• Title/Summary/Keyword: 화학개념이해

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A research of the Difference in Teaching Styles and Understanding of 9th Grade Students About Lead-iodide Precipitation Reaction Experiment (중학교 3학년 요오드화납 생성반응 실험의 수업 방식 차이와 학생들의 이해에 관한 연구)

  • Baek, Seong-Hye;Jeong, Seon-Ja
    • Journal of the Korean Chemical Society
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    • v.50 no.5
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    • pp.374-384
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    • 2006
  • this study, the teaching methods of three science teachers for lead-iodide precipitation reaction experiment were compared. The difference of 9th grade students' understanding was searched according to the science teachers teaching styles, also. Among the three teachers, Teacher A taught students based on the science textbook and allowed students to think themselves and to get out conclusion by the experiment. Teacher B and Teacher C gave students a lot of explanations related to interpretation of the experiment. The percentage of no response on the experiment report of Teacher A was higher than those of Teacher B and Teacher C. But the students of Teacher B and Teacher C tended to have limited thoughts because of the teachers explanations. In spite of the difference, it was common phenomenon that few students understood concepts through the experiment. A lot of students were interested in the experiment, but it was hard to understand Law of definite proportions according to the experiment.

A Study of High School Students' Conceptions for Density (고체와 액체의 밀도에 대한 고등학생들의 개념 조사)

  • Cho, In-Young;Kang, Young-Jin
    • Journal of the Korean Chemical Society
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    • v.54 no.6
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    • pp.809-817
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    • 2010
  • The primary purpose of this study was to investigate high school students' conceptual understanding of density for solids and liquids in pure and mixed substances who had preceded formal school science instruction on density and related topics. A concept assessment on density was developed and administered by demonstrative experiments accompanied by a written assessment test method to 120 general high school students in a metropolitan city. The scientific conceptions and alternative conceptions from students' responses were identified and the percentages of them were calculated. Then, their alternative conceptions and implicit theories on density were analyzed. About half of the students couldn't differentiate weight-volume-density and regarded density as an innate property of matter. Furthermore, the greater the number of variables involved in an experimental condition of the question, the more complicated and undifferentiated students' density concepts were. Students employed more improper variables such as particle size, intermolecular distance, surface tension, polarity of the solvent, etc. in explaining counter-intuitive observations. The implications for school science instruction were discussed.

The Influences of Student-Centered Analogical Instruction Using Physical Analogies in Chemistry Concept Learning (화학 개념 학습에서 물리적 비유를 사용한 학생 중심 비유 수업의 효과)

  • Byun, Soon-Hwa;Kim, Kyung-Sun;Choi, Sook-Yeong;Noh, Tae-Hee;Cha, Jeong-Ho
    • Journal of The Korean Association For Science Education
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    • v.27 no.7
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    • pp.631-638
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    • 2007
  • This study investigated the influences of a student-centered analogical instruction using physical analogies upon students' conception and application, retention of conception and application, perceptions of science classroom environment, and perceptions of analogical instruction. Six classes of seventh graders (N=208) at a middle school in Seoul were assigned to the control, the teacher-centered analogy (TCA), and the student-centered analogy (SCA) groups. They were taught about 'three states of matter' and 'motion of molecules' for 8 class hours. Analysis of the results revealed that the scores of the SCA group were significantly higher than those of the other groups in the conception test, retention test of conception and application, and perception test of science classroom environment. The scores of the SCA group in the application test were also higher than those of the other groups, but there was a significant difference only between the control and the SCA groups. The TCA group performed significantly better than the control group only in the test of the retention of application. In addition, the students in the SCA group exhibited more positive perceptions of the analogical instruction than those in the TCA group. Educational implications are discussed.

A Temporal Data Model for Managing Scientific Database (과학 응용 데이터베이스 관리를 위한 시간지원 데이터 모델)

  • 김진호;옥수호
    • The Journal of Information Technology and Database
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    • v.4 no.1
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    • pp.51-64
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    • 1997
  • 최근 컴퓨터 응용이 우주 항공, 천체 기상, 환경 관리, 공장 자동화(FA) 등의 분야로 확산되면서 물리, 화학, 생물, 기계 등의 과학 응용에서 생성되는 자료를 처리하는 기법에 대한 요구가 늘어나고 있다. 이들 과학 응용에서는 물리적 실험 장치나 측정 기계, 또는 시뮬레이션으로부터 데이터를 시간별로 측정(또는 수집)하므로 이들 과학 데이터는 시간에 종속된 데이터이다. 많은 과학 응용의 시간 지원 데이터는 과학 분야의 특성에 따라 매우 정밀한 시간 단위로 수집하기도 하고 실험 시작부터 경과된 상대적인 시간에 따라 데이터를 수집한다. 달력상의 시간을 사용하는 기존의 시간지원 데이터베이스는 과학 응용의 이러한 특징을 지원하지 못한다. 따라서 이 논문에서는 과학 실험 응용에서 요구하는 시간에 대한 특징과 요구 사항을 분석하고, 이들 과학 응용의 요구 사항을 만족하도록 확장한 새로운 시간 지원 데이터 모델을 제안한다. 이 모델에서는 실험이 경과된 상대적인 시간에 대한 데이터의 이력을 확장형 집합 개념을 사용하여 표현한다. 기존의 관계 데이터 모델과 유사하게, 이 모델은 집합 개념에 바탕을 두고 있으므로 데이터 모델과 그 연산의 의미를 쉽게 이해하고 사용할 수 있다는 장점이 있다.

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Effect of Groupong Considering Students' Teamwork Skills in Science Concept Learing via Small Group Discussion (소집단 토론을 통한 과학 개념 학습에서 조 활동 기술을 고려한 집단 구성의 효과)

  • Noh, Tae Hee;Im, Hee Yeon;Kang, Suk Jin
    • Journal of the Korean Chemical Society
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    • v.45 no.1
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    • pp.76-82
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    • 2001
  • In this study, the effects of grouping method (homogeneous/ heterogeneous) considering students' teamwork skills on their conceptual understanding, perceptions of science learning environments, communication anxiety, communication ability, and perceptions toward small group discussions were compared. Students were taught concerning changes of states, density, and dissolution for 9 class periods. The ANCOVA results indicated that there was no significant difference in the conceptions test scores. In the subcategory of 'students' negotiation' of the perceptions of science learning environments test, high teamwork skill students perceived more positively in the heterogeneous group, but low teamwork skill students in the homogeneous group. No significant differences were found in the communication anxiety. More students in the heterogeneous group perceived unequal participation as a disadvantage of the small group discussions than those in the homogeneous group.

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Using a Learning Progression to Characterize Korean Secondary Students' Knowledge and Submicroscopic Representations of the Particle Nature of Matter (Learning Progression을 적용한 중·고등학생의 '물질의 입자성'에 관한 지식과 미시적 표상에 대한 특성 분석)

  • Shin, Namsoo;Koh, Eun Jung;Choi, Chui Im;Jeong, Dae Hong
    • Journal of The Korean Association For Science Education
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    • v.34 no.5
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    • pp.437-447
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    • 2014
  • Learning progressions (LP), which describe how students may develop more sophisticated understanding over a defined period of time, can inform the design of instructional materials and assessment by providing a coherent, systematic measure of what can be regarded as "level appropriate." We developed LPs for the nature of matter for grades K-16. In order to empirically test Korean students, we revised one of the constructs and associated assessment items based on Korean National Science Standards. The assessment was administered to 124 Korean secondary students to measure their knowledge and submicroscopic representations, and to assign them to a level of learning progression for the particle nature of matter. We characterized the level of students' understanding and models of the particle nature of matter, and described how students interpret various representations of atoms and molecules to explain scientific phenomena. The results revealed that students have difficulties in understanding the relationship between the macroscopic and molecular levels of phenomena, even in high school science. Their difficulties may be attributed to a limited understanding of scientific modeling, a lack of understanding of the models used to represent the particle nature of matter, or limited understanding of the structure of matter. This work will inform assessment and curriculum materials development related to the fundamental relationship between macroscopic, observed phenomena and the behavior of atoms and molecules, and can be used to create individualized learning environments. In addition, the results contribute to scientific research literature on learning progressions on the nature of matter.

Improvement of Teachers' Scientific Knowledge researched by Difficulty and Development of teachers experienced in process of Conducting Scientific Inquiry (과학적 탐구 수행에서 초등교사가 겪은 어려움과 성장으로 탐색한 교사의 과학적 지식 향상 방안)

  • Lee, Dongseung;Park, Jongseok
    • Journal of the Korean Chemical Society
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    • v.66 no.1
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    • pp.42-49
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    • 2022
  • Many elementary school teachers' lack of scientific knowledge reveal as several problems in teaching science. Thus, elementary school teachers need to improve their scientific knowledge, but there is the limit to improve the teachers' scientific knowledge through activities based on lecture that conducted in process of training and retraining them. Therefore, Improvement for training science teacher to improve scientific knowledge of elementary school teachers would be searched in this study. Depth interview was conducted toward three elementary school teachers, who had conducted action research, to improve content knowledge of material domain within teaching process and elementary school science. Based on result of the interview, difficulty and development that the three teachers were commonly experienced in process of conducting scientific inquiry in action research were analyzed. One of the difficulties of the inquiry were to figure out how the three teachers, who participated in the interview, understand specific concept, what they do not understand, and what they should study more to understand the concept. And there was a circumstance that the teachers did not know how to apply procedural knowledge, which learned explicitly in the process of setting plan for conducting research, into real context. Since there was difference between knowledge that they understand disjunctively and context that observed in real circumstance, they faced difficulty. However, the teachers conducted analysis of topic, planning research, conducting research, discussion of the result by themselves with those difficulties Thus, the teachers mentioned that not only content knowledge had been improved, but understanding of procedural knowledge, which is not intended to improve, had been also improved. Besides, they also mentioned that comprehensive understanding content knowledge, which they already understood, was also helpful. And the teachers suggest that if there were chance to discuss and examine the scientific practices by consisting of group with colleagues rather than conducting it individually it would more efficient studying. Considering their suggestion, direction of training elementary school teachers for improving their scientific knowledge should be improved in a way to understand science concepts based on direct research about context that is generated in circumstance of studying group of the teachers. Consequently, it would contribute to improvement of teaching science by combining teachers' practice and understanding.

An Analysis of Science Textbooks and Internet Sites Related to Diffusion and Dissolution on the View Point of Particle Theory, and Development of Computer-Assisted Instruction Program (입자론의 관점에서 본 확산과 용해 개념에 관련된 과학 교과서 및 인터넷 자료 분석과 컴퓨터 수업 보조자료의 개발)

  • Kim, Ju Hyun;Lee, Dong Jun;Kim, Sun Kyoung;Kang, Seong Joo;Paik, Seong Hey
    • Journal of the Korean Chemical Society
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    • v.44 no.6
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    • pp.611-624
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    • 2000
  • In this study we analysed 3-12 grade science textbooks, many literatures and internet sites related to diffusion and dissolution concepts. From these data, we discovered that the explanations of diffusion that used in textbooks are not considered the site of collision with mediums, and confused with dissolution, state transition and effusion. In the case of dissolution, almost analysis data were short of the explanations of interaction effect. Most of all, the focus of dissolution explanations was to solve the calculation problems rather than to understand the concept. Every internet site was poor, just as the level of showing textbook contents with computer, so the only effect of using computer was the sense of sight and hearing. Chemistry must be understood nature phenomena with a view point of particle theory, but many textbooks and Internet sites didn't represent it sufficiently. We set up the correct scientific concept and linked micro world of particle theory with macro world of nature phenomena. With a use of computer which have the advantage of representing moving things, we developed the computer-assisted instruction programs related to diffusion and dissolution with the viewpoint of particle movement.

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Analysis of Problems in the Submicro Representations of Acid·Base Models in Chemistry I and II Textbooks of the 2009 & 2015 Revised Curricula (2009 개정교육과정과 2015 개정교육과정의 화학 I 및 화학 II 교과서에서 산·염기 모델의 준미시적 표상에 대한 문제점 분석)

  • Park, Chul-Yong;Won, Jeong-Ae;Kim, Sungki;Choi, Hee;Paik, Seoung-Hey
    • Journal of the Korean Chemical Society
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    • v.64 no.1
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    • pp.19-29
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    • 2020
  • We analyzed the representations of acid-base models in 4 kinds of Chemistry I and 4 kinds of Chemistry II textbooks of the 2009 revised curriculum, and 9 kinds of Chemistry I textbooks and 6 kinds of chemistry II textbooks of the 2015 revised curriculum in this study. The problems of the textbook were divided into the problems of definitions and the representations of the logical thinking. As a result of the study, the lack of the concept of chemical equilibrium had a problem with the representation of reversible reactions in the definition of the Brønsted-Lowry model in the Chemistry I textbooks of 2009 revised curriculum, it also appeared to persist in Chemistry I textbooks of 2015 revised curriculum which contains the concept of chemical equilibrium. The representations of logical thinking were related to particle kinds of conservation logic, combinational logic, particle number conservation logic, and proportion logic. There were few problems related to representation of logical thinking in Chemistry I textbook in 2009 revision curriculum, but more problems of representations related to logics are presented in Chemistry I textbooks in 2015 revision curriculum. Therefore, as the curriculum is revised, the representations of chemistry textbooks related to acid and base models need to be changed in a way that can help students' understanding.

Analysis of 'Ignorance' in Acid-base Models Contents of Chemistry I and Chemistry II Textbooks & Teacher's Guides in 2009 & 2015 Revised Curriculum (2009·2015 개정 교육과정 화학 I 및 화학 II 교과서 및 교사용 지도서에 제시된 산·염기 모델 내용에 대한 '이그노런스' 분석)

  • Lyu, Eun-Ju;Paik, Seoung-Hey
    • Journal of the Korean Chemical Society
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    • v.64 no.3
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    • pp.175-188
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    • 2020
  • The purpose of this study was to analyze chemistry textbooks and teachers' guidebooks from the perspective of 'Ignorance', one of the important features of model. This is because the emphasis is on developing modeling capabilities for students in the 2015 Revised Curriculum. For this, Arrhenius model and Brønsted-Lowry model were selected as acid and base models in neutralization reaction which are important contents in chemistry curriculum. The analysis criteria of this study were extracted by analyzing previous studies and four general chemistry textbooks dealing with 'Ignorance' related to acid and base neutralization reaction. Based on the analysis criteria, we analyzed nine chemistry I textbooks and teacher's guides and six chemistry II textbooks and teacher's guides of the 2015 revised curriculum. In addition, we analyzed contents of four chemistry I textbooks and teacher's guides and three chemistry II textbooks and teacher's guides in the 2009 revised curriculum for comparison according to revised curriculums. We analyzed the contents related to the concept of 'neutralization reaction', 'neutrality', 'quantitative relation of neutralization reaction', 'degree of ionization', and 'ionization constant'. Based on the results of this study, we proposed a way to present 'Ignorance' of the models in teachers' guidebooks that chemistry teachers can understand 'Ignorance' of model and teach modeling capabilities for students.