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과학 교육에서 정서 연구의 역사와 최근 동향에 관한 고찰

A Review of the History of and Recent Trends on Emotion Research in Science Education

  • 투고 : 2021.03.20
  • 심사 : 2021.04.27
  • 발행 : 2021.04.30

초록

본 연구의 목적은 과학 교육에서 정서 연구의 역사를 살펴보고 최근 연구 동향을 탐색하여 발전 방향을 모색하는 것이었다. 이를 위하여 관련 문헌들에 대해 고찰하고 그 내용을 연구 문제에 따라 정리하였다. 그 결과, 과학 교육에서 정서 연구는 여러 가지 개념이 혼재된 상태에서 출발하여 과학적 태도와 과학에 대한 태도가 구분되면서 좀 더 체계적인 면모를 갖추게 되었고, 이후 과학 학습에 관련된 긍정적 정서 및 부정적 정서에 관한 연구로 이어져 왔음을 알 수 있었다. 하지만 인지와 정서 사이에는 복잡한 관계가 있으며, 정서를 과학 학습에 영향을 미치는 외부적인 요인으로만 취급하는 이분법적인 시도에 제한점이 있음을 확인할 수 있었다. 이와는 달리 최근 인식적 정서에 관한 연구는 과학적 실천에 정서가 동반되고 인지와 정서가 서로 영향을 주고받으며 통합되어 있다는 새로운 관점을 제공하고 있었다. 따라서 과학적 실천을 통해 과학을 공부하는 학생들이 경험하는 다양한 정서를 이해하고 부정적인 정서까지도 교육적으로 적절히 대응하기 위한 연구가 필요함을 논의하였다.

The purpose of this study is to investigate the history of and recent trends in science education research on emotion and explore the direction of future development. A comprehensive review of literature was conducted, and the results were organized according to research questions. Science education research on emotion began in the state of confusion because a number of concepts coexisted and overlapped in the concept of affect. More systematic approaches were then used when science-related attitudes were divided into the two categories of scientific attitudes and attitudes toward science. The research continued to study on positive and negative emotions relevant to science learning. However, the complex relationship between cognition and emotion and the limitation of the dichotomy dealing with emotions as external factors influencing student learning were revealed. By contrast, the recent research on epistemic emotions were based on the new perspective that scientific practices are accompanied with emotions and that cognition and emotion are integrated into the practices, influencing each other. Therefore, research should be carried out in ways that can help science educators understand a variety of emotions emerging in learning science through scientific practices and respond appropriately to even negative emotions of students.

키워드

과제정보

이 논문은 2019년 대한민국 교육부와 한국연구재단의 인문사회분야 중견연구자지원사업의 지원을 받아 수행된 연구임(NRF-2019S1A5A2A01036992)

참고문헌

  1. Ainley, M., & Ainley, J. (2011a). A cultural perspective on the structure of student interest in science. International Journal of Science Education, 33(1), 51-71. https://doi.org/10.1080/09500693.2010.518640
  2. Ainley, M., & Ainley, J. (2011b). Student engagement with science in early adolescence: The contribution of enjoyment to students' continuing interest in learning about science. Contemporary Educational Psychology, 36, 4-12. https://doi.org/10.1016/j.cedpsych.2010.08.001
  3. Alsop, S. (2005). Beyond cartesian dualism: Encountering affect in the teaching and learning of science. NY: Springer.
  4. Alsop, S., & Watts, M. (2003). Science education and affect. International Journal of Science Education, 25(9), 1043-1047. https://doi.org/10.1080/0950069032000052180
  5. American Association for the Advancement of Science (AAAS). (1990). Science for all americans. New York, NY: Oxford University Press.
  6. American Association for the Advancement of Science (AAAS). (1993). Benchmarks for scientific literacy. New York, NY: Oxford University Press.
  7. Arango-Munoz, S. (2014). The nature of epistemic feelings. Philosophical Psychology, 27(2), 193-211. https://doi.org/10.1080/09515089.2012.732002
  8. Arghode, V., Yalvac, B., & Liew, J. (2013). Teacher empathy and science education: A collective case study. Eurasia Journal of Mathematics, Science & Technology Education, 9(2), 89-99.
  9. Ato, T., & Wilkinson, W. J. (1983). Factors related to secondary school students' attitudes to science in Benue state of Nigeria. Research in Science & Technological Education, 1(2), 209-220. https://doi.org/10.1080/0263514830010209
  10. Barrett, L. F. (2017). How emotions are made: The secret life the brain. New York, NY: Houghton-Mifflin-Harcourt.
  11. Bellocchi, A., & Ritchie, S. M. (2015). "I was proud of myself that I didn't give up and I did it": Experiences of pride and triumph in learning science. Science Education, 99(4), 638-688. https://doi.org/10.1002/sce.21159
  12. Bellocchi, A., Ritchie, S. M., Tobin, K., King, D., Sandhu, M., & Henderson, S. (2014). Emotional climate and high quality learning experiences in science teacher education. Journal of Research in Science Teaching, 51(10), 1301-1325. https://doi.org/10.1002/tea.21170
  13. Bennett, J., & Hogarth, S. (2009). Would you want to talk to a scientist at a party? High school students' attitudes to school science and to science. International Journal of Science Education, 31(14), 1975-1998. https://doi.org/10.1080/09500690802425581
  14. Birnie, H. H. (1978). Identifying affective goals in science education, The Science Teacher, 45(9), 29-33.
  15. Bottomley, J., & Ormerod, M. B. (1977). Middle school science activities and their association with liking for science. Education in Science, 74, 23.
  16. Brun, G., & Kuenzle, D. (2008). Introduction: A new role for emotions in epistemology? In G. Brun, U. Doguoglu, & Kuenzle, D. (Eds.), Epistemology and emotions (pp. 1-31). London, UK: Routledge.
  17. Burr, C. J. (1977) Attitudes of students in an individualised chemistry course. Australian Science Teachers' Journal, 23, 94-99.
  18. Chen, S., Husnaini, S. J., & Chen, J.-J. (2020). Effects of games on students' emotions of learning science and achievement in chemistry. International Journal of Science Education, 42(13), 2224-2245. https://doi.org/10.1080/09500693.2020.1817607
  19. Cohen, D. (1971). Can scientific attitudes be evaluated? Research in Science Education, 1, 135-143. https://doi.org/10.1007/BF02558524
  20. Collins, R. (2004). Interaction ritual chains. Princeton, NJ: Princeton University Press.
  21. Cooley, C. H. (1902). Human nature and the social order. New York, NY: Shocken.
  22. Davidson, S. G., Jaber, L. Z., & Southerland, S. A. (2020). Emotions in the doing of science: Exploring epistemic affect in elementary teachers' science research experiences. Science Education, 104(6), 1008-1040. https://doi.org/10.1002/sce.21596
  23. Department for Education (1994). Science and maths: a consultation paper on the supply and demand of newly qualified young people. London, UK: Department for Education.
  24. Education Research Institute, Seoul National University (1995). Education vocabulary [교육학용어사전]. Seoul: Haoodongseol[하우동설].
  25. Eisenhardt, W. B. (1977). A search for the predominant causal sequence in the interrelationship of interest in academic subjects and academic achievement: A cross-lagged panel correlation study. Dissertation Abstracts International Section A: Humanities and Social Sciences, 37(7-A), 4225-4226.
  26. European Commission (2015). Science Education for Responsible Citizenship. Retrieved from http://ec.europa.eu/research/swafs/pdf/pub_science_education/KI-NA-26-893-EN-N.pdf.
  27. Falk, J. H., & Adelman, L. M. (2003). Investigating the impact of prior knowledge and interest on aquarium visitor learning. Journal of Research in Science Teaching, 40(2), 163-176. https://doi.org/10.1002/tea.10070
  28. Fleming, M. L., & Malone, M. R. (1983). The relationship of student characteristics and student performance in science as viewed by meta-analysis research. Journal of Research in Science Teaching, 20(5), 481-495. https://doi.org/10.1002/tea.3660200510
  29. Fortus, D. (2014). Attending to affect. Journal of Research in Science Teaching, 51(7), 821-835. https://doi.org/10.1002/tea.21155
  30. Fraser, B. J. (1977). Selection and validation of attitude scales for curriculum evaluation. Science Education, 61(3), 317-329. https://doi.org/10.1002/sce.3730610307
  31. Fraser. B. J. (1978). Development of a test of science related attitudes. Science Education, 62, 509-515. https://doi.org/10.1002/sce.3730620411
  32. Fraser, B. (1980). Science teacher characteristics and attitudinal outcomes. School Science and Mathematics, 80(4), 300-308. https://doi.org/10.1111/j.1949-8594.1980.tb09650.x
  33. Fraser, B. J., & Fisher, D. L. (1983). Development and validation of short forms of some instruments measuring student perceptions of actual and preferred classroom learning environment. Science Education, 67(1), 115-131. https://doi.org/10.1002/sce.3730670114
  34. Friend, H., & Caife, J. (1983) Effect of increased laboratory times on selected students' attitudes toward science. Paper presented at the annual meeting of the National Association for Research in Science Teaching, Dallas, Texas.
  35. Frijda, N. H. (1988). The laws of emotion. American Psychologist, 43(5), 349-358. https://doi.org/10.1037/0003-066X.43.5.349
  36. Gardner, P. L. (1975). Attitudes to science: A review. Studies in Science Education, 2(1), 1-41. https://doi.org/10.1080/03057267508559818
  37. Gauld, C. F., & Hukins, A. A. (1980). Scientific attitudes: A review. Studies in Science Education, 7(1), 129-161. https://doi.org/10.1080/03057268008559877
  38. Gong, X., & Bergey, B. W. (2020). The dimensions and functions of students' achievement emotions in Chinese chemistry classrooms. International Journal of Science Education, 42(5), 835-856. https://doi.org/10.1080/09500693.2020.1734684
  39. Gross, J. J. (1998). The emerging field of emotion regulation: An integrative review. Review of General Psychology, 2(3), 271-299. https://doi.org/10.1037//1089-2680.2.3.271
  40. Gruber, H. E. (1974). Darwin on man: A psychological study of scientific creativity. Chicago, IL: University of Chicago Press.
  41. Hadden, R. A., & Johnstone, A. H. (1982). Primary school pupils' attitudes to science: The years of formation. European Journal of Science Education, 4(4), 397-407. https://doi.org/10.1080/0140528820040406
  42. Han, M. H., & Kim, H. B. (2018). An introverted elementary students' construction of epistemic affect during modeling participation patterns. Journal of the Korean Association for Science Education, 38(2), 171-186. https://doi.org/10.14697/JKASE.2018.38.2.171
  43. Heddy, B., & Sinatra, G. (2013). Transforming misconceptions: Using transformative experience to promote positive affect and conceptual change in students learning about biological evolution. Science Education, 97(5), 723-744. https://doi.org/10.1002/sce.21072
  44. Her, M. A., Oh, P. S., & Han, M. H. (2019). Exploring the epistemic emotions of elementary-school students and the cognitive appraisal factors leading their emotions in the process of scientific knowledge exploration. Journal of the Korean Elementary Science Education, 38(4), 496-509.
  45. Holstermann, N., Grube, D., & Bogeholz, S. (2009). The influence of emotion on students' performance in dissection exercises. Journal of Biological Education, 43(4), 164-168. https://doi.org/10.1080/00219266.2009.9656177
  46. Hookway, C. (2002). Emotions and epistemic evaluations. In P. Carruthers, M. Siegal, & P. Carruthers, M. Siegal, & S. Stich, (Eds.), The cognitive basis of science (pp. 251-262). Cambridge, UK: Cambridge University Press.
  47. Immordino-Yang, M. H., & Damasio, A. (2007). We feel, therefore we learn: The relevance of affective and social neuroscience to education. Mind, Brain, and Education, 1(1), 3-10. https://doi.org/10.1111/j.1751-228X.2007.00004.x
  48. Jaber, L. Z. (2014). Affective dynamics of students' disciplinary engagement in science (doctoral dissertation). Tufts University, MA.
  49. Jaber, L. Z., & Hammer, D. (2016a). Engaging in science: A feeling for the discipline. Journal of the Learning Sciences, 25(2), 156-202. https://doi.org/10.1080/10508406.2015.1088441
  50. Jaber, L. Z., & Hammer, D. (2016b). Learning to feel like a scientist. Science Education, 100(2), 189-220. https://doi.org/10.1002/sce.21202
  51. Jaber, L. Z., Southerland, S., & Dake, F. (2018). Cultivating epistemic empathy in preservice teacher education. Teaching and Teacher Education, 72, 13-23. https://doi.org/10.1016/j.tate.2018.02.009
  52. Johnson, P. G. (1962). The goals of science education. Theory into Practice, 1(5), 239-244. https://doi.org/10.1080/00405846209541817
  53. Jordan, B., & Henderson, A. (1995). Interaction analysis: Foundations and practice. The Journal of the Learning Sciences, 4(1), 39-103. https://doi.org/10.1207/s15327809jls0401_2
  54. Kim, D. H., & Kim, H. N. (2013). Analysis of science academic emotion of elementary students. Journal of the Korean Association for Science Education, 33(2), 444-465. https://doi.org/10.14697/jkase.2013.33.2.444
  55. Kim, Y. C. (2016). Qualitative research methodology I. (3rd ed.). Paju: Academy Press.
  56. King, D., Ritchie, S., Sandhu, M., & Henderson, S. (2015). Emotionally intense science activities. International Journal of Science Education, 37(12), 1886-1914. https://doi.org/10.1080/09500693.2015.1055850
  57. King, D., Ritchie, S. M., Sandhu, M., Henderson, S., Boland, B. (2017). Temporality of emotion: Antecedent and successive variants of frustration when learning chemistry. Science Education, 101(4), 639-672. https://doi.org/10.1002/sce.21277
  58. Klopfer. L. E. (1976). A structure for the affective domain in relation to science education. Science Education, 60, 299-312. https://doi.org/10.1002/sce.3730600304
  59. Koballa, T. R. Jr. (1988). Attitude and related concepts in science education. Science Education, 72(2), 115-126. https://doi.org/10.1002/sce.3730720202
  60. Koballa, T. R. Jr., & Crawley, F. E. (1985). The influence of attitude on science teaching and learning. School Science and Mathematics, 85(3), 222-232. https://doi.org/10.1111/j.1949-8594.1985.tb09615.x
  61. Krathwohl, D. R., Bloom, B. S., & Masia, B. S. (1964). Taxonomy of educational objectives, Handbook II: Affective domain. New York, NY: Dav id McKay.
  62. Laforgia, J. (1988). The affective domain related to science education and its evaluation. Science Education, 72(4), 407-421. https://doi.org/10.1002/sce.3730720402
  63. Lamminpaa, J., & Vesterinen, V.-M. (2018). The use of humour during a collaborative inquiry. International Journal of Science Education, 40(14), 1718-1735. https://doi.org/10.1080/09500693.2018.1508926
  64. Lee, J., & Kang, H. (2018). An analysis of types of scientific humors made by scientifically-gifted elementary school students and their perceptions of the making scientific humor. Journal of the Korean Elementary Science Education, 37(3), 267-284. https://doi.org/10.15267/KESES.2018.37.3.267
  65. Lewis, M. (2008). Self-conscious emotions: Embarrassment, pride, shame, and guilt. In M. Lewis, J. M. Haviland-Jones, & L. Feldman Barrett (Eds.), Handbook of emotions (pp. 742.756). New York, NY: The Guilford Press.
  66. Luce, M. R., & Hsi, S. (2015). Science-relevant curiosity expression and interest in science: An exploratory study. Science Education, 99(1), 70-97. https://doi.org/10.1002/sce.21144
  67. Manz, E., Lehrer, R., and Schauble, L. (2020). Rethinking the classroom science investigation. Journal of Research in Science Teaching, 57(7), 1148-1174. https://doi.org/10.1002/tea.21625
  68. Maria, F., dos Santos, T, & Mortimer, E. F. (2003). How emotions shape the relationship between a chemistry teacher and her high school students. International Journal of Science Education, 25(9), 1095-1110. https://doi.org/10.1080/0950069032000052216
  69. Mallinson, G. G., & van Dragt, H. (1952). Stability of high-school students' interests in science and in mathematics. The School Review, 60(6), 362-367. https://doi.org/10.1086/441932
  70. Miller, E., Manz, E., Russ, R., Stroupe, D., & Berland, L. (2018). Addressing the epistemic elephant in the room: Epistemic agency and the next generation science standards. Journal of Research in Science Teaching, 55(7), 1053-1075. https://doi.org/10.1002/tea.21459
  71. Milne, C., & Otieno, T. (2007). Understanding engagement: Science demonstrations and emotional energy. Science Education, 91(4), 523-553. https://doi.org/10.1002/sce.20203
  72. Ministry of Education (1997). Science curriculum. Seoul: Ministry of Education.
  73. Ministry of Education (2015). Science curriculum. Sejong: Ministry of Education.
  74. Ministry of Education and Human Resources Development (2012). Science curriculum. Seoul: Ministry of Education, Science and Technology.
  75. Morris, H. (2014). Socioscientific issues and multidisciplinarity in school science textbooks. International Journal of Science Education, 36(7), 1137-1158. https://doi.org/10.1080/09500693.2013.848493
  76. Muis, K. R., Chevrier, M., & Singh, C. A. (2018). The role of epistemic emotions in personal epistemology and self-regulated learning. Educational Psychologist, 53(3), 165-184. https://doi.org/10.1080/00461520.2017.1421465
  77. National Research Council (1996). National Science Education Standards. Washington, DC: National Academy Press.
  78. National Research Council (2015). Science Teachers' Learning. Washington, DC: National Academics Press.
  79. NGSS Lead States (2013). The Next Generation Science Standards: For states, by states. Washington, DC: National Academies Press.
  80. Nieswandt, M. (2007). Student affect and conceptual understanding in learning chemistry. Journal of Research in Science Teaching, 44(7), 908-937. https://doi.org/10.1002/tea.20169
  81. Noll, V. H. (1933). The habit of scientific thinking. Teachers College Record, 35, 1-9.
  82. Noll, V. H. (1935). Measuring the scientific attitude. Journal of Abnormal and Social Psychology, 30, 145-154. https://doi.org/10.1037/h0059829
  83. Oh, P. S. (2020). A critical review of the skill-based approach to scientific inquiry. Journal of the Korean Association for Science Education, 40(2), 141-150. https://doi.org/10.14697/JKASE.2020.40.2.141
  84. Ormerod, M. B., & Duckworth, D. (1975). Pupils' attitudes to science. Slough, UK: National Foundation for Educational Research.
  85. Osborne, J., Simon, S., & Collins, S. (2003). Attitudes towards science: A review of the literature and its implications. International Journal of Science Education, 25(9), 1049-1079. https://doi.org/10.1080/0950069032000032199
  86. Pearce, E., Stewart, M., Malkoc, U., Ivy, R., & Weinburgh, M. (2020). Utilizing a dynamic model of food chains to enhance English learners' science knowledge and language construction. International Journal of Science and Mathematics Education, 18, 887-901. https://doi.org/10.1007/s10763-019-10004-5
  87. Pekrun, R. (2006). The control-value theory of achievement emotions: Assumptions, corollaries, and implications for education research and practice. Educational Psychology Review, 18, 315-341. https://doi.org/10.1007/s10648-006-9029-9
  88. Pekrun, R., Goetz, T., Titz, W., & Perry, R. P. (2002). Academic emotions in students' self- regulated learning and achievement: A program of qualitative and quantitative research. Educational Psychologist, 37(2), 91-105. https://doi.org/10.1207/S15326985EP3702_4
  89. Peterson, R. W., & Carlson, G. R. (1979). A summary of research in science education-1977. Science Education, 63, 429-550. https://doi.org/10.1002/sce.3730630405
  90. Ritchie, S., Hudson, P., Bellocchi, A., Henderson, S., King, D., & Tobin, K. (2016). Evolution of self-reporting methods for identifying discrete emotions in science classrooms. Cultural Studies of Science Education, 11(3), 577-593. https://doi.org/10.1007/s11422-014-9607-y
  91. Ritchie, S. M., Tobin, K., Hudson, P., Roth, W.-M., & Mergard, V. (2011). Reproducing successful rituals in bad times: Exploring emotional interactions of a new science teacher. 95(4), 745-765.
  92. Ritchie, S. M., Tobin, K., Sandhu, M., Sandhu, S., Henderson, S., & Roth, W.-M. (2013). Emotional arousal of beginning physics teachers during extended experimental investigations. Journal of Research in Science Teaching, 50(2), 137-161. https://doi.org/10.1002/tea.21060
  93. Robertson, A. D., Scherr, R. E., & Hammer, D. (2015). Responsive teaching in science and mathematics. New York, NY: Routledge.
  94. Roth, W.-M., Ritchie, S. M., Hudson, P., & Mergard, V. (2011). A study of laughter in science lessons. Journal of Research in Science Teaching, 48(5), 437-458. https://doi.org/10.1002/tea.20412
  95. Schibeci, R. A. (1984). Attitudes to science: An update. Studies in Science Education, 11(1), 26-59. https://doi.org/10.1080/03057268408559913
  96. Schibeci, R. A. & Riley, J. P. (1986) Influence of student background on science attitudes and achievement. Journal of Research in Science Teaching, 23(3), 177-187. https://doi.org/10.1002/tea.3660230302
  97. Schutz, P. A., & Pekrun, R. (Eds). (2007). Emotion in education. Amsterdam, The Netherlands: Academic Press.
  98. Sears, P. B., & Kessen, W. (1964). Statement of purposes and objectives of science education in school. Journal of Research in Science Teaching, 2(1), 3-6. https://doi.org/10.1002/tea.3660020104
  99. Shrigley, R. L., Koballa, T. R., & Simpson, R. D. (1988). Defining attitude for science educators. Journal of Research in Science Teaching, 25(8), 659-678. https://doi.org/10.1002/tea.3660250805
  100. Simpson, R. D., Koballa, T. R., Oliver, J. S., & Crawley, F. E. (1995). Research on the affective dimensions of science learning. In D. Gabel (Ed.), Handbook of research on science teaching and learning (pp. 211-234). New York, NY: Macmillan.
  101. Sinatra, G. M., Broughton, S. H., & Lombardi, D. (2014). Emotions in science education. In Pekrun R., & Linnenbrink-Garcia, L. (Eds.), International handbook of emotions in education (pp. 415-436). New York, NY: Routledge.
  102. Song, J., Kang, S., Kwak, Y., Kim, D., Kim, S., Na, J., Do, J., Min, B., Park, S., Bae, S., Son, Y., Son, J., Oh, P., Lee, J., Lee, H., Lim, H., Jung, D., Jung, J., Kim, J., & Jung, Y. (2019). Contents and features of 'Korean science education standards (KSES)' for the next generation. Journal of the Korean Association for Science Education, 39(3), 465-478. https://doi.org/10.14697/JKASE.2019.39.3.465
  103. Tomas, L., Rigano, D., Ritchie, S. M. (2016). Students' regulation of their emotions in a science classroom. Journal of Research in Science Teaching, 53(2), 234-260. https://doi.org/10.1002/tea.21304
  104. Turner, J. H. (2007). Human emotions: A sociological theory. New York, NY: Routledge.
  105. Turner, J. H. (2009). The sociology of emotions: Basic theoretical arguments. Emotion Review, 1(4), 340-354. https://doi.org/10.1177/1754073909338305
  106. Volet, S., Seghezzi, C., & Ritchie, S. (2019). Positive emotions in student-led collaborative science activities: Relating types and sources of emotions to engagement in learning. Studies in Higher Education, 44(10), 1734-1746. https://doi.org/10.1080/03075079.2019.1665314
  107. Webb, S. C. (1951). A generalized scale for measuring interest in science subjects. Educational and Psychological Measurement, 11(3), 456-469. https://doi.org/10.1177/001316445101100316
  108. Yoo, Y., & Oh, P. S. (2016). Effects of modeling-based science inquiry instruction on elementary students' learning in the unit of seasonal changes. Journal of the Korean Elementary Science Education, 35(2), 265-276. https://doi.org/10.15267/keses.2016.35.2.265
  109. Zembylas, M. (2004). Young children's emotional practices while engaged in long-term science investigation. Journal of Research in Science Teaching, 41(7), 693-719. https://doi.org/10.1002/tea.20023