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

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    https://www.riss.kr/link?id=A60079591

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    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.
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    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...

    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.

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    참고문헌 (Reference)

    1 김재복, "통합교육 과정" 교육과학사 2003

    2 Drake, S. M., "통합 교육 과정" 원미사 2006

    3 신영준, "초등학교 교사들의 융합인재교육(STEAM)에 대한 인식 연구" 한국초등과학교육학회 30 (30): 514-523, 2011

    4 교육과학기술부, "창의인재와 선진과학기술로 여는 미래 대한민국" 2010

    5 Wilson, E. O., "지식의 대통합: 통섭" (주) 사이언스 북스 2005

    6 배선아, "중학교 전기전자기술 영역의 활동 중심 STEM 교육프로그램 개발 및 적용" 대한공업교육학회 36 (36): 1-22, 2011

    7 박현주, "우리나라 STEAM 교육을 위한 고려사항" 2012

    8 이효녕, "외국의 STEM/STEAM 교육 사례" 2012

    9 한국과학기술단체총연합회, "미래융합과학 기술인재 양성을 위한 STEAM 교육" 2011

    10 김진수, "기술교육의 새로운 통합교육 방법인 STEM 교육의 탐색" 한국기술교육학회 7 (7): 1-29, 2007

    1 김재복, "통합교육 과정" 교육과학사 2003

    2 Drake, S. M., "통합 교육 과정" 원미사 2006

    3 신영준, "초등학교 교사들의 융합인재교육(STEAM)에 대한 인식 연구" 한국초등과학교육학회 30 (30): 514-523, 2011

    4 교육과학기술부, "창의인재와 선진과학기술로 여는 미래 대한민국" 2010

    5 Wilson, E. O., "지식의 대통합: 통섭" (주) 사이언스 북스 2005

    6 배선아, "중학교 전기전자기술 영역의 활동 중심 STEM 교육프로그램 개발 및 적용" 대한공업교육학회 36 (36): 1-22, 2011

    7 박현주, "우리나라 STEAM 교육을 위한 고려사항" 2012

    8 이효녕, "외국의 STEM/STEAM 교육 사례" 2012

    9 한국과학기술단체총연합회, "미래융합과학 기술인재 양성을 위한 STEAM 교육" 2011

    10 김진수, "기술교육의 새로운 통합교육 방법인 STEM 교육의 탐색" 한국기술교육학회 7 (7): 1-29, 2007

    11 배선아, "공업계열 전문계 고등학교 활동 중심 STEM 교육프로그램 개발 모형" 한국실과교육연구학회 15 (15): 345-368, 2009

    12 Stevens, S., "The big ideas of nanoscale science and engineering" National Science Teachers Association Press 2009

    13 Fogarty, R., "Ten ways to integrated curriculum" 49 (49): 61-65, 1991

    14 Merrill, C., "Technology education research symposium: An actional research approach" 65 : 6-10, 2006

    15 Duschl, R. A., "Taking science to school: Learning and teaching science in grades K-8" National Academies Press 2007

    16 International Technology Education Association, "Standards for technological literacy: Content for the study of technology" International Technology Education Association 2007

    17 Lave, J., "Situated learning: Legitimate peripheral participation" Cambridge University Press 1991

    18 Kuenzi, J. J., "Science, Technology, Engineering, and Mathematics (STEM) education: Background, federal policy, and legislative action. Congressional Research Service Reports, Paper 35"

    19 American Association for the Advancement of Science, "Science for all Americans" AAAS 1989

    20 Witz, K. G., "Science as an ideal : Teachers' orientations to science and science education" 41 (41): 409-431, 2009

    21 Sanders, M., "STEM, STEM education, STEM mania" 68 (68): 20-26, 2009

    22 문대영, "STEM 통합 접근의 사전 공학교육 프로그램 모형 개발" 한국공학교육학회 11 (11): 90-101, 2008

    23 Yakman, G., "STEM pedagogical commons for contextual learning" Virginia Tech 2006

    24 김진수, "STEAM 교육을 위한 피라미드 모형과 큐빅 모형" 2011

    25 Meade, S. D., "Reporting on the status of technology education in the U. S. : The data on STL and AETL usage is positive in the respect that more and more states are becoming informed about what technology/ technological literacy encompasses" 63 : 29-35, 2004

    26 Choi, K., "Re-Conceptualization of Scientific Literacy in South Korea for the 21st Century" WILEY-BLACKWELL 48 (48): 670-697, 201108

    27 National Council of Teachers of Mathematics, "Principles and standards for school mathematics" National Council of Teachers of Mathematics 2000

    28 Mark Sanders, "Integrative STEM (Science, Technology, Engineering, and Mathematics) Education: Contemporary Trends and Issues" 중등교육연구소 59 (59): 729-762, 2011

    29 Smith, C. L., "Implications of research on children's learning for standards and assessment: A proposed learning progression for matter and the atomic molecular" 14 (14): 1-98, 2006

    30 권혁수, "Engineering Design: A Facilitator for Science, Technology, Engineering, and Mathematics [STEM] Education" 과학교육연구소 33 (33): 207-219, 2009

    31 van Langen, A., "Cross-national differences in participating in tertiary science, technology, engineering and mathematics education" 41 (41): 329-350, 2005

    32 National Research Council [NRC], "Conceptual framework for new science education standards"

    33 California Science Teacher Association, "CSTA position statement on STEM career pathways"

    34 Ede, S., "Art and science" I. B. Tauris 2005

    35 Sanders, M., "A rationale for new approaches to STEM education and STEM education graduate programs" 2006

    36 Clark, A. C., "A model for the integration of science, technology, engineering, and mathematics" 66 (66): 24-26, 2007

    37 Nicholls, G. M., "A method for identifying variables for predicting STEM enrollment" 96 (96): 33-44, 2007

    38 교육과학기술부, "2009 개정 교육과정에 따른 과학과 교육과정"

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    2027 평가 재인증평가 신청대상 (재인증)
    2021-01-01 등재 등재학술지 유지 (재인증) KCI등재
    2018-03-29 학술지명변경 외국어명 : Journal of the Korean Association for in Science Education -> Journal of the Korean Association for Science Education KCI등재
    2018-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2015-01-01 등재 등재학술지 유지 (등재유지) KCI등재
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    2007-04-26 학술지명변경 외국어명 : Journal of the Korean Association for Research in Science Education -> Journal of the Korean Association for in Science Education KCI등재
    2007-04-03 학회명변경 영문명 : The Korean Association For Research In Science Education -> The Korean Association for Science Education KCI등재
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