• Title/Summary/Keyword: biology teaching

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Preservice Biology Teachers' Learning to Teach Science through Science Methods Courses

  • Kim, Sun Young
    • Journal of The Korean Association For Science Education
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    • v.32 no.9
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    • pp.1427-1442
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    • 2012
  • This study tracked the changes of preservice biology teachers' pedagogical knowledge along with science teaching efficacy throughout sequentially developed science methods course I and II over two consecutive semesters. Two courses, science methods course I and II, aimed these preservice teachers to discuss the notion of science teaching with teaching and learning theories, to learn science instructional models, to design lessons utilizing science instructional models, and to eventually implement microteaching. The preservice teachers were mainly engaged in cooperative instructional planning activities through science methods course I, and engaged in cooperative microteaching activities through the science methods course II. This study revealed that preservice teachers successfully developed pedagogical knowledge and science teaching efficacy after two science methods courses. The science methods course I where cooperative instructional planning activities occurred helped the preservice teachers to improve pedagogical knowledge but not science teaching efficacy. Based on their pedagogical knowledge development, then, these preservice teachers increased science teaching efficacy belief after completion of the science methods course II.

Changes of Preservice Biology Teachers' Pedagogical Knowledge and Science Teaching Efficacy Belief through Science Pedagogy Course

  • Kim, Sun-Young
    • Journal of The Korean Association For Science Education
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    • v.32 no.3
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    • pp.467-476
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    • 2012
  • This study explored changes of preservice biology teachers' pedagogical knowledge and science teaching efficacy belief after the science pedagogy course. Preservice biology teachers who did not take any science pedagogy courses had an opportunity to engage in discussions of educational theories and group activities of instructional design utilizing science instructional models as a first step to develop practical knowledge. These preservice teachers represented a statistically significant increase in their scores on pedagogical knowledge including theory, student development, planning, and implementation, but no statistical difference in their scores measuring science teaching efficacy belief. In addition, the correlation results indicated that the science teaching efficacy belief is related to implementation even though the magnitude is relatively moderate.

A Study of the Development and Using of Teaching Materials for Biology in Japan (일본에 있어서의 생물교재의 개발과 활용에 관한 연구)

  • Park, In-Keun
    • Journal of The Korean Association For Science Education
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    • v.7 no.2
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    • pp.45-59
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    • 1987
  • The purpose of the present study is to show the way to develop and use the teaching materials for biology in Japan. This study was mainly carried out in documents. The following suggestions should be taken in moderate consideration: 1. Private enterprises as well as the government make heavy investments and careful considerations for the promotion of the science education including biology education. 2. Among in-service teachers one or two volunteer(s) chosen for special training course managed by the local education center are cultivated as excellent teachers on the development and using of teaching materials through an intensive study and training for six months or twelve months. 3. Most research groups consist of specialists in every field and they carry out studying the development of teaching materials in biology.

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Construction of Preservice Biology Teachers' NOS Pedagogical Content Knowledge within Biology Teaching Context (생물 교수 맥락 내에서 예비 생물교사의 과학의 본성 교수내용학적 지식의 구축)

  • Kim, Sun Young
    • Journal of The Korean Association For Science Education
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    • v.36 no.1
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    • pp.147-158
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    • 2016
  • This study examined the changes of preservice biology teachers' NOS pedagogical content knowledge through two consecutive science methods courses: NOS understandings; attitudes toward teaching science; difficulties of NOS teaching; NOS teaching strategies; and views of orientation of NOS teaching. During the science methods course I, the preservice teachers engaged in discussions and reflections on what science is and how scientific knowledge has produced, drawing NOS aspects from episodes of history of science, and planning the lessons cooperating NOS instructional objectives. Then the next semester, through the science methods course II, the preservice teachers had a chance of the simulated teaching by adopting NOS teaching and learning activities in the context of the secondary biology context. The preservice teachers, further, reflected on their NOS teaching. The results showed that the preservice teachers constructed the NOS pedagogical content knowledge. They significantly improved their views of NOS and its teaching(p<.05) after the science methods course I, and retained their understanding after the science methods course II(p>.05). The preservice teachers mentioned the difficulties of teaching NOS in the secondary biology context, and further suggested effective NOS teaching methods in their reflective journals.

Effects of Simulated Instruction Activities through a Constructivist Lens on Preservice Biology Teachers' Epistemological Belief, Science Teaching Efficacy Belief and Teaching Motivation (구성주의에 기반한 모의수업 활동이 예비 생물교사의 인식론적 신념, 과학 교수 효능감 및 교수 동기에 미치는 영향)

  • Kim, Sun Young
    • Journal of The Korean Association For Science Education
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    • v.32 no.7
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    • pp.1157-1168
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    • 2012
  • This study examined the effect of simulated instruction activities based on a constructivist teaching approach on epistemological belief, science teaching efficacy belief, and teaching motivation. The RTOP (Reformed Teaching Observation Protocol) played a role to guide preservice biology teachers to obtain insights on current reformed teaching and to further practice teaching based on constructivism. The results indicated that preservice teachers changed their epistemological beliefs toward more sophisticated views, especially for 'simple knowledge'. They also improved their science teaching efficacy beliefs, both personal science teaching efficacy belief (PSTEB) and science teaching outcome expectancy (STOE). In addition, these perservice teachers decreased their scores of extrinsic teaching motivation. The Pearson correlation represented the negative relationship between personal science teaching efficacy belief (PSTEB) and extrinsic teaching motivation. After intervention, the preservice teachers mentioned inquiry, active participation and discussion as ideal science teaching methods and qualifications for science teachers.

The Application of the ARCS Model of Motivation on the Environmental Conservation of Environment Textbooks (환경 교과서 환경보전 단원에 대한 학습동기모델의 적용)

  • Huh, Man-Kyu
    • Korean Journal of Environmental Biology
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    • v.26 no.4
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    • pp.343-348
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    • 2008
  • The study is to investigate the effects of the constructivist instructional model using ARCS strategies (attention, relevance, confidence, and satisfaction) on the environmental conservation of environment textbooks of middle school. The subjects of this study were applied to 135 students sampled 2nd graders of a middle school in Busan. All students were divided three groups according to teaching strategies. The first experimental group is consisted of students who participated in the traditional teaching program, the second is students who participated in the constructivist teaching program, and the third is students who participated in the constructivist teaching program with ARCS strategies. The pre-conceptions test was administered to examine students' pre-conceptions before the instructions. After the instructions, students' acquisition of scientific conceptions, academic achievement, and learning motivation were also tested. On average, the degrees of academic achievement for the group with ARCS strategies were higher than those of other groups and shown a significant difference among three programs. Thus the constructivist teaching program with ARCS strategies was more effective programs in acquisition of environmental conservation conception and learning motivation than the two other teaching programs.

International Comparison of Korean Biology Gifted-Students (한국의 생물 영재 학생에 대한 국제적 수준 비교)

  • Shim, Kew-Cheol;Lee, Hyun-Uk;So, Keum-Hyun;Chang, Nam-Kee
    • Journal of The Korean Association For Science Education
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    • v.18 no.4
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    • pp.485-491
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    • 1998
  • In this study, the achievement of Korean biology gifted-students was compared with that of International Biology Olympiad(IBO) participants to explore international achievement level of biology and to suggest the need of teaching program for biology gifted-students. Korean thirty gifted-students were selected through test by Korean Biology Olympiad Committee. They examined theoretical test two times in January and March. 1998. Theoretical part consisted of eight domains as follows; cell biology. anatomy and physiology of plants, anatomy and physiology of animals, ethology. genetics and evolution, ecology, systematics, and microbiology. As a result, Korean biology gifted-students had lower achievement than IBO participants in eight domains. and especially much lower achievement in ethology and systematics. Though thirty Korean gifted-students were found to had much lower achievement than lBO participants, four higher rankers of them are in prospect of winning bronze medals. Thus, it is necessary to develope an appropriate teaching program for biology gifted-students with theoretical lectures and inquiry activities.

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An Analysis of the Concepts that Should be Taught to Achieve Class Objectives of Genetics Unit in Biology

  • Lim, Soo-Min;Kim, Jeong-A;Sonn, Jong-Kyung;Jeong, Jae-Hoon;Kim, Young-Shin;Song, Ha-Young
    • Journal of The Korean Association For Science Education
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    • v.29 no.7
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    • pp.767-782
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    • 2009
  • The researchers who are studying biology and teachers who are teaching biology think that the genetics-related concepts are highly significant than other concepts in biology. With such background, researches on the identification of major concepts have been under way to guide in biology class. Minimal research has been carried out, however, on what concepts should be taught to achieve the specific objectives of the class in relation to the unit of genetics in middle and high school. Accordingly this study was designed to determine the concepts of genetics that should be taught to achieve the objectives of the genetics unit in secondary school. For this purpose 5 instructional objectives of the genetics unit on the 9th grade and 4 instructional objectives of Biology I were selected and the concepts that were taught to achieve class objectives. The survey was conducted among 114 science teachers from middle schools and 85 biology teachers from high schools. The results indicated that 9.1 and 10.2 concepts on average were taught in the 9th grade and in Biology I respectively. Moreover statistical difference in the number of concepts that were taught according to the teachers' teaching experiences appeared among the middle school teachers (p<.05). But such statistical difference did not appear among the high school teachers (p>.05). Furthermore the concepts for the 9th grade consist of the basic genetics concepts although Biology I concepts were integrated and advanced contents for same concepts. Thus this finding suggests that concepts of genetics units to be taught in middle and high school were in linkage.