[1] Ahmad, S., & Arshad, M. (2018). Innovative Teaching Strategies and Chemistry Achievements at Secondary Level. American Based Research, 1–7(12), 67–74.
[2] Astakhov, О. І., & Chajchenko, N. N. (1984). Didactic bases of teaching chemistry. Kyiv, Sovet school. 128. (in Ukr.)
[3] Berezan, O. V. (2002). About the organization of students' educational activities during the study of chemistry. Pedagogical search, 4. (in Ukr.)
[4] Blagko, О. А. (2008). General methodology of teaching chemistry. Vinnytsia, Edelweiss & К. (in Ukr.)
[5] Budnyk, O. (2024). In Search of New Concepts. The Challenges of the Modern Humanities in the Pedagogical Focus (On Lech Witkowski’s Philosophical Works). Phaenomena: Journal of Phenomenology and Hermeneutics, 33(128-129), 225-251. https://doi.org/10.32022/PHI33.2024.128-129.10
[6] Burynska, N. М. (2007). Chemistry, 7 form. Textbook for general education institutions. Kyiv, Іrpin: VTF Perun. 112. (in Ukr.)
[7] Chajchenko, N. N. (2001). Modern method of formation of students’ theoretical knowledge on the basics of chemistry. Sumy: Nota Bene. (in Ukr.)
[8] Conception of New Ukrainian School. https://www.kmu.gov.ua/storage/app/media/reforms/ukrainska-shkola-compressed.pdf (in Ukr.)
[9] Dewey, D. (2003). Democracy and education. Lviv: Litopys. 294. (in Ukr.)
[10] Dziabenko, O., & Budnyk, O. (2019). Go-Lab Ecosystem: using Online Laboratories in a Primary School. 11th annual International Conference on Education and New Learning Technologies. Palma de Mallorca, Spain. 1st – 3rd of July, 2019. EDULEARN19 Proceedings. https://library.iated.org/view/DZIABENKO2019GOL
[11] Espinosa, A. A., Koperová, D., Kuhnová, M., & Rusek, M. (2025). Preservice Chemistry Teachers’ Conceptual Understanding and Confidence Judgment: Insights from a Three-Tier Chemistry Concept Inventory. Journal of Chemical Education, 102(1), 53-65. https://pubs.acs.org/doi/epdf/10.1021/acs.jchemed.4c01146
[12] Indrawan, E., & Jalinus, S. N. (2019). Review Project-Based Learning. International Journal of Science and Research. 8(4). 1014–1018. https://doi.org/10.21275/ART20196959
[13] Grabovyi, А. К. (2008). Chemical experiments and educational technologies in general educational institutions. Methodical manual for teachers. Cherkasy: CHNU named after Bohdan Khmelnytskyi. (in Ukr.)
[14] Grabovyi, A. К. (2014). Research activity of students of chemistry in general education institutions. Native School, 7, 53−57. (in Ukr.)
[15] Gurnyak, І. А. (2009). Methodical approaches to increase the motivation to study chemistry in elementary school. Pedagogical sciences. Collection of abstracts. Sumy: SumDPU named after A. S. Makarenka, 1, 39–50. (in Ukr.)
[16] Kazakova, N., & Pisotska, L. (2014). The main pedagogical ideas of K. D. Ushynsky transformed into modern education. Series: Outstanding Ukrainian teachers, 5, 164-171, Kostyantyn Ushynsky. Scientific works. Lviv: SPOLOM. (in Ukr.)
[17] Khomenko, P. V. (2007). Generalization of knowledge of chemistry in the aspect of functionality. Development of scientific creativity of future teachers of natural sciences. ХIV Karyshynski chytannia. Collection of abstracts, Poltava, 225–227. (in Ukr.)
[18] Kristen, K. B., Malinda, W. G., Monica, D., & Kendra, M. (2017). Pedagogical Methods and Technology Used in Chemistry Secondary Education. Modern Chemistry & Applications, 5(3), 223. https://doi.org/10.4172/2329-6798.1000223
[19] Kumar, D., & Chauhan, A. (2014). Information and communication technology in chemistry education and research. In: E. J. Beckman, J. A. Burgess, & A. R. B. Oliveira (Eds.). Innovative methods of teaching and learning chemistry in higher education. American Chemical Society, 281–299.
[20] Lashevska, G. (2009). Practical experiment as a component of pre-professional training in chemistry. Biology and chemistry at school. 6, 13–14. (in Ukr.)
[21] Levkivskyi, М. V., & Pashchenko, D. І. (2016). Hystoryofpedagogy. Kyiv: Center of Education literature, 42–48. (in Ukr.)
[22] Lypova, L., Morozova, L., & Filenko, I. (2006). Peculiarities of education activities in specialized classes. The way of education, 1, 35–41. (in Ukr.)
[23] Savchyn, М. М. (2003). School chemical experiment as a system and its didactic support. Pedagogical Thought, 1–2, 36–44. (in Ukr.)
[24] Savchyn, М. М. (2016). The practical focus of a home chemical experiment. Biology and chemistry in native school, 1, 2–5. (in Ukr.)
[25] Shevchenko, А. М. (2015). Formation of chemical knowledge of lyceum students with pre-professional military training: Abstract of the thesis of the PhD in Pedagogy: 13.00.02. Kyiv. (in Ukr.)
[26] Starosta, К., E., & Starosta, V., І. (2003). Tasks of chemistry as a means of development of students and teachers. V Scientific and Method. Conf. “Postgraduate Problems”. Collection of abstracts, Ughorod, 158–163. (in Ukr.)
[27] State standard of basic secondary education. https://mon.gov.ua/osvita-2/zagalna-serednya-osvita/derzhavni-standarti (in Ukr.)
[28] Vasyanovych, Н. (2014). The principles of conformity to nature in the pedagogical creativity of K. D. Ushynsky. In: Kostyantyn Ushynsky. Scientific works: Series: Outstanding Ukrainian Teachers, 5 (pp. 22–32). Lviv: SPOLOM. (in Ukr.)
[29] Velychko, L. P. (2013). Methodical system of teaching chemistry: reboot. Biology and chemistry in modern school, 3, 7–13. (in Ukr.)
[30] Witkowski, L. (2017). Humanistyka stosowana. Wirtuozeria, pasje, inicjacje. Profesje społeczne versus ekologia kultury. [Applied Humanities. Virtuosity, passions, initiations. Social professions versus the ecology of culture]. Kraków: Oficyna Wydawnicza ‘Impuls’ (in Pol.)
[31] Yaroshenko, О., & Кorshevnyuk, Т. (2024). Challenges of the National Academy of Sciences to the subject of teaching chemistry in institutions of general secondary education. Problems and prospects of the development of the natural educational field. Collection of abstracts, 28–32. (in Ukr.)