• Title/Summary/Keyword: elementary science teaching and learning for the gifted

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An Exploratory Study on Level and Influencing Factors of Academic Passion for Elementary School Teachers' Science PCK (초등학교 교사의 과학 PCK에 대한 학업 열정 수준 및 영향 요인 탐색)

  • Kang, Hunsik
    • Journal of Korean Elementary Science Education
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    • v.41 no.3
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    • pp.553-568
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    • 2022
  • This study investigated the level of academic passion for elementary school teachers' science pedagogical content knowledge (PCK) and examined the factors that influence the passion. To this end, 161 elementary school teachers in Seoul were selected, and academic passion tests were then administered to evaluate their academic passion for science subject matter knowledge and science pedagogical knowledge. Individual in-depth interviews were also conducted with some of the participating teachers. The results revealed that 'importance' and 'harmonious passion' for learning science subject matter knowledge and science pedagogical knowledge were found at a high level. However, 'time/energy investment' and 'obsessive passion' for learning the knowledge were slightly higher or lower than normal. The 'like' for learning science subject matter knowledge was relatively high, but the 'like' for learning science pedagogical knowledge was slightly higher than normal. The differences in academic passion for science subject matter knowledge and science pedagogical knowledge were greater according to advanced major at undergraduate than teaching career. The teachers evenly selected some factors that influenced their academic passion for science subject matter knowledge and science pedagogical knowledge. These identified characteristics included 'individual interest', 'high school track', 'experience in advanced major at undergraduate', 'experience in science-related graduate school', 'experience teaching science in elementary school', 'experience teaching science at the gifted education institute', 'experience in charge of science subject teacher', 'experience in science-related teacher training', 'experience in developing science-related teaching and learning materials', 'experience in charge of science or science-gifted related work', and 'experience in a science-related teacher community'. However, a slight difference was noted in the selection ratio depending on advanced major at undergraduate. Based on these results, the practical implications for improving their academic passion for science PCK are suggested.

Analysis of Interaction between the Science Gifted Education Teachers in the In-service Teachers Training Program (동료간 상호작용이 강조된 연수 프로그램에서 과학영재 담당교사의 상호작용 분석)

  • Park, Jieun;Lee, Bongwoo
    • Journal of Korean Elementary Science Education
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    • v.31 no.2
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    • pp.135-145
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    • 2012
  • In this study, we developed an efficient in-service teachers training program, which could help the professional development of science gifted teachers. The characteristic feature of this in-service training program was to put great emphasis on interaction between fellow teachers. With this program, teachers could share their experiences and informations about gifted education. The program consisted of 4 interaction modules: 'the module of interaction at the pre-planning', 'the module of interaction in the small group', 'the module of interaction at the plan of application', 'the module of interaction at the practical exercise'. In this study, we analyzed the interaction between science gifted education teachers in 'the module of interaction at the pre-planning'. We analyzed the interaction between science gifted education teachers in 'the module of interaction at the pre-planning'. Each teachers got 17.2 correction opinions from peer teachers. They accepted 79.2% opinions among them and refused the other opinions (20.8% opinions). In the analysis of 'program process', the interactions for the improvement about 'the acquirements of knowledge and function' step were 41.9% and the interactions for the improvement about 'plan and exploration' step were 30.5%. In the analysis of 'program domain', the interactions about 'method of teaching and learning' were 41.9%. The interactions about 'program step' were 28.6% and the interactions about 'learning contentsh were 24.8%. With these results, we discussed the features of interaction between science gifted education teachers and proposed the improvement of in-service training program for elementary science gifted teachers.

Development of Integrated Science and Art Teaching-Learning Programs for the Improvement of Creative Brain Activity of Scientifically Gifted Elementary School Student (초등과학영재의 창의적 두뇌 활성화를 위한 과학과 미술 통합 교수-학습 프로그램 개발)

  • Kwon, Young-Sik;Lee, Kil-Jae
    • Journal of Korean Elementary Science Education
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    • v.32 no.4
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    • pp.473-484
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    • 2013
  • The purpose of this study was to develop science and art integrated program to improve the creativity of scientifically gifted elementary school students. This study was to develop science and art integrated program to enhance the creativity of these subjects. This program was consisted of 30 lessons covering 10 topics. It was developed of five stages including the observation stage reflecting the characteristics of the right hemisphere relevant to creativity, the interest and curiosity stage, the experiment design and performing stage, the internalization stage, and the stage of expressing arts. This program was applied to 20 senior gifted students in Y Elementary School in Gyeonggi province. Torrance Tests of Creative Thinking(TTCT) was used in order to investigate and measure the effectiveness of the program before and after its use in class. The results of this study are as follows: First, this program showed results of significant improvement of creativity of scientifically gifted elementary school students after its use in class(p<.05). Second, it was significantly effective in increasing their creativity, especially in the subdomains such as originality, abstractness of title, and territory of resistance on hasty conclusions after its use in class(p<.05). Third, it was significantly effective to increase the Creativity Index that represents creative potential(p<.01). In particular, emotional expression, internalized visualization, unique visualization, and richness of the imagery emerged. This study implies that the science and art integrated program was closely related to the right hemisphere of the features enabling the subjects to create new ideas, new things, and new reactions. In addition, this program is expected to contribute to activate the brain areas of creativity for gifted students in the science field.

A Study on the Teaching Method for Activities Justify of Paper Folding by Given Size Colored Paper (최대 넓이의 정다각형 종이접기 정당화 활동을 위한 영재학급에서의 교수·학습 방법 개선에 관한 연구)

  • Lee, Seung Hwan;Song, Sang Hun
    • Journal of Elementary Mathematics Education in Korea
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    • v.20 no.4
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    • pp.695-715
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    • 2016
  • This study is on the teaching method for the students who belong to the same school (one, the gifted class, passed gifted education of Science High school ), 1-1, face-to-face learning (two, good students in regular classroom) with a teacher, paired learning teams (4 people, gifted classes), and group lessons (20 people, gifted classes) and using the justification analysis framework tool(PIRSO) of Kim(2010) analyzes the justification element of the students in the group classes regular polygons paper was to explore ways to improve the justification of the folding maps activities. As a result, the width of the largest polygon difficulty level appropriate to the class for gifted elementary school classes but the individual learning style of the 1-1 face-to-face with a teacher or discussion with colleagues and cooperative approach is justified, rather than the material of the study of origami activities it turned out to be more effective in improving the level of justification. Unlike the individual learning activities, the exploration for class is the need to strain in parallel to the student is selected as needed, rather than serial manner was confirmed that it is necessary to clearly present problems even from the beginning. Development of teaching through the implications obtained from this method of reconstruction activities and proposed improvement measures for questioning.

The Comparison on Preferences about Class Forms and Class Environments between the Science Gifted Students and Normal Students (수업형태와 수업환경에 대한 과학영재와 일반 학생들의 선호도 비교)

  • Jeon, Eun-seon;Lee, Hyeong-cheol
    • Journal of the Korean Society of Earth Science Education
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    • v.8 no.3
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    • pp.346-354
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    • 2015
  • The purpose of this study was to be a help with designing science curriculum and developing science programs for the science gifted students by comparing their preferences about science class forms and class environments between science gifted students and normal students. For this study, 2 classes of science gifted students and 5 classes of normal students in 4th, 5th grade joined in this survey and their preferences about science class forms and class environments were checked using questionnaire. As a result, the following findings were obtained. First, in the area of class form, from comparing their preferences about teaching content domain, science gifted students showed meaningful higher preferences in all factors such as clarification, structuralization, thinking of high level and diversification. In comparing their preferences about teaching process domain, science gifted students also showed meaningful higher preferences in all factors such as diversification and self directed learning. Second, in the area of class environment, from comparing their preferences about classroom domain, science gifted students showed meaningful higher preferences in all factors such as teacher's support and rule and organization. In comparing their preferences about mentality domain, science gifted students also showed meaningful higher preferences in all factors such as influence of friends and parents. Third, in science gifted students, from comparing their preferences by gender about science class forms and class environments, female students showed meaningful higher preferences in factors of clarification. And in other factors females showed similar preference tendency with male students. In normal students' comparing, female students showed meaningful higher preferences in factors of teacher's support. And male students showed meaningful higher preferences in factors of high level thinking and influence of friend and influence of parents.

A Case Study on the Use of Coteaching in Science Instruction for Science-Gifted Elementary Students (초등 과학영재수업에서 코티칭의 활용에 대한 사례 연구)

  • Joung, Kum-Soon;Kang, Hun-Sik
    • Journal of The Korean Association For Science Education
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    • v.31 no.2
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    • pp.239-255
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    • 2011
  • As a case study on the use of coteaching in science instruction for science-gifted elementary students, this paper analyzed the characteristics of coteaching science instruction for science-gifted elementary students by plan, performance, and reflection-evaluation stages of the classes. To do this, we observed two teachers' coteaching science instruction for science-gifted elementary students during twelve classes and analyzed the taped videos, their journals, and the transcripts for in-depth interviews with them. The results indicated that the characteristics of the coteaching science instruction, in the planning stage of the classes, showed improvement in the quality of the sciencegifted education programs, the reduction of the psychological burdens of developing the programs, and some efficiency loss due to the joint preparation of the classes. The characteristics in the performance stage of the classes include the seamless progression of the classes through the division of roles, the increase of the students' opportunity to explore, the supplement of the teachers' inadequate descriptions and the overlooked contents, the increase of the interaction between teachers and students and/or the interaction among students, the reduction of the risk of accidents in experiments, and the reduction of the responsibility for teaching. Finally, the characteristics in the reflectionevaluation stage of the classes could be attributed to the diversity of the evaluation viewpoints, the increase of the learning opportunities to develop the teaching professionalism, and the increase of the fear for assessing my own classes.

A Study of the Elementary School Teachers' Perception in STEAM(Science, Technology, Engineering, Arts, Mathematics) Education (초등학교 교사들의 융합인재교육(STEAM)에 대한 인식 연구)

  • Shin, Young-Joon;Han, Sun-Kwan
    • Journal of Korean Elementary Science Education
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    • v.30 no.4
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    • pp.514-523
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    • 2011
  • The purpose of this study was to investigation the elementary school teachers' perception in STEAM(Science, Technology, Engineering, Arts, Mathematics) Education. For this study, 93 elementary school teachers who have taught mathematics/science in gifted class were selected and a fifteen items questionnaire designed to elicit teachers' perception of steam education was to administered to them. The major findings are as follows: First, the ratio of teachers who understood a steam education exactly is very low. But teachers have positive thoughts about the need of steam education. Second, teachers thought that steam education has a good effect on elementary education. Third, teachers thought that steam education will be an alternative teaching and learning method. Fourth, teachers have negative thoughts to participate in class work related on steam education. To improve negative attitudes on steam education, incentives for teachers seems to be required. In order to spread steam education among the elementary school teachers successfully, the expansion of school facilities, administrators and staff in mind, improving financial support, strengthening education through the development of content and teaching strategies were analyzed as a challenge.

Research on Development and Operation of Flipped Learning Based Learner-Centered Science Gifted Education Program (플립드 러닝 기반 학습자 주도형 과학영재 교육 프로그램 개발 및 운영 연구)

  • Lee, Dong Yub;Kim, Dong Hyun;Jo, Soo Jin;Kang, Hyun Syug
    • Journal of Digital Convergence
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    • v.17 no.11
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    • pp.81-89
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    • 2019
  • In order to foster talented people needed for the 4th Industrial Revolution, learner-centered classes that meet the characteristics and needs of students are needed. In particular, the learner-centered student-active class is more meaningful for gifted students who have diverse needs and interests. In order to meet these demands, this study developed a learner-centered science gifted education teaching-learning model based on flipped learning, and analyzed various results revealed after applying the developed program to the gifted class. Based on the results, we proposed a plan for more efficient operation of future learner-centered science gifted education programs.

The Effects of Science and Art Integrated Program on Brain Activity of Gifted Students in Science (과학과 미술 통합프로그램이 초등과학영재의 뇌 활성에 미치는 효과)

  • Kwon, Young-Sik;Lee, Kil-Jae
    • Journal of Korean Elementary Science Education
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    • v.32 no.4
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    • pp.567-580
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    • 2013
  • This study is to activate gifted students' brains for creativity ability and also an integrated science and art teaching program. The learning programs integrating science and art, which have 30 periods and 10 topics on art and the knowledge of science, were developed dependant on five steps - observing, having interests and curiosity, experimental designing and performing, internalizing, and expressing in an arts-based manner. This programs were applied to 20 senior gifted students in Y Elementary School in Gyeonggi province, by one group pretest-posttest design. The results from these integrated programs of science and art are as follows: First, in the performance of science tasks, prefrontal lobe(F7, FT7) of left brain increase the relative power of theta wave, whereas in the performance of drawing tasks increase the relative power of beta wave in prefrontal lobe(FP1) of left brain, bilateral frontal(F7, F3, Fz, F4, F8, FT7, FC3, FCz), bilateral temporal(T7, TP7, TP8, P7), parietal lobe of left brain(CP3, CPz, P3, Pz), bilateral occipital(O1, Oz, O2). Second, in the performance of science tasks, the relative power of beta wave activity in the left temporal lobe(T7) of the brains of talented students in science significantly decreased whereas it was greatly activated in another part, the left frontal lobe(F3) of the brain (p<.05). Third, in the performance of drawing tasks, the relative power of theta wave activity in five areas of the brain, namely the left temporal lobe(T7), the left frontal lobe(F3), the right frontal lobe(F4), and the left and right parietal lobes of gifted students in science who took the course of the integrated programs, was considerably increased statistically(p<.05). On top of that, these programs were especially effective in balancing the symmetrical development of both cerebral hemispheres by multiplying theta wave activity in the frontal lobes(F3, F4) and the parietal lobes(CP3, P3, P4), which are particularly related to creative thinking. According to the results of this study of brain-based teaching strategies combining science and art, it is an effective program to develop overall activate gifted students' brains for creativity ability. This is expected to be utilized to activate the brain areas for creativity of gifted students in science.

An Analysis on the Recent Research Trend in Korean Elementary Science Education (한국초등과학교육의 최근 연구 동향 분석)

  • Lee, A-Ram;Hong, Young-Sik
    • Journal of Korean Elementary Science Education
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    • v.32 no.3
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    • pp.260-268
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    • 2013
  • With the development of science and technology, an effort to investigate the current research trend of elementary science education will lead to future directions for elementary science education. This study set out to analyze papers published in Elementary Science Education by quantity, subject and methodology for the last ten years. The results were as follows: First, the number of papers has continuously increased for the last 30 years. Second, as for categorization by the functions of elementary science education, the number of papers was mainly published in the field of teacher education, which was followed by learning processes and teaching methods in the order. Third, in the field of the research subjects of elementary science education, many researches were conducted on scientific inquiries and concepts traditionally emphasized in elementary science education, and on gifted education recently implemented as part of national policy. Fourth, as for categorization by the methodologies of elementary science education, a survey study was the most popular, being followed by experimental study and literature study in the order. In recent years, researches based on the case study methodology have visibly grown in numbers, which seems to part of efforts to find implications with new methodologies among researchers facing limitations with the old ones in the middle of uniqueness called education.