• Title/Summary/Keyword: scientific creativity

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Directions of Science Education for the Gifted and Scientific Creativity (과학적 창의성과 과학영재교육의 방향)

  • 서혜애
    • Journal of Gifted/Talented Education
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    • v.14 no.1
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    • pp.65-89
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    • 2004
  • The article attempts to suggest s a direction of science education in terms of development of creative human resources based on discussion about scientific literacy and scientific creativity. Students are supposed to develop scientific attitude, inquiry skills, problem solving ability through science learning, and be prepared for the 21st century of rapidly developing age. The paper introduces definitions of scientific literacy and scientific creativity and discuss their meanings within science education in general as well as for the gifted. To enhance students' scientific creativity, science education should strengthen content of science related to technology, integrated science content, personal and social views, social inquiry for problem solving. In particular, science education for the gifted should emphasize students' holistic views in interpreting data, ability to connect artistic aspects to science process, intuitions to explain scientific phenomena and pursue of personal satisfaction. It may be said that science education and science education for the gifted is realized when students have opportunities to experience such elements in their science learning.

Laboratory and Creativity: The Role of the Leader and Laboratory Culture (실험실과 창의성 : 책임자와 실험실 문화의 역할을 중심으로)

  • Hong, Sung-Ook;Chang, Ha-Won
    • Journal of Science and Technology Studies
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    • v.10 no.1
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    • pp.27-71
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    • 2010
  • Scientific creativity is defined as the production of novel scientific facts, methods, theories, explanations, and instruments, as well as the entire process by which these novel facts, theories, explanations and instruments are generated. There have been many studies on scientific creativity, but there were few studies on the scientific creativity of a research team collaborating in laboratory settings. This paper aims to find the elements that constitute the creativity of a laboratory through empirical participant observation and theoretical analysis of RNA Biology Lab in Seoul National University - a lab which is considered to be the most creative laboratory in Korea. Creative accomplishments demand not just a sudden inspiration but also a complicated and continuous evolutionary process which requires a systematic division of labor and a corporation between researchers who have diverse knowledges and capabilities. Also, this paper shows that laboratory culture and leadership are an important factor for vitalizing the corporative structure of the laboratory.

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Effects of an Engineering-Focused STEAM Program Based on the Project Approach for Young Children on Their Scientific Inquiry Ability, Mathematical Problem-Solving Ability, and Creativity (유아 대상 프로젝트 접근법 기반 공학적 STEAM 프로그램이 유아의 과학적 탐구능력, 수학적 문제해결력, 창의성에 미치는 효과)

  • Kwangjae Yu;Jihyun Kim
    • Korean Journal of Childcare and Education
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    • v.19 no.4
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    • pp.29-52
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    • 2023
  • Objective: This research aims to examine the effect of a young children's engineering-focused STEAM program based on the project approach - a program that constructs components aligned with children's interests in their play through an engineering design process - on their scientific inquiry ability, mathematical problem-solving ability, and creativity. Methods: In this research, 42 five-year-old children from a public kindergarten in S district, I city, were randomly divided into experimental and comparative groups, each with 21 children. The engineering-focused STEAM program was conducted from April 18 to June 10, 2022, with the experimental group exploring the 'car' theme and the comparison group focusing on a different theme. The study employed an independent sample t-test and analysis of covariance(ANCOVA), using the pretest as a covariate to control variables. Results: The children-selected 'cars' themed engineering-focused STEAM program was effective in enhancing their scientific inquiry ability, mathematical problem-solving ability and creativity. Conclusion/Implications: The engineering-focused STEAM program, which emerges from young children's interesting daily play, had positive effects on enhancing their scientific inquiry ability, mathematical problem-solving ability, and creativity. This research can serve as fundamental data for developing education programs focused on engineering within the STEAM framework, guided by children's emergent play.

The Effects of a Constructivist Approach to Cooking Activities on Young Children's Scientific Attitudes and Creativity (구성주의 접근의 요리활동이 유아의 과학적 태도와 창의성에 미치는 영향)

  • Park, Go-Woon;Kim, Sun-Young
    • Korean Journal of Child Studies
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    • v.32 no.1
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    • pp.141-156
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    • 2011
  • This research centers around an experiment conducted to determine the relative effectiveness of constructivist cooking activities as compared to traditional cooking activities for young children. Forty-six children, aged five years in two kindergarten classes were assigned to a experimental and comparative group. The experimental and comparative group participated in 12 units. The experimental group participated in the constructivist cooking activities, while the comparative group participated in the traditional cooking activities. Analysis of covariance revealed significant differences between the mean scores of the two groups on the posttests for scientific attitudes and creativity, indicating that the children in the experimental group performed significantly better on the tests than the children in the comparative group. The results of this study suggest that such constructivist cooking activities are able to improve the scientific attitudes and creativity of young children.

A Suggesting of the Earth Science Lesson Model Based on the Creativity·Character Education (창의·인성교육 기반 지구과학 수업모형 제안)

  • Moon, Byoung-chan
    • Journal of the Korean Society of Earth Science Education
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    • v.8 no.3
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    • pp.297-308
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    • 2015
  • The purpose of this study was to suggest the earth science lesson model based on the creativity character education. To conduct this study, the curriculum revision in 2009 was analyzed by the causal mapping method. One after another, the creativity character education and earth system education were analyzed by the same method. Through as mentioned above, the key words which have relating concepts each other were picked out. Lastly, the key words were connected and compounded for the earth science lesson model based on the creativity character education. The model indicates that the earth science lesson based on the creativity character education requires the reconstructs of the processing and contents of the lesson. In other words, the teaching/learning must be progressed as corresponding between scientific facts and mental recognition, scientific concepts and compounding thinking skill, scientific laws and reconstructing thinking skill. In contents were reconstructed as relating to knowledge, creativity, characters and guidance counseling. The results of this study suggested the earth science lesson model based on the creativity character education needs developing and applying teaching/learning materials and managing discussing and cooperative learning.

Mediation effects of early childhood teachers' instructional creativity on the structural relationship between early childhood teachers' science teaching efficacy and children's scientific attitude (유아교사의 과학교수효능감과 유아의 과학적 태도의 구조적 관계에서 유아교사 창의성의 매개효과)

  • Lee, Yu Hee;Jeon, Hong-Ju
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.19 no.7
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    • pp.125-132
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    • 2018
  • The purpose of this study is to examined the relationship between child care teachers' science teaching efficacy and children's scientific attitude. Then, using the instructional creativity as a parameter to increase the quality of teacher-children interaction, we examined how the teacher-children relationship changed. In this study, 303 child care center teachers in Suwon, Gyeeonggi were surveyed. To analyze the data, structural equation modeling and Sobel-test were performed using SPSS 23.0 and AMOS 23.0. The analysis results showed that child care center teachers' science teaching efficacy had positive effects on the teachers' creativity and the children's scientific attitude. Furthermore, the creativity of child care center teachers had a positive effect on children's scientific attitude. The result of the Sobel-test revealed that child care center teachers's creativity played a mediating role between teachers' science teaching efficacy and children's scientific attitude and acted as a key variable in promoting children's scientific attitude. In conclusion, it has been identified that the creativity of the infant teacher's teaching is an important change that has a positive effect on the child's scientific attitude. Therefore, if education is provided to enhance the creativity of the professor when the infant teacher is working as a science professor at the same time, it can contribute to the quality of the child's scientific attitude.

A Study on the Relationship between the Parents' Learning Involvement and Children's Intellectual Curiosity and Scientific Creativity of the Gifted Elementary Students of Science and General Students (초등과학영재아동과 일반 아동 부모의 학습관여와 지적호기심 및 과학창의성의 관계 연구)

  • Oh, Jong-Seok;Lee, Hyeong-Cheol;Yoo, Pyoung-Kil
    • Journal of Fisheries and Marine Sciences Education
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    • v.26 no.5
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    • pp.1119-1128
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    • 2014
  • This study was aimed at analyzing the correlation among each factor after finding out the difference between the gifted elementary students of science and general students with their parents' learning involvement, the children's intellectual curiosity and scientific creativity. The results of the study were as in the followings. Firstly, there was a significant difference in the intellectual curiosity between the gifted students and general students. Secondly, there was a significant difference in the parents' learning involvement perceived by the gifted students and general students. Thirdly, there was a significant difference in scientific curiosity of the gifted students and the general students. Forth, as the results of the correlation analysis among the talented child's father's learning involvement, the child's intellectual curiosity and scientific creativity, there was a positive correlation between the father's pursuit for appropriateness and the talented child's special curiosity, and another positive correlation between the father's encouragement for academic improvement and the child's flexibility and originality.

The Development of Question Sheet to Improve Middle School Students' Scientific Creativity (중학생들의 과학창의력 신장을 위한 발문지 개발)

  • Jeong, Ji-Eun
    • Journal of the Korean Society of Earth Science Education
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    • v.9 no.3
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    • pp.255-268
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    • 2016
  • The education should adapt learners well to any changes and have them create something for such a era. Form the point of this view. question sheet was developed for middle school students to improve their scientific creativity. For this study, 146 item questions, which was from chapter 7 about solar system movement in the 3rd grade textbook for middle school students, was developed. For 5 weeks, 142 third graders in middle school were chosen and observed. They were divided into an experimental group and a control group. The teaching model using question sheet was applied to the experimental group, while the traditional teaching model, to the control group. This study compared two groups based on scientific creativity and academic achievement. In both scientific creativity and academic achievement, the group using question sheet showed meaningful differences. This result of the analysis indicated that teaching model using question sheet stimulated student's creative thinking and helped them to achieve a goal of lesson. The teaching model using question sheet can be used as an effective way to increase students' creativity.

Development of Programs to Enhance the Scientific Creativity - Based on Theory and Examples - (과학 창의성 계발을 위한 프로그램 개발 - 이론과 예시를 중심으로 -)

  • Han, Ki-Soon;Kim, Byung-No;Choe, Seung-Urn;Jung, Hyun-Chul
    • Journal of the Korean earth science society
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    • v.23 no.4
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    • pp.334-348
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    • 2002
  • In this study we have developed programs to enhance the scientific creativity by reviewing literature on the creativity and analyzing the theoretical models related to gifted education. The scientific creativity is regarded as the process of problem solving and problem finding, in particular, solving and finding the ill-defined but significant problems. In general, the important components of the scientific creativity are considered as the scientific knowledge, process skill, divergent/critical thinking, ill-defined problem, and problem finding. The program developed for the purpose of the study is composed of three stages based on Renzulli's model : general exploratory activities, group training activities and individual and small group investigations of real problems. The developed program in this study consists of 4 themes, 15 school hours in the earth science area. The process and products of the program development as well as the background of the present research are described and discussed in detail.

Development of Teaching Materials for the Nature of Science and Pilot Application to Scientifically Gifted Students (과학의 본성 지도자료 개발과 과학영재를 대상으로 한 시험적용)

  • Park, Jong-Won;Kim, Doo-Hyun
    • Journal of The Korean Association For Science Education
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    • v.28 no.2
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    • pp.169-179
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    • 2008
  • In this study, 46 teaching materials for understanding the nature of science (NOS) were developed based on the 42 statements describing the NOS. Each teaching material involves scientific knowledge and scientific inquiry skills as well as NOS statements. Teaching materials consist of students' learning worksheets and teachers' guides. Among the materials, 11 materials for understanding the nature of scientific thinking (NOST) were applied to 3 scientifically gifted students. As results, the degree of difficulty was appropriate and students showed interests in scientific thinking rather than new concepts or inquiry activities involved in the materials. It was expected that understating the NOST would be helpful for conducting scientific inquiry in more authentic way. And similarly to the Park's (2007) theoretical discussions about the relationship between the NOS and scientific creativity, students actually responded that undertrading the NOST could help their creativity. Therefore, it was expected that teaching the NOST would be plausible elements for teaching scientific creativity.