• Title/Summary/Keyword: elementary science gifted class

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Comparing Peer Relations of Gifted Elementary Students in Science and Ordinary Students (초등과학 영재아동과 일반아동의 교우관계 비교)

  • Yeo, Sang-Ihn;Park, Sang-Hee
    • Journal of Gifted/Talented Education
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    • v.15 no.1
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    • pp.49-66
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    • 2005
  • The purpose of this study is to compare the peer relations of the gifted students in science and ordinary students. To this study, the questionnaire to access students' satisfaction with their peer relations, students' feeling of loneliness, and the quality of peer relations was conducted to the subjects of 147 gifted students in science and 253 ordinary students in Korea. In the peer relations at the ordinary class, the significant difference between them was found in the students' feeling of loneliness, so the gifted students showed a little lower feeling of loneliness than the ordinary students. Also, the significant difference was found in the quality of peer relations. In the perception of the gifted students' peer relations at the gifted and ordinary class, satisfaction with their peer relations and the quality of peer relations were showed the significant differences. There was more mutual peer relations between the gifted than the ordinary students.

A Study on Gifted Students Academic Emotion, Metacognition, Self-Efficacy According to Gifted Students Selection Methods between the examination selection and the automatic promotion (영재학생의 시험선발과 자동진급방법에 따른 영재학생의 학업정서, 메타인지능력, 자기효능감에 관한 연구)

  • Jeong, Jin Sook;Choi, Sun Young
    • Journal of Science Education
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    • v.39 no.2
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    • pp.278-289
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    • 2015
  • The purpose of this study is to analyze selection methods of gifted students. This study focuses on the understanding the characteristics of gifted students in accordance with the selection methods, i.e. the examination selection and automatic promotion by analyzing and comparing the academic emotion, meta-cognition, and self-efficacy between gifted students selected according to the selection methods. Moreover, for the purpose of the effective gifted education, this study aims to arrange a reasonable basis for the discrimination and selection of gifted students. The results of this study were as follows. First, there was no meaningful difference between gifted students selected by an examination and promoted automatically in view of academic emotion, meta-cognition, and self-efficacy of gifted students. It is determined that there is no difference between the effects of selection methods under the condition of the same group of gifted students. Second, regarding the academic emotion of gifted students, there is no significant difference in both the elementary and middle school in case of examination selection. However, in case of the automatic promotion, the academic emotion of gifted students promoted automatically in the gifted education center was higher than that of the gifted students in the gifted class (p < .05). Regarding the meta-cognitive skill, there is no difference in the elementary school between the selection methods. In case of the examination selection in the middle school, the meta-cognitive skill of male students of the gifted education center was higher than that of the female and gifted class students (p < .05). In case of the automatic promotion in the middle school, the meta-cognitive skill of students of the gifted education center was higher than that of students of the gifted class (p < .05). As for the case of self-efficacy, there were no differences between the selection methods. In the automatic promotion, self-efficacy of students of the gifted education center was higher than that of students of the gifted class (p < .05).

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Analysis on Science Problem Solving Process of the Elementary Science Gifted Students (초등 과학 영재의 과학 문제 해결 과정 분석)

  • Lim, Cheong-Hwan;Lim, Gui-Sook
    • Journal of Korean Elementary Science Education
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    • v.30 no.2
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    • pp.213-231
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    • 2011
  • The purpose of this study was to investigate knowledge types which the elementary science gifted students would use when solving a science problem, and to examine characteristics and types that were shown in the science problem solving process. For this study, 39 fifth graders and 38 sixth graders from Institute of Education for the Gifted Science Class were sampled in one National University of Education. The results of this study were as follows. First, for science problem solving, the elementary science gifted students used procedural knowledge and declarative knowledge at the same time, and procedural knowledge was more frequently used than declarative knowledge. Second, as for the characteristics in the understanding step of solving science problems, students tend to exactly figure out questions' given conditions and what to seek. In planning and solving stage, most of them used 3~4 different problem solving methods and strategies for solving. In evaluating stage, they mostly re-examined problem solving process for once or twice. Also, they did not correct the answer and had high confidence in their answers. Third, good solvers had used more complete or partially applied procedural knowledge and proper declarative knowledge than poor solvers. In the problem solving process, good solvers had more accurate problem-understanding and successful problem solving strategies. From characteristics shown in the good solvers' problem solving process, it is confirmed that the education program for science gifted students needs both studying on process of acquiring declarative knowledge and studying procedural knowledge for interpreting new situation, solving problem and deducting. In addition, in problem-understanding stage, it is required to develop divided and gradual programs for interpreting and symbolizing the problem, and for increasing the understanding.

Development of Convergence Education Program for Elementary School Gifted Education Based on Mathematics and Science (초등학교 영재교육을 위한 수학·과학 중심의 융합교육 프로그램 개발)

  • Ryu, Sung-Rim;Lee, Jong-Hak;Yoon, Ma-Byong;Kim, Hak-Sung
    • Journal of the Korea Convergence Society
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    • v.9 no.10
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    • pp.217-228
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    • 2018
  • The purpose of this study is to develop STEAM program for gifted education by combining educational contents of humanities, arts, engineering, technology, and design into various subjects, focusing on mathematics-science curriculum of elementary school. The achievement standards and curriculum contents of elementary mathematics-science curriculum were analyzed while considering 2015 revised national curriculum. And then, a 16 class-hour convergence education program consisting of 3-hour block time was developed by applying the STEAM model with 4 steps. The validity of the program developed through this process was verified, and four educational experts evaluate whether the program can be applied to the elementary school. Based on the evaluation results, the convergence education program was finalized. As a result of implementing the gifted education program for mathematics-science, students achieved the objectives and values of convergence education such as creative design, self-directed participation, cooperative learning, and interest in class activities (game, making). If this convergence education program is applied to regular class, creative experiential class, or class for gifted children, students can promote their scientific creativity, artistic sensitivity, design sence, and so on.

Friendship Expectation Perceived in Gifted and Regular Class by Gifted Students of Gifted Science Education Institute attached to University (대학부설과학영재교육원 영재학생이 인식하는 영재교육원과 학교에서의 교우기대감)

  • Sung, SeungMin;Yeo, Sang-Ihn
    • Journal of Science Education
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    • v.41 no.1
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    • pp.98-110
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    • 2017
  • The purpose of this study is to compare the friendship expectation that gifted students perceived in the gifted class and the regular class. To this study, friendship expectation survey, which sub-domains were intimacy, ability similarity, and morality, was conducted to 121 gifted students. The results of this study were as follows: First, according to the results of comparing the friendship expectations of gifted students in the gifted class and the regular class, there were statistically significant differences in the sub-domains of intimacy and morality. But there was no significant difference in the sub-domain of ability similarity. Second, there were statistically significant differences in the some detail items of all sub-domain(intimacy, ability similarity, and morality). Based the results of this, the implications to understand the friendship of the gifted students were suggested.

Effect of Cooperative Learning Emphasizing Interaction on Science-Gifted Elementary Students' Scientific Creativity (상호작용 강화 협동학습이 초등과학영재 학생의 과학 창의성 발현에 미치는 영향)

  • Kim, Hyun-Ju;Kim, Min-Ju;Lim, Chae-Seong
    • Journal of Korean Elementary Science Education
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    • v.43 no.1
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    • pp.1-17
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    • 2024
  • This study sought to investigate the effects of cooperative learning emphasizing interactions on science-gifted elementary students' scientific creativity. Thirty-four science-gifted elementary students were divided into an experimental class and a comparison class to compare their creativity scores quantitatively. The experimental class participated in cooperative learning emphasizing interactions, and the comparison class participated in whole class interactions. For qualitative analysis, the small group discussions were audiotaped and transcribed. The results of the study are as follows. First, cooperative learning emphasizing interactions had a positive educational effect on usefulness, which is one of the essential elements of scientific creativity. Second, as the cooperative learning progressed, the interaction between the small group members improved qualitatively. Third, the factors hindering the effectiveness of cooperative learning included negative task-unrelated statements from some of the small group members and the following operational statements to correct them. Based on these results, this study proposed some suggestions for effective cooperative learning emphasizing interactions.

A Case Study on Elementary Teachers' Knowledge in Teaching Method for the Science-Gifted Students (과학영재 교수방법에 대한 초등과학 영재교사의 지식에 대한 사례연구)

  • Yeo, Sang-Ihn;Jin, Hyun Suk
    • Journal of Science Education
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    • v.36 no.1
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    • pp.94-105
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    • 2012
  • The purposes of this study is to identify the professional knowledge of the three elementary teachers for science-gifted students in teaching method. All teachers have received in-service program in gifted education, and have been recommended by their colleagues. Two teachers have instructed the gifted for more than five years, one teacher have instructed the gifted for one year and the general students for eleven years. For for this study, each teacher's lesson plans were collected, videotapes were recorded during lessons, and in-depth interview for each participant were conducted. All recoded data were transcribed and analyzed. Some unique characteristics of teaching method for the gifted were identified from the class instruction of participants. They had knowledge of teaching model for the gifted, especially Renzulli's three pod enrichment model. And they mainly used the materials developed by KEDI for the gifted. Also they had capability to be able to reconstruct them, but their lesson plans did not be realized well in their class. Some implications from findings of this study were suggested, such as teaching methods to improve the quality in the classes of the gifted in science.

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The Changes of Analogies Generated by Elementary Science-gifted Students about Electric Circuit using Algodoo Program (알고두 프로그램을 이용한 전기회로 비유 생성 활동에서 나타난 초등과학영재 학생들의 비유물의 변화 과정)

  • Kim, Ji Seon;Kim, Jung Bog
    • Journal of Korean Elementary Science Education
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    • v.37 no.2
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    • pp.161-172
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    • 2018
  • This study investigated the changes in representation on analogies that elementary science-gifted students generated by using Algodoo program to explain the electric current. After the students were taught about the 'components in circuit and their function' and 'electric current' with teacher centered analogy and PhET program for 4 class hours, they generated analogies to the electric circuit. Then they compared the similarity between generated analogy and target concept and matched it to the target concept. The result revealed that the battery, light bulb, and electric wire were changed according to the change of representations on free electrons. And they generated more proper analogies reflected the target concept when represented the free electrons by the circular particles than the water. From these results, we can say that generating analogy using Algodoo program is the effective education activity to help students understand abstract concept by visualizing it more easily and simply.

An Analysis of Types of Scientific Humors Made by Scientifically-gifted Elementary School Students and Their Perceptions of the Making Scientific Humor (초등 과학영재학생들이 만든 과학 유머의 유형 및 과학 유머 만들기에 대한 인식 분석)

  • Lee, Jee-yun;Kang, Hunsik
    • Journal of Korean Elementary Science Education
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    • v.37 no.3
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    • pp.267-284
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    • 2018
  • This study analyzed the types of scientific humors made by scientifically-gifted elementary school students and their perceptions of making scientific humor. For this, 77 students from $4^{th}$ to $6^{th}$ graders of gifted science education center in Seoul National University of Education were selected. Scientific humors made by the students were analyzed according to the number and types. Their perceptions of making scientific humor were also analyzed through a questionnaire and group interviews. The analysis of the results revealed that most of scientifically-gifted students made more than 2 scientific humors, and the number of scientific humor for each students varied from 0 to 11. The most types they made were the descriptive type and the pun using pronunciation type, but they made various types without any special type to be biased. And They made more the dialogue type than the narrative type, especially the riddle type. They used scientific knowledge that preceded the knowledge of science curriculum in their grade level over two or more years. The scientific knowledge of chemistry was used more than physics, biology, earth science and combination field. The name utilization type was more than the characteristic utilization type and the principle utilization type. Scientific humors in the everyday situation were more than humors in artificial situation. The students had various positive perceptions in making scientific humor such as increase of scientific knowledge, increase of various thinking abilities, deep understanding of science concept and principle, increase of interest and motivation about science and science learning, and increase on sense of humor. They had also some negative perceptions related to difficulties in the process of making scientific humor, lack of fun, and lack of time in the class.

Analysis of Trends in Science Gifted Education Using Topic Modeling (토픽 모델링을 활용한 과학영재교육 연구동향 분석)

  • Kim, Hye Won;Jhun, Youngseok
    • Journal of Korean Elementary Science Education
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    • v.40 no.3
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    • pp.283-294
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    • 2021
  • The purpose of this study is to examine the trends of science gifted education-related research for the last 5 years using LDA topic modeling. To achieve the purpose of the study, 2,404 keywords of 292 domestic academic papers were analyzed using RISS, KISS, and DBpia. The main results were as follows. First, the number of researches in science gifted education has been decreasing since 2019. In the science gifted education research, the top 10 keywords were 'students', 'program', 'elementary school', 'class', 'creativity', 'gifted education', 'awareness', 'teacher', 'education', and 'activity'. Second, as a result of topic modeling analysis, 10 topics were derived. Research topics mainly conducted in science gifted education for the past five years are 'Affective characteristics of science gifted students', 'Characteristics of science gifted students in middle school', 'Development and application of science gifted education programs', 'Education programs of science gifted high school', 'Cognitive characteristics of science gifted students', 'Policy of science gifted education', 'Science gifted students and creativity', 'Research conducting education by science gifted students', 'Academic and career choice of science gifted students', 'Science concept of science gifted Students'. In the past, the proportion of specific topics was relatively high, but the proportion between topics does not differ significantly as 2019 approaches. Therefore, it can be confirmed that the more recent it comes, the more research is being conducted evenly without being biased toward one subject.