• Title/Summary/Keyword: 과학내용학

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The Analysis of Educational Effect of The Horticultural Picture Books Focused on B.S. Bloom's Taxonomy of Educational Objectives (블룸(B.S. Bloom)의 교육목표에 따른 원예그림동화책과 교육적 효과분석)

  • Kwack, Hye Ran;Kim, Sun Ah
    • Journal of the Korean Society of Floral Art and Design
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    • no.41
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    • pp.155-169
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    • 2019
  • This study aims at analyzing educational effects of the horticultural picture books, which are depending on B.S. Bloom's taxonomy of educational objectives. After collecting various horticulture-related picture books, this study classified them by the B.S bloom's educational taxonomy. There were objectives of the cognitive domain, objectives of the affective domain, psychomotor domain in plants and gardening activities. And the cognitive domain, affective domain, psychomotor domain subdivided into the sub-region can learn from the horticulture picture books to teach the unique characteristics could be found. To know the teachers' perceptions of the effectiveness of using picture books in the horticulture class, questionnaire were analyzed from the survey. As a result, by Bloom's educational taxonomy area they preferred children's books. Teacher think that fairy tale books promote the interest of the children and have the advantage of fostering creativity. In addition, an easy point to get in school, lack of hours in the effective education to help horticulture that was expected. The cognitions of most effective storytelling method of horticulture picture book was story immersion. And the effective activity after reading picture book was drawing picture. Also, the most effective teaching materials was a real-life picture.

Evaluation of e-learning in the anatomical education : The correlation between utilization frequency, satisfaction and academic achievement (해부학 가상강의에 따른 가상강의실 활용도, 만족도, 학업성취도 간의 상관관계)

  • Kim, Jee-Hee;Park, Jeong-Hyun
    • Proceedings of the KAIS Fall Conference
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    • 2011.05b
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    • pp.800-801
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    • 2011
  • 최근 건강-의료 분야의 학과 신설 및 전공자가 급격하게 늘어남에 따라 해부학 교육의 질적 향성 및 학습자의 학습효과 증진을 도모하기 위해서는 새로운 강의방식의 도입이 필요하다. 따라서 본 연구는 해부학 교육에 있어 면대면 강의에 사용한 내용을 바탕으로 가상강의 컨텐츠를 자체개발하였고, 2007-2009년 간호학과 및 스포츠과학부의 전공필수 과목인 해부학 강의를 가상강의 방식으로 실시하였다. 이 과목을 수강한 2개 학과 231명을 대상으로 강의 종료 후 가상강의실 게시판 및 컨텐츠 활용 빈도, 개별 설문조사, 학기말 성적을 확보하여 가상강의실 활용도, 만족도 및 학업성취도 상호간의 상관관계를 분석하였다. 학생들의 만족도, 난이도, 흥미도, 평가의 적절성, 전공연계성 등에서 긍정적인 평가를 받았다. 또한 가상강의실의 로그인 횟수와 게시판에 대한 학생들의 만족도가 높게 나타났다. 학업성취도는 난이도 (r=0.411, p<0.01)와 높은 상관관계를 나타내었고, 만족도-흥미도(r=0.407, p<0.01), 만족도-전공연계성 (r=0.507, p<0.01), 흥미도-전공연계성 간에도 높은 상관관계를 보였으나 흥미도-전공연계성(r=0.474, p<0.01) 등에서 높은 상관관계를 나타내었다. 결론적으로 본 연구를 통해 건강-의료 분야의 전공자뿐만 아니라 다양한 분야에서 폭넓게 요구하고 있는 해부학 강의수요를 효과적으로 흡수함과 아울러 해부학교육에 있어 새로운 지평을 열수 있는 가상강의에 대한 연구로서, 향후 해부학 교육에 있어 충분한 활용가치가 있는 효과적인 교수법이 될 것으로 사료된다.

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The Effect of STS Instruction through Science to Enhance Hypothetical Deductive Thinking Skills for Creativity - Water Section of Chemistry I (창의성의 기저가 되는 가설 연역적 사고력 신장을 고려한 과학 교수인 STS 수업 전략의 효과 - 과학 I의 물 단원)

  • Kang, Soon-Hee;Kim, Eun-Sook
    • Journal of The Korean Association For Science Education
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    • v.25 no.3
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    • pp.327-335
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    • 2005
  • This study investigates student achievement and science-related attitudes on STS hypothetical deductive instruction strategy in the water section of high school chemistry. Two 11th grade co-ed high school classes participated in the study; one control group and one treatment group. After being taught for 10 class periods during the second semester. ANCOVA analysis revealled no significant difference (p>.05) between two groups' achievement tests. However, analysis by ANCOVA did show that the scores for science-related attitudes in the treatment group were significantly higher than those of the control group (p<.05). In particular, the scores of science learning contents and science value about science-related attitude were significantly higher in the treatment group.

The Role of Deductive Reasoning in Scientific Activities (과학활동에서 연역적 사고의 역할)

  • Park, Jong-Won
    • Journal of The Korean Association For Science Education
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    • v.18 no.1
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    • pp.1-17
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    • 1998
  • What does mean the statement that scientific reasoning is logical? In this study, we clarify the logical structure of the scientific explanation, prediction and the process of hypothesis testing. To simplify and identify the structure of scientific explanations and prediction more clearly, we used syllogism and presented various concrete examples. Especially, we showed that the logical structure of scientific explanation was well reflected in dynamics. Based on this analysis, it can be said that the deficit of students' understanding of dynamics is because that many scientific activities are focused on prediction rather than explanation. To explain the process of hypothesis testing, we reinterpreted the Wason's selection task as two stages: the process of prediction of experimental phenomena based on the presented hypothesis, and the process of the hypothesis testing based on the predicted experimental phenomena. And we suggested the reason of the logical fallacy of 'affirming the consequent' in science was because that many scientific relationships between the variables is one-to-one relationship, and compared this suggestion with the Lawon's multiple hypothesis theory. To check out the effect of content on the deductive reasoning, we reviewed some researches about psychology and psychology of science. And to understand the role of deductive reasoning in student's scientific activities, we reviewed researches about the analysis of students' responses in the task of conceptual change or evaluation of evidence and so on.

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Analysis of Enacted Curriculum through Classroom Observation of Integrated Science Teaching in 2015 Revised Curriculum (2015개정 통합과학 수업관찰을 통한 실행된 교육과정 분석)

  • Kwak, Youngsun;Shin, Youngjoon
    • Journal of The Korean Association For Science Education
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    • v.39 no.3
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    • pp.379-388
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    • 2019
  • The purpose of this study is to derive implications for support plans for the settlement of the Integrated Science subject based on observations and analyses of integrated science lessons implemented in schools since 2018. For this purpose, we observed and analyzed the lessons for the same achievement standard [10 Integrated Science 07-01] implemented by four science teachers with different science majors. The features of integrated science classes were analyzed in light of curriculum reconstruction, science competency development, learner-centered participatory instruction, and process-centered evaluation aspects. For example, in terms of curriculum reconstruction, science teachers have been reorganizing achievement standards into three/four lessons, optimizing learning contents based on core concepts, and helping students' understanding of cross-cutting concepts between science areas. Regarding science competency development, teachers focused their instruction on students' cultivation of diverse science competencies closely related to the achievement standard and development of the epistemology of science. In addition, teachers emphasized student activities and teachers' role as facilitator of learning to create learner-centered participatory classes, as well as assessment during lessons with feedbacks, etc. Based on the results, we suggested and discussed ways to support the settlement of the integrated science curriculum including the need for a teacher learning community, support for process-centered assessment, and the need to develop an authentic integrated science curriculum.

Present State of National Science Contest as a Informal Scientific Education through the Voices of Teachers (지도교사의 목소리를 통한 학교 밖 과학 탐구 활동으로서 전국과학전람회의 현주소)

  • Jin Wook Kim;Jong Jin Lee;Yeong Gyeong Baek;Yumin Ahn
    • Journal of the Korean Society of Earth Science Education
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    • v.16 no.2
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    • pp.196-209
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    • 2023
  • This study recruited 11 teachers with experience in guiding science exhibitions nationwide to investigate the perception and necessity of teachers as educational consumers of science exhibitions, one of the out-of-school science education activities, and conducted an in-depth written survey. An average of more than 3,600 characters answered a total of seven questions in writing, and through qualitative analysis, the growth of students and teachers due to participation in science exhibitions, difficulties in participating in competitions, and teachers' voices for revitalization were recognized. Teachers offered positive opinions in that participation in science exhibitions improves students' knowledge and attitudes related to science and experiences an open inquiry process linked to career advancement in science and engineering. However, the students who participated in the competition failed to record the contents of the inquiry in their school records, and instructors pointed out the obsession with discovering novel topics, the burden of guiding the inquiry process, and the limitations of their expertise in major knowledge. In order to revitalize science exhibitions, 17 city and provincial education offices called for measures to strengthen the capabilities of instructors and students, improve the promotion and screening methods of the National Science Museum, and improve the Ministry of Education's school records.

The Analysis of the Nature of Science Views of Science Textbook, Science Teacher and High School Students (과학 교과서 및 과학 교사, 고등학생의 과학의 본성에 대한 관점 분석)

  • Kim, Jun-Ye;Jeon, Eun-Kyung;Paik, Seoung-Hey
    • Journal of The Korean Association For Science Education
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    • v.27 no.9
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    • pp.809-817
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    • 2007
  • The purpose of this research was to investigate the nature of the science views of science teachers and high school students as well as the views expressed in 10th grade science textbooks. The subjects were a high school science teacher, 18 male students and 11 female students in a 10th grade class located in Gyeongbuk Province, Korea. The data were analyzed in terms of three main categories of the nature of the science: the definition of science, the development of science, and the method of science. In the results, it was found that the textbook had an inductivism point of view, and that the teacher had a falsificationism point of view in terms of the definition of science. However, the teacher presented the inductive point of view of the textbook in the class. After the class, the students showed an inductive point of view. In terms of scientific development, the textbook represented a relativism point of view briefly, and the viewpoint of the teacher also expressed relativism. The teacher taught briefly from the relativism point of view, as in the textbook. The viewpoints of the students were inductivism and were not affected by the textbook or the explanations of the teacher. In terms of scientific methods, the viewpoints of the textbook and the teacher were falsificationism, and the teacher represented falsificationism views in her classes. The views of the students also showed falsificationism after their classes. However, before conclusions can be made, it is necessary to find concrete proof of the teaching effect on the viewpoints of the students in continuing research.

Pre-service Science Teachers' Areas of Practice Concern and Reflections on the Science Classes in Student-Teaching (교육실습에 참여한 예비 과학교사의 과학수업 실행에 대한 관심 영역과 반성적 사고)

  • Chung, Ae-Ran;Maeng, Seunq-Ho;Lee, Sun-Kyung;Kim, Chan-Jong
    • Journal of The Korean Association For Science Education
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    • v.27 no.9
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    • pp.893-906
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    • 2007
  • The purposes of this study are to understand pre-service science teachers' areas of practice concern and reflections on the science classes during student-teaching, and to grasp the factors affecting their concerns and reflections. Four pre-service science teachers participated in this study. Data were collected from four pre-service science teachers' practice journals, instructional materials, and semi-structured individual interviews after their student-teaching. The results are as follows: firstly, the pre-service teachers' concern is focused on the teaching environment and strategies, particularly classroom atmosphere and class management. On the other hand, they pay little attention to science content. Secondly, pre-service teachers' reflections are confined within the limited areas such as classroom management, the proper role as science teachers, or various teaching materials. The level of their reflections is low, mostly concentrated on 'routine' or 'technical' level. Higher levels of reflections, such as 'dialogic' or 'transformative' are not revealed at all. Thirdly, the mentor teachers have the biggest influence upon the concerns and reflections of pre-service teachers during student-teaching.

Changes in Teaching Practices of Elementary School Teachers in Scientific Modeling Classes: Focused on Modeling Pedagogical Content Knowledge (PCK) (과학 모델링 수업에서 나타난 초등 교사의 수업 실행 변화 -모델링 PCK를 중심으로-)

  • Uhm, Janghee;Kim, Heui-Baik
    • Journal of The Korean Association For Science Education
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    • v.40 no.5
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    • pp.543-563
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    • 2020
  • This study explores how the teaching practices of two teachers changed during scientific modeling classes. It also aims to understand these changes in terms of the teachers' modeling pedagogical content knowledge (PCK) development. The study participants were two elementary school teachers and their fifth-grade students. The teachers taught eight lessons of scientific modeling classes about the human body. The data analysis was conducted for lessons 1-2 and 7-8, which best showed the change in teaching practice. The two teachers' teaching practices were analyzed in terms of feedback frequency, feedback content, and the time allocated for each stage of model generation, evaluation, and modification. Teacher A led the evaluation and modification stages in a teacher-driven way throughout the classes. In terms of feedback, teacher A mainly used answer evaluation feedback in lesson 1-2; however, in lesson 7-8, the feedback content changed to thought-provoking feedback. Meanwhile, teacher B mostly led a teacher-driven model evaluation and modification in lesson 1-2; however, in lesson 7-8, she let her students lead the model evaluation and modification stages and helped them develop models through various feedbacks. The analysis shows that these teaching changes were related to the development of modeling PCK components. Furthermore, the two teachers' modeling PCK differed in teaching orientation, in understanding the modeling stages, and in recognizing the value of modeling, suggesting the importance of these in modeling teaching practice. This study can help improve the understanding of modeling classes by revealing the relationship between teaching practices and modeling PCK.

A Study of School Science Textbooks which was used from 1906 to 1915 in Korea (대한제국 후기부터 일제 식민지 초기(1906-1915년)까지 사용되었던 과학교과용 도서의 조사 분석)

  • Park, Jong-Seok;Chung, Byung-Hoon;Pak, Sung-Jae
    • Journal of The Korean Association For Science Education
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    • v.18 no.1
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    • pp.93-108
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    • 1998
  • This study investigated science textbooks used from 1906 to 1915 in Korea, which is often neglected in previous researches. By doing so, more practical and specific understanding of the science education during that period can be made. It was based on the historical achieves "School Textbook List"(Vol. $4{\sim}9$) which was published by the Ministry of Education and the Government General of Chosen and other sources. The results and conclusions of the research are as follow; (1) The science textbooks which have been used from 1906 to 1915 in Korea can be categorized into three different tapes of books, either written in Chinese, or in Japanese, or in Korean. The names of science textbooks were Nature Study, Physics, Chemistry, Natural History, Hygienics, Physiology, Zoology, Botany, Astronomy, Physiography, Mineralogy, Geology. These names were much broader than those in curriculum settled by the government and rather correspond to the names of science textbooks in curriculum which settled by private schools. Therefore those science textbooks had been mainly used in private schools. Moreover almost all of the science textbooks published in Korea have started to appear after 1906. Since then many schools were newly opened and the number of students increased. It is possible to say that substantial science education in Korea established after 1906. (2) Science textbooks from 1906 to 1915 printed in Korea were controlled in their use by the Ministry of Education and the Government General of Chosen. They were the main means of government regulations, supported by Private School Ordinance, Regulations for Official Examination of textbooks in 1908 and Law of Publication in 1909. According to the result of official examination, as the time went by under the Japanese ruling of Korea, the increasing number of science textbooks were getting banned. While the science textbooks had enjoyed more freedom than the other textbooks from the control by inspection of the Government General of Chosen, the situation has been significantly changed as Japan started to intensity the control of all kinds of textbooks in Korea. Although there were a lot of copied science textbooks, 62 science textbooks printed in Korea, 72 Japanese science textbooks were used in Korea, and 40 Korean were to be engaged in science education compiling and copying science textbooks. There developments in science textbooks alone suggest that there were enormous amount of potentials in Korean science education at that time. However, all of these effects and progresses were destroyed when the sovereign authority of Korea was lost to Japan in 1910.

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