Scientific Herald of Uzhhorod University. Series "Physics"

ISSN 2415-8038 e-ISSN 2786-6688
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Scientific Herald of Uzhhorod University. Series "Physics"

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Educational program for teaching chemistry with regional component in higher educational institutions

Issue 56, 2024

Gulzat Syrymbetova, Zhazira Mukatayeva, Bakdolot Kosobaeva, Assem Uzakova, Meldebek Zhaxibayev

Received 09.01.2024, Revised 20.04.2024, Accepted 29.06.2024

https://doi.org/10.54919/physics/56.2024.193sl6

Abstract

Relevance. The research explores the implementation of a regional component in chemistry education programs at higher education institutions in Kazakhstan. Its relevance stems from the need to improve and update university chemical education by incorporating regional specificities.

Purpose. The purpose of the scientific work is to investigate these problems and to propose specific ways of improving and updating the system of university chemical education based on the idea of regionalization.

Methodology. The methodology involved a three-stage experimental study conducted at Abai Kazakh National Pedagogical University, with 60 second-year bioorganic majors divided into experimental and control groups. The study utilized surveys, assessments of student skills, and implementation of a modeled program with problem tasks and independent research.

Results. Results showed that incorporating a regional component in chemistry education expanded students' knowledge about their region, increased motivation and interest, and fostered patriotism. The experimental group demonstrated significant improvement in research skills compared to the control group.

Conclusions. The study concludes that regionalizing chemistry education can enhance learning effectiveness and material mastery. It recommends implementing regional components in chemistry programs to increase subject relevance and student engagement. The research also highlighted the importance of selecting appropriate teaching methods and organizational forms when incorporating regional material into curricula.

Keywords: natural sciences; territorial principle; method of teaching; experimental work; student survey

Suggested citation

Syrymbetova G, Mukatayeva Zh, Kosobaeva B, Uzakova A, Zhaxibayev M. Educational program for teaching chemistry with regional component in higher educational institutions. Sci Herald Uzhhorod Univ Ser Phys. 2024;(56):1936-1945. DOI: 10.54919/physics/56.2024.193sl6

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References

  1. Zagvyazinsky VI. Design of regional educational systems. Ped. 1999;5:8-13.
  2. Averkin VN, Tsirulnikov AM. Theoretical problems of regionalization of education. Novgorod: Nenets Regional Center for Education Development; 1998.
  3. Gara HH, Ivanova RG, Kaverina AA. Chemistry teacher's handbook. Moscow: Astrel; 2002.
  4. Golovchun AA. The development of research competence through digital technologies. Talent Dev Excell. 2020;12(1):38-42.
  5. Zankov LV. Didactics and life. Moscow: Obrazovaniye; 1968.
  6. Skatkin М. Learning principles. High school didactics. Moscow: Pedagogics; 1982.
  7. Zorina LYa. Didactic bases of formation of consistency of knowledge of students. Moscow: Pedagogika; 1978.
  8. Talyzina NF. Management of the process of assimilation of knowledge. Moscow: Moscow State University Press; 1984.
  9. Hansen K-H, Olson J. How teachers construe curriculum integration: the science, technology, society (STS) movement as “Building”. J Curric Stud. 1996;28(6):669-682.
  10. Garkunov VP, Nikolayeva YeB. Cross-curricular connections in the problem of chemistry study. Chem Univ. 1982;3:28-30.
  11. Ivanova OA. Cross-curricular connections between chemistry, biology and geography through the generalization of environmental knowledge with regional principle: thesis of the Candidate of Pedagogical Sciences. Omsk: Omsk State Pedagogical University; 1995.
  12. Astrelin I, Litynska M, Sanginova O, Tolstopalova N, Mitchenko T, Arkhipova A. Water utilities' risk assessment. Phys Cyb Saf Critic Wat Infrast. 2019;106-112. DOI: 10.3233/NICSP190045
  13. Kuznetsov BN, Chesnokov NV, Mikova NM, Zaikovskii VI, Drozdov VA, Savos'kin MV, Yaroshenko AM, Lyubchik SB. Texture and catalytic properties of palladium supported on thermally expanded natural graphite. React Kinet Catal Lett. 2003;80(2):345-350.
  14. Borisov Y, Korzhyk V. Internal stresses in plasma coatings with an amorphous structure. Proceed Int Therm Spr Conf. 1998;1:693-697.
  15. Akhkozov L, Gorban O, Danilenko I, Gorban S, Volkova G, Bryukhanova I, Shapovalova O, Lyubchik S, Konstantinova T. Optical properties, photocatalytic and bactericide activity of pure and Ag-decorated Zr, al-doped ZnO. NANOCON Conf Proceed Int Conf Nanomater. 2020;2020:186-192.
  16. Lyubchik SB, Galushko LYa, Rego AM, Tamarkina YuV, Galushko OL, Fonseca IM. Intercalation as an approach to the activated carbon preparation from Ukrainian anthracites. J Phys Chem Sol. 2004;65(2-3):127-132.
  17. Makarova TL, Zakharchuk I, Geydt P, Lahderanta E, Komlev AA, Zyrianova AA, Lyubchyk A, Kanygin MA, Sedelnikova OV, Kurenya AG, Bulusheva LG, Okotrub AV. Assessing carbon nanotube arrangement in polystyrene matrix by magnetic susceptibility measurements. Carb. 2016;96:1077-1083.
  18. Ismayilov GG, Iskandarov EK, Ismayilova FB, Hacizade SG. Analysis of the Gas Pipelines Operation Based on Neural Networks. Adv Intell Syst Comp. 2021;1306:403-408.
  19. Subhoni M, Kholmurodov K, Doroshkevich A, Asgerov E, Yamamoto T, Lyubchyk A, Almasan V, Madadzada A. Density functional theory calculations of the water interactions with ZrO2 nanoparticles Y2O3 doped. J Phys Conf Ser. 2018;994(1):012013.
  20. Selvakumar RD, Alkaabi AK, Ryu J, Lee H. Role of dielectric force and solid extraction in electrohydrodynamic flow assisted melting. J Energ Storag. 2023;73:109169.
  21. Tuan PL, Kulik M, Stef M, Phuc TV, My NTB, Zelenyak TY, Buse G, Racu A, Doroshkevich A, Khiem LH, Cong VD, Lyubchyk AI, Lyubchyk SI, Lyubchyk SB, Anh NN. An examination on the porosity of ErF3 doped CaF2 crystal using the Rutherford back-scattering method. Nucl Instr Meth Phys Res Sect B Beam Interact Mater Atom. 2024;547:165178.
  22. Tsvetkova LA. (Ed.). General methodology for teaching chemistry: Content and methods of teaching chemistry. Moscow: Obrazovaniye; 1981.
  23. Yakimanskaya IS. Student-centered learning in a modern school. Moscow: Sentyabr; 1996.
  24. Sakhatsky V, Lyubymova N, Vlasovets V, Suponyev V, Koval O, Naumenko A, Vlasenko T, Chepusenko Y. Determining a technique for transmitting measuring data on the spatial positioning of the piercing head in small-size installations during controlled soil piercing. East-Eur J Enter Tech. 2020;5(5-107):32-39.
  25. Lyubchyk SI, Lyubchyk SB, Lyubchyk AI. Characterization of adsorption properties inherent to zirconia dioxide for different positions of yttrium in the ZrO2–Y2O3 lattice. Semicond Phys Quant Elect Optoelect. 2022;25(4):362-371.
  26. Arstanov MZh, Pidkasisty PI. Problem-based learning. Almaty: Mektep; 1980.
  27. Pidkasisty PI, Khaidarov TS. Game technology in learning and development. Almaty: Mektep; 1996.
  28. Paton BE, Chernets AV, Marinsky GS, Korzhik VN, Petrov VS. Prospects of using plasma technologies for disposal and recycling of medical and other hazardous waste. Part 1. Probl Spetsial Electrometall. 2005;(3):49-57.
  29. Khardazi S, Zaitouni H, Neqali A, Lyubchyk S, Mezzane D, Amjoud M, Choukri E, Kutnjak Z. Enhanced thermal stability of dielectric and energy storage properties in 0.4BCZT-0.6BTSn lead-free ceramics elaborated by sol-gel method. J Phys Chem Sol. 2023;177:111302.
  30. Nurbayeva A, Kunakova G, Bugenova L, Kalambayeva G, Tansykbayeva B. Cognitive mechanisms of Kazakhstan commercial and social advertising text. Opc Año. 2019;35(88):280-303.
  31. Korzhik VN. Theoretical analysis of amorphization conditions for metallic alloys under gas-thermal spraying. III. Transformations in the amorphized alloy under building-up of coatings. Poroshk Metall. 1992;(11):47-52.
  32. Gumerova NI, Rompel A. Interweaving disciplines to advance chemistry: Applying polyoxometalates in biology. Inorg Chem. 2021;60(9):6109-6114.
  33. Kelley EW. LAB theory, HLAB pedagogy, and review of laboratory learning in chemistry during the COVID-19 pandemic. J Chem Educ. 2021;98(8):2496-2517.
  34. Getie AS. Factors affecting the attitudes of students towards learning English as a foreign language. Cog Educ. 2020;7(1):1738184.
  35. Zhang R, Zou D. Types, purposes, and effectiveness of state-of-the-art technologies for second and foreign language learning. Comp Assis Lang Learn. 2022;35(4):696-742.
  36. Lau BT, Knizia G, Berkelbach TC. Regional embedding enables high-level quantum chemistry for surface science. J Phys Chem Lett. 2021;12(3):1104-1109.
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