 8 general elementary students were interviewed to explore their analogy generation processes and the perceptions of the abilities required in the processes, the conditions of good analogies, and the advantages/disadvantages of analogy generation. The results revealed that their analogy generation processes were classified into three types. The scientifically-gifted students generated the analogies in more systematic and efficient ways and had better understanding of the important parts in the processes than the general elementary students. They also suggested more concrete and various ideas about the conditions of good analogies. Many scientifically-gifted and general elementary students thought that analogy generation would have positive influences on the developments of the cognitive aspects such as various higher-level thinking abilities and understanding of science concepts as well as the affective aspects such as science learning motivation and interest. Educational implications of these findings are discussed.

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Development of Enrichment-Type Teaching and Learning Materials for the Elementary Science Gifted on Life Areas of Science (초등 과학영재를 위한 생명 영역의 심화형 교수학습 자료 개발)

  • Lim Chae-Seong
    • Journal of Korean Elementary Science Education
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    • v.24 no.4
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    • pp.465-475
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    • 2005
  • In this study, to explore the ways of the development of the effective and desirable teaching and learning materials for the elementary science gifted, relevant previous research results were critically examined and integrated. Then a theoretical background was established and specific materials in Life Areas of elementary science was developed based on the science knowledge construction types of 'What', 'How', and 'Why'. The results could be summarized as follows: (1) The types of educational programs for the science gifted were categorized and defined as 'General-Level','Early-Growing, Fast-Growing General Level', and 'Slow-Growing Enrichment, Excellence 'Types. (2) For 5th graders, in the unit of 'Environment and living Organisms', some activities of Enrichment Type for subject on 'Changes of Living Organism with Temperature' were developed following the processes of RDPE (Research-Development-Practice-Evaluation) and their ways of using and assessment were presented. On the basis of these results, several educational implications were discussed for further research and ways of applying to the science gifted education.

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A Study of the Giftedness Expression Mechanism of Young-sil Jang through Gagne's DMGT Model (Gagne의 DMGT 모형을 통한 장영실의 영재성 발현 기제 연구)

  • Ji-Young Choi;Dong-Hyun Chea
    • Journal of the Korean Society of Earth Science Education
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    • v.16 no.2
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    • pp.234-246
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    • 2023
  • This study uses Gagne's 'Differentiated Model of Giftedness and Talent (DMGT)' to collect and extract major life events of Jang Young-sil, and to investigate how giftedness was formed and developed in his life history, and what factors enabled him to demonstrate his talent in the field of science and technology. In addition, based on the framework of Gagne's Differentiation Model for Giftedness and Talent(DMGT), we analyzed the mechanism of giftedness manifestation of Jang Young-sil and sought to explore the direction of gifted education based on this. To sum up the results of the study, first, in Giftedness(G), it was found that Jang Young-sil had excellent scientific and technological skills. Second, motivation, determination, self-management, and personality factors that constitute the inner catalyst(IC) of the individual have had an impact on the development of giftedness. Third, it influenced the social environment and peer giftedness in environmental catalysis(EC). Fourth, the catalyst of chance or chance(C) was the factor that had the greatest influence on Jang Young-sil's manifestation of giftedness. Fifth, informal learning and non-institutional formal learning in the developmental process(LP) influenced the manifestation of giftedness. In this way, the talent development factors of people such as Jang Young-sil provide implications for the need to understand the manifestation mechanism of giftedness in the future, develop examination tools that can detect giftedness, and develop customized programs that can develop giftedness.