• Title/Summary/Keyword: 과학 개념 이해

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A Study on Developing and Validating the Modern Physics Conceptual Diagnostic Survey for Pre-Service Physics Teachers based on the 2015 Revised National Science Curriculum (2015 개정 과학과 교육과정에 기초한 예비 물리교사를 위한 현대물리 개념 진단지 개발 및 타당화 연구)

  • Kim, Wanseon;Kim, Sung-Won
    • Journal of The Korean Association For Science Education
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    • v.40 no.3
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    • pp.253-269
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    • 2020
  • This study aims to develop items to diagnose pre-service physics teachers' understanding of the conceptual knowledge of modern physics, based on the achievement criteria presented in the 2015 revised national science curriculum, and to identify the validity and reliability of the newly developed items. Data were collected from 467 pre-service physics teachers in the Physical Education Department or Science Education Department (Physics Education Major) of 15 universities across the nation. In this study the content validity, substantive validity, the internal structure validity, generalization validity, and the external validity proposed by Messick (1995) were examined by various statistical tests. The results of the MNSQ analysis showed that there was no nonconformity in the 23 items. The internal structure validity was confirmed by the standardized residual variance analysis, which shows that the 22 items was unidimensional. The generalization validity was confirmed by differential item functioning (DIF) analysis about groups lectured or not modern physics/quantum mechanics. In addition, item analysis and test analysis based on classical test theory were performed. The mean item difficulty is 0.66, mean item discrimination is 0.47 and mean point biserial coefficient obtained was 0.41. These results for item parameters satisfied the criteria respectively. The reliability of the internal consistency of the KR-20 is 0.77 and the Ferguson's delta obtained was δ = 0.972. By Rasch model analysis, the item difficulty (item measures) was discussed.

Investigation of Mental Models about Tide for Scientifically Talented Middle School Students by Analyzing Facet of Conceptual Types by Context (상황에 따른 개념 유형의 국면 분석을 통한 중학교 과학 영재아들의 조석에 관한 정신모형 탐색)

  • Lee, Ki-Young
    • Journal of the Korean earth science society
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    • v.27 no.1
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    • pp.6-14
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    • 2006
  • The study investigates mental models of scientifically gifted, middle school students when it comes to tides. This was done by analyzing facet of conceptual types for two contexts. We carried out two performance tasks of tide with different context. A large number of students showed different conceptual types by context. As a result of analyzing facet of conceptual types by context, there was a slight difference in content-specific facet, but a remarkable one in strategic facet. We classified four mental models about tide by configuring facets of conceptual types: (1) Tide model (2) Force model (3) Phase model (4) Hybrid model. The Tide model is scientifically accepted model, but Force model and Phase model are incorrect models, and Hybrid model is mixed model. In cases of Force model and Phase model, conceptual types concur with each other, but these types of students comprehend tides as a result of joined forces of Moon & Sun and phase change of Moon, respectively. Arranging low mental models in proportional order, Tide model (45.0%), Hybrid model (30.0%), Force model (12.5%), and Phase model (7.5%).

An analysis of effect for grouping methods corresponding to ecological niche overlap of 7th graders' photosynthesis concepts (7학년 광합성 개념의 지위 중복 변화에 따른 소집단 구성의 효과 분석)

  • Jang, Hye-ji;Kim, Youngshin
    • Journal of Science Education
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    • v.41 no.2
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    • pp.195-212
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    • 2017
  • Small group learning is an educational approach to allow students to solve the problems and to achieve a common goal. Especially, small group learning in science education is one of the most important educational approaches and effective to ensure understanding of a topic. Small group learning consisting of three students in science education maximize student understanding and learning efficiency. However, It is reported that the effects of small group learning on achievement show different results, corresponding to different grouping methods(homogeneous/heterogeneous). This study investigated the effects of grouping method on difference of ecological niche of photosynthesis concepts. To achieve this, 1107 7th students were composed of homogeneous and heterogeneous groups classified into top, middle, and bottom levels. The photosynthesis units were divided into four categories: the photosynthesizing place, the substances of photosynthesis, required materials for the photosynthesizing, and environmental factors affecting photosynthesis. A questionnaire was composed by selecting concepts having a frequency of 4% or more based on prior studies on the change of the ecological status of photosynthesis. The questionnaire was scored in terms of relativity and understanding on each of the proposed concepts in the four categories. The result of this study is as set forth below. 1) There was an enhancement of learning the concept of science in small group classes consisting of 3 students. 2) To enhance the average upon composing of a group, it is proposed that the group should be formed homogeneously, and to reduce the deviation between the members, it is proposed that the group should be formed heterogeneously. Through this study, it is expected that specific studies verifying the difference or effect on the duplicity of results are conducted based on the composition of groups.

Inquiry-Based Science Instruction Perceived by Beginning Science Teachers in a Professional Learning Community (교사학습공동체 활동을 한 초임중등과학교사의 과학 탐구 수업에 대한 인식)

  • Kim, Yurim;Choi, Aeran
    • Journal of the Korean Chemical Society
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    • v.63 no.5
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    • pp.360-375
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    • 2019
  • The purpose of this study was to investigate beginning science teachers' perceptions of inquiry-based science instruction using open-ended questionnaire and semi-structured interview. Participants of this study voluntarily set up a goal of inquiry-based science instruction, planned inquiry-based science lessons, and shared and reflected their teaching experiences in their professional learning community for more than a year. Participant teachers recognized students' construction of core scientific concepts through performing scientific inquiry as a goal of science inquiry instruction. Participant teachers indicated that goals of science education such as 'learning scientific core concepts', 'improving students' interest of science', 'improving scientific thinking', and 'understanding the nature of science' can be achieved through students' active engagement in scientific inquiry. Participant teachers recognized not only the importance of teachers' role, but also what roles science teachers should play in order to enable students to perform scientific inquiry. Participant teachers emphasized teachers' roles such as 'identifying core concepts', 'reorganizing science curriculum', 'considering student ability', 'asking questions and providing feedbacks to students', 'explaining scientific concepts', and 'leading students' argumentation.'

Understanding on the Fossilization of Middle School Students (화석 형성 과정에 대한 중학생들의 이해)

  • Hwang, Koo-Geun;Cho, Kyu-Seong;Huh, Min
    • Journal of the Korean earth science society
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    • v.30 no.3
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    • pp.305-316
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    • 2009
  • Experiments to explain fossilization have been introduced in elementary and middle school science textbooks. Most of them have explained the processes by the mold and cast formed by imprint of bivalve or leaf. The processes explained in the textbooks are more similar to that of trace fossil than body fossil, because the external molds from experiment are imprints after the model was taken off. However fossils of the figures in the textbooks are mostly body fossils. Therefore, the students may be willing to equate the experiment process with the fossilization of the body fossils. The misconceptions were confirmed in this study by the questionnaire which asked 9th grade students on this subject. Many students thought that the body fossils were fossilized imprints and the fossils of terrestrial organism were formed on land without transportation, that is, they did not understand well about biostratinomy and crustal movement. The misconception about the environment in which fossils formed was already reported in a survey on the elementary school students, but has not revised until ninth grade. Therefore, to remove the misconception related to the fossilization, the fossil models in the experiments may be replaced by trace fossils, or new experiments for body fossil should be designed.

The Conceptions of High School Students about Acid Rain, Ozone Layer, and Greenhouse Effect (산성비, 오존층, 온실 효과에 대한 고등학생들의 개념)

  • Han, Jae-Young;Jeong, Yeong-Seon;Noh, Tae-Hee
    • Journal of The Korean Association For Science Education
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    • v.20 no.3
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    • pp.364-370
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    • 2000
  • In this study, 10th-grade students' conceptions concerning acid rain, ozone layer, and greenhouse effect were investigated. A conception test that asked to explain about the three concepts and the relationships among them was administered to 137 students. Analysis of their responses indicated that students had lack of understanding about the definition of acid rain, the difference between greenhouse effect and global warming, and how to prevent the increase in greenhouse effect. They also confused ozone layer with greenhouse effect. Many students thought that there were causal relationships among the increase of acid rain, the destruction of ozone layer, and the increase in greenhouse effect.

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Trend and Current Status of Tissue Engineering and Regenerative Medicine (생체 조직공학.재생의학 바이오 장기의 현재와 미래)

  • Kim, Moon-Suk;Khang, Gil-Son;Lee, Il-Woo;Lee, Hai-Bang
    • Journal of the Korean Vacuum Society
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    • v.16 no.1
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    • pp.58-64
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    • 2007
  • Tissue engineering and regenerative medicine(TERM) is the application of principles and methods of engineering and life sciences to creat devices or biological substitutes for study, restoration, modification, and assembly of functional tissues. TERM is an emerging interdisplinary area of research and development that has the potential to revolutionize methods of health care treatment. Current status and trend of TERM's R&D is reviewed in this paper in respect to the prospective of future needs.

Pre-Service Teachers' Understandings on Earth Science Concept needed for an Integrated Approach: Exploring Mental Models about Eclipse Phenomena by Analyzing Phenomenological Primitives and Facets (통합적 접근이 필요한 지구과학 개념에 대한 예비 교사의 이해: 현상론적 초안과 국면 분석을 통한 식 현상에 대한 정신모형 탐색)

  • Lee, Ki-Young
    • Journal of the Korean earth science society
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    • v.29 no.4
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    • pp.352-362
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    • 2008
  • This study explored pre-service teachers' mental models about eclipse phenomena to investigate their understandings on the earth science concept needed f3r an integrated approach. We conducted in-depth interviews with two different contexts on 30 secondary and 36 primary pre-service teachers participants, and analyzed phenomenological primitives (p-prims) and facets of causal explanations about eclipses. Based on this study, we identified four different levels of mental models about eclipses. Four mental models were categorized as (1) Screening model, (2) Orbital plane model, (3) Hybrid model, and (4) Shadow cast model. Screening model is a flawed mental model, orbital plane model is an incomplete correct mental model, and shadow cast model is a scientifically correct mental model. Hybrid model, composite of two or more mental models, use multiple mental models simultaneously. Orbital plane model was the most widespread mental model in secondary pre-service teachers group, whereas screening model was used frequently in primary group. It was found that the level of mental model could be determined by the level of facet and p-prims. We confirmed context sensitivity of the mental models and perceived the necessity of integrated approaches to promote progression of mental models. Implications of our findings for enhancing pre-service science teachers' topic-specific pedagogical content knowledge (PCK) associated with eclipse phenomena are also discussed here.

Teacher Feedback on Process-Centered Assessment for Scientific Argumentation (과학적 논의를 활용한 과정중심평가에서의 교사 피드백 유형 사례 연구)

  • Kim, Misook;Ryu, Suna
    • Journal of The Korean Association For Science Education
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    • v.40 no.3
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    • pp.271-289
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    • 2020
  • This study investigates the types of teacher feedback in the process-centered assessment for scientific argumentation. The process-centered assessment visualizes the process of developing scientific argumentation at a group level. Four teachers and 353 high school students participated in this study. We analyzed video recordings, the collaborative modeling-argumentation papers, and teachers' interviews. The findings indicate that the teachers provided feedback on scientific concepts and the development of small group argumentation. We presented a representative case for each category in detail. The study suggests that teachers' efficient use of feedback leads to improvement in students' self-regulation. This study contributes to providing specific and useful guidelines on the use of process-centered assessment for enhancing students' scientific argumentation.

Analysis of High School 「science」 Textbook on the Magma Formation in the Subduction Boundary (섭입경계에서의 마그마 형성에 대한 고등학교 「과학」 교과서 분석)

  • Park, Kyung-Eun;Ahn, Kun-Sang;Lim, Dhong-Il
    • Journal of the Korean earth science society
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    • v.25 no.4
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    • pp.222-231
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    • 2004
  • The purpose of this study is to analyze the seventh curriculum textbooks and teacher's guides of high school science courses in relation to the generation (mechanism) of magma in subduction boundary and find the incorrect descriptions of the texts and the figures (illustrations) and then suggest some improved schemes. According to the result there are many discrepancies in definition of 'magma' among the textbooks and further little scientific explanations about the formation mechanism of magma in most textbooks, and even no descriptions about that. In addition, the figures are inconsistent with the description of the text and also have some incorrect depiction which might contribute to the forming and reinforcing misconceptions about Plate Tectonics as well as a volcanic activity in subduction boundary. On the basis of the previous researches, therefore, some improved schemes (text descriptions and figures) are suggested. The results of this study should be used as a reference for publishing science textbook, developing science curriculum, and teaching effectively in the high school.