Abell, S. K. (2007). Handbook of research on science education. Mahwah, NJ: Lawrence Erlbaum Associates.
Addido, J., Burrows, A. C., & Slater, T. F. (2022). Addressing pre-service teachers' misconceptions and promoting conceptual understanding through the conceptual change model. Problems of Education in the 21st Century, 80(4), 499-515.
Alwan, A. A. (2011). Misconceptions of heat and temperature among physics students. Procedia - Social and Behavioral Sciences, 12, 600-614.
Anam, R. S., Sukardi, R. R., Handayani, M., Anantanukulwong, R., & Jajuri, T. (2025). Prospective Primary School Teachers’ Understanding of Model Representation: The Case of Static Electricity. IJIS Edu: Indonesian Journal of Integrated Science Education, 7(1), 125-143.
Badrian, A., & Colleagues. (2012). Fourth-grade students’ misconceptions about astronomical phenomena: A study from teachers’ perspectives. Educational Innovations Quarterly, 11(44), 99-118.
Badrian, A., Shokar Bagani, A. S., & Pourskandari, R. (2013). Investigating fifth-grade students’ misconceptions about the concepts of heat and temperature. Educational Innovations, 48, 93.
Benjamin, T. E., Marks, B., Demetrikopoulos, M. K., Rose, J., Pollard, E., Thomas, A., & Muldrow, L. L. (2017). Development and validation of a scientific literacy scale for college preparedness in STEM with freshmen from diverse institutions. International Journal of Science and Mathematics Education, 15(4), 607-623.
https://doi.org/10.1007/s10763-015-9710-x
Brookfield, S. (2013). Teaching for critical thinking. International Journal of Adult Vocational Education and Technology (IJAVET), 4(1), 1-15.
Burgoon, J. N., Heddle, M. L., & Duran, E. (2011). Re-examining the similarities between teacher and student conceptions about physical science. Journal of Science Teacher Education, 22(2), 101-114.
https://doi.org/10.1007/s10972-010-9196-x
Bayuni, T. C., Sopandi, W., & Sujana, A. (2018, May). Identification misconception of primary school teacher education students in changes of matters using a five-tier diagnostic test. In Journal of Physics: conference series (Vol. 1013, No. 1, p. 012086). IOP Publishing.
California State Polytechnic University, Pomona. (2024). Common student ideas about sound. Retrieved from
https://www.cpp.edu/respect/resources/documents_1st/sound/gr1.sound_common_student_ideas.pdf
Çalik, M., Ültay, N., Bağ, H., & Ayas, A. (2023). Effectiveness of particulate nature of matter (PNM)-based intervention studies in improving academic performance: A meta-analysis study. Chemistry Education Research and Practice, 24(3), 938-955.
Choi, H., Kim, E., Paik, S., Lee, K., & Chung, W. (2001). Investigating elementary students’ understanding levels and alternative conceptions of heat and temperature. Elementary Science Education, 20, 123–138.
Cohen, L., Manion, L., & Morrison, K. (2017). Research Methods in Education (8th ed.). Routledge.
https://doi.org/10.4324/9781315456539.
Corni, F., & Fuchs, H. U. (2021). Primary physical science for student teachers at kindergarten and primary school levels: Part II—Implementation and evaluation of a course. Interchange, 52(2), 203-236.
Dantonio, M., & Beisenherz, P. C. (2001). Learning to question, questioning to learn. Allyn and Bacon.
Darling-Hammond, L. (2000). Solving the dilemmas of teacher supply, demand, and standards: How we can ensure a competent, caring, and qualified teacher for every child. National Commission on Teaching & America's Future.
Demirdag, S. (2014). Effective teaching strategies and student engagement: Students with learning disabilities. International Journal of Teaching and Education, 2(3), 168.
Doğanay, K. (2022). Determination of misconceptions about mass and weight of 7th-grade students of middle school. Social Scientific Centered Issues, 2(1), 3-7.
Dorji, U. (2021). Misconception on floating and sinking. International Journal of English Literature and Social Sciences, 6(5), 243-249.
Eyüboğlu, I. S. K., & Arslan, A. S. (2024). Effectiveness of guided inquiry-based laboratory instruction on prospective science teachers’ procedural and conceptual understandings. Educational Academic Research, (54), 89-104.
Fandiño Parra, Y. J., Muñoz Barriga, A., López Díaz, R. A., & Galindo Cuesta, J. A. (2021). Teacher education and critical thinking: Systematizing theoretical perspectives and formative experiences in Latin America. Revista de Investigación Educativa, 39(1), 149-167.
https://doi.org/10.6018/rie.416271
Fenditasari, K., & Istiyono, E. (2020, February). Identification of misconceptions on heat and temperature among physics education students using four-tier diagnostic test. In Journal of Physics: Conference Series (Vol. 1470, No. 1, p. 012055). IOP Publishing.
Gülçiçek, N. (2004). The effect of conceptual change texts on students’ understanding of magnetism subject and attitudes towards physics [Unpublished master's thesis]. Gazi University, Ankara.
Jonassen, D. H. (2010). Learning to solve problems: A handbook for designing problem-based learning environments. Routledge.
kamalianfar, ahmad, Jaberi, Mohammad Amin, & Mirab, Mohammad Reza. (2021). investigating of new physics student-teacher misconception. JOURNAL OF EDUCATION IN BASIC SCIENCES, 7(24 ), 84-94.
Kambouri, M. (2010). Teachers an children’s misconceptions in science. In British Educational Research Association Annual Conference, University of Warmick.
Kaniawati, I., Fratiwi, N. J., Danawan, A., Suyana, I., Samsudin, A., & Suhendi, E. (2019). Analyzing students’ misconceptions about Newton’s laws through Four-Tier Newtonian Test (FTNT). Journal of Turkish Science Education, 16(1), 110-122.
Karabacak, Ü. (2014). Özdüzenleme ve ilköğretim ikinci kademe öğrencilerinin fen başarısının incelenmesi [Examination of self-regulation and science achievements of the 2nd levels of primary school students] [Unpublished master’s thesis]. Balıkesir University, Balıkesir
Kartal, E. E., Cobern, W. W., Dogan, N., Irez, S., Cakmakci, G., & Yalaki, Y. (2018). Improving science teachers’ nature of science views through an innovative continuing professional development program. International Journal of STEM Education, 5(30), 1-10.
https://doi.org/10.1186/s40594-018-0125-4
Kikas, E. (2004). Teachers' conceptions and misconceptions concerning three natural phenomena. Journal of Research in Science Teaching: The Official Journal of the National Association for Research in Science Teaching, 41(5), 432-448.
Kirikkaya, E. B. & Gullu, D. (۲۰۰۸). Fifth Grade Students’ Misconceptions about Heat - Temperature and Evaporation – Boiling. Elementary Education Online, ۷(۱), ۱٥-۲۷
Krajcik, J., & Blumenfeld, P. (2006). Inquiry-based learning in science education. Journal of Science Education, 40(5), 745-770.
Küçüközer, H., & Kocakülah, S. (2007). Secondary school students’ misconceptions about simple electric circuits. Journal of Turkish Science Education, 4(1), 101-115.
Hardy, I., Jonen, A., Möller, K., & Stern, E. (2006). Effects of instructional support within constructivist learning environments for elementary school students' understanding of "floating and sinking." Journal of Educational Psychology, 98(2), 307.
Hashweh, M. Z. (1987). Effects of subject-matter knowledge in the teaching of biology and physics. Teaching and Teacher Education, 3(2), 109-120.
Hattie, J. (2008). Visible learning: A synthesis of over 800 meta-analyses relating to achievement. Routledge.
Hattie, J., & Yates, G. C. (2013). Visible learning and the science of how we learn. Routledge.
Hekkenberg, A. (2012). Addressing misconceptions about electric and magnetic fields: A variation theory analysis of a lecture's learning space (Master's thesis).
Hemmati, M. (2001). The philosophy of science education. Special Issue on Science Education, 20, 4-7.
Hewitt, P. G. (2013). Conceptual physics (10th ed.). Pearson.
Institute of Physics. (2024). Retrieved from
http://www.iop.org/
Ilyas, M. S. (2018). Exploring teachers’ understanding about misconceptions of secondary grade chemistry students. International Journal of Cross-Disciplinary Subject Education, 9, 3323-3328.
Irawati, R. K., & Sofianto, E. W. N. (2019, October). The misconception analysis of natural science students on heat and temperature material using four-tier test. In Journal of Physics: Conference Series (Vol. 1321, No. 3, p. 032104). IOP Publishing.
McDermott, L. C. (2006). Preparing K-12 teachers in physics: Insights from history, experience, and research. American journal of Physics, 74(9), 758-762.
Manouchehrizadeh, E. (2018). Identifying misconceptions of educational sciences student-teachers at Farhangian University about the concepts of heat and temperature. Basic Sciences Journal, 8(2), 65-78.
Miller, J. D., Hestenes, D., & Wells, M. (2006). Student Misconceptions about Temperature and Heat. Journal of Research in Science Teaching, 43(4), 356-369.
Mirach, E. (2019). Overcoming eighth grade students’ misconceptions about simple electric circuits using 5E model. (Doctoral dissertation, University of Istanbul).
Mufit, F. (2018). The study of misconceptions on motion’s concept and remediate using real experiment video analysis.
Laeli, C. M. H. (2020, February). Misconception of science learning in primary school students. In 3rd International Conference on Learning Innovation and Quality Education (ICLIQE 2019) (pp. 657-671). Atlantis Press.
Lin, J. W., Yen, M. H., Liang, J., Chiu, M. H., & Guo, C. J. (2016). Examining the factors that influence students’ science learning processes and their learning outcomes: 30 years of conceptual change research. Eurasia Journal of Mathematics, Science and Technology Education, 12(9), 2617-2646.
Liu, C. (2022). Understanding Heat and Temperature in Physics Education. Journal of Educational Science, 45(3), 210-225.
Ouch, S., & Widiyatmoko, A. (2023, June). The role of students’ misconceptions in science teaching and learning. In AIP Conference Proceedings (Vol. 2614, No. 1). AIP Publishing.
Odja, A. H. (2020, April). Minimizing misconception on the topic of temperature and heat by edmodo learning media. In Journal of Physics: Conference Series (Vol. 1521, No. 2, p. 022066).
Palmer, D., & Bright, R. (2003). Identifying and Correcting Misconceptions about Gravity in Elementary Students. Journal of Science Teacher Education, 14(3), 233-241.
Peşman, H., & Eryılmaz, A. (2010). Development of a three-tier test to assess misconceptions about simple electric circuits. The Journal of Educational Research, 103(3), 208-222.
https://doi.org/dznct3
Prince, M. (2004). Does active learning work? A review of the research. Journal of Engineering Education, 93(2), 223-231.
Rasul, S., Shahzad, A., & Iqbal, Z. (2019). Teachers’ misconceptions in science: Implications for developing a remedial teacher training program. Global Social Sciences Review (GSSR), 4(3), 221-228.
Romero-García, C., Buzón-García, O., Sacristán-San-Cristóbal, M., & Navarro-Asencio, E. (2020). Evaluación de un programa para la mejora del aprendizaje y la competencia digital en futuros docentes empleando metodologías activas. Estudios sobre educación, 39, 179-205.
Sencar, S., & Eryılmaz, A. (2004). Factors mediating the effect of gender on ninth-grade Turkish students’ misconceptions concerning electric circuits. Journal of Research in Science Teaching, 41(6), 603–616.
https://doi.org/dfbxdf
Schleigh, S. (2014). Addressing Misconceptions in the Elementary Classroom. Retrieved from
https://static.nsta.org/connections/elementaryschool/201404Schleigh.pdf.
Shohib, M., Rahayu, Y. S., Wasis, W., & Hariyono, E. (2021). Scientific literacy ability of junior high school students on static electricity and electricity in living things. IJORER: International Journal of Recent Educational Research, 2(6), 700-708.students on static electricity and electricity in living things. IJORER : International Journal of Recent Educational Research, 2(6), 700–708.
https://doi.org/10.46245/ijorer.v2i6.170.
Schoenfeld, A. H. (2010). How we think: A theory of goal-oriented decision making and its educational applications. Routledge.
Schraw, G., et al. (2006). Constructivist learning strategies in science education. Journal of Constructivist Teaching, 12(3), 215-238.
Stylos, G., Siarka, O., & Kotsis, K. T. (2023). Assessing Greek pre-service primary teachers’ scientific literacy. European Journal of Science and Mathematics Education, 11(2), 271-282.
https://doi.org/10.30935/scimath/12637
Syuhendri, S. (2019, April). Student teachers’ misconceptions about gravity. In Journal of Physics: Conference Series (Vol. 1185, No. 1, p. 012047).
Taber, K. S. (2000). Chemistry lessons for universities?: A review of constructivist ideas. University chemistry education, 4(2), 63-72.
Tomlinson, C. A. (2014). The differentiated classroom: Responding to the needs of all learners (2nd ed.). ASCD.
Taşlıdere, E. (2013). Effect of conceptual change oriented instruction on students’ conceptual understanding and decreasing their misconceptions in DC electric circuits. Creative Education, 4(4), 273-282.
https://doi.org/gq2jvs
Thompson, F., & Logue, S. (2006). An exploration of common student misconceptions in science. International education journal, 7(4), 553-559.
Tweed, T.R. Triggs, & J.P. Hesse. (2003). Misconceptions about Gravity among Elementary School Students. Physics Education, 38(5), 441-446.
Ürek, H., & Çoramık, M. (2021). A Cross Sectional Survey about Students’ Agreement Rates on Non Scientific Ideas concerning the Concept of Magnet. Journal of Turkish Science Education, 18(2), 218-232.
Ünal, C., & Costu, D. (2005). Understanding the principles of density and buoyancy. Scientific Publications.
Vahedi, M., Fathi, F., Moradi, E., Hamedinasab, S., Kordlou, M., & Mohtadi, S. (2020). The necessity and benefits of using educational technology in different teaching approaches. Educational Technology Growth, 36(3), 15-20.
Vančugovienė, V. (2025). Exploring and enhancing conceptual change in biology education: Within and beyond the classroom (Doctoral dissertation).
Vosniadou, S. (2020). The development of students' understanding of science concepts: Conceptual change as a framework for constructing instructional interventions. In C. Sinatra & P. Pintrich (Eds.), Intentional conceptual change (pp. 377–406). Erlbaum.
Windschitl, M. (2006). The role of social interaction in learning natural sciences. Journal of Experimental Education, 30(1), 22-40.
Wiggins, G., & McTighe, J. (2005). Understanding by design (2nd ed.). ASCD.
Wiliam, D. (2011). Embedded formative assessment. Solution Tree Press.