• Title/Summary/Keyword: Education Science

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A Status Survey of Secondary Science Education in Kangwon Province and Development of Teaching/Learning Materials for Middle School Science 2:Status Survey of Middle School Science Education. (강원도 중등과학교육 실태조사 및 중학교 과학2의 교수/학습자료 개발:중학교 과학교육 실태 조사)

  • Cho, Hee-Hyung;Lee, Moon-Won;Cho, Young-Sin;Han, In-Sook
    • Journal of The Korean Association For Science Education
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    • v.9 no.2
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    • pp.81-87
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    • 1989
  • In 1987 Ministry of Education published the 5th-revised version of curriculm, the main goal of which is to improve science and culture as well as to educate the students who are able to actively adapt to the 21st century's society. Howerver, the revised curriculum neglects the problems associated with the nature of and localized characteristics of science education. Therefore this research had its main objective to survey and analyze the status of science education of secondary schools in Kangwon Province and, based on the results, to develop the teaching/learning materials appropriate for science education in this province. This research is 3d-Year project and this paper is about its first year research results. The first year's main objective is to investigate and analyze the status of middle school science education, focusing on the curricular operation, science teachers, and lavoratory facilities and instruments. This research used the survey methods. The questionaires were sent to all the middle schools the number of which is 163, and 162 schools of which returned the survey questionaires. Based on the analyses of the data following conclusions were drawn. The average class size is 48.8 students. Almost all of the middle schools alocate the science class hours per week of 4,3,4 hours to first, second, third grade, respectively. However, the greater part of science teachers want 5,4,5 hours of science classes a week. Total number of science teachers exeeds the number actually needed, implicating that many science teachers are teaching non-major subjects. The lavoratory facilities and instruments are not sufficiently provided for lavoratory-based science education. Along with these conclusinons suggestions for better science educations are recommanded. Among the suggestions two are highly emphasized.They are: to increase science class hours; to use field lavoratory substituting for school lavoratory.

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Science Gifted Learning Program: Research & Education Model

  • Shim, Kew-Cheol;Kim, Yeo-Sang
    • Journal of The Korean Association For Science Education
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    • v.25 no.6
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    • pp.635-641
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    • 2005
  • This paper suggests a research & education (R&E) model for the gifted in science education. The model has been developed under three assumptions. The first is that using the sequences of a gifted educational program designed to facilitate the process will assist in gifted students' construction of scientific knowledge and comprehension of laboratory practice through concrete experimental experience. The second is that gifted students will be able to apply this learning to further study using and extending scientific knowledge and experience. The third is that challenging tasks and feedback at the requisite stage of development will improve instructional effectiveness. The R&E Model has five phases: engaging, exploring, planning, performing and elaborating; furthermore, it suggests roles for the mentee and mentor. The R&E model has two functions for gifted education. The first is providing guidance for gifted curriculum developers as they design a mentor program, and the second is helping a mentor improve instructional effectiveness through use of strategies. This model has potentials to educate the gifted students in the Science Education Institute for the Gifted.

Development of Multimedia Database for Earth Science Learning (지구과학 학습을 위한 멀티미디어 학습 자료 데이터베이스 개발)

  • Lee, Won-Kook;Kim, Yeo-Sang;Kim, Chil-Young;Kim, Jong-Hun;Kim, Hee-Soo
    • Journal of the Korean earth science society
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    • v.21 no.2
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    • pp.116-127
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    • 2000
  • This study is aimed at the development of multimedia learning program for earth science in the middle and high school. This program was made of HTML format and includes a variety of texts, graphs, pictures, drawings, animations, and moving image materials. And it was composed of six database elements(learning context, terminology dictionary, practical science, inquiry actvity, image material, and test item). The results of applying this program to students and teachers gave affirmative answers. The program is being offered on an internet website under Institute of Science Education of Kongju National University.

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Exploring the Nature of Argumentation in Science Education (과학교육에서 논의의 본성 탐색)

  • Jung, Dojun;Nam, Jeonghee
    • Journal of the Korean Chemical Society
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    • v.66 no.1
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    • pp.50-60
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    • 2022
  • The purpose of this study is to explore the Nature of Argumentation in Science education (NAS). For this purpose, we collected previous studies conducted on the argumentation in science education, and then collected previous studies were analyzed to extract the overall characteristics of argumentation in science education. Based on the results, an expert review was conducted, then the nature of argumentation in science education was finally derived to a total of seven components: 'evidence based', 'linguistic interaction', 'context dependency', 'public decision-making', 'tentative agreement', 'methodological diversity', and 'enculturation of scientific culture'. Understanding the nature of argumentation in science education can promote the practice of argumentation in science learning. Therefore, further studies will be necessary to conduct research to expand and refine the nature of argumentation in science education in order to effectively practice it in science learning.

A Study of Entrepreneurship Education of University in Science and Engineering for Vitalization of Technology-based Startup (기술기반 창업 활성화를 위한 이공계 창업교육에 관한 연구)

  • Kim, Sunwoo;Ko, Hyuk-Jin;Lee, Yunseok
    • Journal of Engineering Education Research
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    • v.18 no.2
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    • pp.3-7
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    • 2015
  • Entrepreneurship has been considered as an engine to lead economy, which has been resulting in a focus on entrepreneurship education to promote entrepreneurship. This paper focuses on science and engineering students, and analyzes the relationship between entrepreneurship education and entrepreneurship level. The response results of 950 students (34 universities) were as follows. First, the entrepreneurship level of science and engineering students are a little high but not as significant more than non-science and engineering. Second, science and engineering students have an impact on the level of entrepreneurship about entrepreneurship courses. Third, entrepreneurship courses and clubs have an effect on entrepreneurship level. As a conclusion, we have to improve the quality of entrepreneurship education, recognize startup as a credit, and build up entrepreneurship education ecosystem through the local area network.

Constructivist Science Education and the Map of Students' Physics Misconceptions (구성주의적 과학교육과 학생의 물리 오개념 지도)

  • 송진웅
    • The Mathematical Education
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    • v.42 no.2
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    • pp.87-109
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    • 2003
  • This paper aims to review the overall development of constructivist approaches in science education research from two different perspectives, that is a summary of the past development in science education in general and a report of the outline of a recent research project on students' physics misconceptions in particular. In the summary of the past development of constructivist science education the introduction of constructivism as well as its psychological and philosophical backgrounds are briefly reported. Then main findings of the researches of constructivist approach are discussed in terms of the features of students' misconceptions, of the ways of effective conceptual change, of the implications toward school science education, and of the criticisms given to the constructivist approach. In the report of a recent development in addition to its background necessity and implications, the research structure and the format of the data analysis of the study on the map of students' physics misconceptions are presented. It is particularly emphasized that the practical informations and suggestions for actual teaching of school science, such as the database(DB) of students' misconceptions and teaching guides, are of most practical and effective values in order to maximize the advantage of the constructivist approach to science education.

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Survey on the Current Science Education at Elementary School in Jeonnam Province (현행 초등 과학 교육에 대한 현장의 실태 조사 - 전라남도를 중심으로 -)

  • Lee, Gye-Choo
    • Journal of The Korean Association For Science Education
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    • v.1 no.1
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    • pp.73-88
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    • 1978
  • The survey is intended to improve science education by the analysis of problems produced in the following nine aspects (objectives, contents, materials, inquring methods, teaching methods, teachers, children, evalutions, admininative supports) during the past five years often the revision of new science curriculum. 1. View for science education. 1) The teacher's and children's view for science education can be seen renewed, being different from the old one. 2) Inquring method in learning and teaching began to take firm root and children came to know that it is the only way to study science. 3) Writers think that the new science education has stepped into the stage of being fixed to a considerable degree. 2. The aspect of administrative policy. 1) The amount of materials in possession is small and the present materials are lacking in solidity and precision. 2) Class room teacher's over load with miscellaneous things is a difficult problem to solve. 3) The shortage of the printed materials and books for children and teachers has an influence on the development of inquring method. 4) It causes cramming to examine all children at the same time by paper test. 5) It is more desirable to appoint qualified teacher only for science teaching. 3. Contents of science curriculum. 1) In current science textbooks. There can be found some contents which are difficult for teachers to understand and not in accordance with the reality of Korea. Therefore, it is imperative that contents of science textbooks should be reexamined. 2) As it is hard to teach concepts of reciprocal action and to prepare materials with teaching of the system of biological concepts, the teaching of contents is likely to be a cramming. 4. The aspect of in-service education. 1) It is obsolutely predominant reation that in-service education is making a great contribution to class room teaching. 2) As adiministrators' policy for science education has a great effect, in-service education for their enlightenment is needed.

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Computer Science Education and Use of Learning Materials (비전공자 컴퓨터교육과 학습보조 자료의 활용)

  • Nah, Jeong Eun
    • Journal of Engineering Education Research
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    • v.22 no.6
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    • pp.21-27
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    • 2019
  • In the last few years, interest in computer science education has increased significantly. The curriculum is being revised to introduce computer science. Although interest has focused on coding as the main subject, in fact the computer science includes much more than coding. It engages people in being creative with technology as well as understanding the fundamental principles of computer science. Therefore, it is important to consider the curriculum to provide a foundation by teaching and learning computer science. The curriculum is required the development of courses to teach computer science for non-majors in general education. To think like a computer scientist on the knowledge of computer science is computational thinking. In order to maximize the effectiveness of teaching and learning for computational thinking, various teaching methods and supplementary learning materials, and activities should be developed and provided.

Science Teachers' Perceptions of Science Education and STS Themes (과학교육과 STS에 관한 중등 과학교사들의 인식 조사)

  • Choi, Kyung-Hee
    • Journal of The Korean Association For Science Education
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    • v.14 no.2
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    • pp.192-198
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    • 1994
  • The Purpose of this study was to investigate secondary science teachers' perceptions on the goals of science education, science teaching strategies, science curriculum, and STS themes to ascertain the extent to which the current science programs incorporate with STS themes. The results of this study indicated that the perceptions of science teachers did not support the view that the STS themes have become established in contemporary secondary science education. However, they showed willingness to incorporate STS themes into their science teaching. Based on these results, the implementation of STS themes in science teaching were esstimated to be valuable for Korean science education.

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