• Title/Summary/Keyword: 학교과학탐구

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The Web based Elementary Science Discovery Learning System (웹기반 초등학교 과학과 발견학습 시스템)

  • Lee, Jong-Hwa;Han, Kyu-Jung
    • Journal of The Korean Association of Information Education
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    • v.12 no.1
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    • pp.89-97
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    • 2008
  • The purpose of this study was to design a system of web-based discovery learning and testify its effectiveness, in order to complement the difficulties of discovery learning considered to be hard to be applied to the school education because of shortage of time and materials, though discovery learning is one of inquiry learning emphasized in the 7th national curriculum of elementary science. As for the process of testifying, it compared the differences between comparative group with normal discovery learning model and experimental group with web-based system of discovery learning model, targeting the subject of extending spring among the 4th grade science. As a result, the experimental group achieved higher academic performance compared to the comparative group applied to the normal discovery learning model.

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Effects on Scientific Inquiry, Scientific Attitudes, and Scientific Achievements of Experimental Classes for Kinetics Unit using Self-Regulated Learning Strategy (반응속도 실험 수업에서 자기조절 학습 전략이 과학탐구 능력, 과학적 태도 및 학업성취도에 미치는 영향)

  • Jeong, Si-Hwa;Kim, Bong-Gon;Koo, In-Sun;Park, Jong-Keun
    • Journal of The Korean Association For Science Education
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    • v.30 no.6
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    • pp.681-692
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    • 2010
  • The purpose of this study is to analyze the teaching-learning effect of using self-regulated learning strategy on experimental classes for the 'kinetics' unit of 10th grade science textbook. Six classes were chosen and classified into two groups: the first group, the control group, was taught with the regular laboratory activity and the other group, the experimental group, was taught with the teaching-learning method using self-regulated learning program. After the laboratory activity for the unit using self-regulated learning program, the mean values of the scientific inquiry, scientific attitudes, and performance assessment of the experimental group were larger than those of the control group. There were significant differences between the two groups in the post-test. With the results of the post-test for the experimental group, the self-regulated learning program has significant relationships on scientific inquiry, scientific attitudes, and scientific achievements.

A Case Study on Scientific Inquiry and Argumentative Communication in Earth Science MBL Classes (지구과학 MBL 수업의 과학 탐구와 논의적 의사소통에 관한 사례 연구)

  • Oh, Jin-Ah;Lee, Sun-Kyung;Kim, Chan-Jong
    • Journal of the Korean earth science society
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    • v.29 no.2
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    • pp.189-203
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    • 2008
  • Microcomputer Based Laboratory (MBL), by offering accurate and effective data collection and real-time graphs, enables students to reduce experiment time and, thereby, have deeper discussions concerning experimental results. This helps to emphasis the essential aspect of scientific inquiry; the process communication. Therefore, this study examined secondary school earth science MBL lessons with regards to the five basic aspects of scientific inquiry: "Asking", "Evidencing", "Explaining", "Evaluating" and "Communicating". It then investigated the level of argumentative communication between the students and teachers and also among the students themselves. For this study, three classroom activities were observed and videotaped, and teaching materials, textbooks and students' notes were collected. The transcribed data were analyzed from the perspective of scientific inquiry level and argument frames. The results showed that the scientific inquiry levels of the three classes were similar, except for the "Communicating" aspect, which appeared in only one episode. "Asking" was carried out by the teacher and then students were directed to collect certain data in the "Evidencing" stage. Furthermore, students were given possible ways to use evidence to formulate explanations and connections through the "Explaining" and "Evaluating" stages. In the argumentation analysis, most argumentative communication was identified as being associated with a given procedure, rather than with any scientific phenomena. In only one episode, did "Communicating" relate directly to any scientific phenomena. It can be concluded, that although MEL places emphasis on communication for authentic scientific inquiry, the environment required for such inquiry and argumentative communication can not be easily created in the classroom. Therefore, in order for authentic inquiry to take place in the MBL classroom, teachers should provide students with the opportunity to develop meaningful argumentation and scaffolding abilities.

Application and development of the web-based distant learning materials for elementary gifted students in science: Part 1 (초등과학영재를 위한 원격교수 학습 자료 개발 몇 적용1- 토론방 활동 분석)

  • 박종석;오원근;박종욱;정병훈
    • Journal of Gifted/Talented Education
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    • v.13 no.2
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    • pp.43-56
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    • 2003
  • In this study, learning materials that can be applied for web-based distant learning model were developed based on the characteristics of elementary school science in which investigation skills and thinking ability are considered to be important. And the effect of students' activity in a discussion room on student's investigating and thinking ability was investigated. Through very active on-line discussion, students showed their ability to come up with new ideas and to design and implement diverse experimental methods. Especially, since all of the study tasks given to the students were aimed to utilize experimental means and tools that are so common in everyday life, shortfalls that might reside in the web-based distant learning program could be overcome and students' investigative activity might be stimulated.

Perspectives of College Students and High School Science Teachers on Factors Affecting College Science Learning (대학 과학 학습에 영향을 주는 요인에 대한 대학생과 고등학교 과학교사의 인식)

  • Hong, Mi-Young;Kang, Nam-Hwa;Kim, Joo-Ah
    • Journal of the Korean Chemical Society
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    • v.55 no.5
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    • pp.875-881
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    • 2011
  • This study examined factors influencing college science learning from the perspectives of college students and high school science teachers. Using a survey created based on focus group interviews, college science majors and high school science teachers rated various factors of high school learning that positively influenced college science learning. Findings suggested that the perceptions differed by college major: the physics major students considered math proficiency and logical thinking skills as the important factors; chemistry major students and biology major students considered English proficiency and basic scientific knowledge as the most important factors. Both college students and science teachers emphasized basic science knowledge and math proficiency. However, differences between the two groups were also found in that the students perceived more need to learn about experimentation than the teachers whereas the teachers had a priority in increasing advanced science content.

Analysis of the Nature of Science (NOS) in Integrated Science Textbooks of the 2015 Revised Curriculum (2015 개정 교육과정 통합과학 교과서의 과학의 본성(NOS) 분석)

  • Jeon, Young Been;Lee, Young Hee
    • Journal of Science Education
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    • v.44 no.3
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    • pp.273-288
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    • 2020
  • This study aims to investigate the presentation of the Nature of Science (NOS) in integrated science textbooks of the 2015 revised curriculum. The five integrated science textbooks published by the revised 2015 curriculum were analyzed with the conceptual framework of the four themes of the Nature of Science (NOS) (Lee, 2013) based on scientific literacy. The four themes of the NOS are 1. nature of scientific knowledge (theme I), 2. nature of scientific inquiry (theme II), 3. nature of scientific thinking (theme III), and 4. nature of interactions among science, technology, and society. The reliability of the textbooks analysis was measured between two coders by the Cohen's kappa and resulted in between 0,83 and 0,96, which means the results of analysis was consistent and reliable. The findings were as follows. First, overall theme II, nature of scientific inquiry emphasized on the integrated science textbooks of the 2015 revised curriculum by devoting the contents over 40 % in the all five publishing companies' textbooks. Second, while the theme II, nature of scientific inquiry was emphasized on the textbooks regardless of the publishing companies, other themes of the NOS were emphasized in different portions by the publishing companies. Thus, the focus among other three themes of the NOS was presented differently by the publishing companies except that in theme II, nature of scientific inquiry was most emphasized on integrated science textbooks. Third, the presentation of the NOS was identified similarly across the topics of integrated science textbooks except on topic 4. Environment and Energy. The theme IV, nature of interactions among science, technology, and society was emphasized reasonably only in the topic of Environment and Energy of the textbooks. Finally, the presentation of the NOS in the integrated science textbooks of the 2015 revised curriculum were more balanced among the four themes of the NOS with focus on the scientific inquiry compared to the previous curriculum textbooks.

Analysis of MBL Experiments from the Korean Secondary Science and Chemistry Textbooks Based on 2007 and 2009 Revision (2007 개정 및 2009 개정 중등 과학 및 고등학교 화학 교과서의 MBL 실험 분석)

  • Jung, Eun-a;Cha, Jeongho;Kim, Inwhan
    • Journal of Science Education
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    • v.40 no.3
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    • pp.254-266
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    • 2016
  • In this study, MBL experiments in the Korean secondary science textbooks and chemistry textbooks under the 2007 and the 2009 curriculum revision were analyzed in terms of curriculum revision era, grade, context of experiment in the textbook, field of science, topic, sensor, and publisher. As a result, 25 MBL experiments were found in the science textbooks under the 2007 revision, and 29 experiments under the 2009 revision (19 for middle school textbook and 10 for high school textbook). MBL experiments in middle school textbooks were not increased after curriculum revision while those in high school textbooks appeared for the first time. Most of them were in the textbooks for grade 7 and presented as an essential experiment rather than optional one. Motion sensor and temperature sensor were used most frequently, and oxygen sensor and carbon dioxide sensor were followed. In aspect of publishers, a frequency of MBL experiment was decreased in most textbook and some publishers didn't include MBL experiment at all. Based on these results, educational implications were discussed.

Effects of Science high school students' Competency through Intensive Research and Education Program in KAIST (과학기술특성화대학(KAIST)을 중심으로한 R&E 집중연구가 과학고등학교 학생에게 미치는 영향)

  • Choi, Jinsu;Kim, Young Min;Lee, Young Ju
    • Journal of The Korean Association For Science Education
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    • v.39 no.6
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    • pp.729-738
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    • 2019
  • Research and Education(R&E) program has been emphasized for scientifically gifted students since it can improve scientific research abilities and problem solving abilities because it provides scientific research experiences with professional researchers. The purpose of this study is to investigate the effect of R&E program on creative leader competency and science career orientation. For this study, 62 science high school students participated from 78 science high school students participating in an R&E program. Pre and Post surveys of creative leader competency and science career orientation were administered to the students. The results showed that R&E program improved students' creative leader competency in intellectual and affective characteristic. However, there are no differences in science career orientation because science high school students already had high science career orientation. The implications of this study were discussed.

The "Pan-National Scientification Movement" in Elementary Schools ('국민학교'로 들어온 '전(全) 국민의 과학화운동')

  • Kang, Eugene
    • Journal of Korean Elementary Science Education
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    • v.43 no.2
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    • pp.301-321
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    • 2024
  • This study aims to elucidate the historical origins of the long-term demand for the integration of "science subject classes" and "science-related events" within the context of science education for teachers. During the 1970s, science education in elementary schools faced a dual challenge marked by the tension between implementing the third curriculum, which emphasized fundamental science, and the "Pan-National Scientification Movement," which focused on technology education. The Ministry of Education was compelled to integrate the sudden demands of the Yushin regime into the ongoing third curriculum. As these demands emerged from dual policy directives, activities related to elementary science education were subsequently categorized into formal science subject classes and extracurricular science-related events. Although the movement did not directly alter the curriculum, it instigated modifications in personnel structure, activity spaces, and evaluation systems within schools. The introduction of the Pan-National Scientification Movement in elementary schools resulted in changes including the establishment of a new "science lead teacher system," the creation of a dedicated "science corner," and the implementation of a "science badge system." Although the movement was abruptly introduced, it ostensibly contributed to the advancement of the inquiry-oriented approach promoted by the third curriculum. Paradoxically, this advancement was facilitated by the integration of the consequences of the movement into schools' autonomous, extracurricular activities spearheaded by frontline education offices and schools. Although the movement represented a government-driven policy at a particular juncture in time, the manner in which science education practitioners responded to urgent governmental mandates, while preserving the integrity of the long-established third curriculum framework, involved dividing education activities into subject-specific classes and extracurricular science activities. Examining how science education practitioners in the 1970s proactively addressed these challenges offers valuable insights for the science education community in adapting to the current rapidly evolving educational landscape.

Applications for Self-Regulating Learning Strategy to Quantitative Relationships in Chemical Reaction (탐구실험 수업에 자기조절학습 전략을 적용: 학업성취도 및 과학적 태도에 대한 효과)

  • Kim, Yeon Chul;Park, Jong Keun
    • The Journal of the Convergence on Culture Technology
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    • v.7 no.1
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    • pp.487-495
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    • 2021
  • Using self-regulation learning strategies that can cultivate the creative and critical thinking required in the era of the Fourth Industrial Revolution, it was applied to the exploration experimental class of the section 'quantitative relationship in chemical reactions' in high school chemistry and the effects on academic performance and scientific attitudes were analyzed. In case of academic achievement, although there was no meaningful difference between the two groups in the pre-test, the average value of the experimental group was significantly higher in the post-test. In the case of scientific attitudes, the difference in average points between the two groups was the greatest in readiness and curiosity. In the post-test of the experimental group, academic achievement showed the highest correlation with meta-cognition and scientific attitude with behavioral regulation, respectively. Considering the effectiveness of metacognition and scientific attitudes, self-regulation learning strategies are the most suitable teaching-learning forms for creativity and personality education in this era.