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Development of Astronomy Education Programs using Astronomical Heritage and Exploring its Educational Possibility

천문 유산을 활용한 천문학 교육 프로그램 개발 및 활용 가능성 탐색

  • Lee, Jihye (Daejeon Education Policy Institute, Daejeon Education & Science Research Institute) ;
  • Shin, Donghee (Department of Science Education, Ewha Womans University)
  • 이지혜 (대전교육과학연구원 대전교육정책연구소) ;
  • 신동희 (이화여자대학교 과학교육과)
  • Received : 2021.04.07
  • Accepted : 2021.06.30
  • Published : 2021.06.30

Abstract

This study aims to develop two science education programs using Angbuilgu and ancient astronomical data, are Korean astronomical heritage, and explore its educational possibility through the pilot application. Considering the TSK compositional characteristics of Angbuilgu and ancient astronomical data, linkage with science curriculum, and linkage with NOS, Angbuilgu was developed as a hands-on activity for elementary school students and ancient astronomical data as a science inquiry activity for middle and high school students. The educational availability of the developed program was confirmed by pilot application to elementary and high school groups. Through the Angbuilgu activity, the students refined their conceptual knowledge by correcting misconceptions about the solar motion by season and then confirmed the possibility of connection with the concept of the celestial coordinate system. Students recognized the scientific value of Angbuilgu and understood the nature of interactions STS. In the ancient astronomical data activity, students experienced inductive and deductive inquiry methods and utilized various information and strategies. Through the activities, students improved their scientific understanding and attitude towards TSK.

이 연구의 목적은 한국 천문 유산인 앙부일구와 고대 천문 기록을 활용한 과학 교육 프로그램을 개발하고, 시범적용을 통해 활용 가능성을 탐색하는 것이다. 앙부일구와 고대 천문 기록의 TSK 구성적 특성, 과학 교육과정과의 연계성, NOS와의 연계성을 고려하여 앙부일구는 초등학생을 위한 핸즈온 활동으로, 고대 천문 기록은 중·고등학생을 위한 과학 탐구 활동으로 개발했다. 개발된 프로그램을 초등과 고등 집단에게 시범 적용하여 활용 가능성을 확인했다. 앙부일구 활동을 통해 학생들은 절기별 태양 운동에 대한 오개념을 수정하며 개념 지식을 정교화했고, 이후 천구 좌표계 개념과의 연계 가능성을 확인했다. 학생들은 앙부일구의 과학적 가치를 인식했으며, 과학·기술·사회 간 상호작용의 본성을 이해했다. 고대 천문 기록 활동에서 학생들은 귀납 및 연역적 탐구 방법을 경험했고, 다양한 정보와 전략을 활용했다. 활동을 통해 학생들은 TSK에 대한 과학적 이해와 태도를 발전시켰다.

Keywords

Acknowledgement

이 논문은 2017년 대한민국 교육부와 한국연구재단의 지원을 받아 수행된 연구임(NRF-2017S1A5B5A01024101)

References

  1. Allen, N., & Crawley, F. E., 1998, Voice from the bridge: worldview conflicts of Kickapoo students of science. Journal of Research in Science Teaching, 35(2), 111-132. https://doi.org/10.1002/(SICI)1098-2736(199802)35:2<111::AID-TEA3>3.0.CO;2-V
  2. Cho, E. J., 2020, Investigation into tenth graders' understanding of the nature of scientific inquiry. Journal of Korean Earth Science Society, 41(3), 273-290. (in Korean with English abstract) https://doi.org/10.5467/JKESS.2020.41.3.273
  3. Cho, O. G., & Kim, Y. M., 2001, An analysis of high school students' scientific attitudes and inquiry abilities in traditional cultural contexts. Journal of the Korean Association for Research in Science Education, 21(1), 174-184. (in Korean with English abstract)
  4. Choi, J. H., & Pak, S. J., 2004, The development of students' scientific perspectives on historical heritages through the science field trip of Hwasong. Journal of the Korean Association for Research in Science Education, 24(5), 930-936. (in Korean with English abstract)
  5. Elkana, Y., 1981, A programmatic attempt at an anthropology of knowledge. In E. Mendelshohn & Y. Elkana (Eds.), Science and culture: Anthropological and historical studies of the sciences (pp. 1-77). Dordrecht, The Netherlands: Reidel.
  6. Hart, M. A., 2010, Indigenous worldviews, knowledge, and research: the development of an indigenous research paradigm. Journal of Indigenous Voice in Social Work, 1(1), 1-16.
  7. Hong, Y. S., Uhm, J. K., Kim, U. R., and Kim, H. M., 2002, History of science (과학의 역사). Kyowoo Press. (in Korean)
  8. Jeon, Y. B., & Lee, Y. H., 2020,?Analysis of nature of science (NOS) in integrated science textbooks of the 2015 revised curriculum. Journal of science ecucation, 44(3), 273-288. (in Korean with English abstract)
  9. Kang, Y. W., & Lee, J. H., 2008, Effects of early childhood HPS activities developed from Korean traditional living science themes. Journal of Early Childhood Education, 28(4), 5-35. (in Korean with English abstract)
  10. Kawagley, A. O., Norris-Tull, D., and Norris-Tull, R. A., 1998, The indigenous worldview of Yupiaq culture: its scientific nature and relevance to the practice and teaching of science. Journal of Research in Science Teaching, 35(2), 133-144. https://doi.org/10.1002/(SICI)1098-2736(199802)35:2<133::AID-TEA4>3.0.CO;2-T
  11. Kim, C., 2021, A study on software convergence education for elementary school using Yut-nori. Korean Association of Information Education, 25(1), 113-112. (in Korean with English abstract) https://doi.org/10.14352/jkaie.2021.25.1.113
  12. Kim, E. G., 2002, A study on the practices of scientific visit in Korean traditional cultural assets as a scientific inquiry activity. Unpublished master's thesis, Univ. of Daegu, Gyeongsan, Korea. (in Korean with English abstract)
  13. Kim, J. H., Lee, Y. H., & Min, B. M., 2016, Analysis of the presentation for the nature of science in life science chapters of the 2009 revised middle school science textbooks. Biology Education, 44(1), 25-34. (in Korean with English abstract) https://doi.org/10.15717/BIOEDU.2016.44.1.25
  14. Kim, J. K., & Shin, D. H., 2014, Exploring possibilities of science field experience in Jongmyo shrine. Journal of Korean Elementary Science Education, 33(2), 286-305. (in Korean with English abstract) https://doi.org/10.15267/KESES.2014.33.2.286
  15. Kim, S. H., Mihn, B. H., Ahn, Y. S., & Lee, Y. S., 2011, Inference on the arrangement and scale of the Ganuidae in the Joseon Dynasty. Publications of the Korean Astronomical Society, 26(3), 115-127. (in Korean with English abstract) https://doi.org/10.5303/PKAS.2011.26.3.115
  16. Kim, Y. H., 2013, Development and application of STEAM learning materials for geological environment in the Gochang. Jeonbuk, Korea, Unpublished doctoral dissertation, Univ. of Jeonbuk, Jeonju, Korea. (in Korean with English abstract)
  17. Kim, Y. W., 1993, The context of Korean traditional science (한국 전통 과학의 맥락). Professor Academy series, 6, 348-356. (in Korean with English abstract)
  18. Korea Meteorological Administration, 2011, Meteorological Records from Ancient Korea including Astronomical and Seismological Records from 《SAMGUK SAGI (History of the Three Kingdoms》&《SAMGUK YUSA (Memorabilia of the Three Kingdoms)》 (in Korean)
  19. Lee, C. S., 2001, Critical reconstruction of the Korean science culture. Korean Association Of Science And Technology Studies, 1(1), 5-27. (in Korean)
  20. Lee, J. H., & Shin, D. H., 2017a, Exploring the educational value of Korean traditional science knowledge. Korean Journal of Educational Research, 55(3), 369-411. (in Korean with English abstract)
  21. Lee, J. H., & Shin, D. H., 2017b, Exploring the use of traditional science knowledge by 'being a commentator on Korean traditional science culture' activities. Journal of the Korean Association for Research in Science Education, 37(1), 193-214. (in Korean with English abstract)
  22. Lee, J. H., Yoon, Y. H., and Shin, D. H., 2018, Analysis of the TSK (Traditional Science Knowledge) Characteristics in Korean Traditional Science Exhibits: Focused on Field of Astronomy, Clocks, and Weather. Journal of Research in Curriculum & Instruction, 22(6), 355-370. (in Korean with English abstract) https://doi.org/10.24231/RICI.2018.22.6.355
  23. Lee, Y. H., 2013, A proposal of inclusive framework of the nature of science (NOS) based on the 4 themes of scientific literacy for K-12 school science. Journal of the Korean Association for Science Education, 33(3), 553-568. https://doi.org/10.14697/JKASE.2013.33.3.553
  24. Lee, Y. S., Jeong, J. H., Kim, C. H., and Kim, S. H., 2006, The principle and structure of the Gyupyo (Gnomon) of King Sejong's reign in Choson Dynasty. Journal of Astronomy and Space Sciences, 23(3), 289-302. (in Korean with English abstract) https://doi.org/10.5140/JASS.2006.23.3.289
  25. Ministry of Education, 2015, 2015 revisede science curriculum (2015-74, Separate books 9). Seoul: Auther. (in Korean)
  26. Nisbett, R. E., 2004, The geography of thought: How Asians and Westerners think differently and why. Seoul, Gimm-Young Publication Co.
  27. Ogawa, M., 1995, Science education in a multiscience perspective. Science Education, 79(5), 583-593. https://doi.org/10.1002/sce.3730790507
  28. Oh, I, J., 2000, Introducing of traditional science to science subject matter. Masters thesis, Dankook University. (in Korean with English abstract)
  29. Park, C. B., 2007, Astronomy as a Korean traditional science (한국의 전통 과학 천문학). Seoul, Ewha Womans University Co. (in Korean)
  30. Park, S. R., 2002, The story of ethnic science to look back (다시 보는 민족과학 이야기). Doosan Dong-A Co., p 38. (in Korean)
  31. Roh, S. Y., 2015, Development of a astronomy field teaching and learning program using sundial: Focused on the curriculum of 3th trade in middle school. Masters thesis, Younsei University. (in Korean with English abstract)
  32. Sadler, T. D., 2009, Situated learning in science education: socio-scientific issues as contexts for practice. Studies in Science Education, 45(1), 1-42. https://doi.org/10.1080/03057260802681839
  33. Snively, G., & Corsiglia, J., 2001, Discovering indigenous science: implications for science education. Science Education, 85(1), 6-34. https://doi.org/10.1002/1098-237X(200101)85:1<6::AID-SCE3>3.0.CO;2-R
  34. Song, J. W., 2006, Humanistic science education through context-rich approaches. Journal of Korean Elementary Science Education, 25(4), 383-395. (in Korean with English abstract)
  35. Yi, M., 2012, A science cultural understanding of traditional astronomy in East Asia. Science and Technology studies, 12(2), 159-183. (in Korean with English abstract)
  36. Sung, S. K., & Shin, D. H., 2014, Value of 'Ondol' as a theme for convergence education. Journal of LearnerCentered Curriculum and Instruction, 14(3), 279-301. (in Korean with English abstract)
  37. Urbancic, M., & Glazar, S., 2012, Impact of Experiments on 13-years-old pupils' understanding of selected science concepts. Eurasia Journal of Mathematics, Science & Technology Education, 8(3), 207-218.
  38. Yoon, H. K., & Pak, S. J., 1999, The change of middle school students' cognitive engagement in the extended science investigations. Journal of the Korean Association for Research in Science Education, 19(4), 684-695. (in Korean with English abstract)