• Title/Summary/Keyword: 과학교과

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A Study of School Science Textbooks which was used from 1906 to 1915 in Korea (대한제국 후기부터 일제 식민지 초기(1906-1915년)까지 사용되었던 과학교과용 도서의 조사 분석)

  • Park, Jong-Seok;Chung, Byung-Hoon;Pak, Sung-Jae
    • Journal of The Korean Association For Science Education
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    • v.18 no.1
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    • pp.93-108
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    • 1998
  • This study investigated science textbooks used from 1906 to 1915 in Korea, which is often neglected in previous researches. By doing so, more practical and specific understanding of the science education during that period can be made. It was based on the historical achieves "School Textbook List"(Vol. $4{\sim}9$) which was published by the Ministry of Education and the Government General of Chosen and other sources. The results and conclusions of the research are as follow; (1) The science textbooks which have been used from 1906 to 1915 in Korea can be categorized into three different tapes of books, either written in Chinese, or in Japanese, or in Korean. The names of science textbooks were Nature Study, Physics, Chemistry, Natural History, Hygienics, Physiology, Zoology, Botany, Astronomy, Physiography, Mineralogy, Geology. These names were much broader than those in curriculum settled by the government and rather correspond to the names of science textbooks in curriculum which settled by private schools. Therefore those science textbooks had been mainly used in private schools. Moreover almost all of the science textbooks published in Korea have started to appear after 1906. Since then many schools were newly opened and the number of students increased. It is possible to say that substantial science education in Korea established after 1906. (2) Science textbooks from 1906 to 1915 printed in Korea were controlled in their use by the Ministry of Education and the Government General of Chosen. They were the main means of government regulations, supported by Private School Ordinance, Regulations for Official Examination of textbooks in 1908 and Law of Publication in 1909. According to the result of official examination, as the time went by under the Japanese ruling of Korea, the increasing number of science textbooks were getting banned. While the science textbooks had enjoyed more freedom than the other textbooks from the control by inspection of the Government General of Chosen, the situation has been significantly changed as Japan started to intensity the control of all kinds of textbooks in Korea. Although there were a lot of copied science textbooks, 62 science textbooks printed in Korea, 72 Japanese science textbooks were used in Korea, and 40 Korean were to be engaged in science education compiling and copying science textbooks. There developments in science textbooks alone suggest that there were enormous amount of potentials in Korean science education at that time. However, all of these effects and progresses were destroyed when the sovereign authority of Korea was lost to Japan in 1910.

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Depictions of Scientists and Teachers' Perceptions of the 2015 Revised Elementary School Science Authorized 3rd-4th Grade Textbooks from the Perspective of Gender Equality (양성평등의 관점에서 살펴본 2015 개정 초등학교 과학과 3~4학년군 검정 교과서의 과학자 제시 실태 및 교사의 인식)

  • Chae, Heein;Noh, Sukgoo
    • Journal of Korean Elementary Science Education
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    • v.41 no.4
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    • pp.770-782
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    • 2022
  • This study analyzes the depictions of scientists and teachers' thoughts on the 2015 revised elementary school science authorized 3rd-4th grade textbooks from the perspective of gender equality, and suggest improvements for the 2015 elementary school science authorized 5th-6th grade textbooks as well as a 2022 revised elementary school science curriculum. The data consist of representations of scientists found in seven elementary science textbooks provided to 3rd- and 4th-grade students in 2022 as well as in-depth interviews conducted with three elementary school teachers and responses from 32 teachers in Gyeonggi-do. Of the 23 scientists depicted in the textbooks, three (13.0%) are female and 10 (43.5%) worked in the inquiry domain, which was the largest group. When the teachers were asked about their perceptions of the gender ratio of scientists in the textbooks, their answers revealed that they had lower perceptions of female scientists compared to male scientists; moreover, they had no or very little teaching experience concerning female scientists. Furthermore, the teachers' thoughts on improving the gender ratio of scientists depicted in the textbooks differed considerably by the teachers' gender. Based on these findings, it was concluded that during the process of producing textbooks, writers and members of society need to agree on the gender ratio of scientists to be represented, and a social consensus is needed to identify and introduce the achievements of previously unknown female scientists towards gender equality.

Nature and Development of Pedagogical Content Knowledge in Science Teaching (과학 교과교육학 지식의 본질과 발달)

  • Lim, Cheong-Hwan
    • Journal of the Korean earth science society
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    • v.24 no.4
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    • pp.235-249
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    • 2003
  • The purpose of this study is to analyze and evaluate the nature, role and development of pedagogical content knowledge in science teaching. Two research questions were considered: 1) What are the nature and the components of the pedagogical content knowledge in science teaching? 2) What is the value of pedagogical content knowledge and are there any routes and paths to developing pedagogical content knowledge for science teachers? In order to answer these questions instead of analyzing empirical data, former research literatures are reviewed. The results indicate that science pedagogical content knowledge is a special amalgam of science content knowledge and science method knowledge in a special context of science teaching that is uniquely the province of teacher based on their own special form of professional understanding. As a part of one's own distinctive bodies of knowledge, science teachers' pedagogical content knowledge is an important basis for professional development and competent teachers. It is knowledge of how to teach specific content in specific contexts, also it depends on each teachers' distinctive knowledge structure. Pedagogical content knowledge for science teaching is composed of five components: orientations toward science teaching, knowledge and beliefs about science curriculum, knowledge and beliefs about students' understanding of specific topics, knowledge and beliefs about assessment for teaching science, knowledge and beliefs about instructional strategies for teaching science. The development of science pedagogical content knowledge does not start until teachers have acquired a deeply principled conceptual knowledge of content, also it is promoted by the constant use of subject matter knowledge in teaching situations.

The Analysis of the Tendency that the Understanding of Mathematics Affects the Learning of Science and the Research on the Connection between the Two Subjects (수학의 이해가 과학의 학습에 미치는 경향 분석 및 교과 연계성에 대한 연구)

  • Suh, Bo-Euk;Kim, Hye-Kyung;Kim, Ju-Young;Kim, Jong-Jae;Kim, Hyun-Ji;Chae, Jeong-Lim
    • Journal of the Korean School Mathematics Society
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    • v.11 no.4
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    • pp.677-694
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    • 2008
  • Mathematics and science courses have a deep connectednessGnterrelationship). This research analysis their connectedness focused mathematics courses. Textbooks which were used in seventh education process were used in this analysis and the connectedness was further analyzed. From this analysis, three norms study various cases where mathematics courses affect science courses. The three norms are defined by order of curriculum of mathematics and natural science courses that have interrelationship. Lastly, a method to organize to connect mathematics and natural science course is discussed in detail in two aspects. Thorough this research, improvement in study achievement ability is expected by positive effects of mathematics courses to science courses.

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Analyzing Nature of Science(NOS) included in elementary school science textbooks (초등학교 과학 교과서에 반영된 과학의 본성(Nature of Science, NOS) 분석 - 초등학교 3, 4, 5, 6학년 지구과학 분야를 중심으로 -)

  • Moon, Seo-Young;Han, Shin
    • Journal of Science Education
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    • v.38 no.3
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    • pp.625-640
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    • 2014
  • In 21st century, it is essential to understand Nature of Science (NOS) related to science educational curriculum. The study analyzed Earth Science components of third- through sixth-grade science textbooks in terms of incorporated NOS themes and their relative proportions. Modified analysis methods of Chiappetta et al. (1991) and Lee (2012) are devised and adapted. The results of analysis indicates that the current elementary school textbooks include and explain all the four themes of NOS, but do not include sub-areas of each theme of NOS in a balanced way. In addition, the themes of NOS in Earth Science are not treated equally among different grades. Such results warrant the efforts to include balanced themes of NOS into elementary school science textbooks with the ultimate goal of fully and properly comprehending NOS to the students.

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Exploring the Essence of 'Science Content' and 'Science Education': Focus on 'Essential-Holistic' Perspective and Practices (과학교과내용학과 과학교육학의 본질 탐구 -'본질적-총체적' 관점과 실천전통을 중심으로-)

  • Lee, Gyoungho
    • Journal of The Korean Association For Science Education
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    • v.42 no.4
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    • pp.449-475
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    • 2022
  • The purpose of this study is to critically examine science content and science education from the 'essential-holistic' perspective, in particular, among the core disciplines constituting the teacher education curriculum. In this study, we first, analyzed the definition of the 'essential-holistic' perspective, the philosophical background, and the relationship with the practices in-depth, and then, from the 'essential-holistic' perspective, conducted an inquiry into the essence of science content and science education. The results of this study are as follows: first, according to the 'essential-holistic' perspective, science content is a study that explores the science practices and systematizes the results of that inquiry. Major activities of science content include the establishment and implementation of 'science for teachers' and participation in the development of science curriculum (textbook). Second, science education according to the 'essential-holistic' perspective is a study about in-depth exploration of essential problems in science education phenomena rooted in the science practices and the practice of good teaching. More specifically, science education is a field that carries out work related to inviting, participating, and guiding students to grow into science practices (i.e. initiating into practices). The main activities of science education related to this include activities ranging from the development of the science curriculum (textbook) to teaching and evaluation (recording). In this study, we discussed important tasks to be carried out in the future based on the results of the study.

중등 수학 및 컴퓨터과학 교육에서 컴퓨터 교육의 연결성 및 통합성

  • Jeong, Chi-Bong
    • Communications of Mathematical Education
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    • v.10
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    • pp.303-324
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    • 2000
  • 수학 교육에서 새로운 정보기술의 교육적 사용의 범위는 커지고 교육 모형은 다양해지고 있다. 특히 중등 수학교육에서의 변화에 대한 기대도 커지고 있다. 본 논문은 미국 및 한국의 수학 교육계의 폭넓은 지지를 받는 NCTM의 컴퓨터 및 정보기술 활용에 관한 규준들의 교육적 의미, 방법, 효용 등을 정리하였다. 이어서 컴퓨터과학 교과과정에 포함된 수학 분야에 대한 컴퓨터과학자 Hamming의 견해를 소개하였다. 본 논문은 한국의 중등 교육에도 컴퓨터과학 교과가 시행될 것을 예정하면서 수학 교사들이 미리 컴퓨터과학을 교과과정을 이해함으로 통합 교과적 요소, 특성 그리고 역할 관계를 알아보았다.

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도서관학과(圖書館學科) 학생(學生)을 위한 정보과학(情報科學)의 교과과정(敎科課程)

  • 테프코사라세비크
    • Journal of Information Management
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    • v.6 no.6
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    • pp.156-163
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    • 1973
  • "정보과학입문(情報科學入門)"이라는 과목(科目)은 자연과학(自然科學)에 대한 학문적(學問的) 배경(背景)이 없거나 정보과학분야(情報科學分野)의 다른 과목(科目)을 이수(履修)하지 않은 도서관학과(圖書館學科) 학생(學生)을 위해서 교재(敎材)로서 설치(設置)되었다. 본고(本稿)는 이 과목(科目)이 발전(發展)되어온 과정(過程)과, 도서관학과(圖書館學科) 교과과정(敎科課程)에 정보과학입문(情報科學入門)이라는 교과목(敎科目)을 설치(設置)하게 된 동기(動機) 및 그 타당성(妥當性), 그리고 그 교과(敎科)의 목적(目的), 방향(方向) 및 중요(重要)한 주제분야(主題分野), 교과구조(敎科構造) 및 중요(重要)한 내용(內容), 사용(使用)된 교수방법(敎授方法) 및 이 과목(科目)에 대한 개인적(個人的) 평가(評價) 등을 취급하고 있다. 특별(特別)히 교수방법(敎授方法)은 학생(學生)들이 원전(原典)을 읽을 수 있도록 하였다. 학생(學生)들은 복잡(複雜)한 연구논문(硏究論文)은 물론(勿論) 정보과학(情報科學)의 업무(業務)를 도서관업무(圖書館業務)와 성공적(成功的)으로 관련(關聯)시켜 처리(處理)할 수 있다는 사실(事實)을 알게 되었다.

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Exploring the Possibility of Applying Social and Emotional Learning to Science Subjects: Analysis of Social Emotional Learning Contents in Science Textbooks (과학교과의 사회정서학습(Social and Emotional Learning) 적용 가능성 탐색: 과학 교과서의 과학과 사회정서학습 요소 분석)

  • Park, HyunJu
    • Journal of Science Education
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    • v.41 no.3
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    • pp.297-317
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    • 2017
  • The purpose of this study was to investigate the possibility of Science Social and Emotional Learning(SSEL). The factors of SSEL were suggested, and by utilizing them, the contents of middle school's science and Chemistry 1 textbook were analyzed. The factors are as follow: numeracy, information and communication technology, critical thinking, creative thinking, personal and social capability, ethical understanding, and intercultural understanding. The results showed that the 60~70% of textbooks put emphasis on numeracy, information and communication technology, critical thinking, creative thinking while some factors were limited in th contents, which were personal and social capability, ethical understanding, and intercultural understanding. Therefore, teacher should try to reconstruct the teaching and learning materials and fill in the deficiencies of SSEL factors through class activities. In addition, it is suggested to study specific application methods such as science activities or experiment activities in detail to meet social and emotional learning.

Science Teaching Practice and Science Teaching Efficacy Beliefs by Development of Elementary School Teachers' Pedagogical Content Knowledge (초등교사의 과학 교과교육학 지식의 발달이 과학 교수 실제와 교수 효능감에 미치는 영향)

  • Lim, Cheong-Hwan
    • Journal of the Korean earth science society
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    • v.24 no.4
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    • pp.258-272
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    • 2003
  • This study explored the effectiveness of science teaching practice and science teaching efficacy beliefs by development of elementary school teachers' pedagogical content knowledge. Three research questions are formulated: 1) Is there any relationship between the development of teachers' pedagogical content knowledge and the science teaching efficacy beliefs? 2) How does the development of teachers' pedagogical content knowledge affect the science teaching practice? 3) How do the science teaching efficacy beliefs affect the science teaching practice? 120 subjects were chosen in 53 public elementary schools. Quantitative and qualitative data were collected and analyzed to triangulate the results. Results indicate that the development of teachers' pedagogical content knowledge and science teaching efficacy beliefs are more developed in accordance with teachers' teaching career and academic career are increased. There are significant relationships between teachers' science pedagogical content knowledge and science teaching efficacy beliefs. The more the teachers' pedagogical content knowledge, the more confident in science teaching practice. The more the science teaching efficacy beliefs, the more confident in science teaching practice. Also these teachers tried to present teaching objectives and learning problems in the beginning stages of science lessons, and they tried to review each learning stage.