• Title/Summary/Keyword: 물리교과서

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The Relationship between Learners' Epistemological Beliefs About the Nature of Physics Knowledge and Physics Knowing During Conceptual Change in Mechanical Energy (학습자의 역학적 에너지에 대한 개념변화 중에 살펴본 물리지식과 앎에 대한 인식론적 신념간의 관계)

  • Moon, Seong-Sook;Kwon, Jae-Sool
    • Journal of The Korean Association For Science Education
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    • v.24 no.3
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    • pp.499-518
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    • 2004
  • This study focused on research that illustrates the important interplay between learners' epistemological beliefs about science knowledge, physics textbook knowledge and knowing physics in the classroom. Also this study investigated learners' conceptual changes on the value of mechanical energy. To explore these topics, six sophomores were chosen as participants. Three categories were introduced to classify how participants' understanding of the nature of science knowledge, physics textbook knowledge has been linked with epistemological beliefs of knowing physics. The three categories were (1)receiving physics knowledge as authority, (2)receiving physics knowledge as the perception of teacher's role and (3)understanding physics knowledge as the perception that science knowledge is a product of a variety of human ideas. These categories were also concerned with construction of individual conceptions of mechanical energy. The participants who understood physics knowledge as the perception that science knowledge is a product of a variety of human ideas naturally used metacognitive strategy in classroom compared to other participants. And they had scientific conceptions about the value of mechanical energy. Others who were passive in classroom had unscientific conceptions about the value of mechanical energy due to definition of energy and epistemological beliefs about the nature of science knowledge. In the process of their conceptual changes on the value of mechanical energy, it was important to understand an instrumental aspect of scientific knowledge and to think about the relation between formulae and physical phenomena.

An Analysis on Conceptual Sequence and Representations of Eye Vision in Korean Science Textbooks and a Suggestion of Contents Construct Considering Conceptual Sequence in the Eye Vision (초 . 중등학교 과학 교과서에서의 시각(eye vision) 개념의 연계성과 표현 방식 분석 및 연계성을 고려한 시각 개념 구성의 한 가지 제안)

  • Kim, Young-Min
    • Journal of The Korean Association For Science Education
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    • v.27 no.5
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    • pp.456-464
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    • 2007
  • The aims of this research are to analyze the representations and conceptual sequence of eye vision in Korean science textbooks and to suggest a contents construct about eye vision where the conceptual sequence is considered. Research method was literature review, and the literatures that were used for analysis were the 7th Korean science curriculum which was revised in 1997, and the science and physics textbooks developed based on the 7th Korean science curriculum. The research results are as follows: 1) Although the science curriculum seems to have no problem on sequence in the eye vision concepts, the science and physics textbooks based on the curriculum reveal problems on the sequence in the eye vision concepts; 2) Some Korean science textbooks explain retinal image formation according to the Alhazen's idea, except in inverse image; 3) Some Korean science textbooks explain about the reasons of near- and far-sightedness without consistency between the textbooks for 7th and 8th grade students; 4) A few Korean science textbooks give an inappropriate explanation about the principle of eye sight correction by eye glasses; 5) According to the analysis result, the concepts related to eye vision should be presented in the order of explanation about light refraction phenomena, image formation process by convex lens, structure of human eye and retinal image formation process, correction of eye sight using lens.

EDISON 을 활용한 계산화학 tutorial 제작

  • Kim, Hyeon-Su;Im, Jae-Chang;Kim, U-Yeon
    • Proceeding of EDISON Challenge
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    • 2016.03a
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    • pp.108-112
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    • 2016
  • 화학, 물리. 재료, 공학 등 여러 분야에서 계산의 중요성이 증가함에 따라 대학 학부수업에서 계산을 가르치는 학교들이 늘어나고 있다. 수업에서 진행되는 tutorial 의 경우, Gaussian, Spartan, Hyperchem 과 같은 상업용 프로그램을 이용하여 간단한 이론들을 시뮬레이션 하는 방식으로 진행된다. 이번 연구에서는 EDISON 프로그램을 활용하여 계산화학을 처음 접하는 학생들을 위한 tutorial 을 개발하였다. EDISON S/W 를 기반으로한 이 tutorial 이 교과서에서 배우던 개념들을 이해하는데 도움이 되며, 실제 수업시간에 사용될 수 있음을 보여주고자 한다.

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Solubility of a Salt Dissolved in Water in the Presence of Another Salt (두 가지 염이 동시에 물에 녹을 때의 용해도)

  • Park, Jong-Yoon
    • Journal of the Korean Chemical Society
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    • v.53 no.4
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    • pp.453-465
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    • 2009
  • In this study, the descriptions of salt solubility in the textbooks of secondary school and college were reviewed to figure out the reason of low understanding of elementary and secondary school students and teachers about the solubility of a salt in the presence of other ions. The ionic strength dependence of salt solubility was not introduced in the secondary school textbooks and general chemistry textbooks. It appeared in the physical chemistry textbooks as a direct or an indirect explanation. However, most of college senior students who had learned the physical chemistry could not relate the salt solubility with the ionic strength change. The factors might affect salt solubility, such as the ion pair formation and the activity coefficient change by ionic strength, were mentioned and an experimental result was also shown to resolve the questions that college students and teachers might have. Because these explanations are beyond the secondary school level, we need to develope an easier and better explanation suitable for the secondary school students.

Scientific Understanding Through the Analysis of Students' Intuitive Ideas and Sources on Self-Induction (자체 유도 현상에 대한 직관적 사고의 내용과 원인 분석을 통한 과학자적 이해)

  • Ahn, Soo-Young
    • Journal of The Korean Association For Science Education
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    • v.23 no.2
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    • pp.176-188
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    • 2003
  • Self-induction is an important concept in the field of electromagnetism, which is dealt with in all the high school physics textbooks. According to the results of the survey on self-induction, most of general high school students and even science high school students have overgeneralized concepts that high self-induced emf. are produced whenever the switch is turned off in the circuit containing inductors. The reasons of this overgeneralization on self-induction could be explained through the analysis of current high school physics II textbooks. Main reasons can be attributed to the fact that, by depending on their intuitive ideas, students try to vaguely explain the concept, based on lighting up of Ne tube in the special circuit. This study found out qualitative method to have students effectively understand self-induction based on quantitative interpretation to gain scientific understanding on self-induction.

An Analysis of High School Common Science Textbook on the Concept of Greenhouse Effect (온실효과에 대한 고등학교 공통과학교과서 분석)

  • Kook, Dong-Sik
    • Journal of the Korean earth science society
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    • v.23 no.6
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    • pp.455-460
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    • 2002
  • The purpose of this study is to analyze the sixth curriculum textbooks of high school science courses in relation to the greenhouse effect concept and find the incorrect descriptions of that concept and then suggest some improved schemes. Some incorrect descriptions, pictures and tables on the greenhouse effect concept were found in texts. They might contribute to forming and/or reinforcing misconceptions about that concept: the important greenhouse gases, the changes caused by the greenhouse effect, global warming, energy sources, greenhouse experiments and physical processes. Therefore some improved schemes were suggested

An Analysis of 10th Grade Science Textbook as an Origin of Misconception on Greenhouse Effect Concept (온실효과 개념에 대한 오개념 원인으로서의 10학년 과학 교과서 분석)

  • Kook, Dong-Sik
    • Journal of The Korean Association For Science Education
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    • v.23 no.5
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    • pp.592-598
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    • 2003
  • The purpose of this study is to analyze the tenth grade science textbooks as an origin of misconception on greenhouse effect concept and find incorrect descriptions on that concept and then suggest some improved schemes. Some incorrect descriptions, pictures. tables and experiments related to misconceptions on greenhouse effect were found in textbooks. They are considered to contribute to form and reinforce misconceptions on that concept : the most important gas of greenhouse effect, the role of $CO_2$ on the change of greenhouse effect. global warming. energy sources, greenhouse experiments and the physical processes of greenhouse effect. So some improved schemes were suggested

A Comparative Study on Physics Inquiry Activities in Science Textbooks for Primary School in Korea and Singapore (우리나라와 싱가포르의 초등학교 과학 교과서에 제시된 물리 영역 탐구 활동의 특징 비교)

  • Jung, Hana;Jhun, Youngseok
    • Journal of Science Education
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    • v.36 no.1
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    • pp.139-152
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    • 2012
  • The purpose of this study is to provide some suggestions for future improvement of scientific inquiry activities in Korean elementary science textbook. The modified framework of Lee(2005) and Millar et al.(1998) was used to compare inquiry activities in the Korean and Singaporean science textbooks. The results of this study are as follows: Korean text books have more activities than Singapore's, but both countries have similar time allotment for science classes. In the area of 'inquiry process skill', Singapore is more balanced in 'Basic inquiry process skills' and 'Integrated inquiry process skills' than Korea. Singapore's integrated inquiry rate is also higher than Korea's. Next the results of comparing leaning objectives to scientific inquiry activities shows that Korean text books tend to focus on 'contents objectives', while Singapore's text books focus on balancing 'contents objectives' and 'process objectives'. Korean science textbooks encourage students to communicate the results of experiments but in most case these communication activities are actually not performed. Lastly Korea and Singapore have low degree of openness in inquiry activities. Remarkably 'Suggest questions' are totally conducted by teachers. This study implies that Korean science textbooks should have lower amounts of inquiry activities to accomodate enough time for communication about results. Next we need to make balance not only 'Basic inquiry process skills' and 'Integrated inquiry process skills' but also 'Content objectives' and 'Process objectives'. Lastly we need to make student to be the leader in science classes through encouraging them to plan procedures for experiments and to discover results by themselves.

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Analysis of Physics Terminology in Science Textbooks for Teaching Science Words (과학 용어 교육을 위한 과학 교과서 수록 물리 용어 분석)

  • Yun, Eunjeong;Park, Yunebae
    • Journal of The Korean Association For Science Education
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    • v.33 no.4
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    • pp.735-750
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    • 2013
  • The purpose of this study is to relieve the difficulties caused by science terminology in science learning and increasing the efficiency of science education. The reason why students experience difficulties in science terminology is because science words are used without being filtered by a criteria and students have not had the opportunity to be educated properly in science terminology. As a way to solve this problem, we propose establishing a criteria about the science words used in science education and to teach the science words systematically to the students under the criteria. In this study, we used the method of empirical linguistics that investigate the science terminologies actually used in science education to establish a criteria for science words. As a basic research for this, we analyzed all words contained in the physics section of science textbooks for elementary and secondary schools. And then, we collected all words used in the physics section of science textbook, and selected the science words for teaching, and rated them by grade. As a result, a total of 930 physics terms were selected as the science words for grade 3 to 10. The numbers of physics terms per grade were as follows: 66 words for the 3rd grade, 38 words for the 4th grade, 35 words for the 5th grade, 28 words for the 6th grade, 203 words for the 7th grade, 135 words for the 8th grade, 123 words for the 9th grade, and 302 words for the 10th grade.

Humanistic Science Education through Context-Rich Approaches (맥락 중심 접근법을 통한 인간주의적 과학 교육)

  • Song, Jin-Woong
    • Journal of Korean Elementary Science Education
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    • v.25 no.4
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    • pp.383-395
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    • 2006
  • School science is often criticized as being too remote from both learners' interests and needs and as maintaining scientist-oriented approaches rather than humanistic ones. Although science is mainly taught on the basis of textbooks inside classrooms, the learning of science can not be confined to the boundaries of curriculum and school. Firstly, this paper briefly reviews and characterizes the historical development of science education with a series of analogies, and then suggests a new analogy, a so-called 'Hearts-On' approach to science education which emphasizes the humanistic aspects and the contextual dimension of science education. Secondly, it critically examines how much traditional school science teaching, particularly in physics, is limited in terms of the context of learning (i.e. textbook, laboratory, classroom, local, and global) as well as in terms of the context of the contents (i.e. physical, personal, social, and global). Thirdly, some recent attempts initiated by the author and colleagues are explained as examples of the Hearts-On approach to science education. In particular, a series of community-based science programs led by SNU and the development of a series of books on 'Contextual Physics'(i.e. Body Physics, Wearing Physics, Dining Table Physics, and Sports Physics) are outlined. Finally, the idea of scientific humanism is explored in relation to the context-rich approaches in science education. It is hoped that this paper helps us to reconsider how we can expand the world of science education beyond the boundaries of the curriculum and school and into a more humanistic one.

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