• Title/Summary/Keyword: science gifted education programs

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The Effect of Astronomical Field on Elementary Science Gifted Students on Spatial Perception Ability and Task Commitment (초등과학영재 학생들의 천문분야 수업이 공간지각능력 및 과제집착력에 미치는 효과)

  • Lee, Yong-Seob
    • Journal of the Korean Society of Earth Science Education
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    • v.15 no.2
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    • pp.263-272
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    • 2022
  • The purpose of this study is to investigate the effect of developing and applying a program in the field of astronomy that can improve the spatial perception ability and task commitment of elementary science gifted students. The subjects of this study were 22 students in the advanced course in the elementary science gifted class affiliated with the Gifted and Talented Center of University B. In order to improve spatial perception ability and task attachment to students in elementary school science gifted class, a total of 12 educational learning programs were developed and applied. The results of this study were interpreted as quantitative analysis. The results of this study are as follows. First, the astronomy class had a positive effect on the spatial perception ability improvement of elementary science gifted students. Second, the astronomy class had a positive effect on improving the task commitment of elementary school science gifted students. Third, astronomy class of elementary school science gifted students was more effective in improving spatial perception than improving task commitment. Since elementary school science gifted students are selected with excellent intelligence, creativity, and task commitment, an Individualized Education Program (IEP) is developed and applied to better express their potential giftedness. In addition, in order to express more in-depth giftedness in gifted education, it is necessary to pay attention to the development of programs that can express individual gifted characteristics.

Analysis of Earth Science Area among Competency-Based Elementary Science Gifted Education Programs (역량중심 초등과학 영재교육 프로그램 지구과학 영역 분석)

  • Kim, Ye-Bin;Kim, Soon-Shik
    • Journal of the Korean Society of Earth Science Education
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    • v.14 no.2
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    • pp.136-145
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    • 2021
  • The Gifted Education Program is re-constructured into core competency-based program in line with fourth industrial revolution, where talented people with comprehensive ability are required. Therefore, competency-based elementary science gifted education program which is provided from Gifted Education Database(GED) is developed in accordance with 2015 revised edition in science and 5 main core-abilities; scientific thinking ability, scientific investigation ability, scientific problem solving ability, scientific communication ability and scientific participation and lifelong learning ability. This research, which is provided from GED, is focused on earth science area among competency-based elementary science gifted education program and analyse quantitatively and qualitatively how science and core-ability is appeared in 3 programs developed in science area. This research can be another guideline when someone would like to use competency-based earth science gifted education program in gifted education. Also, the purpose of this research is to help suggesting a right direction for competency-based earth science gifted education program. The conclusion based on research problem is as follow; Firstly, in competency-based earth science gifted education program, influence rates of scientific communication ability and scientific thinking ability are highest, where influence rates of scientific investigation ability, scientific problem solving ability and scientific participation and lifelong learning ability are relatively low. Secondly, in competency-based earth science gifted education program, single activity may includes several core-abilities. Following research is quite meaningful in aspect of giving out the information to choose topic in core-ability when using competency-based earth science gifted education program in gifted education. Also by supplementing lowly-influenced ability in competency-based earth science gifted education program, it is expected for gifted students to build scientific core-ability.

A Study on the Perception of Art Education for the Gifted in Mathematics or Science (수.과학 영재학생을 위한 예술교육 프로그램 실시에 관한 인식 조사 연구)

  • Kang, Ji-Yeon;Lee, Jae-Ho;Jin, Suk-Un
    • Journal of The Korean Association of Information Education
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    • v.15 no.3
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    • pp.469-481
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    • 2011
  • The purpose of this study was to find the recognition and opinions of gifted students, as well as their parents and teachers, on applying the artistic components to current educational programs for high ability students, gifted in mathematics and/or sciences. Questionnaires were distributed to 84 gifted students, 59 parents, and 23 teachers in elementary schools in Seoul Metropolitan area. Findings of this study include: (a) More than 1/4 of gifted students in mathematics or sciences reported that they are talented in both math/science and arts, (b) most of students, parents, and teachers believe that arts education is useful for cultivating academic talents of gifted students, (c) gifted students and their parents prefer 'Science and Arts School for the Gifted' to 'Science School for the Gifted', if both options are available.

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An Analysis of Writing Characteristics of Scientifically Gifted Students about Biological Sciences (생명과학 관련 주제에 대한 과학영재들의 글쓰기 특성 분석)

  • Song, Shin-Cheol;Shim, Kew-Cheol
    • Journal of Science Education
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    • v.39 no.1
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    • pp.88-98
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    • 2015
  • The purpose of this study was to examine writing characteristics of scientifically gifted students about biological sciences. To do this study, we analysed their scientific writings related to biological sciences, which were written by scientifically gifted students of 16 groups (20 males and 20 females). They were being taught in the Science Education Institute for the Gifted adjacent for University. Scientific writings related to biological sciences were analysed through categories such as biotechnology, bioethics, sciences in a life, and human health and disease. Scientifically gifted students were lacking in the ability to construct writings and to logically express own contentions according to writings of them. Writings related to biotechnology and bioehics of biological sciences were not better than ones related to sciences in a life, and human health and disease. The results of this study suggested that it should be necessary to develop gifted educational programs to strengthen the scientific writing ability. Especially, scientifically gifted students need to be provided with educational contents about biological issues related to bioethics and biotechnology.

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Perception of Science High School Teachers on Cyber Education (사이버 교육에 대한 과학고 교사의 인식 조사)

  • Lee, Jaeho;Chun, Miran;Jin, Sukun
    • Journal of Gifted/Talented Education
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    • v.26 no.4
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    • pp.635-652
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    • 2016
  • This study investigated operation plan for the Cyber Bridge Program based on the survey from teachers of science high schools. Teachers were found to be thinking it positive that cyber programs can be operated free from the time and spatial restrictions. They thought that teacher interactions are hard to occur and teachers' role in learning is limited as well. Also, the geographical, physical, and socio cultural minorities might have benefits from cyber programs either as regular programs or the before entrance programs. Therefore, the detailed plans are needed. Most of all, since the educational contents are the key for the programs, we suggested some contents categories and developmental criteria. As a result, the developments of high quality contents and financial supports for the successful Cyber Bridge Program are essential.

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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G/T Experts' Recognition on Educating ICT Core-competencies for Gifted Students in Science (과학영재를 위한 ICT 핵심역량 교육에 대한 전문가 인식 조사)

  • Lee, Jaeho;Jin, Sukun;Shin, Hyunkyung
    • Journal of Internet Computing and Services
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    • v.17 no.6
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    • pp.143-152
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    • 2016
  • In this paper, we attempted to provide the bases of effective educational programs for fostering ICT competencies of gifted students in science. For this purpose, we tried to answer the questions like 'What are the ICT core-competence for gifted students in science?' and 'How can we educate those competencies effectively?' We started by reviewing existing studies on ICT competencies for talented people in future society and then adopted one[6] as the basis for further validation. We tried to work with as many G/T experts as possible, and decided to use the online survey methodology because the experts are scattered all over the country. The survey was sent to the corresponding person who is in charge of G/T education in each area, and then e-mailed to G/T experts in that area. Through these procedures, three hundred four(304) G/T experts from all around the country participated in this survey. The results showed the followings: (1) G/T experts agreed with the importance and necessity of ICT competencies for gifted students in science; (2) G/T experts agreed with the validity of three core ICT competencies, which are 'knowledge and skills competence, creativity competence, and characteristic competence,' for gifted students in science; (3) G/T experts agreed with the validity of educational goals, which are suggested for fostering each ICT core-competence of gifted students in science; and (4) G/T experts regarded 'product-oriented education' and 'ICT device-oriented education' as important and effective types of education programs for fostering ICT competencies of gifted students in science.

Discussions on The Directions of Research and Development Tasks for Convergence Gifted Education (융합영재교육의 발전 과제와 연구 방향에 대한 논의)

  • Maeng, Hee-Ju
    • Journal of Gifted/Talented Education
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    • v.23 no.6
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    • pp.981-1001
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    • 2013
  • Many studies on convergence education have been done in the field of gifted education to meet the social needs for people of convergence talent and to adjust our education system to the paradigm shift. However, the number of studies on convergence gifted education is not sufficient enough and most of them are mainly on science and art. So, this study reviews the previous studies on gifted education involving convergence, and discusses the pressing issues to address for the development of convergence gifted education in korea. Also, the direction of the further research is introduced. There is an agreement that the definition of the convergence gifted and convergence gifted education needs to be clarified, and further researches have to be conducted to establish a basis for defining integrated thinking ability. Furthermore, it is suggested that the contents for convergence gifted education should be developed accommodating individual differences, and a theory-based approach to creating convergence gifted education programs is proposed. On top of that, the needs for the studies on how to strengthen the educational capability of the teachers are discussed.

Effective Classroom Environments in Discovery Learning Classes for Gifted Science Pupils (초등과학 영재교실에서 발견 학습 모형 수업에 효과적인 환경 조건의 탐색)

  • Lee, In-Ho;Jhun, Young-Seok
    • Journal of Korean Elementary Science Education
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    • v.25 no.3
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    • pp.307-317
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    • 2006
  • Those students with ability and interest in science should be supported to develop their potential and to reach high levels of achievement in science and technology. In order to ensure that gifted pupils are able to enhance their creativity as well as research abilities, appropriate learning programs and environments are essential. One of the various teaching and learning models for the gifted in science is the discovery learning model based on inductive science activities. There is a clear line of continuity between knowledge discovery at the forefront of research and student's learning activities. If students receive excellent training in organizing scientific concepts for themselves, they will be able to skillfully apply appropriate scientific concepts and solve problems when facing unfamiliar situations. It is very important to offer an appropriate learning environment to maximize the learning effect whilst, at the same time, understanding individual student's characteristics. In this study, the authors took great pains to research effective learning environments for gifted science students. Firstly, appropriate classroom learning environments thought by the teacher to offer the most potential were investigated. 3 different classes in which a revised teaching and learning environment was applied in sequence were examined. Inquiries were conducted into students' activities and achievement through observation, interviews, and examination of students' worksheets. A Science Education expert and 5 elementary school teachers specializing in gifted education also observed the class to examine the specific character of gifted science students. A number of suggestions in discovery learning classes for elementary students gifted in science are possible; 1) Readiness is essential in attitudes related to the inquiry. 2) The interaction between students should be developed. A permissive atmosphere is needed in small group activities. 3) Students require training in listening to others. In a whole class discussion, a permissive atmosphere needs to be restricted somewhat in order to promote full and inclusive discussion. 4) Students should have a chance to practice induction and abduction methods in solving problems.

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Relationship of Attribution Styles and Science-related Attitude and Science Process Skills of Science-gifted (초등학교 과학영재의 귀인성향과 과학 관련 태도 및 과학탐구능력과의 관계)

  • Lee, Yong-Seob;Park, Mi-Jin
    • Journal of the Korean Society of Earth Science Education
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    • v.3 no.2
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    • pp.124-131
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    • 2010
  • The purpose of this study is examine relationship of attribution styles and attitude toward Science and Science Process Skills of Science-gifted, to understand unique characteristics of the Science-gifted and to give useful information that can be use in develop special programs for the Science-gifted. The result of this study were as follows: First, there was no difference between genders. But there was a significant difference in attribution of luck. Second, there was a correlation between internal tendencies and Scientific attitude. Especially attribution of effort correlated with sub - constituent of Scientific attitude. Internal tendencies correlated with the Cognition in Scientific Professions that sub - constituent of the attitude toward Science. Third, There was a correlation between external tendencies and the interest activity in Science that sub - constituent of the attitude toward Science. There are correlations between sub - constituent of the attitude toward Science and sub - constituent of external tendencies that attribution of luck and interest in Scientific Professions, attribution of task difficulty and Cognition activity in Science. Fourth There was no correlation between Attribution styles and Science Process Skills. But Internal tendencies correlated with classification that sub - constituent of Science Process Skills. And classification correlated with attribution of ability that sub - constituent of external tendencies. Attribution of effort that sub - constituent of internal tendencies correlated with Science Process Skills.

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