• Title/Summary/Keyword: Elementary science

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The Effects of MBL Programs on Academic Achievement and Science-Related Affective Characteristics of Elementary School Students in Laboratory Instructions (과학 실험 수업에서 MBL의 적용이 초등학생의 학업 성취도 및 과학 관련 정의적 특성에 미치는 효과)

  • Park, Sang-Yong;Park, Jae-Keun;Yeo, Sang-Ihn
    • Journal of Korean Elementary Science Education
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    • v.25 no.4
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    • pp.454-464
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    • 2006
  • The purpose of this study was to develop MBL(Microcomputer Based Laboratory) programs for sixth-grade elementary students in science laboratory instructions and to ascertain the effects of this program on academic achievement and science-related affective characteristics. In laboratory instructions, using the MBL was found to be effective in improving academic achievement for elementary students, especially in the domain of knowledge. In addition, it helped students to improve science-related affective characteristics. The experimental group showed higher levels, especially in the domains of cognition and interest. When our findings were analyzed in detail, the sub-domains that showed positive effects included 'cognition of science' in the domain of cognition, and interest toward science', 'interest toward science learning', 'interest toward science related activities', and 'anxiety for science' in the domain of interest. Male students exhibited improvement in the domain of cognition while female students showed improvement in the domain of interest. In conclusion, utilizing MBL programs as an experimental measurement in the real field of elementary science education can be said to be both positive and desirable.

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Survey on Teachers' Perception for the Consulting in Elementary Science Teaching (초등과학 수업 컨설팅에 대한 교사들의 인식조사)

  • Choi, Sun-Young;Noh, Suk-Goo
    • Journal of Korean Elementary Science Education
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    • v.27 no.1
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    • pp.23-30
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    • 2008
  • The purpose of this study was to provide the basic data for development of consulting model in elementary science class. For this, some questions on the teachers' perception for science instruction were surveyed to teachers : 13-item-questionnaires were given to 233 teachers in elementary school. The results of this study were as follows: Most of teachers were little understanding and experience of the science instruction consulting. They sensed that their science instruction were difficult, especially experimental activity in science class. They desired consulting mightly in their teaching methods for experimental activity. And it was found that most of them had a mind of consulting participation. Thus it is necessary to inform them the need of the instructional consulting. And in case of the development for the consulting manual, it should be consider the above results.

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An Interpretation of Modeling-based Elementary Science Lessons from a Perspective of Distributed Cognition (분산 인지의 관점에 따른 모델링 중심 초등 과학 수업의 해석)

  • Oh, Phil Seok
    • Journal of Korean Elementary Science Education
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    • v.36 no.1
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    • pp.16-30
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    • 2017
  • The purpose of this study was to interpret modeling-based elementary science lessons from a perspective of distributed cognition. Data sources included three consecutive elementary science lessons dealing with particle models of gases and students' worksheet generated from modeling activities during the lessons. The data were analyzed in ways that could reveal the affordances and constraints of students' mental models and an external model in the science textbook, as well as the evolution of the models. The results showed that the students' mental models and the external model provided both affordances for and constraints to scientific problem solving and that the models evolved in the process of overcoming the constraints. Implications for science lessons and science education research were suggested.

The Children's Verses as the Teaching/Learning Strategies in Science Education for Elementary Students and Teachers (초등학생과 예비$cdot$현직 초등교사에 대한 과학 교수학습 전략으로서 과학동시의 활용)

  • Kwon Nan-Joo
    • Journal of Korean Elementary Science Education
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    • v.24 no.5
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    • pp.487-494
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    • 2005
  • The purpose of study was to introduce and propagate the children's verses as the teaching/learning strategies in science education far elementary students and teachers. 238 pre-service teachers, 140 in-service teachers and 602 elementary students wrote the own verses and read colleague's verses with respect to science. In this situation, the writing was considered as creation and the reading was reception and appreciation for the verses. When they wrote the verses, the themes were not restricted except that they were related to science. Mostly, the subjects were something about science concepts, scientific phenomena or experimental instruments, etc. In addition, this study investigated the merits and demerits of the reading/writing activities of children's verses as the teaching/learning strategies in science classroom.

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Changes of the Format and Content of Science Textbooks of North Korean' Elementary School in the 2000's (2000년대 북한 소학교 자연 교과서의 체제와 내용 변화)

  • Noh Suk-Goo
    • Journal of Korean Elementary Science Education
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    • v.24 no.4
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    • pp.452-464
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    • 2005
  • Since the national curriculum and textbooks are essential to understand the country's educational system, the importance of the textbook analysis should be emphasized to understand the education in North Korea. In this study, the science textbooks of North Korean elementary schools published since the year 2000 were analysed in depth and compared with those of 1990's, then the change in North Korean elementary science education was investigated. As for the external format, the total pages of 3rd grade textbooks of 2000's decreased notably. The 4th grade textbooks show an emphasis on the integrating feature of season-related chapters. The analysis of each category using a content framework of TIMSS shows that the content proportion relating to Earth Science and Physical Science was increased, while the proportion relating to Biological Science was decreased. Besides, changes of proportion of each subcategories were analysed and discussed.

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Development and Application of a Letter Type Rubric for Guideline in Science Writing of Elementary School Students (초등학생의 과학 글쓰기 수행 안내를 위한 편지글 유형의 루브릭 개발 및 적용)

  • Son, Jin-Soon;Jeoung, Jin-Su;Paik, Seoung-Hey;Chun, Jae-Sun
    • Journal of Korean Elementary Science Education
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    • v.31 no.1
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    • pp.25-39
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    • 2012
  • The purpose of this study was to develop a letter type rubric as a learning method for elementary school students to learn science writing easily and efficiently. For this study, five topics in science textbooks were chosen and modified in everyday life situation. The rubric evaluation criteria were composed of four steps. Two classes of 4th grade of an elementary school in Seoul were selected for applying the developed rubric. The experimental group consisted of 25 students and control group consisted of 28 students. The letter type rubric was treated to experimental group. The results showed that there was a significant difference between two groups in the science writing ability after application. From the survey results, we could conclude that the rubric helps elementary school students to develop the science writing ability and confidence in writing.

The Perspectives of Pre-service Elementary Teachers on Science Education of Future (미래 과학교육에 대한 예비 초등 교사들의 인식)

  • Na, Jiyeon;Jang, Byung-Ghi
    • Journal of Korean Elementary Science Education
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    • v.36 no.1
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    • pp.85-94
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    • 2017
  • The purpose of this study was to investigate the perspectives of pre-service elementary teachers on science education of future by using Draw-A-Science-Teacher-Test Checklist and open-ended questionnaire. The subjects of this study were 136 pre-service elementary teachers. The results of the research are as follows. The pre-service teachers thought that the physical environment reflecting the latest science and technology for science education will be developed in the future. However, few respondents indicated that student-centered equipment or a free and creative classroom environment would be provided. Second, they predicted that there would be changes in teacher's activities due to the introduction of advanced facilities and equipment, but most of the other teachers' activities were thought to be similar to those of current teachers. Third, the pre-service elementary teachers thought that a variety of new technologies would be used in science education and science teachers would mainly teach high-technology, IT technology, science knowledge, and newly discovered science concepts. In addition, we found that pre-service elementary teachers' images were more 'teacher-centered' than 'student-centered'. These results show that pre-service elementary teachers are expected to utilize the latest science and technology actively in science education in 2030 and that it will lead to changes in the physical environment, teachers' activities, education contents, and teaching and learning methods. In addition, they viewed acquisition of science concept as an important goal of science education in the future and had different points of view from the current science education curriculum and scholars' emphasis on educational research for the future.

Prospective Elementary School Teachers' Perceptions of Inquiry-Oriented Teaching Practice, with an Emphasis on' Students' Scientific Explanation (학생들의 과학적 설명을 강조하는 탐구 지향 교수 활동에 대한 예비 초등 교사들의 인식)

  • Jang, Shin-Ho
    • Journal of Korean Elementary Science Education
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    • v.25 no.1
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    • pp.96-108
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    • 2006
  • The purpose of this study was to investigate how prospective elementary school teachers perceived teacher's inquiryoriented teaching practice, with an emphasis on students' scientific explanations based on scientific evidence. For this study, 94 prospective elementary school teachers were participated. 14 among 94 participants had chances to intensively experience this particular teaching methods for 15 weeks. All of the 94 participants observed the intended science teaching practice for 4th graders in two different elementary schools, which utilized the science talks emphasizing students' scientific explanation activity. For quantitative data analysis, they were asked to provide their reaction to the science teaching methods after their classroom observation. For qualitative data analysis, 5 among the participants, who had relatively long term experience with this teaching practice, were chosen to interview in order to understand their individual reasons of the ways they perceived about the inquiry-oriented teaching methods boosting students' scientific explanation. The results show that the prospective elementary teachers generally thought the emphasis of students' scientific explanation based on scientific evidence could enhance young elementary students' science content understanding, stimulate their curiosity/interests, and further develop their ability to engage actively in scientific discussions. However, some prospective teachers tended to think that the science teaching. methods would not be effective in terms of managing science classes, though. This study concludes that the prospective teachers tended to hold an endemic dilemma. On the one hand, they had their clear preference to the inquiry-oriented teaching practice as the most ideal teaching methods. On the other hand, they also had their persistent hesitance in using these methods due to their fear that elementary students might not adequately grasp the important science content when engaged in scientific discourse through an inquiry-oriented class.

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A Study on the Application of Artificial Intelligence in Elementary Science Education (초등과학교육에서 인공지능의 적용방안 연구)

  • Shin, Won-Sub;Shin, Dong-Hoon
    • Journal of Korean Elementary Science Education
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    • v.39 no.1
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    • pp.117-132
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    • 2020
  • The purpose of this study is to investigate elementary school teachers' awareness of Artificial Intelligence (AI) and find out how to apply it in elementary science education. The survey was conducted online and involved 95 teachers working in the metropolitan area. The results of this study are as follows. First, teachers need to learn about the general characteristics of AI and how to apply it to education. Second, science classes had the highest preference for AI among elementary school subjects. Third, the preference for AI application by elementary science field was 68.4% for earth and space, 54.7% for exercise and energy, 32.6% for matter, 27.4% for life. Fourth, AI-based Science Education (AISE) teaching- learning strategies were developed based on AI characteristics and the changing perspective of elementary science education, AISE's teaching-learning strategies are five: 'automation', 'individualization', 'diversification', 'cooperation' and 'creativity' and teachers can use them in teaching design, class practice and evaluation stages. Finally, the creative problem-solving Doing Thinking Making Sharing (DTMS) model was devised to implement the creativity strategy in AISE. This model consists of four-steps teaching courses: Doing, Thinking, Making and Sharing based on the empirical learning theory. In the future, follow-up research is needed to verify the effectiveness of this model by applying it to elementary science education.

Analysis of Elementary School Teachers' Laboratory Instruction Process through Experiments from Science Laboratory and Engineering Laboratory (과학적 실험과 공학적 실험에서 초등교사의 수업 과정 분석)

  • Lim, Jae-Keun;Lee, So-Ree;Yang, Il-Ho
    • Journal of Korean Elementary Science Education
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    • v.29 no.4
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    • pp.515-525
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    • 2010
  • The purpose of this study was to analyze of how the elementary school teachers lead their classes of a science laboratory instruction and an engineering laboratory instruction in a science subject class. For this study, science laboratory and engineering laboratory lessons were selected and for each science and engineering laboratory lesson, five elementary school teachers were video-recorded of their lessons. The science and engineering laboratory lessons were analyzed by utilizing processes of the science model and the engineering model based on Schauble et al. (1991). The results of these studies are as follows: In science laboratory instruction, some participants didn't distinguish the difference between the science laboratory goal and the engineering laboratory goal. All of participants used search and end strategy of engineering laboratory for science laboratory lesson. In engineering laboratory instruction, all of participants guided to students engineering laboratory goal and used inferences and search strategy of engineering laboratory. However they didn't use the trial and error strategy or redesign which can be an essential element in engineering and design process. Educational implications are discussed.

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