• Title/Summary/Keyword: 지구 과학 교육

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Analysis of the Conceptual Understanding of In-service and Pre-service Earth Science Teachers about 'Stellar Evolution' (현직 및 예비 지구과학교사의 '별의 진화'에 대한 개념 이해 분석)

  • Ha, Min-Kyoung;Sohn, Jungjoo
    • Journal of the Korean earth science society
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    • v.40 no.5
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    • pp.538-547
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    • 2019
  • This study analyzes the conceptual understanding of in-service and pre-service earth science teachers about the H-R diagrams and evolution of stars using conceptual status analysis categories. The results show that (a) many teachers use unscientific language in the Intelligibility range, (b) teachers are categorized in Low scientific inquiry ability related to graph creation and unscientific analogy for scientific concept which is hightly corelated to the possibility of misunderstanding in the teaching process, and (c) pre-service teachers lack the understanding of the secondary science curriculum. It is necessary to develop pre-service curriculum that can be applied to the school site. In the category of Plausibility range, (d) both groups understood the cosmological meaning of stellar evolution. However, pre-service teachers do not specifically explain the mechanism of a star. In the category of Fruitfulness range, in-service teachers come up with educational problems reflecting the academic characteristics of earth science and apply their knowledge to actual problem solving. On the other hand, pre-service teachers show high nonresponse ratio, they do not see the H-R diagram and the evolution of stars as a practical concept. In the analysis process, both groups are found to have many unscientific conceptions about the H-R diagram and evolution of stars. Therefore, it is suggested that caution be used in developing a professional development program of earth science teachers.

Development of Design Principles for Astronomical Observing Education Program Based on Authentic Inquiry (참탐구를 위한 천체 관측 교육 프로그램 설계 원리 개발)

  • Choi, Dong-Yeol;Ahn, Yumin
    • Journal of the Korean earth science society
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    • v.42 no.6
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    • pp.752-769
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    • 2021
  • Although astronomical observation has various educational effects and values, studies conducted in the context of earth science education have been relatively insufficient compared with other fields. In addition, few studies have been conducted on systematic design principles development guiding teachers in the application of practical astronomical observation education. In this study, we attempted to develop design principles for astronomical observation education programs for K-12 students and applied the program to the classes. The initial design principles were derived through literature research and revised through validation processes by eight experts. The final principles were confirmed based on the usability evaluation of two high school teachers, and they included 11 design principles and 27 detailed guidelines. In addition, an astronomical observation education program consisting of eight lessons was designed by applying the final design principle. This program was applied to after-school classes in high school, the responses of participating students were investigated. We anticipate our design principles can be used as a criterion for systematic design of various types of observation activities, including outdoor observations.

Analysis of Research Trend on Conceptual Change in Earth Science (지구과학교육 분야의 개념변화 연구 동향 분석)

  • Park, Ki Rak;Park, Hyun Ju
    • Journal of the Korean earth science society
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    • v.39 no.2
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    • pp.193-207
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    • 2018
  • The purpose of this study was to analyze trends in conceptual change research in the field of Earth Science education conducted in Korea and to provide them as basic data of future concept change research. The trends of conceptual change research were analyzed in terms of keywords, year of publication, source of research, purpose of research, subject, area of research, and research method. This study was carried out on a total of 126 conceptual change papers of Earth Science education published from 1989 to July 2017. This study showed the following conclusions: First, the conceptual change research papers used more the term 'conceptual change' than 'misconceptions' and 'preconceptions'. Second, the conceptual change paper has achieved a large amount of growth in the 2000s. Third, conceptual change research tended to proceed to the subject of master's dissertation. Fourth, there were a lot of researches to find out the misconceptions and change them into the right concept, the conceptual change paper used free response test for misconceptions, and cognitive conflict instruction model and CAI (Computer Assisted Instruction) teaching strategy for misconceptions. Fifth, elementary school students were studied the most. Sixth, the study of conceptual changes in the field of Earth Science was high in the astronomical and atmospheric areas. Finally, although quantitative analysis methods were used in the early days of research, in the 2010s, qualitative analysis methods were widely used. In this paper, we proposed research on conceptual change for pre- and in-service teachers, expansion of research on conceptual changes in various fields such as geology, oceanography, atmosphere in Earth Science, investigation of causes of misconception in Earth Science and research on individual's affective factors, and so on.

Levels of Reflection and Attainment of School Science Curriculum Demonstrated in the Texts of Exhibition Panels in Science Museums: Case Studies of Earth Science Contents at the Secondary Level (과학관 패널 전시 설명문의 교육과정 반영도 및 도달 수준 - 중등학교 지구과학 내용을 중심으로 -)

  • Kim, Tae-Hyeong;Lee, Chang-Zin;Ryu, Chun-Ryol
    • Journal of the Korean earth science society
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    • v.30 no.6
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    • pp.773-786
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    • 2009
  • Recently, the connection between science museum and school science curriculum has been emphasized, but the frameworks for evaluating school science curricula are insufficient in terms of how much of school science curriculum was reflected and attained. The purposes of this study are to develop a framework that can be utilized to evaluate levels of curriculum that are reflected and attained in the texts of exhibition panels displayed in science museums. We developed an evaluation tool based on the frameworks used to assess students' achievement in the secondary school curriculum, and we used the tool to measure the reflection and attainment levels demonstrated in the texts of exhibition panels about earth science contents of secondary school curriculum in three science museums located in Chungcheong-do, central part of Korea. Findings showed that the levels of reflection and attainment of secondary school curriculum in exhibition panels about earth science contents in science museums were measured 38.7% and 2.82 points out of 5.0respectively. We hope that the evaluation tool used in this study could be utilized to measure the levels of reflection and attainment of secondary school science curriculum demonstrated in the text of each of exhibition panels in science museums.

Suggesting Research Methods to Explore the Nature of Earth Science: Applying the Phenomenological Approach and Family Resemblance Approach to NOS (지구과학의 본성에 대한 연구방법 제안 -현상학적 접근 및 과학의 본성(NOS)에 대한 가족유사성 접근의 활용-)

  • Park, Won-Mi
    • Journal of The Korean Association For Science Education
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    • v.40 no.1
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    • pp.51-60
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    • 2020
  • In this study, we propose research methods to explore the nature of earth science by applying the phenomenological approach and NOS-family resemblance approach based on literature review. The phenomenological approach exploring the nature of earth science is a method of collecting, analyzing and synthesizing multifaceted features of earth science from intuitive sensory phenomena without prejudice. As a way of exploring the nature of earth science from a phenomenological point of view, we propose the NOS-family resemblance approach to the NOS. This approach provides a comprehensive explanation of NOS by combining the characteristics shared by different areas of science with distinct differences. Applying this method to exploring the nature of earth science, we can identify both domain-general and domain-specific characteristics that make sub-areas of earth science a 'family.' For example, through the networking of features shared by such sub-areas as geology, atmospheric science, oceanography, astronomy, earth system science, etc., we can extract the family-resemblance characteristics that make these sub-areas a family called earth science. Through these approaches to the nature of earth science, the richness, complexity, and dynamic nature of earth science can be revealed as a whole. In addition, we will be able to grasp the change in the sub-areas that constitute the earth science, which in turn changes the nature of earth science, and to contribute to establishing the status and development system of earth science as a school subject.

The Effects of Prior Knowledge and Development Procedure to Teaching Materials Developed by the Pre-service Earth Science Teachers-Focused on the Teaching Materials in the Schoolyard (예비 지구과학교사들의 선행지식과 개발 절차가 교수학습 자료에 미치는 영향: 교정에 적용할 수 있는 자료를 중심으로)

  • Chung, Duk-Ho
    • Journal of the Korean earth science society
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    • v.32 no.1
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    • pp.140-151
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    • 2011
  • This study is to search the problems of schoolyard teaching material developed by pre-service earth science teachers and the critical factors affecting material making. The 258 schoolyard teaching materials was collected from 54 pre-service earth science teachers (male: 18, female: 36) major in Earth Science Education in Jeonju, Korea. The schoolyard teaching materials was greatly influenced by making process type of it and the prior knowledge of pre-service earth science teachers. As schoolyard preference exploratory type rely on their prior knowledge to develop the schoolyard teaching materials, they made use of the limited concepts like fault in material making. But the concept preference exploratory type made use of concepts not accessible to majority of pre-service earth science teachers because they selected a concept from the earth science textbook first of all. The pre-service earth science teachers having wrong prior knowledge selected inappropriate resources, as well as fell into the error of concept connecting. The pre-service earth science teachers having right prior knowledge partly considered only shape of resources, but had a disregard for formation process of it in material making. Accordingly, we need to reflect richly Geological Field Trip and Solid Earth Science to curriculum for earth science teacher education. And we have to educate pre-service earth science teachers to create holistic concept on the geological subject matter knowledge, field based teaching and learning strategy, material making process.

Science Museum Comparative analysis by Achievement Standards of Science Curriculum - Focused on the Panel Exhibition (과학 교육과정의 성취기준에 따른 과학관 비교 분석 - 패널전시 설명문을 중심으로)

  • Kim, Tae-Houng;Lee, Chang-Zin;Shin, Myeong-Kyeong
    • 한국지구과학회:학술대회논문집
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    • 2005.09a
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    • pp.292-302
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    • 2005
  • Science museum are the typical channels for students to experience science as outside school science lessons. Hereupon, in this study, middle school earth science contents system and achievement standards by the 7th Curriculum analyzed exhibit of science museum for basis. As a result, relevance between accomplishment level and Exhibition was insufficient in curriculum, and the area of geology in the exhibition overemphasized. Therefore, exhibit that consider curriculum is required. hereafter, Result of this study presents display of science museum and direction of education.

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초등학교 과학수업에서 MBL의 활용

  • Choe Seong-Bong;Kim Sang-Dal;Lee Yong-Seop;Lee Sang-Gyun
    • 한국지구과학회:학술대회논문집
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    • 2006.02a
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    • pp.169-174
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    • 2006
  • 현대 교육은 단순한 암기 위주가 아닌 첨단 컴퓨터를 이용한 실험 실습 위주의 직접 보고 듣고 느끼는 방향으로 진보하고 있다. 실험 실습에 의한 과학교육은 사용자의 탐구능력 향상과 과학적 태도 향상에 중요한 역할을 하게 될 것이며 기존의 암기위주나 단순한 수치에 의한 개념 학습을 탈피하여 Data collection 기술과 분석의 활용을 통해 사용자가 과학을 좀 더 이해하고 사용할 수 있도록 하는 능력을 증진하게 한다. 이를 위한 과학교육의 한 방법으로 MBL(Microcomputer Based Laboratory)은 실험자가 실험실이나 야외에서 각종 기구를 사용해 데이터를 습득할 수 있도록 도와주는 컴퓨터 기반 과학 실험 시스템으로서 미국, 영국 등 과학 교육 분야에서 추구하고 있는 세계적인 추세라고 할 수 있다. 이러한 MBL 시스템의 구성은 센서를 통해 얻어지는 자료를 컴퓨터에 전달하는 매개체인 인터페이스, 과학 실험에서 발생하는 데이터를 직접 전기적 신호로 변환하여 인터페이스에 전달하는 센서, 인터페이스에서 전달되는 전기적 신호를 컴퓨터 화면에 나타내어 주는 컴퓨터용 전용 프로그램으로 구성된다. 이러한 MBL을 과학교육에 활용한다면 학생들이 스스로 과학적으로 탐구하고 문제를 해결할 수 있는 능력을 배양하는 데 많은 도움이 될 것이다.

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