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    탐구 기반 모의 수업 실연이 예비 교사들의 과학적 자기 효능감, 과학 내재 동기에 미치는 영향 = Enhancing Science Self-efficacy and Science Intrinsic Motivation through Simulated Teaching-learning for Pre-service Teachers

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    https://www.riss.kr/link?id=A108855425

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The purpose of this investigation is to: (1) to derive an improvement factor for inquiry-based simulated teaching-learning in pre-service teacher training programs, and pre-service teachers practice simulated teaching that reflect the improvement factor, (2) to analyze the difference in science intrinsic motivation according to science self-efficacy and inquiry-based simulated teaching-learning experience. To achieve these goals, we recruited five elementary and secondary teachers as experts to help us develop an improvement factor based on expert interviews. Subsequently, third-year pre-service teachers of a university of education participated in our analysis of differences in science intrinsic motivation, according to their level of science self-efficacy and experience with inquiry-based simulated teaching-learning. Our methodology involved applying the analytic hierarchy process to expert interviews to derive improvement factor for inquiry-based simulated teaching-learning, followed by a twoway ANOVA to identify significant differences in science intrinsic motivation between groups with varying levels of science self-efficacy. We also conducted post-analysis through MANOVA statements. The results of our study indicate that inquiry-based simulated teaching-learning can be improved through activities that foster digital literacy, ecological literacy, democratic citizenship, and scientific inquiry skills. Moreover, small group activities and student-centered teaching-learning approaches were found to be effective in developing core competencies and promoting science achievements. Specifically, pre-service teachers prepared a teaching-learning course plan and inquiry-based simulated teaching-learning in seventh-grade in the Earth and Space subject area. Pre-service teachers’ science intrinsic motivation analyze significant differences in all levels of science self-efficacy before and after simulated teaching-learning and significant difference in the interaction effect between simulated teachinglearning and scientific self-efficacy. Particularly, group with low scientific self-efficacy, the difference in science intrinsic motivation according to simulated teaching-learning was most significant. Teachers’ scientific self-efficacy and intrinsic motivation are needed to improve science achievement and affective domains of students in class. Therefore, this study contributes to suggest inquiry-based simulated teaching-learning reflecting school practices from the pre-service teacher curriculum.
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    The purpose of this investigation is to: (1) to derive an improvement factor for inquiry-based simulated teaching-learning in pre-service teacher training programs, and pre-service teachers practice simulated teaching that reflect the improvement fact...

    The purpose of this investigation is to: (1) to derive an improvement factor for inquiry-based simulated teaching-learning in pre-service teacher training programs, and pre-service teachers practice simulated teaching that reflect the improvement factor, (2) to analyze the difference in science intrinsic motivation according to science self-efficacy and inquiry-based simulated teaching-learning experience. To achieve these goals, we recruited five elementary and secondary teachers as experts to help us develop an improvement factor based on expert interviews. Subsequently, third-year pre-service teachers of a university of education participated in our analysis of differences in science intrinsic motivation, according to their level of science self-efficacy and experience with inquiry-based simulated teaching-learning. Our methodology involved applying the analytic hierarchy process to expert interviews to derive improvement factor for inquiry-based simulated teaching-learning, followed by a twoway ANOVA to identify significant differences in science intrinsic motivation between groups with varying levels of science self-efficacy. We also conducted post-analysis through MANOVA statements. The results of our study indicate that inquiry-based simulated teaching-learning can be improved through activities that foster digital literacy, ecological literacy, democratic citizenship, and scientific inquiry skills. Moreover, small group activities and student-centered teaching-learning approaches were found to be effective in developing core competencies and promoting science achievements. Specifically, pre-service teachers prepared a teaching-learning course plan and inquiry-based simulated teaching-learning in seventh-grade in the Earth and Space subject area. Pre-service teachers’ science intrinsic motivation analyze significant differences in all levels of science self-efficacy before and after simulated teaching-learning and significant difference in the interaction effect between simulated teachinglearning and scientific self-efficacy. Particularly, group with low scientific self-efficacy, the difference in science intrinsic motivation according to simulated teaching-learning was most significant. Teachers’ scientific self-efficacy and intrinsic motivation are needed to improve science achievement and affective domains of students in class. Therefore, this study contributes to suggest inquiry-based simulated teaching-learning reflecting school practices from the pre-service teacher curriculum.

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    참고문헌 (Reference)

    1 곽영순, "학습자의 핵심역량 개발을 위한 과학과 수업방법 개선 방안" 한국과학교육학회 32 (32): 855-865, 2012

    2 손원숙 ; 박정, "탐구기반 과학수업 프로파일의 분석: PISA 2015 한국과 싱가포르 비교" 교과교육연구소 21 (21): 698-707, 2017

    3 김성기 ; Hyunjung Kim, "컴퓨터 기반 과학 탐구 프로그램을 활용한 화학 수업이 과학 긍정경험, 과학과 핵심역량 및 학업성취도에 미치는 영향" 대한화학회 66 (66): 107-123, 2022

    4 하민수 ; 이기영 ; 최은환 ; 김일찬 ; 유지혜 ; 원복연, "집단중심 추세모형을 이용한 과학중점학교 1학년 프로그램이 고등학생들의 과학과 핵심역량과 과학학습동기에 미치는 영향 탐색" 한국과학교육학회 39 (39): 799-807, 2019

    5 이현동 ; 배태윤 ; 이효녕, "지진에 대한 과학 탐구 기반의 STEAM 교육 프로그램 개발과 적용" 한국지구과학회 37 (37): 476-488, 2016

    6 손원숙, "중등교사의 형성평가 유형에 대한 국제비교분석 : PISA 2015 자료의 활용" 한국교육평가학회 30 (30): 269-290, 2017

    7 하민수 ; 김미영 ; 박경화 ; 이준기, "자연과학고등학교 학생들의 학년과 성별에 따른 과학 학습 동기 구조의 차이 분석" 사범대학부속중등교육연구소 60 (60): 365-384, 2012

    8 하민수 ; 김미영 ; 박경화 ; 이준기, "일반고 학생들과의 비교 분석을 통한 자연과학고 학생들의 과학 동기 수준 및 구조 분석" 한국과학교육학회 32 (32): 866-878, 2012

    9 이현동, "예비 초등 교사의 고등학교 재학 시 진로 계열에 따른 과학적 자기 효능감이 과학 동기에 미치는 영향" 과학교육연구소 47 (47): 63-74, 2023

    10 이현동, "예비 교사들을 대상으로 한 과학적 자기 효능감 척도 타당도 검증과 배경 변인별 잠재평균분석" 한국초등과학교육학회 41 (41): 65-78, 2022

    1 곽영순, "학습자의 핵심역량 개발을 위한 과학과 수업방법 개선 방안" 한국과학교육학회 32 (32): 855-865, 2012

    2 손원숙 ; 박정, "탐구기반 과학수업 프로파일의 분석: PISA 2015 한국과 싱가포르 비교" 교과교육연구소 21 (21): 698-707, 2017

    3 김성기 ; Hyunjung Kim, "컴퓨터 기반 과학 탐구 프로그램을 활용한 화학 수업이 과학 긍정경험, 과학과 핵심역량 및 학업성취도에 미치는 영향" 대한화학회 66 (66): 107-123, 2022

    4 하민수 ; 이기영 ; 최은환 ; 김일찬 ; 유지혜 ; 원복연, "집단중심 추세모형을 이용한 과학중점학교 1학년 프로그램이 고등학생들의 과학과 핵심역량과 과학학습동기에 미치는 영향 탐색" 한국과학교육학회 39 (39): 799-807, 2019

    5 이현동 ; 배태윤 ; 이효녕, "지진에 대한 과학 탐구 기반의 STEAM 교육 프로그램 개발과 적용" 한국지구과학회 37 (37): 476-488, 2016

    6 손원숙, "중등교사의 형성평가 유형에 대한 국제비교분석 : PISA 2015 자료의 활용" 한국교육평가학회 30 (30): 269-290, 2017

    7 하민수 ; 김미영 ; 박경화 ; 이준기, "자연과학고등학교 학생들의 학년과 성별에 따른 과학 학습 동기 구조의 차이 분석" 사범대학부속중등교육연구소 60 (60): 365-384, 2012

    8 하민수 ; 김미영 ; 박경화 ; 이준기, "일반고 학생들과의 비교 분석을 통한 자연과학고 학생들의 과학 동기 수준 및 구조 분석" 한국과학교육학회 32 (32): 866-878, 2012

    9 이현동, "예비 초등 교사의 고등학교 재학 시 진로 계열에 따른 과학적 자기 효능감이 과학 동기에 미치는 영향" 과학교육연구소 47 (47): 63-74, 2023

    10 이현동, "예비 교사들을 대상으로 한 과학적 자기 효능감 척도 타당도 검증과 배경 변인별 잠재평균분석" 한국초등과학교육학회 41 (41): 65-78, 2022

    11 민동옥 ; 강한나 ; 박혜원, "아동의 자아탄력성과 학습습관 간의 관계: 부모양육태도의 상호작용효과" 인지발달중재학회 3 (3): 65-79, 2012

    12 이현동 ; 이효녕, "시스템 사고가 고등학생의 과학 자기 효능감에 미치는 영향" 한국지구과학회 37 (37): 173-185, 2016

    13 이현동 ; Max L. Longhurst ; 이효녕, "과학 영재 학생의 과학 동기가 과학 자기 효능감에 미치는 영향에 대한 탐색적 연구" 교과교육연구소 21 (21): 24-33, 2017

    14 Gencer, A., "Turkish preservice science teachers’ efficacy beliefs regarding science teaching and their beliefs about classroom management" 23 (23): 664-675, 2007

    15 Tark, M., "The relationships among science self-efficacy, science attitudes and academic achievement of elementary student" Seoul National University of Education 2011

    16 Lee, Y., "The effects of science process skin and academic achievement by the freedom inquiry using llM" 2 (2): 33-40, 2009

    17 Aluçdibi, F., "The effect of biology teachers’ classroom management profiles on the biology course motivation level of the high school students" 43 : 25-36, 2012

    18 Saaty, T., "The analytic hierarchy process: Planning, Priority Setting, Resource Allocation" McGraw-Hill 1980

    19 Coladarci, T., "Teachers’ sense of efficacy and commitment to teaching" 60 (60): 323-337, 1992

    20 Bandura, A, "Self-Efficacy: The Exercise of Control" Freeman 1997

    21 Pajares, F., "Self-Efficacy beliefs in academic settings" 66 (66): 543-578, 1996

    22 Skaalvik, E., "Self-Concept and self-efficacy : A test of the internal/external frame of reference model and predictions of subsequent motivation and achievement" 95 : 1187-1202, 2004

    23 Prenzel M., "Second International Handbook of Science Education" Springer Science & Business Media 667-678, 2012

    24 Ministry of Education (MOE), "Science curriculum. Notification No. 2015-74 [issue 9]"

    25 Glynn, S., "Sci-ence motivation questionnaire : Construct validation with nonscience majors" 46 : 127-146, 2009

    26 Pečiuliauskienė, P., "School students’ self-confidence in science and intrinsic motivation for learning science : self-concept and self-efficacy approach" 137 (137): 138-155, 2020

    27 Saaty, T., "Relative measurement and its generalization in decision making why pairwise comparisons are central in mathematics for the measurement of intangible factors the analytic hierarchy/network process" 102 (102): 251-318, 2008

    28 Creswell, J., "Qualitative inquiry and research design: Choosing among five approaches" Sage publications 2016

    29 Temiz, T., "Preservice teachers’teacher efficacy beliefs and constructivist-based teaching practice" 28 (28): 1435-1452, 2013

    30 NGSS, "Next Generation Science Standards: For States, By States" NGSS Lead States 2013

    31 National Research Council, "National science education standards" National Academies Press 1996

    32 Wind, Y., "Marketing applications of the analytic hierarchy process" 26 (26): 641-658, 1980

    33 Blanchard, M., "Is inquiry possible in light of accountability? A quantitative comparison of the relative effectiveness of guided inquiry and verification laboratory instruction" 94 (94): 577-616, 2010

    34 Ates, H., "Investigation of Pre-Service Science Teachers’ Academic Self-Efficacy and Academic Motivation toward Biology" 4 (4): 90-103, 2015

    35 Ghaffar, S., "Impact of Teacher’s Self-Efficacy on Student’s Motivation towards Science Learning" 5 (5): 225-234, 2019

    36 Saaty, T., "How to Make a Decision : The Analytic Hierarchy Process" 48 : 9-26, 1970

    37 Development Institute(KEDI), "Handbook for Competency Assessment of Teacher Training Institutions in 2021" Ministry of Education 2021

    38 Kobarg, M., "Further results from PISA 2006" Waxmann Verlag 2006

    39 Fur tak, E., "Experimental and quasi-experimental studies of inquirybased science teaching : A Meta-analysis" 82 (82): 300-329, 2012

    40 Cook, T., "Experimental and quasi-experimental designs for generalized causal inference" Houghton Mifflin 103-134, 2002

    41 Duschl, R., "Everyday assessment in the science classroom" NSTA Press 41-59, 2003

    42 Eo, S., "Effects of research classes on the achievements in inquiry instruction and science-related affective domain" 9 (9): 13-22, 2004

    43 신명희, "Effects of Project-based Learning on Students’ Motivation and Self-efficacy" 한국영어교육학회 73 (73): 95-114, 2018

    44 Sotiriou, S. A., "Education Sciences How Creativity in STEAM Modules Intervenes with Self-E fficacy and Motivation"

    45 Schunk, D. H., "Development of achievement motivation" American Press 2001

    46 OECD, "Defining and selection of competencies:Theoretical and conceptual foundation" OECD Press 2003

    47 Kim, A., "Construction and validation of academic self-efficacy scale" 39 (39): 95-123, 2001

    48 Corbin, J., "Basics of qualitative research: Techniques and procedures for developing grounded theory" Sage publications 2014

    49 Lay, Y., "Analyzing Affective Factors Related to Eighth Grade Learners’Science and Mathematics Achievement in TIMSS 2007" 24 (24): 103-110, 2015

    50 Titr ek, O., "Academic Motivation and Academic Self-Efficacy of Prospective Teachers" 6 (6): 77-87, 2018

    51 Lee, K., "A vision study on enhancing the core competencies of future Korean individuals through elementary and middles chool curcrulia ( Par tⅡ): Focusing on sub-factors setting of core competencies by domain" Korea Institute for Curriculum and Evaluation 2008

    52 Yoon, H., "A vision study on enhancing the core competencies of future Korean individuals through elementary and middle school curricula (part I): Focusing on the basis of core competencies and domain settings" Korae Institute for Currcuilum and Evaluation 2007

    53 Wang, M. M., "A study on the factors affecting biological concept learning of junior high school students" 29 (29): 453-464, 2007

    54 유은정 ; 박재용 ; 이현동, "2022 개정 과학과 교육과정 개선 방향 고찰 - 초등학교 ‘지구와 우주’ 영역을 중심으로 -" 한국초등과학교육학회 41 (41): 173-185, 2022

    55 Ministry of Education (MOE), "2022 revised curriculum: Science"

    56 정영근 ; 민용성 ; 이주연, "2015 개정 교육과정의 핵심역량 이해에 관한 고찰" 학습자중심교과교육학회 19 (19): 211-237, 2019

    57 이경건 ; 김유정 ; 장원형 ; 이재용 ; 홍훈기, "2015 개정 교육과정의 「과학탐구실험」이 고등학생의 과학 및 일반 핵심역량에 미치는 효과: 교수학습 방법을 중심으로" 한국교육과정평가원 23 (23): 23-50, 2020

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