• Title/Summary/Keyword: 과학인재

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Exploratory Study on Elementary Teachers' Stages and its Change of Concerns about STEAM (Science, Technology, Engineering, Arts, and Mathematics) Education (융합인재교육(STEAM)에 대한 초등 교사의 관심도 변화에 관한 탐색 연구)

  • Park, Kyungsuk;Kim, Yongki;Jeon, Jaedon;Lee, Hyonyong
    • Journal of Science Education
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    • v.39 no.1
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    • pp.99-112
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    • 2015
  • This study aimed at investigating elementary teachers' stages of concerns and its changes about STEAM education. The participants of this study were 90 elementary school teachers implementing STEAM education in their schools. The Stages of Concern Questionnaire (SoCQ) was administered after the permission was granted by Hall. Data were collected three times from April, June, and December in the year of implementing the exemplary STEAM school. The results indicated that elementary school teachers' concerns toward STEAM education, the differences of the percentile scores of each stages of concerns, showed slightly low. The SoC of teachers in April showed that Awareness(Stage 0) was relatively very high and Consequences(Stage 4) was very low. However, in December, both Awareness(Stage 0) and Management(Stage 3) were very low. In particular, the percentile scores of Consequence(Stage 4) showed the big difference from 54.7 to 74.3. In addition, teachers who took science track in their high schools showed the relatively low score in the stage of Management(Stage 3). Teachers having the degree of Master of Arts presented the relatively low percentile score in the stage of Management(Stage 3). Teachers who majored in STEM related areas at the university presented the relatively low score in the stage of Management(Stage 3). The findings of this exploratory study may provide the useful insights into the integrative approaches of STEAM education.

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The Effects of Middle School Students' Educational Satisfaction and Attitudes Toward Science on Geology Education Program of IS-GEO (국제지질자원인재개발센터의 지질교육 프로그램이 중학생들의 과학에 대한 태도와 교육만족도에 미치는 효과)

  • Jeong, Ye Hee;Kim, Hyoungbum
    • Journal of the Korean Society of Earth Science Education
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    • v.11 no.3
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    • pp.158-171
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    • 2018
  • The purpose of this research was to examine the attitudes toward science on geology and satisfaction of education according to the stage of cognitive development of middle school students mainly on the geoscience education program of IS-GEO(International School for Geoscience and Mineral Resources) which is the KIGAM(Korea Institute of Geoscience and Mineral Resources) and to see what kind of correlation it shows between these. The subjects of research are 139 out of 282 students who participated in the geoscience education program conducted at the IS-GEO which is a KIGAM in 2018 by random sampling. Therefore, the research results are as follows. First, the concrete operational stage was 44%, the transition stage was 32%, the formal operational stage was 24%, 76% of the middle school student's cognitive development level didn't reach at the formal operational stage. Also, attitudes towards science on geology indicated statistically significant differences in the sub-region in "Geology-related science class", "Suburban geological science class", "Recognition of geological science and technology". Second, there was no statistically significant difference in educational satisfaction depending on the stages of every cognitive development. In other words, all participants at the cognitive stages showed high satisfaction with the geological education program which progresses at the IS-GEO, which is the KIGAM. Third, the correlation between educational satisfaction and attitudes toward science on geology showed a statistically meaningful static correlation. Therefore, attitudes toward science on geology can be positively displayed that participants who participated in geoscience education program and training of the IS-GEO have high satisfaction of education in science behavioral system.

Development and Application of the Scientific Inquiry-based STEAM Education Program about Earthquakes (지진에 대한 과학 탐구 기반의 STEAM 교육 프로그램 개발과 적용)

  • Lee, Hyundong;Bae, Taeyoun;Lee, Hyonyong
    • Journal of the Korean earth science society
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    • v.37 no.7
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    • pp.476-488
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    • 2016
  • The purposes of this study were to develop a scientific inquiry-based STEAM education program and to investigate its effect on changing middle school students' self-efficacy in science, job awareness, and attitudes toward STEM. A scientific inquiry-based STEAM program was developed with the theme of 'earthquakes', using the ADBA model, which was taking up the total of six class periods. The final program, which had been revised and completed after being pre-tested with middle school students, was implemented to 105 third-graders of middle school in a metropolitan city. One sample pre-post paired t-test before and after applying the program to the same group was conducted, and its effectiveness was analyzed in terms of self-efficacy in science, job awareness, attitudes toward science, technology, engineering and mathematics. Results showed that the STEAM program on the theme of 'earthquakes' demonstrated its effect on improving the students' of self-efficacy in science subject and their awareness of science-related jobs. Furthermore, this program indicated a statistical significance in improving middle school students' attitudes, awareness, and abilities, values, and continuing interest towards science, technology, engineering, and mathematics. Therefore, we suggest that this scientific inquiry based STEAM program be used to help students to improve their scientific investigation skills as well as their creative and integrated thinking abilities in schools.

The Development of a Scale to Measure the Innovation Configurations of STEAM and Analysis of Relationship between the Innovation Configurations and the Usage Levels of STEAM (융합인재교육 실행형태의 측정도구 개발 및 실행형태와 실행수준의 관계 분석)

  • Lee, Jin Suk;Song, Tae Ho
    • Journal of The Korean Association For Science Education
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    • v.39 no.6
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    • pp.755-765
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    • 2019
  • This study aims to develop the scales to measure the innovation configurations of Science. Technology, Engineering, Art and Mathematics (STEAM) from the perspective of elementary school teachers and investigates the effect of the innovation configurations and related environmental factors on the usage levels of STEAM based on the newly developed scales for the innovation configurations of STEAM. The scales for the innovation configurations of STEAM are based on analyzing the various previous studies and in-depth interviews and consist of four sub-configurations: The 'Preparation,' 'Design,' 'Implementation,' and 'Evaluation.' The innovation configurations of STEAM was investigated with the developed scales through 266 teachers who are leading STEAM school teachers, are involved in STEAM research group, or are implementing STEAM in general schools. The final 19 questionnaires for the scale of the innovation configuration of STEAM are confirmed with exploratory factor analysis and reliability analysis. In order to examine the relationship between the innovation configurations and levels of use, the direct relationship between four sub-configurations and the usage levels of STEAM and the effect of environmental factors on the innovation configuration and the usage levels of STEAM have been conducted and their interactions are considered. The results show that 'Implementation' in the innovation configurations of STEAM and 'STEAM training experience' are most important factors to improve the usage levels of STEAM for elementary school teachers. It implies that the scales are very helpful in improving as well as figuring out the current innovation configurations of STEAM.

Development of a Theoretical Model for STEAM Education (융합인재교육(STEAM)을 위한 이론적 모형의 제안)

  • Kim, Sung-Won;Chung, Young-Lan;Woo, Ae-Ja;Lee, Hyun-Ju
    • Journal of The Korean Association For Science Education
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    • v.32 no.2
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    • pp.388-401
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    • 2012
  • This study attempted to propose a theoretical model for STEAM education, entitled to the Ewha-STEAM education model, which could provide more concrete guidelines for science educators and curriculum developers to execute STEAM ideas. We identified key knowledge and key competencies to nurture future creative/convergent human resources. Key knowledge included an understanding of core ideas cutting across traditional disciplinary boundaries as well as the nature of different disciplines. And additionally, key competencies implied such abilities as to explore the scientific world, to resolve problems, and to communicate and collaborate with others. We also added creativity and character as an essential part of key competencies. In order to provide more specific guidelines when developing, implementing, and evaluating STEAM curriculum, we suggested three elements of convergence to consider: 1) unit of convergence (i.e. concept/skills, problem/phenomenon, activity), 2) degree of convergence (i.e. multi-disciplinary, inter-disciplinary, extra-disciplinary), and 3) context of convergence (i.e. personal, societal, global). It is expected that the Ewha-STEAM education model would contribute towards diverse education communities understanding the direction of STEAM education and its educational potentials.

Analysis of Elementary School Teachers' Innovation Configuration on STEAM (융합인재교육(STEAM)에 대한 초등학교 교사의 실행 형태 분석)

  • Chae, Hee In;Noh, Suk Goo
    • Journal of Science Education
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    • v.39 no.1
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    • pp.44-57
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    • 2015
  • The purpose of this study was to analyze the teachers' Innovation Configuration(IC) on STEAM of the 2009 elementary science curriculum and to implicate the assessment of STEAM. Therefore, this study was conducted by the IC component checklist of the Concerns-Based Adoption Model(CBAM). The total number of 126 teachers participated in this study. The results of the study were as follows: First, time management(33.3%) was the most ideal IC. On the other hand, curriculum planning(34.1%) was the most unacceptable IC. Second, the results of the chi-square test showed that the IC were significantly different according to their positions, career in education and training experiences(p<.05). Third, to explore the teacher's epistemic beliefs on STEAM, one in-service elementary teacher who studied in a doctoral course of a graduate school of education participated in the study. Based on these results, we suggested that the support of application and the revolution of the science curriculum and assessment should be implemented according to the teachers' IC.

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Key Factors of Talented Scientists' Growth and ExpeI1ise Development (과학인재의 성장 및 전문성 발달과정에서의 영향 요인에 관한 연구)

  • Oh, Hun-Seok;Choi, Ji-Young;Choi, Yoon-Mi;Kwon, Kwi-Heon
    • Journal of The Korean Association For Science Education
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    • v.27 no.9
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    • pp.907-918
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    • 2007
  • This study was conducted to explore key factors of expertise development of talented scientists who achieved outstanding research performance according to the stages of expertise development and dimensions of individual-domain-field. To fulfill the research purpose, 31 domestic scientists who were awarded major prizes in the field of science were interviewed in-depth from March to September, 2007. Stages of expertise development were analyzed in light of Csikszentmihalyi's IDFI (individual-domain-field interaction) model. Self-directed learning, multiple interests and finding strength, academic and liberal home environment, and meaningful encounter were major factors affecting expertise development in the exploration stage. In the beginner stage, independence, basic knowledge on major, and thirst for knowledge at university affected expertise development. Task commitment, finding flow, finding their field of interest and lifelong research topic, and mentor in formal education were the affecting factors in the competent stage. Finally, placing priority, communication skills, pioneering new domain, expansion of the domain, and evaluation and support system affected talented scientists' expertise development in the leading stage. The meaning of major patterns of expertise development were analyzed and described. Based on these analyses, educational implications for nurturing scientists were suggested.