• Title/Summary/Keyword: 과학 개념 이해

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Unplugged Learning System for Informatics Education (정보 교육을 위한 언플러그드 학습 시스템)

  • Cho, Jae-Choon;Kim, Min-Ja;Cho, Tae-Kyung;Cho, Jung-Won
    • Proceedings of the KAIS Fall Conference
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    • 2009.12a
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    • pp.76-79
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    • 2009
  • 컴퓨터 교육은 실습 위주로, 컴퓨터를 도구적으로 활용하는 소프트웨어 활용 수업이 대부분을 차지하고 있으며, 단순한 컴퓨터 활용의 실습 수업은 학습자로 하여금 흥미를 잃게 하고 문제해결력과 창의성 개발을 저하 시킨다는 문제점들이 제기되어 왔다. 이에 개정된 7차 교육과정은 이러한 소프트웨어 활용 위주 교육의 문제점을 인식하고 컴퓨터 과학, 원리 위주의 교육으로 변화 하였다. 본 연구는 개정된 제7차 교육 과정이 컴퓨터 과학 교육으로 변화됨에 따라 컴퓨터 과학의 내용을 보다 흥미롭고 쉽게 이해시키기 위하여 언플러그드 학습 시스템을 개발 하였다. 컴퓨터 과학의 추상적이고 개념적인 내용은 중등학교의 교육과정으로는 다소 쉽지 않은 내용이며, 이론 위주의 교육과정은 학생들에게 흥미 없는 교과로 비추어 질 수 있지만, 정보 교과를 위한 언플러그드 학습 시스템을 통해 흥미 있는 교과로 인식이 변화될 것으로 기대된다.

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Preservice Elementary Teachers' Understandings of Children's Science Misconceptions (학생들의 과학 오개념에 관한 초등 예비 교사들의 이해)

  • Jang, Myoung-Duk
    • Journal of Korean Elementary Science Education
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    • v.29 no.1
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    • pp.32-46
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    • 2010
  • The purpose of this study was to examine preservice elementary teachers' understandings and instructional strategies about children's science misconceptions. The participants were sixty senior students from a national university of education located in the midwestern area of Korea. A questionnaire, developed on the basis of Gomez-Zwiep's semi-structured interview questions, was used. The results of this study are as follows: first, many of the preservice teachers showed appropriate understanding of 'definition of misconceptions' (96.67%), 'examples of misconceptions' (78.33%), 'resistance to change of misconceptions' (71.67%), and 'impact on instruction of misconceptions' (91.67%), except for 'sources of misconceptions' (45.00%); second, although almost all the preservice teachers (96.67%) appreciated the necessity of identifying children's misconceptions before instruction, 43.33% of the preservice teachers did not show appropriate understandings on when and how to identify children's misconceptions; third, most of the preservice teachers (81.67%) were generally aware of instructional strategies to address children's misconceptions.

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A Study of High School Students' and Science Teachers' Understanding of Ideal Conditions involved in the Theoretical Explanation and Experiment in Physics: Part II- Focused on the Implications to the Physics Learning - (물리학에서 이론적 설명과 실험에 포함된 이상조건에 대한 고등학생과 과학교사의 이해조사 II-이상화가 물리학습에 주는 시사점을 중심으로-)

  • Park, Jong-Won;Chung, Byung-Hoon;Kwon, Sung-Gi;Song, Jin-Woon
    • Journal of The Korean Association For Science Education
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    • v.18 no.2
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    • pp.245-256
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    • 1998
  • In this study, we discussed about the implications of the idealization, which take an important role in physics, to the physics education. First, understanding of the idealization help the physics learning itself. This is because that various types of idealizations are included in the physics terms and concepts, derivation processes of physics laws and formulas, and explanation of natural phenomena and problem solving activities. Second, understanding of the idealization can help the application of the physics world to the real world. That is, by understanding the extent and the limit of idealization used in physics world, physics students can understand the discrepancies between the real world and the physics world. And also, by modifying or eliminating the idealization, students can extend the extent of understanding about how predictions based on the idealization used in the physics world will change. To do this, we suggested the application of computer simulation program in physics laboratories. Third, idealization take an important role in the inquiry learning for students' originality. The activities of identifying or controlling the variables, as one of the principal factors of scientific inquiry, need the appropriate establishment of the ideal conditions. And to analyze the limiting case or practice the thought experiments for understanding the impossible situation in the real world, ideal conditions also are needed. This study discussed above three aspects with various concrete examples and, with Park et al.'s study (Park et al., 1998), present the theoretical basis for the study of students' and teachers' understanding the idealization.

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A Study on Redesign and Utilization of a Convective Circulation Box for Observations of Land and Sea Breezes (해륙풍 원리 이해를 위한 대류상자 재설계와 활용에 관한 연구)

  • Yang, Mi-Seon;Yun, Sung-Hyo
    • Journal of the Korean earth science society
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    • v.31 no.3
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    • pp.246-258
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    • 2010
  • A convective circulation box was redesigned after analyzing reasons why adolescent elementary school students could not derive a convective circulation concept from the convection circulation box experiments. Even though students were in the formal operational period of Piaget, the adolescents felt difficult to understand a concept of the natural phenomena they have never seen before. Thus, we designed a method to help students increase their scientific understandings about the concept through developing a miniature convective circulation box. Findings indicated that an application of redesigned convective circulation box in the classroom experiment significantly increased the students' understanding about the convective circulations of land and sea breezes, and as well as their participation in the activities. In addition, the redesigned convective circulation box motivated students to develop their scientific thinking skills by allowing them to decide where to put visible incenses inside the box and to directly observe the smoke currents circulation formed accordingly. Redesigning and using a convective circulationbox as a miniature of natural phenomenon helps students avoid having misconceptions. The biggest merits of the box are that it is observable in all directions, it provides much clearer convective circulations comparing to the extant box, and it requires low production costs.

Investigation of elementary teachers' perspectives on science inquiry teaching (과학 탐구 지도에 대한 초등학교 교사들의 인식 조사)

  • Jeon, Kyungmoon
    • Journal of Science Education
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    • v.39 no.2
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    • pp.267-277
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    • 2015
  • This study explored elementary school teachers' perspectives on science inquiry teaching. First, an open-ended questionnaire was administered to elicit teachers' experiences of their approach to inquiry teaching. These self-reported approaches revealed three conceptions of teaching for inquiry learning in science: 'science process skills-centered' category focused on observing, classifying, measuring, and fair testing; 'generating scientific questions' category focused on students' question-generating; and 'illustrate concept and/or content' category focused on science content demonstration by making use of experimental procedures to obtain expected results. Second, teachers were asked to place 18 activity cards either close to or further from an 'inquiry-based science classroom' card. The relative distances from the activity card to the central classroom card were measured. The teachers perceived that students' activity of 'designing and implementing appropriate procedures' was the most important in supporting an inquiry-based science classroom. Understanding teachers' views has implications for both the enactment of inquiry teaching in the classroom as well as the uptake of new teaching behaviors during professional development.

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Considerations on the Making of Scientific Content and Processing of Biological Knowledge (생명과학 지식의 가공과 콘텐츠화 과정에 대한 연구)

  • Ahn, Sun-Young;Kim, San-Ha;Jang, Yi-Kweon
    • The Journal of the Korea Contents Association
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    • v.11 no.11
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    • pp.503-513
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    • 2011
  • Appreciation of nature and an understanding of the biological sciences by the general public are key to the popularization of modern science. In particular, informal and accessible venues such as museum exhibits occupy a crucial role in science education, and they depend heavily on fields related to macrobiology, including Ecology, Animal Behavior, and Environmental Science. Unfortunately, lack of engaged experts and superficial descriptions of natural phenomena all too often prevent scientific knowledge from being shared effectively with the general public. Raw information itself and knowledge are not in a form or structure accessible to nonspecialists. In order to move successfully deliver substantive comprehension of the biological knowledge to the general public, it is necessary to categorize information from a content-conscious perspective and transform it into useful biological content. Therefore, the role of scientists is critically important in a series of processes that include theme selection, editing, and even graphical layout of contents. These processes require not only a scientific and logical way of thinking, but also an aptitude for artistic presentation and effective communication. The concept of Translation is presented as a theoretical and operational framework for the popularization of science.

Exploration on possibility of finding gifted underachievers with high spatial ability and low verbal ability in elementary science field: Focused on "Light Propagation" (높은 공간능력과 낮은 언어능력을 가진 초등 미성취 과학영재의 발견가능성 탐색 - 빛의 직진 개념을 중심으로 -)

  • Jung, Yeon-su;Lee, Jiwon;Kim, Jung Bog
    • Journal of Gifted/Talented Education
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    • v.26 no.1
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    • pp.101-122
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    • 2016
  • The purpose of this study is to explore a possibility finding gifted underachievers who have high spatial ability, but low verbal ability in elementary science field. In Korea, because teachers used to refer students' academic achievement only when they recommend gifted students, underachievers used to be excluded. The participants are 5th-grade students in elementary school. In this research, developed teaching materials were given to students to find underachievers. Results of spatial ability test, verbal ability test, science academic achievement, non-verbal test, and interviews about light propagation concept were obtained. By analyzing results of this study, we found that spatial ability is the most important factors to understand light propagation. And there are some features to understand light propagation according to spatial ability. Lastly, this study shows the possibility of non-verbal test to find gifted underachievers with high spatial ability and low verbal ability.

Analysis of High School Students' Understanding Levels about Earth Science terms Written in Chinese Characters (한자로 된 지구과학 용어에 대한 고등학생의 이해 수준)

  • Jeong, Jin-Woo;Park, Hee-Moo;Jung, Jae-Gu
    • Journal of the Korean earth science society
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    • v.25 no.5
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    • pp.303-314
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    • 2004
  • The purpose of this study is to analyze high school students' understanding levels about earth science terms written in Chinese characters according to learners' characteristics. In order to investigate how the responses vary according to their characteristics, first of all, proper scientific terms are selected, and then corre sponding questions about them are offered as subjects, which consists of a Korean characters type, a picture type, and a Korean and Chinese characters type. During paper test and interview, the questions are given to fifteen students from general high schools in Jecheon, Chungbuk Province. The results of the study are as follows; Students in formal operation level and field-independency answered very well and also the terms of Chinese characters type and picture type improve the students' understanding and memorization. Generally, Chinese characters have more positive influence on their learning than the negative. Therefore, in general, it seems that it's more effective to explain the sound and meaning of terms in detail and to give learners enough time to draw a picture about each term by themselves when scientific terms are delivered to students in Chinese characters in class.

지구온난화에 따른 인천 지역 기상환경과 해양환경 변화의 관계 분석 : 귀추적 탐구 방법을 중심으로

  • Lee, Hyo-Nyeong;O, Hui-Jin;Lee, In-Ho;Kim, Min-Gi;Lee, Gyeong-Seop;Lee, Jun-Ho;Kim, Yeong-Geun;Jo, Su-Ho
    • 한국지구과학회:학술대회논문집
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    • 2010.04a
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    • pp.70-70
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    • 2010
  • 이 연구의 목적은 귀추적 탐구 방법과 관련된 전략들을 적용하여 지구온난화에 관련되어 측정된 다양한 유형의 데이터를 관련된 사실, 원리, 법칙, 선행 연구 결과 등을 토대로 지구통합적인 관점과 지구계를 구성하는 요소들 간의 상호작용과 영향을 중심으로 재해석하고 이해하는 것이다. 지구과학(지구시스템과학)의 학문 성격, 최근 동향, 본성 및 탐구 대상의 특성에 대한 내용과 지구과학의 본질적 속성에 잘 부합하는 귀추적 탐구 방법에 대해 학습한 후, 학생들은 인천 및 다양한 지역의 기상과 해양 자료 분석을 통하여 관찰되는 현상(결과)의 원인과 영향을 파악하는 연구 활동을 하였다. 이 과정에서 귀추적 탐구를 충분히 이해할 수 있도록, 과학 탐구에서 귀추적 탐구 방법을 사용하는 과학자들의 예시와 모의 활동을 통하여, 귀추적 탐구 방법에 사용되는 다양한 사고 전략(예, 데이터의 재구성 전략, 유추 전략, 개념적 결합 전략 등)에 대한 예시를 경험하였다. 학생들은 지구온난화에 관련되어 나타나는 현상(조사된 사항 포함)과 영향에 대해 지구시스템적으로 이해하고 재해석하기 위해 지구시스템을 구성하는 요소(예, 수권, 대기권)와 관련된 데이터 정보를 검색하고 수집하였다. 1) 지구시스템과 지구온난화에 대한 조사하고, 2) 지구온난화 및 기후변화의 변동성 확인한 후, 3) 지구온난화와 관련된 선행 연구 결과 분석하였다. 또한, 지구과학의 본질적 속성에 잘 부합하는 귀추적 탐구 방법의 이해와 적용하는 과정에서 1) 지구 온난화 및 기후 변화의 실태 파악하고, 2) 인천 지역의 월별, 계절별 기온 변화 분석 및 경향 조사(탐색: 연구문제 규명)한 후, 3) 인천과 속초 지역의 기온, 수온의 변화 추이 및 분석 (조사: 원인 조사 과정)하였다. 4) 속초 지역의 평균해면기압변화 추이 및 분석한 후, 그 결과를 토대로 5) 문헌조사 및 선행연구 결과 분석을 통한 지구 온난화의 영향을 미치는 요인 재검토 및 확인(선택 및 설명)하여, 6) 인천지역과 속초지역의 지구온난화 원인 분석 및 문제점 보완(설명)하기 위해 7) 겨울철 지구온난화가 더 심각한지 부산지역과 포항지역의 자료 분석을 통하여 연구 결과 내용의 보완 (추가 조사 및 설명)한 후, 8) 분석 결과 및 해석 내용을 전문가와 상담 실시하였다. 이 연구는 연구를 진행하면서 얻은 결과를 교육적 측면에서 다시 정리해 보면 다음과 같다. 우선, 학생들의 지구환경적 문제 해결 과정에서 귀추적 탐구 방법을 활용한 문제 해결 능력을 향상시켰다. 아울러, 지구과학의 탐구 본성, 최근 동향, 탐구대상의 특성 등의 학습을 통해 지구과학도로서의 기본적인 소양과 자질 향상에 기여하였으며, 사회과학의 연구방법을 순수과학연구에 접목하여 과학자로서의 문제해결 능력과 시스템 사고력을 향상시켰다.

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New Changes and Tasks of the Science Museum: Focusing on its relation to PUS (과학(박물)관의 새로운 변화와 우리의 과제: PUS와의 관련성을 중심으로)

  • Leem So-Yeon;Hong Sung-Ook
    • Journal of Science and Technology Studies
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    • v.5 no.2 s.10
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    • pp.97-127
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    • 2005
  • While science museums, whose functions consist traditionally in collecting, preserving, researching, and displaying science-related objects, present scientific knowledge, figures, or tools in the historical context, science centers give more emphases on science education by exposing interactive exhibits to their visitors. However, neither objects-oriented exhibits nor hands-on technologies can provide museum visitors with the full insight into modem science in terms of its complicated relationships to politics, economy, culture, art, risk, and environment. This paper argues that for the 21st century we need to establish a new kind of science museum through the critical examination of its previous kinds - science museums and science centers. In the first part of this paper, the history of the first and second generations of science museums, including their recent trends in science centers, in the West will be elaborated. Secondly, the development of national science museums in Korea will be discussed specifically for the understanding of Korean science museums. The next part of this paper will seek for the possibilities of the third generation of science museums through three examples, which show interdisciplinary, contextual, and institutional approaches to change science museums or science centers. Fourthly, the social function of science museums as 'forum' will be discussed in relation to promoting public 'participation' of science as well as public 'understanding' of science. As a conclusion, some practical suggestions and conceptual guidelines will be proposed for the future Korean national science museum.

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