• Title/Summary/Keyword: 한국지구과학회지

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An Analysis of High School Students' Systems Thinking and Understanding of the Earth Systems through their Science Writing (과학 글쓰기를 통한 고등학생의 지구 시스템에 대한 이해와 시스템 사고의 분석)

  • Lee, Hyundong;Kim, Taesu;Lee, Hyonyong
    • Journal of the Korean earth science society
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    • v.38 no.1
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    • pp.91-104
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    • 2017
  • The purposes of this study were to analyze high school students' understanding about the Earth system and systems thinking process, and to develop science writing programs designed to assess students' understanding about themes of Earth Science such as global warming, volcanoes, and desertification. A total of 8 $11^{th}$ grade students from general high schools participated in the writing program and draw the causal maps. The methods of this study are as follows. First, DAET-C was used to investigate the way of students' understanding about the Earth systems. What the students' best understood was the component of the Earth systems followed by the interaction of the Earth systems and the scientific literacy of Earth science. Second, feedback circulations on the causal maps were found in four students in global warming section, one student in volcanic eruption section, and four students in desertification section, which means that systems thinking was not largely employed by the students. Consequently, the student participants understood that the global change was happening in correlation with complex concepts and factors, but they were short of using systems thinking in their science study. Therefore, the result of this study suggests that more studies be conducted to develop systems thinking in Earth Science learning through science writing programs.

Exploring Development Achievement of the 2022 Revised High School Earth Science Curriculum to Cultivate Transformative Competency (변혁적 역량 함양을 위한 2022 개정 고등학교 과학과 지구과학 교육과정 개발 성과 탐색)

  • Youngsun Kwak;Jong-Hee Kim;Hyunjong Kim
    • Journal of the Korean Society of Earth Science Education
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    • v.17 no.1
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    • pp.49-59
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    • 2024
  • In this study, we investigated the philosophical background and progress of the 2022 revised curriculum development in the high school earth science field. Research that was not covered in the research report includes the relevance of the transformative competency of OECD Education 2030, and that core ideas and achievement standards are organized around knowledge understanding, process functions, and value attitudes that constitute the learning compass needle. In addition, the composition of core ideas and Earth science electives in light of the understanding-centered curriculum, and IB type inquiry-based teaching and learning. Main research results include that the 2022 revised Earth science curriculum emphasized the student agency to foster the transformative competency and scientific literacy, and the curriculum document system in the field of earth science uses a learning compass needle. In addition, based on the understanding-centered curriculum, core ideas of Earth science were derived, and elective courses were organized to help students reach these core ideas. Also, IB-type inquiry-based teaching and learning was emphasized to foster student agency with knowledge construction competency. Based on the research results, slimming of the national and general level curriculum, the need to develop process-centered assessment methods for value and attitudes, the need for curriculum backward design, and ways to develop student agency through inquiry-based teaching and learning were suggested.

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.

A Preliminary Study on High School Students' Understanding of the Distinction between Scientific Theories and Scientific Laws (과학 이론과 과학 법칙의 차이에 대한 고등학생들의 인식 연구)

  • Lee, Eun-Ah;Park, Byeong-Geon
    • Journal of the Korean earth science society
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    • v.29 no.1
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    • pp.91-97
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    • 2008
  • The purpose of this study is to explore high school students' understanding of the distinction between scientific theories and scientific laws. Understanding of the distinction between these two concepts, which belong to the nature of science, has been receiving little attention. We surveyed thirty-two students from a local high school with three-part, open-ended questionnaire. The result revealed that these students shared common misconceptions such as 'scientific theories are unproven, scientific laws are proven and absolute', and 'if a theory is proven with enough evidence, it becomes a law'. Moreover, students tend to regard earth science less sophisticated than physical science, because they recognize a lot of its theories to be unproven in their view. It is indicated further that teaching the difference between scientific theories and laws explicitly could help students possess more appropriate view toward earth science.

The Preconceptions about Shape, Color and Gravity of the Earth in the Third Grade Students (지구의 모양, 색깔, 중력에 대한 3학년 학생들의 선개념)

  • Kang, In-Suk;Jeong, Jin-Woo;Kim, Yun-Ji
    • Journal of Korean Elementary Science Education
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    • v.27 no.1
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    • pp.31-41
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    • 2008
  • The purpose of this research is to investigate the preconceptions of the Earth for 3rd grade students in elementary school. For this study, We interviewed with 30 students and children responded the questions with drawing the pictures. Through the study, We could find as followings. First, they thought that the shape of Earth is sphere only except one who had double conceptions of sphere and flat. Second, the color of the earth seems to be blue because of sea, but mostly answered, it seems to be green more than brown because of continent. Third, the conceptions of the gravity showed us 43% which is the kinds of scientific conceptions for the Earth.

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Exploration of Discursive-Epistemic Mechanisms in High School Earth Science Lessons (고등학교 지구과학 수업의 담화적-인식적 기제 탐색)

  • Oh, Phil Seok;Ahn, Yumin
    • Journal of the Korean earth science society
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    • v.36 no.4
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    • pp.390-403
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    • 2015
  • The purpose of this study was to explore discursive-epistemic mechanisms in high school earth science lessons. A total of 11 video recordings of earth science lessons were collected from three inservice high school teachers. The video recordings were all transcribed and analyzed by employing the discourse analysis framework used in relevant previous studies. In analysis, we identified discursive-epistemic mechanisms as functional assemblies for fulfilling particular epistemic functions in the earth science lessons. The characteristics of these mechanisms were described according to their epistemic functions. The findings of the study were compared with those of previous studies to highlight the characteristics of discursive-epistemic mechanisms in the earth science classrooms. Analyses of middle school science lessons and of science lessons in alternative forms, as well as studies using extended research methods such as indepth interviews with teachers, were suggested as implications for future research.

Analysis on the Earth Science Concepts of the Gifted Science Students and Non-gifted students By the Type of Thinking Styles (과학영재학생과 일반학생의 사고양식에 따른 지구과학 개념 비교)

  • Park, Soo-Gyong
    • Journal of the Korean earth science society
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    • v.25 no.8
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    • pp.708-718
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    • 2004
  • On the basis of Sternberg's theory of mental self-government, this examined the difference in thinking style between gifted science students and non-gifted students, and their earth science concepts by the different types of thinking styles. The subjects were consisted of 120 students from the Busan Science Academy and 122 students from two general high schools in Busan, Korea. All participants responded to the Thinking Styles Inventory which is a self-report test consisting of 65 items, and essay questions for examining the students' earth science concepts. The results are as follows. First, the gifted science students prefer legislative, judical, anarchic, global, and liberal styles, where non-gifted students prefer executive, oligarchic, and conservative styles. Second, Type I thinking style group prove to have more complex concepts in relation to the geological and astronomical areas than those of the Type II thinking style group in both of the gifted and non-gifted students. This indicates that Type I thinking style students use a deep learning approach where Type II thinking style students use a surface learning approach.

Exploring the Effects and Implications of Earth Science Unplugged Activities Based on Computational Thinking: Focusing on the Problem Solving of Solid Earth Domain (컴퓨팅 사고력 기반 지구과학 언플러그드 활동의 효과와 시사점 탐색: 고체지구 영역의 문제해결을 중심으로)

  • Hong, Seok-Young
    • Journal of the Korean Society of Earth Science Education
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    • v.14 no.2
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    • pp.80-94
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    • 2021
  • In this study, teaching-learning activities were developed based on computational thinking (CT) in high school Earth Science I Solid Earth domain. And their effects and implications were examined. To this end, 8 sessions unplugged activities based on problem solving were developed, and applied it to 65 high school students. As a results, significant changes have been were confirmed in both student's perception about CT and CT. After that, based on student's responses to self-reports and interview, the affecting factors for perception about CT and CT in the earth science problem solving process were investigated. In addition, implication that should be considered in terms of design and progress of teaching-learning based on CT were derived. Based on these results, the necessity and operation of teaching-learning activities was suggested for developing CT through various subjects including earth science.

Analysis of Scientific Models in the Earth Domain of the 10th Grade Science Textbooks (10학년 과학 교과서 지구 분야에 등장하는 과학적 모델 분석)

  • Oh, Phil-Seok;Jon, Won-Son;Yoo, Jung-Moon
    • Journal of the Korean earth science society
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    • v.28 no.4
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    • pp.393-404
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    • 2007
  • The purpose of this study was to identity scientific models included in the Earth domain of the $10^{th}$ grade science textbooks. Three earth science-related chapters in each of 11 trade books were analyzed. A framework was developed and used to classify a scientific model from three different perspectives: medium of representation, method of representation, and mobility of a model. Results showed that the science textbooks utilized domain-specific models in which the nature of sub-areas of earth science was embedded. That is, the unit of 'Change of the Earth' included many iconic models that represented the inaccessible inner structure of the earth and the movement of the tectonic plates. These were also two-dimensional pictorial and static models. In the chapter of 'Atmosphere and Oceans', symbolic and diagrammatic models were dominant in use, which included weather maps and contour line graphs of sea surface temperature and salinity. The unit of 'Solar System and Galaxies' showed the highly frequent use of iconic and analogical models for the large-scale celestial objects and their movements. Implications for earth science education and relevant research were discussed.

Understandings on the Cycle as a substance and ESE (지구계 교육과 소재로서 순환에 대한 이해)

  • Kim, Yun-Ji;Jeong, Jin-Woo
    • Journal of The Korean Association For Science Education
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    • v.29 no.8
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    • pp.951-962
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    • 2009
  • Examining research papers and other texts on the subject, this study summarizes previous studies, with focus on circulation as a subtopic of Earth Systems Education. In relation to the Earth Systems unit included in the revised 10th-grade science textbook, this study explains the meaning of Earth Systems and the basic concepts of Earth System Science. It surveys the origin and application of Earth Systems Education, which developed primarily in the U. S., and introduces its objectives, concepts, and communicated content. It also reviews the contents of Earth Systems Education adopted in the Korean school curriculum, and provides a comparative analysis of the content on circulation appearing in Earth Science I textbooks. Finally, it is proposed that an understanding among educators of Earth Systems and of its necessity as a subject of education is imperative for Earth Systems Education to become firmly established as a compulsory component of the national school curriculum.