• Title/Summary/Keyword: 통합 탐구 기능

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A Comparative Study of Knowledge Integration in the Textbook and Students' Mental Model about the Phases of the Moon (달의 위상 변화에 관한 교과서의 지식 통합 과정 및 학생 정신 모델의 비교 연구)

  • Sung, Na-Hae;Choe, Seung-Urn
    • Journal of the Korean earth science society
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    • v.29 no.2
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    • pp.163-174
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    • 2008
  • In this study, we compared textbook knowledge organization with students' mental models to contribute to a more well-designed instruction scheme. The selected science content was the cause of moon phases. We investigated 9 textbooks and 25 third-year middle school students. Patterns and features in participants' mental models were identified through cross inter-rater data analysis by 9 researchers, including in service teachers and experts in science education. According to the results, observing and modeling are the main activities engaged in when dealing with moon phases. The activities consisted of such concepts as: lunar revolution, the sun's parallel rays, the illuminated half of moon, and the relative positions of the sun, moon, and earth. Each concept involved inquiry skills such as: creating and manipulating models, utilizing the relationship between time and space, and communicating. However, the most important skills which are required for authentic scientific inquiry, namely controlling variables and formulating hypotheses, were missing. We categorized students' mental models into three types: scientific models, mixed models, and alternative models. The knowledge structure of each of the models was also discussed in this paper. Consequently, it was found that, typically, students were not given enough opportunities to strengthen the connection among ideas.

Development And Application of CNP Model for the Enhancing Creativity of Scientifically Gifted Students (과학영재의 창의성 신장을 위한 CNP 모형의 개발과 적용)

  • Hwang, Yo-Han;Park, Jong-Seok
    • Journal of Gifted/Talented Education
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    • v.20 no.3
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    • pp.847-866
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    • 2010
  • Enhancing creativity is possible to offer systematic education programs and several conditions as variable thinking, experiment lesson, opened-situation. We developed CNP model as program for enhancing creativity. The CNP model emphasizes that parts of problem finding, embodying and solving ability and includes scientific problem finding tool, Integrated Process Skills and Science Writing Heuristic. The CNP Model is comprised of six step. We developed teachers' guide and student's worksheets for application. Result of applied CNP model to students of scientifically gifted education center in K University, students were able to enhanced originality and fluency and had solved problems by creative way. And creative problem finding, embodying and solving ability were increased. Therefore, the CNP model was effective in enhancing the creativity of scientifically gifted.

Development and Application of Integrative STEM (Science, Technology, Engineering and Mathematics) Education Model Based on Scientific Inquiry (과학 탐구 기반의 통합적 STEM 교육 모형 개발 및 적용)

  • Lee, Hyonyong;Kwon, Hyuksoo;Park, Kyungsuk;Oh, Hee-Jin
    • Journal of The Korean Association For Science Education
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    • v.34 no.2
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    • pp.63-78
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    • 2014
  • Integrative STEM education is an engineering design-based learning approach that purposefully integrates the content and process of STEM disciplines and can extend its concept to integration with other school subjects. This study was part of fundamental research to develop an integrative STEM education program based on the science inquiry process. The specific objectives of this study were to review relevant literature related to STEM education, analyze the key elements and value of STEM education, develop an integrative STEM education model based on the science inquiry process, and suggest an exemplary program. This study conducted a systematic literature review to confirm key elements for integrative STEM education and finally constructed the integrative STEM education model through analyzing key inquiry processes extracted from prior studies. This model turned out to be valid because the average CVR value obtained from expert group was 0.78. The integrative STEM education model based on the science inquiry process consisted of two perspectives of the content and inquiry process. The content can contain science, technology, engineering, and liberal arts/artistic topics that students can learn in a real world context/problem. Also, the inquiry process is a problem-solving process that contains design and construction and is based on the science inquiry. It could integrate the technological/engineering problem solving process and/or mathematical problem solving process. Students can improve their interest in STEM subjects by analyzing real world problems, designing possible solutions, and implementing the best design as well as acquire knowledge, inquiry methods, and skills systematically. In addition, the developed programs could be utilized in schools to enhance students' understanding of STEM disciplines and interest in mathematics and science. The programs could be used as a basis for fostering convergence literacy and cultivating integrated and design-based problem-solving ability.

변형펩타이드(Peptide Mimetics) 연구동향

  • Choe, Jin-Ho
    • Bulletin of Food Technology
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    • v.15 no.2
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    • pp.3-24
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    • 2002
  • 펩타이드와 단백질은 전사, 번역, 후번역 단계에 걸친 모든 생물학적 반응을 조절한다. 그러나 분자수준에서 구조와 기능에 대한 우리의 이해는 초보적인 수준이다. 구조와 기능의 연관성에 대한 문제는 펩타이드와 단백질 자체에 대한 것과는 좀 다르다는 것을 명확히 할 필요가 있다. Multidomain을 갖는 단백질은 작고 통합적이며, 구조적으로 제한된 부분으로 쪼개는 것은 천연 단백질의 활성을 모방하여 저분자의 nonpeptide를 설계하는데 있어서 주요한 일이다. 결정적인 역할을 수행하는 domain을 모방하는 것은 특이성과 치료 효과에 있어서 자연적으로 얻어지는 단백질 물질과 비교하여 이로운 특성을 갖을 수 있고 분자 인지 분야에 관한 연구에 유용한 단서를 제공한다(Chen etal., 1992). 한편 펩타이드는 환경에 의해 구조가 심하게 영향을 받아 특성이 쉽게 변한다(Marshall et al., 1978). 수용액 내에서 이러한 구조적 유동성 때문에 그들이 결합할 수용체나 생리활성을 띄는 구조를 결정하는 것은 어렵고 복잡한 일이다(Fauchre,1987; Hruby, 1987). 구조를 한정하면 이러한 결정을 매우 쉽게 할 수 있다(Hrubyet al., 1987). 단백질 모방학은 분자지각 연구에 강력한 수단이며, 복잡한 단백질과 펩타이드의 구조-기능관계를 탐구하고 분석하는데 독특한 방법이다. 이 장에서는 매우넓고 빠르게 확장되고 있는 Peptidomimetic연구를 간략히 소개하고 있다. 단 본문은 기술 범위를 N-Methylated 아미노산과 스테로이드 등으로 제한하여 소개한다.

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Analysis of Question Patterns Appearing in Teaching Demonstrations Which Applied Science Teachings Model Prepared by a Pre-service Biology Teacher (생물 예비교사의 과학수업모형을 적용한 수업 시연에 나타난 질문 유형 분석)

  • Jo, In Hee;Son, Yeon-A;Kim, Dong Ryeul
    • Journal of Science Education
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    • v.36 no.2
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    • pp.167-185
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    • 2012
  • This study aimed at finding points of improvement in teaching expertise by analyzing the question patterns that appeared during teaching demonstrations which applied science teaching models prepared by a pre-service biology teacher. The question analysis frame for analyzing question types were categorized largely into the question types of Category 1 (questions in cognitive domain, questions with research function, questions in affective domain), Category 2 (repeated questions, questions for narrowing the range, practice questions), and Category 3 (questions on student activity progress, memory questions, and thinking questions). The results of analyzing question patterns from five different science teaching models revealed a high frequency of questions in the fields of cognition and memory. For the circular learning model, questions from the cognitive field appeared the most often, while, student activity progressive questions in particular were used mostly in the 'preliminary concept introduction stage' of the circular learning model and the 'secondary exploratory stage', in which experiments were conducted, and displayed the characteristics of these stages. The discovery learning model combined the courses of observation, measurement, classification and generalization, but, during teaching demonstrations, memory questions turned up the most, while the portion of inquisitive function questions was low. There were many questions from the inquisitive learning model, and, compared to other learning models, many exploratory function questions turned up during the 'experiment planning stage' and 'experiment stage'. Definitional questions and thought questions for the STS learning model turned up more than other learning models. During the change of concept learning model, the five concepts of students were stimulated and the modification of scientific concepts was very much aided by using many memory questions.

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Effects of Inquiry Activity through Growing Lettuce on Science Inquiry Skills for Five Grade Elementary School Students (상추 기르기를 통한 탐구활동이 초등학교 5학년의 과학탐구능력에 미치는 영향)

  • Jeong, Sun Jin;Moon, Ji Hye;Lee, Sang Mi;Jo, Hye Jin
    • Journal of Agricultural Extension & Community Development
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    • v.20 no.4
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    • pp.1023-1043
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    • 2013
  • This study has a purpose to research the effects of 'growing lettuce program for science inquiry skills' on science inquiry skills' on science inquiry skills for five grade elementary school student. The program which applied in this research was integrated by plants that could be grown easily for teachers and students and inquiry factors of elementary school science curriculum. To achieve the purpose, the 'Growing lettuce program for science inquiry skills' was provided for total 10 times, eighty minutes every week, through the discretionary activity time from April 5 to June 14 2013. The experimental group was fifth grade one class of H elementary school located in Suwon, and control group was fifth grade other class in the same school. We investigated scientific inquiry competence before and after the survey of two groups all. The total scores for scientific inquiry competence for experimental group and control group were increased significantly before and after running the 'Growing lettuce program for science inquiry skills'. However, the experimental group showed more improvement in six inquiry factors of observation, classification, inference, expectation, data interpretation, and hypothesis establishment than the control group.

A Study on the Teaching Methods of Classification in view of Curriculum Convergence (교과 융합의 관점에서 분류하기 지도방안 고찰)

  • Kim, YuKyung
    • Education of Primary School Mathematics
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    • v.21 no.2
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    • pp.193-208
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    • 2018
  • Classification is presented in the curriculum of elementary school mathematics, science, Korean language, and integrated subjects as the major function that needs to be learned. In addition, mathematics textbooks teach the classification as a basic process for organizing and interpreting collected materials in a separate unit. So, we analyzed the curriculum documents and textbooks of mathematics, science, Korean language, and integrated subjects. And we explored how to teach the classification in the context of mathematics subject. As a result, it is necessary to find different classification criteria in conjunction with detailed observation and investigation activities, and to teach that considering the circumstances and purpose of the classification. It also provided implications on how to revive converged classes that focus on big ideas and skills, which are commonly offered by various subjects.

A Case Study on Teaching and Learning of the Linear Function in Constant Velocity Movement: Focus on Integrated Curriculum of Mathematics and Science (등속도 운동에서 일차함수 교수-학습 과정에 관한 사례연구: 수학과 과학의 통합교육 관점을 기반으로)

  • Shin, Eun-Ju
    • Journal of Educational Research in Mathematics
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    • v.15 no.4
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    • pp.419-444
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    • 2005
  • As a theoretical background for this research, the literatures which focus on teaching and loaming of connecting with mathematics and science were investigated. And the rationale of integrated curriculum on the basis of the 7th mathematics curriculum and the goal of mathematics education and the forms of integrated curriculum and the integrated curriculum in foreign school were investigated. Depending on this review, the implement method of the integrated curriculum of mathematics and science in Korea school is suggested as the following: It requires designing inter-disciplinary into-grated problem or various teaching and learning materials which are based upon concept, skill, and principle by commonality found across the subject matter. Based on the analyses upon described above, three inter-disciplinary integrated teaching and learning materials were developed. And then, based on the case stud)', the research questions were analyzed in depth. Students could understand the developing process of linear function, develop the formula and grape representing the relationship between time and velocity, time and distance, and interpret realistic meaning of the slope.

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Development and Effectiveness of Learning Programs on Visualization of Data for Gifted Students in Elementary School Science - Focusing on Using the Tableau Program - (초등학교 과학영재 학생을 대상으로 한 데이터 시각화 학습 프로그램 개발 및 효과 - Tableau 프로그램 활용을 중심으로 -)

  • Kim, Hyunguk
    • Journal of Korean Elementary Science Education
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    • v.43 no.1
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    • pp.18-34
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    • 2024
  • This study aimed to examine the effects of a science-learning program based on data visualization on the science inquiry and creative problem-solving abilities of elementary school science-gifted students. Accordingly, this research developed a data visualization science-learning program using Tableau, which had twelve sessions. The subjects encompassed 61 students in three gifted classes taught by the researcher. The scientific inquiry ability test and creative problem-solving ability test modified to suit the environment and situation were given to the subjects before and after the treatment. The results confirmed that science learning based on data visualization had no significant impact on basic science inquiry skills. Among the subdomains, significant results were obtained only in the reasoning subdomain. Moreover, integrative inquiry ability was significantly affected, unlike basic inquiry abilities. Among the five subdomains, significant differences were observed in three subdomains (data conversion, data interpretation, and variable control). However, concerning the generation of hypotheses and the control of variables, students exhibited confusion regarding the process of variable control and the exact concept of hypothesis development. This study also evaluated the effects of the program's application on creative problem-solving abilities and found a significant impact. Additionally, it was significantly different in all four subdomains. The results were interpreted to be owing to the students' mastery of Tableau's features, collaborative learning through discussion and debate, and the thematic impact of the data visualization program emphasizing procedural thinking. Finally, this study presented implications for science learning based on data visualization and the future direction of education.

Integrated Science Teachers' Implementation and Changes to Apply the Curriculum-Instruction-Assessment (통합과학 교사의 교육과정-수업-평가 실행 및 변화 조사)

  • Park, HyunJu;Kim, NaHyeong
    • Journal of the Korean Chemical Society
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    • v.64 no.6
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    • pp.429-437
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    • 2020
  • This study investigated a total of 529 integrated science teachers' implementation and changes to apply the curriculum-instruction-assessment. Data was collected through online survey on scientific competencies and skills, teaching-learning and assessment methods, changes of teacher's preparation, topics/materials, teaching-learning, and assessment to apply the curriculum-instruction-assessment as teaching integrated science. The results of the study were as follows: first, in the integrated science class, teachers implemented more on scientific communication and scientific inquiry among scientific core competencies, and analysis and interpretation of data collection and communication among scientific skills. Teachers often taught in lectures and used multiple choice items and short essay for evaluation. Teacher groups with less than 10 years of teaching experience appeared to be less active in teaching scientific core competencies and skills than those with more than 10 years. Second, Teachers have increased more time and efforts to search and to organize various materials in addition to textbooks, and try to integrated concepts in various fields to prepare learning topics and textbooks. Third, even though teachers made little change in implementing the process-oriented assessment, they used instructional strategies to increase student engagement in the integrated science class, restructured the instruction to provide immediate feedback after conducting the assessment. It is necessary to build a system that ensures fairness and credibility of evaluation while respecting the autonomy and professionalism of teachers.