HomePsychology and Education: A Multidisciplinary Journalvol. 5 no. 7 (2022)

The Lived Experiences of Junior High School Science Teachers Amidst the COVID-19 Pandemic: An Inquiry-Based Learning

EJ Boy Amoroso

Discipline: Education

 

Abstract:

Numerous dimensions of our social and economic lives have undergone unthinkable transformation as a result of the global COVID-19 pandemic. This study was conducted to investigate and determine the lived experiences of junior high school science teachers amidst the COVID-19 pandemic in the context of based learning inquiry. The participants in the study were the ten junior high school science teachers at the chosen schools, five of whom taught in public schools and five of whom taught in private schools. The study's active participants were all seasoned educators with a combined teaching experience ranging from 5 to 30 years in the science premise. Semi-structured interviews were used for the data collection process. The authors consulted literature and sought advice from experts as they created the interview questions. The researchers began by transcribing every interview's audio recording. The interview data was examined using a thematic analysis process, which was aided by the initial coding of the interview transcripts, the identification of preliminary categories, the second round of coding, the refinement of categories, and the identification of emergent themes. Based on the data findings, during the pandemic, teachers claimed they were unable to teach science via inquiry for a variety of other reasons. Teachers claimed that greater preparation time was necessary for creating effective inquiry-based online lessons and traditional learning. They said that not teaching science through inquiry was due to a lack of preparation time and shorter class periods.



References:

  1. Abrams, E., Southerland, S. A., & Evans, C. (2008). Integrating inquiry in the classroom: Identifying necessary components of a useful definition. In E. A. Abrams, S. A. Southerland & P. Silva (Eds.), Integrating inquiry in the classroom: Realities and opportunities. Hartford, CT: Age of Information Press.
  2. Ainley, M. (2006). Connecting with learning: Motivation, affect and cognition in interest processes. Educational Psychology Review, 18(4), 391–405.
  3. Aydeniz, M., Bilican, K., & Şenler, B. (2021). Development of the Inquiry-Based Science Teaching Efficacy Scale for Primary Teachers. Science & Education, 30, 103-120.
  4. Bansal, G., & Ramnarain, U. (2021) Inquiry-Based Science Education in Primary Schools, Education 3-13, 49(3), 259-262, doi:10.1080/03004279.2020.1854955
  5. Bell, R. L., Smetana, L., & Binns, I. (2005). Simplifying inquiry instruction. Science Teacher, 72(7), 30-33.
  6. Ben-Eliyahu, A., Moore, D., Dorph, R., & Schunn, C. D. (2018). Investigating the multidimensionality of engagement: Affective, behavioral, and cognitive engagement across science activities and contexts. Contemporary Educational Psychology, 53, 87– 105.
  7. Beymer, P. N., Rosenberg, J. M., & Schmidt, J. A. (2020). Does choice matter or is it all about interest? An investigation using an experience sampling approach in high school science classrooms. Learning and Individual Differences, 78, 101812.
  8. Blanchard, M. R., Southerland, S. A., & Granger, E. M. (2009), No silver bullet for inquiry: Making sense of teacher change following an inquiry-based research experience for teachers. Science Education, 93, 322-360.
  9. Baird, K. (2020, May 19). Caring for Educators is the First Step in Serving Students -. THE Journal.
  10. Baytiyeh, H. (2019). Why School Resilience Should Be Critical for the Post-Earthquake Recovery of Communities in Divided Societies. Education and Urban Society, 51(5), 693–711.
  11. Brooks, S. K., Webster, R. K., Smith, L. E., Woodland, L., Wessely, S., Greenberg, N., & Rubin, G. J. (2020). The psychological impact of quarantine and how to reduce it: Rapid review of the evidence. The Lancet, 395(10227), 912–920.
  12. Brown, S. T., Tai, J. H., Bailey, R. R., Cooley, P. C., Wheaton, W. D., Potter, M. A., Voorhees, R. E., LeJeune, M., Grefenstette, J. J., Burke, D. S., McGlone, S. M., & Lee, B. Y. (2011). Would school closure for the 2009 H1N1 influenza epidemic have been worth the cost: A computational simulation of Pennsylvania. BMC Public Health, 11(1), 1–11.
  13. Bruner, J. (1985). Models of the Learner. Educational Researcher, 14(6), 5–8.
  14. Capps, D. K., & Crawford B. A. (2013). Inquiry-based professional development: What does it take to support teachers in learning about inquiry and Nature of Science? International Journal of Science Education 35(12), 1947–1978.
  15. Chinn, C. A., & Malhotra, B. A. (2002). Epistemologically authentic inquiry in schools: A theoretical frameworks for evaluating inquiry tasks. Science Education, 86(2), 175-218.
  16. Cober, R., Tan, E., Slotta, J., So, H., & Könings, K. D. (2015). Teachers as participatory designers: two case studies with technology-enhanced learning environments. Instructional Science, 43(2), 203–228
  17. Correia, C. F., & Harrison, H. (2020) Teachers’ beliefs about inquiry-based learning and its impact on formative assessment practice, Research in Science & Technological Education, 38(3), 355-376, doi: 10.1080/02635143.2019.1634040
  18. Crawford, B. A. (2007), Learning to teach science as inquiry in the rough and tumble of practice. Journal of Research in Science Teaching, 44, 613-642
  19. Creswell, J. W. (2007). Qualitative inquiry & research design: Choosing among five approaches (2nd Ed.). Thousand Oaks, CA: Sage.
  20. Cauchemez, S., Ferguson, N. M., Wachtel, C., Tegnell, A., Saour, G., Duncan, B., & Nicoll, A. (2009). Closure of schools during an influenza pandemic. The Lancet Infectious Diseases, 9(8), 473–481.
  21. Chabbott, C., & Sinclair, M. (2020). SDG 4 and the COVID-19 emergency: Textbooks, tutoring, and teachers. PROSPECTS.
  22. Chieochansin, T., Makkoch, J., Suwannakarn, K., Payungporn, S., & Poovorawan, Y. (2010). Novel H1N1 2009 influenza virus infection in Bangkok, Thailand: Effects of school closures. Asian Biomedicine, 3.
  23. Colton, A. B., & Sparks-Langer, G. M. (1993). A Conceptual Framework to Guide the Development of Teacher Reflection and Decision Making. Journal of Teacher Education, 44(1), 45–54
  24. Crotty, M. (1998). The Foundations of social research. Allen & Unwin.
  25. Cullinane, C., & Montacute, R. (2020). COVID-19 and Social Mobility Impact Brief #1: School Shutdown. 11.
  26. de Jong, T., Gillet, D., Rodríguez-Triana, M.J. et al. (2020). Understanding teacher design practices for digital inquiry–based science learning: the case of Go-Lab. Education Technology Research and Development 69, 417–444.
  27. Donohue, K., Buck, G.A., & Akerson, V. (2020). Where is the science? Exploring a new science teacher educator's theoretical and practical understanding of scientific inquiry. International Journal of Research in Education and Science (IJRES), 6(1), 1-13.
  28. Driver, R., Newton, P. & Osborne, J. (2000). Establishing the norms of scientific argumentation in classrooms. Science Education, 84, 287-312.
  29. Edelson, D.C., Gordin, D.N., & Pea, R. D. (1999). Addressing the challenges of inquiry-based learning through technology and curriculum design. Journal of the Learning Sciences, 8(3-4), 391- 450, doi: 10.1080/10508406.1999.9672075 Egitim-Sen [Turkish Educators Union]. (2021, May).
  30. Feldman A., & Capobianco B. M. (2008) Teacher learning of technology enhanced formative assessment. Journal of Science Education and Technology, 17(1), 82–99.
  31. Feyzioglu, B. (2019). Examination of laboratory perception of preservice science teachers with different goal orientations on inquirybased analytical chemistry courses: A case study. International Journal of Education in Mathematics, Science and Technology (IJEMST), 7(3), 281-310.
  32. Fitzgerald, M., Danaia, L., & McKinnon, D. H. (2019). Barriers inhibiting inquiry-based science teaching and potential solutions: Perceptions of positively inclined early adopters. Research in Science Education, 49(2), 543–566.
  33. Hargreaves, A., & Fullan, M. (2012). Professional capital: Transforming teaching in every school. Teachers College Press
  34. Harteis, C., & Gruber, H. (2008). Intuition and Professional Competence: Intuitive Versus Rational Forecasting of the Stock Market. Vocations and Learning, 1(1), 71–85
  35. Hatano, G., & Inagaki, K. (1984). TWO COURSES OF EXPERTISE. Hokkaido University Collection of Scholarly and Academic Papers, 11.
  36. Hycner, R. H. (1985). Some Guidelines for the Phenomenological Analysis of Interview Data. Human Studies, 8(3), 279–303.
  37. Jentoft, N., & Olsen, T. S. (2019). Against the flow in data collection: How data triangulation combined with a ‘slow’ interview technique enriches data. Qualitative Social Work, 18(2), 179–193.
  38. Kaden, U. (2020). COVID-19 School Closure-Related Changes to the Professional Life of a K– 12 Teacher. Education Sciences, 10(6), 165.
  39. Kakkori, L. (2010). Hermeneutics and Phenomenology Problems When Applying Hermeneutic Phenomenological Method in Educational Qualitative Research. Philosophical Inquiry in Education, 18(2), 19–27.
  40. Linn, M., Husic, F., Slotta, J., & Tinker, B. (2006). Technology enhanced learning in science (TELS): Research programs. Educational Technology, 46(3), 54-68.
  41. Long, S., & Bae, Y. (2018). Action research: First year primary school science teacher’s conceptions on and enactment of science inquiry in Singapore. ‖ Asia-Pacific Science Education, 4(2), 1–20. doi:10.1186/s41029-017-0017-9.
  42. Merriam, Sharan B. (1998). Qualitative research and case study applications in education (2nd ed.). San Francisco, CA: Jossey-Bass Publishers.
  43. Miles, M. B. & Huberman, A. M. (1994). Qualitative data analysis (2nd ed.). Thousand Oaks: Sage Publications.
  44. Mishra, P., & Koehler, M. (2006). Technological Pedagogical Content Knowledge: A framework for teacher knowledge. Teachers College Record, 108(6), 1017–1054.
  45. National Research Council [NRC] (1996). National science education standards. Washington, D.C.: National Academy Press
  46. National Research Council [NRC] (2000). Inquiry and the National Science Education Standards. Washington, D.C.: National Academy Press.
  47. National Research Council [NRC] (2000). Inquiry and the National Science Education Standards. Washington, D.C.: National Academy Press.
  48. Nhlengethwa, K.B., Govender, N, & Sibanda, D. (2021). Primary school pre-service teacher’s enactment of inquiry-based-science teaching, Education 3-13, 49(3), 288-301.
  49. Patton, M. Q. (2002). Qualitative research and evaluation methods (3rd ed.). Thousand Oaks: Sage Publications.
  50. Schwab, J. (1960). Inquiry, the science teacher, and the educator. School Review, 68, 176- 195.
  51. Sotiriou, S.A., Lazoudis, A., & Bogner, F.X. (2020). Inquiry-based learning and E-learning: how to serve high and low achievers. Smart
  52. Straus, A., and J. Corbin. 1990. Basics of qualitative research: Grounded theory procedures and techniques. Newbury Park, CA: Sage.
  53. Van der Valk, T., & De Jong, O. (2009). Scaffolding science teachers in open-inquiry teaching. International Journal of Science Education, 31(6), 829–850
  54. van Uum M. S. J., Verhoeff, R. P., & Peeters, M. (2016). Inquirybased science education: towards a pedagogical framework for primary school teachers, International Journal of Science Education, 38(3), 450-469, doi: 10.1080/09500693.2016.1147660
  55. Varma, K., Husic F., & Linn, M. C. (2008). Targeted support for using technology-enhanced science inquiry modules. Journal of Science Education and Technology, 17(4), 341– 356.
  56. Wirkala, C., & Kuhn, D. (2011). Problem-based learning in K–12 education: Is it effective and how does it achieve its effects? American Educational Research Journal, 48(5), 1157–1186
  57. Wong, K. K., Shi, J., Gao, H., Zheteyeva, Y. A., Lane, K., Copeland, D., Hendricks, J., McMurray, L., Sliger, K., Rainey, J. J., & Uzicanin, A. (2014). Why is school closed today? Unplanned K-12 school closures in the United States, 2011-2013. PLoS ONE, 9(12), e113755.
  58. Wu, J. T., Cowling, B. J., Lau, E. H. Y., Ip, D. K. M., Ho, L.-M., Tsang, T., Chuang, S.-K., Leung, P.-Y., Lo, S.-V., Liu, S.-H., & Riley, S. (2010). School Closure and Mitigation of Pandemic (H1N1) 2009, Hong Kong. Emerging Infectious Diseases, 16(3), 538–541.
  59. Yan, Z., Chai, C. S., & So, H.-J. (2018). Creating tools for inquirybased mathematics learning from technological pedagogical content knowledge perspectives: Collaborative design approach. Australasian Journal of Educational Technology, 34(4), 57-71.