• Title/Summary/Keyword: earth systems education

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A Comparative Study on Primary Gifted Education Systems in Korea and China (한국과 중국의 초등영재교육의 분석 및 고찰)

  • Kwon, Chi-Soon;Oh, In-Ja
    • Journal of the Korean Society of Earth Science Education
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    • v.4 no.1
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    • pp.1-11
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    • 2011
  • This study was carried out to analyze primary gifted education systems in Korea and China. The results of the research are as follows : (1) The objectives of the gifted children education of two countries are same. They intend to dig out hidden talent and giftedness of gifted children. They emphasize the development of creativity in the gifted children through the various special teaching methods. (2) Korea has been doing the gifted education limitedly focused on the 4th grade students in elementary school after regular school curriculum, but China has performed gifted education from primary school to university quite systematically. (3) Korea tend to select the students based on the objective sources such as teachers' observation, recommendation, school scores, but this has limit to find out the real potential genius. China has the similar problems, but they consider of the comprehensive talented and abilities in students at school unit level. (4) Both countries have the teacher training systems for study to make more efficient programs and methods in gited education. It has been emphasized the necessity of gifted education to expand the range and target. Most of all it is very essential to train the teachers to manipulate the gifted education programs. The government should be persue the multiplicity and professionality now. So there are so many things to learn from China since they managed the gifted education in a regular curriculum of the school.

The Influence of Global Science Literacy-Oriented Instruction on Students' Views of the Nature of Science (글로벌 과학적 소양 함양을 위한 수업이 학생들의 과학의 본성에 대한 관점에 미치는 영향)

  • Yu, Eun-Jeong;Oh, Hyun-Seok;Kim, Chan-Jong
    • Journal of the Korean earth science society
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    • v.29 no.7
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    • pp.602-616
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    • 2008
  • The purpose of this study is to investigate the influence of global science literacy-oriented instruction on students' views of the nature of science. The participants were 65 male students in 8th grade, and they were taught for five weeks about the Unit of "Earth and Star" that was designed based on global science literacy. Survey was conducted to determine the students' views of the nature of science before and after the instruction. Results revealed that it was hard to change students' views of the nature of science during the short period of time; however, in the sociological aspect, the students acquired relatively more improved students' views of the nature of science than the other aspects including philosophical, psychological, and historical aspects.

Effects of Systems Thinking on High School Students' Science Self-Efficacy (시스템 사고가 고등학생의 과학 자기 효능감에 미치는 영향)

  • Lee, Hyundong;Lee, Hyonyong
    • Journal of the Korean earth science society
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    • v.37 no.3
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    • pp.173-185
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    • 2016
  • The purpose of this study is to investigate the effects of systems thinking on high school students' self-regulatory efficacy and self-confidence that constitute science self-efficacy. We set self-regulatory efficacy as a factor of students' systems thinking affects their self-confidence on science through self-regulatory efficacy. A total of 210 students were sampled from general high schools and 188 valid cases were analyzed. The instrument has 39 items that consist of 20 items measuring systems thinking and 19 items of science self-efficacy. The result of the exploratory factor analysis indicated that 20 items for systems thinking, 8 items for self-regulatory efficacy, 4 items for self-confidence are reasonable. Testing the goodness of fit of a structural equation model, it turn out to be appropriate (${\chi}^2$=344.498, df=242, TLI= .921, RMSEA= .044) using 24 items (mental model, personal mastery, systems analysis, self-regulatory efficacy, and self-confidence were constructed). In addition, the mental model, which is one factor of systems thinking, is mediated by self-regulatory efficacy that affects self-confidence directly and/or indirectly. The results suggest that systems thinking affects science self-efficacy directly and indirectly. Utilizing systems thinking in science education can produce a theoretical basis in improving students' confidence and self-efficacy about science.

The Development and Application of the Teaching-Learning Program for Systems Thinking Learning in Elementary Science Classes (초등과학 수업에서 시스템사고 학습을 위한 교수-학습 프로그램 개발 및 적용)

  • Song, Jinyeo;Moon, Byungchan;Kim, Jonghee
    • Journal of the Korean Society of Earth Science Education
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    • v.8 no.3
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    • pp.318-331
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    • 2015
  • The purpose of this study was to develop the systems thinking learning program and to confirm the effects of its application in the fourth grades' science class. For it, the test tools were designed to survey divergent thinking and the closed loop based on the casual relation. The systems thinking learning program was developed to make students learn scientific knowledge and systems thinking educational strategies through their regular science class. The two classes of fourth grade were selected and divided into experimental and control groups. After applying pre-test to two groups, the system thinking education program was applied to an experimental group according to the reconstructed lesson plan. Subsequently, post-test was applied to two groups 3 weeks after pre-test. The findings in this study were as follows. In divergent thinking, the systems thinking program was useful to two groups. It could be the repetition effect, but only the experimental group shows a statistically significant change. The effect of the closed loop based on casual relation was deemed statistically significant. It shows these educational strategies were effective in making students understand the systems thinking. Finally, the results of students' interviews shows they were satisfied with this program because they were able to express their thinking with confidence and to find new relations in the change of land. The results suggest that the more research is needed to further develop and improve on students' thinking skills in their regular science classes.

An Analysis of Earth System Understandings (ESU) of 8th-grade Students' Imagery about 'the Earth' Represented by Words and Drawings (단어와 그림으로 표현된 8학년 학생들의 '지구'에 대한 심상에서 나타난 지구계 이해 분석)

  • Oh, Hyun-Seok;Kim, Chan-Jong
    • Journal of the Korean earth science society
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    • v.31 no.1
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    • pp.71-87
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    • 2010
  • The purpose of this study was to explore 8th-grade students' imageries of the Earth. We analyzed the middle school students' imageries about the Earth represented with words and drawings in Earth Systems Understanding (ESU, hereafter) framework. The students' imageries about 'the Earth' are vary by their experiences and prior-knowledge, which significantly impacts their imagery construction. Especially, the students' ESU were characterized into two aspects: One is a macroscopic view point based on full-objects of the Earth by indirect experiences and the other is everyday view point based on scene of the Earth surface and environment by direct experiences. Results revealed students' imageries about the Earth were impacted by visual experiences and those students' ESU were more represented by drawing as visual imagery than by words, formal language. The negative imageries were mainly represented through interactions of the Earth subsystems.

Observation of the Bright Spectroscopic Binary Systems with DOAO/eShels Spectrograph

  • Shim, Hyunjin;Lee, Dongseob;Jeong, Yoonji;Kang, Wonseok;Kim, Taewoo
    • The Bulletin of The Korean Astronomical Society
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    • v.43 no.2
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    • pp.51.1-51.1
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    • 2018
  • Based on the DOAO/eShels observations, we have derived radial velocity curves of the three Algol-type spectroscopic binary systems : Algol, ${\beta}$ Aur, and ${\varepsilon}$ Per. The radial velocity amplitudes of the primary and the secondary (K1 and K2) were consistent within a few % of the values from the previous studies. Mass ratios between the two stars that constitutes each system ranges ~1 to ~10. In addition to the orbital elements derived, we discuss about the spectroscopic ability of the DOAO/eShels instrument.

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Impact of Iron Scavenging and Desorption Parameters on Chlorophyll Simulation in the Tropical Pacific within NEMO-TOPAZ

  • Lee, Hyomee;Moon, Byung-Kwon;Park, Jong-Yeon;Kim, Han-Kyoung;Jung, Hyun-Chae;Wie, Jieun;Park, Hyo Jin;Byun, Young-Hwa;Lim, Yoon-Jin;Lee, Johan
    • Journal of the Korean earth science society
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    • v.42 no.4
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    • pp.390-400
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    • 2021
  • Ocean biogeochemistry plays a crucial role in sustaining the marine ecosystem and global carbon cycle. To investigate the oceanic biogeochemical responses to iron parameters in the tropical Pacific, we conducted sensitivity experiments using the Nucleus for European Modelling of the Ocean-Tracers of Ocean Phytoplankton with Allometric Zooplankton (NEMO-TOPAZ) model. Compared to observations, the NEMO-TOPAZ model overestimated the concentrations of chlorophyll and dissolved iron (DFe). The sensitivity tests showed that with increasing (+50%) iron scavenging rates, chlorophyll concentrations in the tropical Pacific were reduced by approximately 16%. The bias in DFe also decreased by approximately 7%; however, the sea surface temperature was not affected. As such, these results can facilitate the development of the model tuning strategy to improve ocean biogeochemical performance using the NEMO-TOPAZ model.

Development and Application of the Student Activity-centered High School Science Textbook Model: Focused on Earth Science (학생 활동 중심의 고등학교 과학 교과서 모형 개발 및 적용: 지구과학 영역을 중심으로)

  • Lee, Hyonyong;Lee, Hyundong;Chae, Dong-hyun;Lim, Sung-man;Jeon, Jaedon
    • Journal of the Korean Society of Earth Science Education
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    • v.9 no.2
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    • pp.139-151
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    • 2016
  • The purposes of this study were to develop the student activity-centered science textbook model in high school and explore the field application possibility. For development of student activity-centered science textbook model, we conducted a literature survey about foreign science textbook and science curriculum and we developed the textbook development framework based on 7E learning model. Based on framework, we developed student activity-centered science textbook model about achievement standards 'systems and interaction - earth systems'. A development model is the total amount of five class periods and the various objectives were reflected in pursuit systems thinking & STEAM. 1~4 class periods, learning content composed of student activity-centered exploration activities that organically associated to make final products. Fifth class period was presented to explore job and career. A development model was applied to high school class for one time study. Applying the result of field study, students were responded positively in interested about science class, textbook contents, made final product. Through this study, if science textbook was made on the basis of the revised student activity-centered science textbook model, students were lead to positive change in science class.

Development and Application of Science Program for Gifted Students Based on Earth Systems (지구계 중심의 과학영재교육 프로그램 개발 및 적용)

  • Im, Eunsook;Lee, Hyonyong;Park, Sookyong
    • Journal of Science Education
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    • v.33 no.1
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    • pp.77-86
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    • 2009
  • The purposes of this study were to develop an Earth Systems-based program for science-gifted students and to investigate the effects of field application. The developed program was composed of six activities focused on 'fault and earthquake'. Each step including exploratory step, enrichment step and application step was designed to be associated with aims for Earth Systems Education. Two instruments for experiments were produced and students' activity sheets and teacher's guide of the program were developed. The program was applied to 14 science-gifted students who were 8th grade belonging to an institute for science-gifted at an university. Data was collected from students' activity sheets, outcomes and questionnaires. The findings were as follows. First, the results of analyzing the students' activity sheets and outcomes indicated that the program was helpful in understanding the interactions among subsystems of the Earth. Secondly, the results of the survey indicated that positive responses in acquiring scientific concepts and the results revealed science-gifted students were much interested in this program. Many students perceived that the level of program was appropriate for the science-gifted students, a few students perceived that the level of contents was high.

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Preliminary Work for Designing a Learning Model Based on Cybernetics and Radical Constructivism (사이버네틱스와 급진적 구성주의에 입각한 학습모형 구안을 위한 예비 작업)

  • Yoo, Pyoung-Kil
    • Journal of the Korean Society of Earth Science Education
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    • v.3 no.3
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    • pp.198-208
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    • 2010
  • This work describes a preliminary investigation to a learning model based on cybernetics and radical constructivism. To achieve this purpose, main ideas of cybernetics, i.e., negative feedback, difference, self-regulation, equilibrium, and purpose-directed behavior was analysed under radical constructivism. Powers' model, which consists of hierarchically arranged negative feedback systems, is introduced into this work. This was based on the claim that living organisms behave to control perceptions. By adding the notion of scheme from the view of radical constructivism, a learning procedure, which consists of six steps, was suggested in this work.

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