• Title/Summary/Keyword: 과학교육 내용

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Developmental Study of Science Education Content Standards (과학교육 내용표준 개발)

  • Park, Hyun-Ju;Kim, Young-Min;Noh, Suk-Goo;Jeong, Jin-Su;Lee, Eun-Ah;Yu, Eun-Jeong;Lee, Dong-Wook;Park, Jong-Won;Baek, Yoon-Su
    • Journal of The Korean Association For Science Education
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    • v.32 no.4
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    • pp.729-750
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    • 2012
  • The purpose of this study was to develop science education content standards, to guide in developing k-12 national science curriculum, and to provide guidance for local districts and schools to effectively apply the national science curriculum to their school curriculum. We suggest ideas for science education content standards, describing how science education content standards would look through reviews of literature for background research, surveys, and interviews to set the frame, developing standards for each sub-component, and examining and revising. The science education content standards consist of situation, components, and performance. Situation refers to when, where, and how science was needed. Components refers to what kind of knowledge and what kind of process and understanding should be taught in school science, like Nature of Science, Scientific Creativity, Scientific Inquiry, & Disciplinary Core Ideas. Performance refers to what we would like to achieve through science education.

The Analysis of Bioinformatics and Biotechnology Contents in Curriculum and Textbooks According to Revising Curricula (교육과정 개정에 따른 교과서와 교육과정 속의 생명공학과 생물정보학 내용 분석)

  • Ju, Hee-young;Dong, Hyo-kwan;Lee, Kil-jae
    • Journal of Science Education
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    • v.36 no.2
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    • pp.186-197
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    • 2012
  • The proliferation of bioinformatics in modern biology marks a modern revolution in science that promises to influence science education at all levels. This study analyzed the contents of standards in the 7th and 2007 and 2009 revised high school biology curricula and compared the contents, amount and the presentation styles of bioinformatics with those of biotechnology in biology textbooks. In result, first of all, there are some vague expressions about biotechnology and bioinformatics in the 7th and 2007 revised curriculum. There is a clear expression about biotechnology in 'life science I' and 'advanced biology' of 2009 revised curriculum. Second, more biotechnology is introduced than bioinformatics in 'science', 'biology I', 'biology II', 'life science I' textbooks. Third, in 'biology for high class' textbook, amount of biotechnology contents in the 2007 revised curriculum didn't increase. An more effort to introduce bioinformatics to science high school student is needed according to revising curricula.

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Elementary School Teachers' Conception of the Learning Content of Elementary Science Education Subject Required in the 4th Industrial Revolution Era (4차 산업혁명 시대에 필요한 초등 과학교육학 과목의 학습 내용에 대한 초등 교사의 인식)

  • Na, Jiyeon
    • Journal of Science Education
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    • v.45 no.1
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    • pp.90-104
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    • 2021
  • This study conducted an online survey to understand what elementary school teachers think about the learning contents of elementary science education subjects needed to train elementary science teachers suitable for the era of the 4th Industrial Revolution. The results are as follows: First, there were many elementary school teachers who thought that the current learning content of elementary science education was not suitable for the era of the 4th Industrial Revolution and that it needed to modify the learning content. Many of the teachers said that the learning content of the subject did not include the characteristics of the 4th Industrial Revolution, but also did not reflect the changes of the times and remained in the past. Second, the content that elementary school teachers thought was important in training elementary school teachers suitable for the era of the 4th Industrial Revolution was mainly related to the interests and curiosity of students, and scientific experiments or inquiry. On the contrary, the items that they thought should be deleted or reduced included science learning theory, science teaching/learning model, nature of science, and guidance for gifted children. Third, the contents that elementary school teachers thought needed to be added as learning content of elementary science education subjects were SSI education, science education-related social change and future prediction, advanced science technology, STEAM guidance, and integrated education within the science field. Fourth, in order to train elementary school teachers suitable for the era of the 4th Industrial Revolution, the contents that they thought should be introduced first as learning content of elementary science education subjects were SSI education, integrated education within the science field, STEAM guidance, and core competencies. Other contents that need to be introduced were software education, safety education, and project learning methods.

Design and Validation of Education Contents of Algorithm for the Gifted Elementary Students of Computer Science (초등정보과학영재를 위한 알고리즘 교육내용의 설계 및 검증)

  • Lee, Jae-Ho;Oh, Hyeon-Jong
    • Journal of Gifted/Talented Education
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    • v.19 no.2
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    • pp.353-380
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    • 2009
  • The significant reason for studying computer science lies in the efficient resolution of various problems which can arise in actual life. Consequently, algorithm education is very important in the computer science and plays a great part in helping to enhance the creative ability to solve problems and to improve the programming ability. However, the current algorithm education at an computer science educational institute for the gifted has inadequate systematic quality and is only treated as a part of programming education. From this perspective, this paper carried out following studies in order to design the algorithm education for elementary computer science prodigies. First, the core educational contents was selected by extracting the common elements from existing books related to algorithm education, common study contents on algorithm lesson websites and the study area of ACM's computer algorithm. Second, using the development criteria and selected educational contents, the educational theme for the If weeks load was set. Additionally, the algorithm educational contents were designed for the elementary computer science prodigy based on such theme. Third, the activity site for the use of prodigy educational institute was developed with the background in the educational contents for the elementary computer science prodigy. Fourth, the Delphi analysis technique was used to verify the appropriateness of contents and activity site developed in this paper. It was carried out in 2 separate processes where the first process verified the design of educational contents, and the second process verified the appropriateness of developed activity site.

Analysis on the Contents about Geological Domain with Regard to the Change of the Elementary Science Curriculum (초등과학 교육과정 변천에 따른 지질 영역에 관한 내용 분석)

  • Cho, Yong-Nam;Kwon, Chi-Soon
    • Journal of Korean Elementary Science Education
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    • v.24 no.5
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    • pp.546-557
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    • 2005
  • The purpose of this study was to analyze the characteristics of the geology-related contents in the 1st~7th elementary science curriculum. Our analysis was based on the analytical frameworks of geology-related contents (the structure of the contents, the amount of teaming, the contents of the experimental activities, the transitions of the terminology, and the change in the number of illustrations). The results are as follows: 1. Consistently covered contents were limited to weathering of the rock and soil, igneous rock, sedimentary rock, metamorphic rock, and the change of the earth's, fold and fault, earthquake and volcano, geologic stratum and fossil. 2. The geological contents account for (average), 11.5% (maximum), and 5.1% (minimum) of the elementary science curriculum. Most contents covered in the curriculum were rock and soil, and the change of the earth's surface. 3. Continuously covered experimental contents were the weathering and soil, igneous rock, change of the earth's surface, geologic stratum and fossil. 4. The terminology on the rock was the most frequently changed. Whenever the curriculum changed, the addition, deletion, or renaming of terminology led to confusions. 5. In terms of the transition of illustrations, the pictures replaced the figures or diagrams as the representative illustration methods as the science or the textbook compilation skill develope. The cartoons or tables were also used increasingly in order to help the children to understand and pay attention to study.

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Analysis and Evaluation of the Earth Science Content Relevance in the 7th National Science Curriculum (제7차 과학과 교육과정 지구과학 내용의 적정성 분석 및 평가)

  • Lee, Yang-Rak;Kwak, Young-Sun;Kim, Dong-Young
    • Journal of the Korean earth science society
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    • v.26 no.8
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    • pp.759-770
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    • 2005
  • The purpose of this study is to examine the Earth science content relevance of the 7th national science curriculum. For this purpose, we (1) analyzed science curriculum or content standards of Korea, California, England and Japan, (2) compared science textbooks of Korea and Japan, (3) conducted a nationwide survey to gather opinions from students, teachers, professors and textbook authors about the relevance of the science curriculum and textbooks. According to the results, the Earth science contents of the 7th national science curriculum were not appropriate in terms of the objectives of science curriculum and the needs of students and society. The main reasons include the equal division among physics, chemistry, biology and earth science, iack of connection due to fractionation of units, overly strict application of spiral curriculum, and redundant amount of activities and concepts to cover in the textbook. Major suggestions fir securing the relevance of Earth science contents are as follows: First, the science contents and the size of units at each grade level should be determined according to the students' characteristics, not by equal portion rule. Second, the excessive overlapping and repetition of contents due to the spiral curriculum should be avoided. In addition, the number of activities should be reduced and the quality of required science activities should be improved. Third, to raise students' interest in Earth science, real-life applications and real-world Earth science contents should be emphasized including natural disasters, safety, universe and space exploration, and natural resources. Lastly, considering one of the relevance criteria is feasibility, supports for schools and science teachers are needed to realize the goal of the intended science curriculum.

Analysis of STS Contents in Chemistry Chapters of Middle School Science Textbooks and Chemistry Teachers’ Perception Investigation of STS Education (제7차 교육과정에 의한 중학교 과학 교과서 화학 단원의 STS 교육 내용 분석과 화학 교사들의 STS 교육에 대한 인식 조사)

  • Park, Guk-Tae;Lee, Yu-Ra;Kim, Eun-Suk
    • Journal of the Korean Chemical Society
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    • v.50 no.2
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    • pp.153-162
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    • 2006
  • The purpose of this study was to analyze the STS (science-technology-society) contents in chemistry chapters of middle school science textbooks standardized by 7th national curriculum, and to investigate chemistry teachers' perception of STS education. This study was based on 8 essential elements in STS education suggested by Yager and 9 activities in SATIS (science and technology in society). The questionnaire and interview were used to investigate chemistry teachers' perception. As a result of this study, the average value of the STS contents in chemistry chapters of 7 kinds of middle school science textbooks was 22.4%, and the STS contents were preponderated to essential elements of science application and local and community relevance. And STS contents showed that science 2 textbooks were the most of all and in order of science 1 textbooks and science 3 textbooks. As a result of analysis by activities in SATIS, most activities were practice activity, problem-solving and decision making, and structured discussion. Chemistry teachers' perceptions of STS education were following. There were many responses that STS education was necessary for educational efficiency. On the other hand STS education was unnecessary because there were few effective teaching-learning method related with STS education. From these results, middle school science textbooks have to be complemented because 2 essential elements of the STS contents were preponderated in the science textbooks. And the teaching-learning method connected with STS education will have to be developed for the efficiency of STS education.

Analysis of Scientific Literacy on Korean Science Curriculum of Earth Science Contents (교육과정 변천에 따른 지구과학 영역의 과학적 소양 분석)

  • Jo, Mi-Sun;Jeong, Jin-Woo
    • Journal of the Korean Society of Earth Science Education
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    • v.9 no.3
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    • pp.269-275
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    • 2016
  • This study is conducted to search about changing earth science contents influenced by the scientific literacy from the 7th curriculum to the 2015 revised curriculum. Earth science area is divided into astronomy, geology, meteorology and oceanography contents. Among the elements of scientific literacy, the contents were analyzed focusing on STS elements. In the astronomical and meteorological content areas, there were aspects of scientific literacy in all periods from the 7th to the 2015 revised curriculum. Except for the 2007 revised curriculum in the geological area and the 7th curriculum in the oceanographic content area, the aspects of scientific literacy appeared at all times. It is emphasized the usefulness of science and technology in the astronomical content area and the use of science in everyday life in geological and meteorological content area. In the oceanographic content area, it is emphasized that content of science related social issue such as resource shortage and environmental pollution. This study can be extended to the fields of physics, chemistry and life science, we suggest to inquire the scientific literacy as a integrated science.

Analyses of Science Content on Sustainable Development in Middle School Science Curriculum of 2007-Revised (2007 개정 중학교 과학과 교육과정의 지속가능발전 내용 분석)

  • Oh, Yoon-Jeong;Jang, Ji-Young;Choi, Kyung-Hee
    • Journal of The Korean Association For Science Education
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    • v.30 no.8
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    • pp.1075-1083
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    • 2010
  • This study analyzed content on sustainable development in the middle school science curriculum of 2007-Revised. Analyses criteria were developed based on literature reviews. The analyses showed that among 25 units, nine of them dealt with the topics and issues on sustainable development. However, the content had too much partiality for biology and earth science, lacking integration with other areas of science. Results of this study suggest the need for developing systemized teaching material on sustainable development that can be incorporated in the science curriculum by pursuing the following tasks: First, the educational goal of sustainable development and its need should be mentioned in the science curriculum. Second, the class content, themes, objectives, teaching-earning programs on sustainable development should be formulated. Third, within the science curriculum, the content should deal with topics beyond natural or environmental issues, to issues such as economical and socio-political so as to bring better understanding of the concepts related to sustainable development.

The 7th earth science curriculum and comparative analysis of contents that is exhibited in the science museum - laying stress on high school earth science I, II (제 7차 지구과학 교육과정과 과학관 전시 내용의 비교 분석 - 고등학교 지구과학 I, II를 중심으로)

  • Lee, Hye-Jung;Lee, Chang-Zin;Shin, Myeong-Kyeong
    • 한국지구과학회:학술대회논문집
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    • 2005.09a
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    • pp.323-330
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    • 2005
  • In this study, searched how science museum reflects personality of course of study and target comparing display contents of science museum with high school earth science Ⅰand Ⅱ of the 7th curriculum. Result of this study is as following. First, area that earth science contents of course of study are exhibited has been less than 50%, and is preponderated by unit. Second, earth science course of study reflection degree of science museum is middle.(2.8 points of perfect score 5 points) Third, number of average mark of contents that is exhibited by science museum in significance level 0.05 lows is difference, and it is no difference by unit.

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