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    고등학생의 인식론적 신념, 메타인지 및 과학 탐구 능력과 과학 학업성취도의 구조적 관계 분석 = Structural Relationships Among the Epistemological Beliefs, Metacognition, Science Inquiry Skills, and Science Achievement of High School Students

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    https://www.riss.kr/link?id=A101747795

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    In the study, epistemological beliefs, metacognition, and scientific inquiry skills all directly affected the science academic achievement levels of high school students. Also, epistemological beliefs indirectly affected science academic achievement mediated by scientific inquiry skills and metacognition, while metacognition had an indirect effect on science academic achievement level mediated by scientific inquiry skills. We found that scientific inquiry skills had the biggest direct effect, while epistemological beliefs showed the most robust indirect effect on academic achievement level. Thus, we argue that students` scientific inquiry skills should be nurtured for the advancement of their academic achievement. In addition, more careful scholarly attention must be given to both epistemological beliefs and metacognition, which directly and indirectly affected academic achievement level. We believe that epistemological beliefs, metacognition, and scientific inquiry skills should all be considered in an integrative manner when developing educational programs and strategies.
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    In the study, epistemological beliefs, metacognition, and scientific inquiry skills all directly affected the science academic achievement levels of high school students. Also, epistemological beliefs indirectly affected science academic achievement m...

    In the study, epistemological beliefs, metacognition, and scientific inquiry skills all directly affected the science academic achievement levels of high school students. Also, epistemological beliefs indirectly affected science academic achievement mediated by scientific inquiry skills and metacognition, while metacognition had an indirect effect on science academic achievement level mediated by scientific inquiry skills. We found that scientific inquiry skills had the biggest direct effect, while epistemological beliefs showed the most robust indirect effect on academic achievement level. Thus, we argue that students` scientific inquiry skills should be nurtured for the advancement of their academic achievement. In addition, more careful scholarly attention must be given to both epistemological beliefs and metacognition, which directly and indirectly affected academic achievement level. We believe that epistemological beliefs, metacognition, and scientific inquiry skills should all be considered in an integrative manner when developing educational programs and strategies.

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    참고문헌 (Reference)

    1 전성수, "초등학생의 과학적 의사소통능력과 과학 탐구능력, 논리적 사고력, 학업 성취도 수준과의 관계 분석" 한국과학교육학회 34 (34): 647-655, 2014

    2 김순옥, "중학생의 자기조절학습능력 수준에 따른 과학의 탐구능력 및 과학의 정의적 영역 특징 분석" 과학교육연구소 35 (35): 307-323, 2011

    3 이지혜, "자기결정성 학습동기, 메타인지, 자기주도적 학습능력 및 학습몰입과 학업성취 간의 구조적 관계" 한국교육학회 48 (48): 67-92, 2010

    4 문병상, "인식론적 신념, 자기조절학습 및 학업성적의 구조적 분석" 한국교육심리학회 23 (23): 581-599, 2009

    5 Pintrich, P. R., "manual for the use of the Motivated Strategies for Learning Questionnaire(MSLQ)" National Center for Research to Improve Postsecondary Teaching and Learning 1991

    6 강명희, "WISE를 활용한 초등학교 과학수업에서 자기주도학습능력, 인지실재감, 과학탐구능력, 과학성취도 간의 인과구조 분석" 교과교육연구소 16 (16): 481-498, 2012

    7 Ryu, C., "The structural relationship among learner variables affecting the science achievement of high school students" Chungbuk National University 2010

    8 Plants, R. T., "The relationship of motivation and metacognition to academic performance in graduate medical education" University of Memphis 2000

    9 Flavell, J. H., "The nature of intelligence" Lawrence Erlbaum 1979

    10 Jehng, J. J., "The nature of epistemological beliefs about learning" University of Illinois 1991

    1 전성수, "초등학생의 과학적 의사소통능력과 과학 탐구능력, 논리적 사고력, 학업 성취도 수준과의 관계 분석" 한국과학교육학회 34 (34): 647-655, 2014

    2 김순옥, "중학생의 자기조절학습능력 수준에 따른 과학의 탐구능력 및 과학의 정의적 영역 특징 분석" 과학교육연구소 35 (35): 307-323, 2011

    3 이지혜, "자기결정성 학습동기, 메타인지, 자기주도적 학습능력 및 학습몰입과 학업성취 간의 구조적 관계" 한국교육학회 48 (48): 67-92, 2010

    4 문병상, "인식론적 신념, 자기조절학습 및 학업성적의 구조적 분석" 한국교육심리학회 23 (23): 581-599, 2009

    5 Pintrich, P. R., "manual for the use of the Motivated Strategies for Learning Questionnaire(MSLQ)" National Center for Research to Improve Postsecondary Teaching and Learning 1991

    6 강명희, "WISE를 활용한 초등학교 과학수업에서 자기주도학습능력, 인지실재감, 과학탐구능력, 과학성취도 간의 인과구조 분석" 교과교육연구소 16 (16): 481-498, 2012

    7 Ryu, C., "The structural relationship among learner variables affecting the science achievement of high school students" Chungbuk National University 2010

    8 Plants, R. T., "The relationship of motivation and metacognition to academic performance in graduate medical education" University of Memphis 2000

    9 Flavell, J. H., "The nature of intelligence" Lawrence Erlbaum 1979

    10 Jehng, J. J., "The nature of epistemological beliefs about learning" University of Illinois 1991

    11 Schommer, M., "The influence of age and schooling on epistemological beliefs" 68 : 551-562, 1998

    12 Baird, "The importance of reflection in improving science teaching and learning" 28 (28): 163-182, 1991

    13 Jeong, H., "The effects metacognitive learning strategies on achievement of elementary school students" 28 : 57-68, 2003

    14 Hofer, B., "The development of epistemological theories; Beliefs about knowledge and knowing and their relation to learning" 67 : 88-140, 1997

    15 Kwon, J., "The development of an instrument for the measurement of science process skills of the korean elementary and middle school students" 14 (14): 251-264, 1994

    16 Spiro, R. J., "Tenth Annual Conference of the Cognitive Science Society" Erlbaum 375-383, 1988

    17 홍미영, "TIMSS 2003 성취 수준에 따른 우리나라 중학생들의 과학 성취도 분석" 한국과학교육학회 26 (26): 246-257, 2006

    18 Schommer, M., "Synthesizing epistemological beliefs research : tentative understandings and provocative confusions" 6 (6): 293-319, 1994

    19 Lee, J., "Structural analysis among science achievement, science process skills and affective perception toward science of high school students" 16 (16): 249-259, 1996

    20 Glynn, S. M., "Science motivation questionnaire II : Validation with science majors and nonscience majors" 48 (48): 1159-1176, 2011

    21 Ministry of Education and Science Technology (MEST)., "Science curriculum"

    22 Jehng, J. J., "Schooling and student's epistemological beliefs about learning" 18 : 23-35, 1993

    23 Cooper, M. M., "Reliable multi method assessment of metacognition use in chemistry problem solving" 9 : 18-24, 2008

    24 Kline, R. B., "Principle and practice of structural equation modeling" The Guilford Press 2011

    25 Pintrich, P. R., "Motivational and self-regulated learning components of classroom academic performance" 82 (82): 33-40, 1990

    26 Brown, A. L., "Metacognition, motivation, and understanding" Erlbaum Associates 65-116, 1987

    27 Costa, A. L., "Mediating the metacognitive" 42 : 57-62, 1984

    28 Bloom, B. S., "Human characteristics and school learning" Mcgraw-Hill 1976

    29 Songer, N. B., "How do students' views of science influence knowledge integration?" 28 (28): 761-784, 1991

    30 Hofer, B. K, "Epistemological understanding as a metacognitive process : Thinking aloud during online searching" 39 : 43-55, 2004

    31 Muis, K, R., "Epistemic profiles and self-regulated learning : Examing relations in the context of mathematics problem solving" 32 : 415-449, 2007

    32 Schommer, M., "Effects of beliefs about the nature of knowledge on comprehension" 82 : 498-504, 1990

    33 Burns, J. C., "Development of an Integrated Process Skills Test : TIPS II" 22 (22): 169-177, 1985

    34 Zimmerman, B. J., "Development of a structured interview for assessing student use of self-regulated learning strategies" 23 (23): 614-628, 1986

    35 Moon, S., "Basic concepts and applications structural equation modeling" Hakjisa Publication Co 2009

    36 Bayat, S., "Accessing cognitive and metacognitive strategies during algebra problem solving among university students" 8 : 403-410, 2010

    37 Kim, S., "A study of causal relationship on science process skills and student's characteristics by covariance structure analysis" Korea National University 1996

    38 Reynold, A. J., "A structural model of science achievement" 83 (83): 97-107, 1991

    39 Woo, J., "A longitudinal trend analysis of science process skills" 19 (19): 173-184, 1999

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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
    2011-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    2009-01-01 등재 등재학술지 유지 (등재유지) KCI등재
    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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