DOI QR코드

DOI QR Code

천문 현상을 포함하는 예술 작품에 대한 중학생의 탐색 분석

Characteristics of Middle School Students' Exploration of Art Materials Including Astronomical Phenomena

  • 최하늘 (이화여자대학교 과학교육과) ;
  • 신동희 (이화여자대학교 과학교육과)
  • Choi, Haneul (Department of Science Education, Ewha Womans University) ;
  • Shin, Donghee (Department of Science Education, Ewha Womans University)
  • 투고 : 2021.05.18
  • 심사 : 2021.08.27
  • 발행 : 2021.12.31

초록

본 연구는 현대 과학 교육의 탐구 활동에서 관찰 또는 탐색의 역할이 강조되고 있는 것과 과학 탐구 소재 확장의 필요성에 의해 진행되었다. 이에 본 연구는 예술 작품을 활용한 탐구 프로그램을 개발, 적용하여 귀추 과정 중 학습자들의 탐색 특징을 자세히 분석했다. 동양화, 서양화, 신화, 관현악, 전통 가옥을 소재로 한 '미술관으로 간 과학자' 프로그램이 개발되었으며, 방과 후 과학 교실에 다니는 중학생 5명이 참여했다. 연구 결과, 작품 속 주목할 만한 현상을 탐색한 학습자들은 탐색 특징에 따라 크게 세 유형으로 나뉘었다. 과학 개념에 쉽게 연결할 수 있는 내용을 관찰, 기술한 학습자가 있는 반면, 과학 개념과 상대적으로 거리가 먼 일상적 요소를 주로 관찰한 학습자도 있었다. 자신들의 주관적 평가와 의견을 바탕으로 작품을 탐색한 학습자도 있었는데 이들은 자신의 감상 의견을 중심으로 작품을 탐색하는 특징을 보였다. 연구의 결론 및 시사점으로 탐구 활동에서 시각적으로 관찰할 수 없는 소재의 비적합성, 학습자들의 선 지식이 탐색 활동에 미치는 영향, 지구과학 탐구 소재의 확장 가능성 등을 제시했다. 본 연구는 천문학을 중심으로 한 귀추 탐구에서 학습자들의 탐색 특징을 살펴봄으로써 다양한 내용과 방법의 지구과학 학습을 제시하고, 특히 귀추가 천문 학습에 적절히 활용될 수 있는 가능성을 제시한다.

This study is based on the importance of observation or exploration in contemporary scientific inquiry and the need to expand the learning materials of science inquiry. It aims to analyze students' characteristics of exploration in abduction by developing and applying an educational program using art materials. For this study, a program named "Scientist going to the museum" utilizing artistic materials such as Oriental and Western paintings, mythology, orchestral suite, and traditional houses, was developed and five middle school students participated. Students who found and explored interesting phenomena in the work were divided into three main groups depending on the characteristics of the exploration activity. Some students observed and described elements that could be connected to scientific concepts, while others mainly explored everyday elements that were relatively unrelated to such concepts. Moreover, another type of students explored the works based on their subjective evaluations. This study shows that learning materials that cannot be visually explored are not suitable for abductive activities that students' prior knowledge has a significant impact on their exploration, and that educational materials for earth science inquiry could be expanded. This study also provides an example of learning materials and methods, and that abduction may be utilized for learning astronomy.

키워드

참고문헌

  1. Baek, J. H., 2020, Exploring the Relationships between Inquiry Problems and Scientific Reasoning in the Program Emphasized Construction of Problem: Focus on Inquiry About Osmosis. Journal of the Korean Association for in Science Education, 40(1), 77-87. (in Korean)
  2. Cho, H. Y., Kim, H. K., Yoon, H. S., and Lee, K. Y., 2011, Theory and practice of science education. Koyookbook, Pajoo, Korea, 720p. (in Korean)
  3. Choi, J. T., Lee, K. Y., and Park, J. Y., 2018, Analysing Astronomical Thinking of Elementary, Middle, and High School Students using Ordered Multiple Choice Items. Journal of Korean Society of Earth Science Education, 11, 125-144. (in Korean) https://doi.org/10.15523/JKSESE.2018.11.2.125
  4. Choi, J. T., Lee, K. Y., and Park, J. Y., 2019, The Development and Application of an Astronomy Education Program Reflecting Astronomical Thinking: A Case of Planetarium Class at Science Museum. The Journal of The Korean Earth Science Society, 40(1), 86-106. (in Korean) https://doi.org/10.5467/jkess.2018.40.1.86
  5. Choi, H. N., and Shin, D. H., 2021, International comparison of research trends in astronomy education programs. Publications of the Korean Astronomical Society, 36, 25-36. https://doi.org/10.5303/PKAS.2021.36.1.025
  6. Clement, J., and Oviedo, M. C. N., 2003, Abduction and analogy in scientific model construction. Paper presented at the National Association for Research in Science Teaching Annual International Conference, 23-26.
  7. DeBoer, G. E., 2006, Historical perspective on inquiry teaching in schools. Scientific Inquiry and the Nature of Science: Implications for Teaching, Learning and Teacher Education. Dordrecht, The Netherlands, 17 p.
  8. Duschl, R. A., 1990, Restructuring science education: The importance of theories and their development. Teachers College Press, New York, USA, 176 p.
  9. Duschl, R., and Bybee, R. W., 2014, Planning and carrying out inverstigations: An entry to learning and to teacher professtional development around NGSS science and engineering practices. International Journal of STEM Education, 1(12), 1-9. https://doi.org/10.1186/2196-7822-1-1
  10. Engelhardt, W. von, and Zimmermann, J., 1982, Theory of earth science (translated by L. Fischer). Cambridge University Press, Cambridge, UK, 365 p.
  11. Fusco, D., 2001, Creating relevant science through urban planning and gardening. Journal of Research in Science Teaching, 38(8), 860-877. https://doi.org/10.1002/tea.1036
  12. Gelman, R., and Brenneman, K., 2012, Moving young "scientists-in-waiting" onto science learning pathways: Focus on observation in book: The Journey from Child to Scientist: Intergrating congnitive development and the education sciences. American Psychological Association, Washington, D.C., USA, 17 p.
  13. Gray, R., 2014, The distinction between experimental and historical sciences as a framework for Improving classroom inquiry. Science Education, 98(2), 327-341. https://doi.org/10.1002/sce.21098
  14. Hodson, D., 1986, Rethinking the role and status of observation in science education. Journal of Curriculum Studies, 18(4), 381-386. https://doi.org/10.1080/0022027860180403
  15. Jang, K. B. and Shin, D. H., 2016, Analysis of Observation Characteristics of Students who Participate in Korea Student Scientific Inquiry Olympic-Nature Observation Inquiry Competition. Korean Journal of Elementary Education, 27(2), 433-448. https://doi.org/10.20972/kjee.27.2.201606.433
  16. Jeon, J. Y., 2020, Characteristics of Students' Abductive Reasoning According to Their Scientific and Historical Knowledge in Deoksugung Palace. Ewha Womans Universtiy, Seoul, Korea, 127 p.
  17. Jeong, J. S., Won, H. J., and Kwon, Y. J., 2005, Application of the Triple Abduction Model for Improving the Skills of Scientific Hypothesis Generation. Journal of the Korean Association for in Science Education, 25(5), 595-602. (in Korean)
  18. Jeong, J., and Kwon, Y., 2001, Roles of abductive reasoning and prior knowledge in high school students' generating biological hypotheses. A paper presented at the 2001 NABT National Convention.
  19. Kang, H. J., 2012, An Effect of Observation Diary on Science Process Skills and Attitudes toward Science of Elementary Students. Seoul National University of Education, Seoul, Korea, 69 p. (in Korean)
  20. Kim, C. J., 2002, Inferences frequently used in earth science. Journal of the Korean Earth Science Society, 23(2), 188-193.
  21. Kim, C. J., 2003, Preparing teachers for systems science methodology. Implementing global science literacy. The Ohio State University, Columbus, USA, 255 p.
  22. Kim, C. J., Park, I. S., An, H. S., Oh, P. S., Kim, D. Y., and Park, Y. S., 2005, Development of an Inquiry Analysis Framework Based on the Features of Earth Science Inquiry Methodology and the Analysis of Inquiry Activities in the 8th Grade 'Earth History and Diastrophism' Unit. The Journal of The Korean Earth Science Society, 26(8), 751-758. (in Korean)
  23. Kim, H. J., 2011, The Effect of Observation Training Worksheet by Stage on the Elementary Students' Observation Ability and Scientific Attitude. Daegu National University of Education, Deagu, Korea, 81 p. (in Korean)
  24. Korean Federation of Science and Technology Societies (KOFST), 2011, STEAM Education for Students with Future Convergent STEAM Talents. 2011 Korea Science and Technology Annual Meeting.
  25. Kwon, H. J. and Kwon, N. J., 2018, Understanding the level of observational ability of second-year elementary school students preparing for learning of science inquiry. Proceedings of 2018 KESE, 74, 44. (in Korean)
  26. Kwon, Y. J., Jeong, J. S., Kang, M. J., and Kim, Y. S., 2003a, A Grounded Theory on the Process of Generating Hypothesis-Knowledge about Scientific Episodes. Journal of the Korean Association for in Science Education, 23(5), 458-469. (in Korean)
  27. Kwon, Y. J., Jeong, J. S., Ko, K. T., and Park, Y. B., 2004, The Development of an Instrument to Assess the Ability of Science-Knowledge Generation. Biology Education, 32(1), 67-78. (in Korean)
  28. Kwon, Y. J., Jeong, J. S., Park, Y. B., and Kang, M. J., 2003b, A Philosophical Study on the Generating Process of Declarative Scientific Knowledge - Focused on Inductive, Abductive, and Deductive Processes. Journal of the Korean Association for in Science Education, 23(3), 215-228. (in Korean)
  29. Kwon, Y. J., Shim, H. S., Jeong, J. S., and Park, K. T., 2003c, Role and Process of Abduction in Elementary School Students' Generation of Hypotheses concerning Vapor Condensation. The Journal of The Korean Earth Science Society, 24(4), 250-257. (in Korean)
  30. LaBanca, F., 2008, Impact of problem finding on the quality of authentic open inquiry science research projects. Western Connecticut State University, Danbury, USA, 290 p.
  31. Lawson, A. E., 1995, Science teaching and the development of thinking. Wadsworth Publishing Company, Belmont, USA, 593 p.
  32. Lawson, A. E., 2000, How do humans acquire knowledge? and What does that imply about the nature of knowledge?. Science and Education, 9, 577-598. https://doi.org/10.1023/A:1008756715517
  33. Lee, K. H. and Kwon, B. D., 2010, Reasoning-Based Inquriy Model Embedded in Earth Science Phenomena. The Journal of The Korean Earth Science Society, 31(2), 185-202. (in Korean) https://doi.org/10.5467/JKESS.2010.31.2.185
  34. Lee, S. J., 2002, The Effects of Learning Spatial Abilities on Achievement in Astronomy. Seoul National University of Education, Seoul, Korea, p. (in Korean)
  35. Lim, J. K., 2010, Effect that prior knowledge about research subject gets primary grade science brilliant intellect's observation method and question. Journal of Science Education, 34(1), 105-112. https://doi.org/10.21796/jse.2010.34.1.105
  36. Lunetta, V. N., Hofstein, A., and Clough, M. P., 2007, Learning and teaching in the school science laboratory: An analysis of research, theory and practice in book: Handbook of research on science education. Lawrence Erlbaum Associates, New Jersey, USA, 1344 p.
  37. Maeng, S. H., Lee, J. A., Kim, C. J., and Park, M. S., 2007, A Case Study of Middle School Students' Abductive Inference during a Geological Field Excursion. Journal of the Korean Association for in Science Education, 27(9), 818-831. (in Korean)
  38. Magnani, L., 2001, Abduction, reason, and science: Process of discovery and explanation. Kluwer Academic/Plenum Publishers, New York, USA, 169 p.
  39. Magnani, L., 2014, Understanding abduction: Inference, perception, and instinct, In Model-Based Reasoning in Science and Technology, Springer, Berlin, Germany, 173-205 p.
  40. Ministry of Eduaction (MOE), 2015, 2015 revised elementary and secondary school curriculum general statement. MOE Notification No. 2015-80 [supplement 1]. (in Korean)
  41. Ministry of Education, Science and Technology (MEST), 2010, Korea: a future opened by creative talents and advanced science and technology. 43 p. (in Korean)
  42. Moon, B. C., 2013, The Study of the Characteristics and the Proprieties of the Granite Observing Results in the Elementary Students' Scientific Inquiry Activities. Journal of the Korean Society of Earth Science Education, 6(2), 101-111. https://doi.org/10.15523/JKSESE.2013.6.2.101
  43. Moore, R., Clark, W. D., and Vodopich, D. S., 1998, Botany: Plant Form and Function, 2rd ed. William C Brown, Lowa, USA, 919 p.
  44. NGSS Lead States., 2013, Next Generation Science Standards. The National Academy Press, Washington D.C., USA, 532 p.
  45. NRC., 2000, Inquiry and the national science education standards: A guide for teaching and learning. The National Academy Press, Washington D.C., USA, 222 p.
  46. Oh, H. S. and Lee, K. Y., 2018, Exploring 6th Graders Learning Progression for Lunar Phase Change: Focusing on Astronomical Systems Thinking. The Journal of The Korean Earth Science Society, 39(10), 103-116. (in Korean) https://doi.org/10.5467/JKESS.2018.39.1.103
  47. Oh, P. S. and Kim, C. J., 2005, A Theoretical Study on Abduction as an Inquiry Method in Earth Science. Journal of the Korean Association for in Science Education, 25(5), 610-623. (in Korean)
  48. Oh, P. S., Cho, H. G., Oh, S. J., Lee, H. W., Moon, B. G., So, Y. M., Jeon, H. J., and Park, C. Y., 2018, Earth Science 2(High school textbook). Seoul: Chunjae textbook. (in Korean)
  49. Osborne, J., 2014, Teaching scientific practices: Meeting the challenge of change. Journal of Science Teacher Edcuation, 25, 177-196. https://doi.org/10.1007/s10972-014-9384-1
  50. Park, J. W., 2000, Analysis of Students' Processes of Generating Scientific Explanatory Hypothesis - Focused on the Definition and the Characteristics of Scientific Hypothesis -. Journal of the Korean Association for in Science Education, 20(4), 667-680. (in Korean)
  51. Park, K. Y., 2015, The Effect of Science Teaching-Learning Enhancing Observation Activities on the Science Process Skills and Scientific Attitudes of Elementary School Studnets. Busan National University of Education, Busan, Korea, 102 p. (in Korean)
  52. Remmen, K. B. and Froyland, M., 2020, Students' use of observation in geology: towards 'scientific observation' in rock classification. International Journal of Science Education, 42(1), 113-132. https://doi.org/10.1080/09500693.2019.1704914
  53. Runco, M. A., 1994, Problem finding, problem solving, and creativity. Ablex Publishing Corporation, New York, USA, 318 p.
  54. Shin, Y. J. and Han, S. G., 2011, A Study of the Elementary School Teachers' Perception in STEAM (Science, Technology, Engineering, Arts, Mathematics) Education. Journal of Korean Elementary Science Education, 30(4), 514-523. (in Korean) https://doi.org/10.15267/KESES.2011.30.4.514
  55. Taylor, I., Barker, M., and Jones, A., 2003, Promoting mental model building in astronomy education. International Journal of Science Education, 25(10), 1205-1225. https://doi.org/10.1080/0950069022000017270
  56. Wilson, R. A., 1995, Nature and young children: A natural connection. Young Children, 50(6), 4-11.
  57. Yoon, H. K., and Park, S. J., 2000, The Change of Middle School Students' Motivation for Investigation through the Extended Science Investigations. Journal of the Korean Association for in Science Education, 20(1), 137-154. (in Korean)