UNDERSTANDING OF TEACHERS ON PHASES OF THE MOON AND THE LUNAR ECLIPSE / ÖĞRETMENLERİN AY'IN EVRELERİ VE AY TUTULMASINA İLİŞKİN ANLAYIŞLARI

Melike Güzin Semercioğlu, Hüseyin Kalkan

Abstract


Even though the educational researchers have developed and implemented various educational strategies to teach the concepts of the phases of the Moon and the formation of the lunar eclipse more effectively, many studies conducted by them in recent years reveal that the teachers still do not understand the causes and scientific processes related to the phases of the Moon phases and lunar eclipse. In addition, this situation shows that there are deep problems in teaching the subjects of Moon phases and lunar eclipse to students. Examining the main causes of learning difficulties in the phases of the Moon and lunar eclipse, this study is designed on the basis of development and implementation of a project supported by STRCT (The Scientific and Technological Research Council of Turkey) in order to discuss the possible solutions. A 5-day activity program including basic astronomy education was applied to science teachers by using the model developed within the scope of the project, and the changes in mental models of the teachers in the subjects of Moon phases and lunar eclipse were examined. This research was carried out with 29 teachers voluntarily participating in the project in the field of Science. In this study in which qualitative and quantitative data collection methods were applied together, as a result of the evaluation of the obtained data, it was observed that the project was very successful in understanding the phases of the Moon and the causes of the lunar eclipse. The obtained results were interpreted by comparing them with the literature.

Son yıllarda eğitim araştırmacılarının yaptığı birçok araştırma, Ay’ın evreleri ve Ay tutulmasının oluşması kavramlarını daha etkili bir şekilde öğretmek için çeşitli eğitim stratejileri geliştirip uygulamalarına rağmen, öğretmenlerin Ay’ın evreleri ve Ay tutulmasının oluşma nedenlerini ve bilimsel süreçlerini hala kavrayamadıklarını ortaya koymaktadır. Bu durum, Ay’ın evreleri ve Ay tutulması konularının öğrencilere öğretilmesinde derin sorunlar yaşandığını göstermektedir. Bu çalışma, Ay’ın evreleri ve Ay tutulması konularındaki öğrenme zorluklarının temel nedenlerinin araştırılarak, olası çözümlerin tartışılması için TÜBİTAK (The Scientific and Technological Research Council of Turkey) tarafından desteklenen bir proje geliştirilmesi ve uygulanması üzerine kurgulanmıştır. Proje kapsamında geliştirilen model kullanılarak fen bilimleri öğretmenlerine temel astronomi eğitimi konularını da kapsayan 5 günlük bir etkinlik programı uygulanmış ve öğretmenlerin Ay’ın evreleri ve Ay tutulması konularındaki zihinsel modellerinin değişimleri incelenmiştir. Bu çalışma Fen Bilimleri alanında projeye gönüllü olarak katılan 29 öğretmen ile gerçekleştirilmiştir. Nitel ve nicel veri toplama yöntemlerinin bir arada kullanıldığı bu araştırmada, elde edilen verilerin değerlendirilmesi sonucu, Ay’ın evreleri ve Ay tutulmasının oluşum nedenlerinin kavranmasında oldukça başarılı olunduğu gözlenmiştir. Elde edilen sonuçlar literatürle karşılaştırılarak yorum yapılmıştır.

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Keywords


science teaching, astronomy education, formation of the phases of the Moon, the formation of the lunar eclipse, mental models / fen eğitimi, astronomi eğitimi, Ay’ın evrelerinin oluşumu, Ay tutulmasının oluşumu, zihinsel modeller

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References


Ayas, A., Çepni, S., Johnson, D. & Turgut, M. F. (1997). Physic Education. YOK/ World Bank National Education Development Project Pre-Service Teacher Training Publications

Bailey, J. M. & Slater, T. F. (2003). A review of astronomy education research. Astronomy Education Review, 2 (2), 20-45, https://doi.org/10.3847/AER2003015

Bisard, W. J., Aron, R. H., Francek, M. A., & Nelson, B. D. (1994). Assessing selected physical science and earth science misconceptions of middle school through university preservice teachers. Journal of College Science Teaching, 24(1), 38–42.

Black, A. (2005). Spatial ability and earth science conceptual understanding. Journal of Geoscience Education, 53(4), 402-414. https://doi.org/10.5408/1089-9995-53.4.402

Bretones, P. S. (2019). Astronomy Education Research: Impact and Future Directions. EPJ Web of Conferences, 200. https://doi.org/10.1051/epjconf/201920001022

Bretones, P. S., Jafelice, L. C. and Horvath, J. E. (2016). Ten Years of Latin-American Journal of Astronomy Education RELEA: Achievements and Challenges for International Astronomy Education Development, Journal of Astronomy & Earth Sciences Education (JAESE) 3(2), 110-124. https://doi.org/10.19030/jaese.v3i2.9844

Brunsell, E. & Marcks, J. (2005). Identifying a baseline for teachers‟ astronomy content knowledge. Astronomy Education Review, 3(2), http://doi.org/10.3847/AER2004015

Bryce, T. G. K., Blown, E. J. (2012). The novice-expert continium in astronomy knowledge, International Journal of Science Education, 34(4), 545-587. http://doi.org/10.1080/09500693.2011.642325

Chen, C., Sonnert, G., Sadler, P. M., Sasselov, D., & Fredericks, C. (2020). The impact of student misconceptions on student persistence in a MOOC. Journal of Research in Science Teaching, 57(6), 879–910. https://doi.org/10.1002/tea.21616

COCESoE, (2015, 06 03). A Private Universe Fragments. Youtube. https://www.youtube.com/watch?v=A4ZDyzPqnT4

Collette, A. T. & Chiappetta, E. L. (2009). Science instruction in the middle and secondary schools. Merrill Publishing Company, Ohio.

Comins, N. F. (2001). Heavenly errors: Misconceptions about the real nature of the universe. New York: Columbia University Press.

Creswell, J. W. (2013). Educational research 4e:Planning, conducting, and evaluating quantitative and qualitative research, Pearson Education.

Emrahoğlu, N. ve Öztürk, A. (2009). A longitudinal study on the examination of the understanding levels of science teachers’ concepts of astronomy and their misconceptions, Çukurova University Journal of Social Science Institute, 18(1), 165-180.

Fraknoi, A. (2014). A brief history of publishing papers on astronomy education research. Journal of Astronomy & Earth Sciences Education, 1(1), 37-40. https://doi.org/10.19030/jaese.v1i1.9105

Gazit, E., Yair, Y., & Chen, D. (2005). Emerging conceptual understanding of complex astronomical phenomena by using a virtual solar system. Journal of Science Education and Technology, 14(5), 459-470, https://doi.org/10.1007/s10956-005-0221-3

Gobert, J. D. & Clement, J. J. (1999). Effects of student-generated diagrams versus student generated summaries on conceptual understanding of causal and dynamic knowledge in plate tectonics. Journal of Research in Science Teaching, 36(1), 39–54, https://doi.org/10.1002/(SICI)1098-2736(199901)36:1<39::AID-TEA4>3.0.CO;2-I

Gregory, B., Coyle, H. P. & Luzader, W. M., (2001). Project STAR: The Universe in Your Hands: The Celestial Sphere: A Model of the Sky. Kendall-Hunt Publishing.

Gurbuz, F. (2015). Physics Education: Effect of Micro-teaching Method Supported by Educational Technologies on Pre-service Science Teachers’ Misconceptions on Basic Astronomy Subjects. Journal of Education and Training Studies, 4(2), 2010–2011. https://doi.org/10.11114/jets.v4i2.1140.

Kalkan, H. (2018). I am Learning the Planet We Live in V: Seasons, (Report No. 117B326), TUBITAK.

Kanlı, U. (2014). A study on identifying the misconceptions of pre-service and in-service teachers about basic astronomy concepts. Eurasia Journal of Mathematics, Science and Technology Education, 10(5), 471–479. https://doi.org/10.12973/eurasia.2014.1120a

Kavanagh, C., Agan, L. & Sneider, C. (2005). Learning about Moon Phases and Eclipses: A Guide for Teachers and Curriculum Developers, Astronomy Education Review, 4 (19). https://doi.org/10.3847/AER2005002

Keçeci, T. (2012, April 26-28). Elementary school students’ level of understanding of astronomy concepts and the importance of astronomy course for education [Paper presentation]. 3rd International Conference on New Trends in Education and Their Implications, Antalya, Turkey.

Kikas, E. (2004). Teachers’ Conceptions and Misconceptions Concerning Three Natural Phenomena. Journal of Research in Science Teaching, 41(5), 432-448. https://doi.org/10.1002/tea.20012

Miles, B. M., Huberman, A. M. & Saldana, J. (2014). Qualitative Data Analysis: A Methods Sourcebook, Sage Publications.

Miller, B. W. & Brewer, W. F. (2010). Misconceptions of Astronomical Distances. International Journal of Science Education, 32(12), 1549–1560. https://doi.org/10.1080/09500690903144099

National Research Council (1996). National Science Education Standards, Washington, DC: National Academies Press.

Nussbaum, J. (1986). Students' Perception of Astronomical Concepts. COSMOS — An Educational Challenge, Copenhagen, Denmark, ESA Publications Division.

Ojala, J. (1997). Lost in Space? The Concepts of Planetary Phenomena Held by Trainee Primary School. International Research in Geographical and Environmental Education. 6(3). https://doi.org/10.1080/10382046.1997.9965047

Orbay, M. & Gökdere, M. (2006, September 6-8). Determining the knowledge level of science and primary school teacher candidates about basic astronomy concepts [Paper presentation], National Congress of Science and Mathematics Education, Ankara, Turkey.

Piaget, J. (1929). The child’s conception of the world. New York: Harcourt, Brace.

Roald, I., and Mikalsen O. (2001). Configuration and dynamics of the Earth–Sun–Moon system: An investigation into conceptions of deaf and hearing pupils. International Journal of Science Education, 23(4), 423–440.

Sadler, P. M. (1992). The initial knowledge state of high school astronomy students, [Unpublished doctoral thesis], Harvard University, Cambridge, MA.

Schoon, K. J. (1989). Misconceptions in the earth and space sciences, [Unpublished doctoral thesis], Loyola University, Chicago.

Şimşek, H., & A. Yıldırım (2011). Qualitative Research Methods in the Social Sciences. Seckin Publications.

Sneider, C. (2011). Learning about Seasons: A Guide for Teachers and Curriculum Developers. Astronomy Education Review 10(1). https://doi.org/10.3847/AER2010035

Sneider, C., Bar, V. & Kavanagh, C. (2011). Learning about Seasons: A Guide for Teachers and Curriculum Developers. The American Astronomical Society. 10(1), https://doi.org/10.3847/AER2010035

Sönmez, V. & Alacapınar F. G. (2013). Illustrated Scientific Research Methods. Ani Publications

Targan, D. M. (1993). The assimilation and accommodation of concepts in astronomy, [Doctoral Dissertation, University of Minnesota]. Minnesota University Theses and Dissertations Archive.

Trumper, R. (2001). A cross-age study of senior high school students’ conceptions of basic astronomy concepts. Research in Science and Technological Education, 19(1), 97–109. https://doi.org/10.1080/02635140120046259.

Uçar, S. ve Demircioğlu, T. (2011). Changes in Preservice Teacher Attitudes Toward Astronomy Within a Semester-Long Astronomy Instruction and Four-Year-Long Teacher Training Programme. Journal of Science Education and Technology 20(1), 65-73. https://doi.org/10.1007/s10956-010-9234-7

Zeilik, M., Schau, C., Mattern, N. (1998). Misconceptions and Their Change in University- Level Astronomy Courses. The Physics Teacher., 36(2), 104-107. https://doi.org/10.1119/1.880056




DOI: http://dx.doi.org/10.46827/ejes.v8i2.3555

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