GEOMETRIC AND GRAPHIC TRAINING OF TECHNICAL STUDENTS IN MODERN CONDITIONS
Abstract and keywords
Abstract (English):
Geometric and graphic training is an integral part of the education of technical students. It is aimed at developing skills in working with geometric and graphic models, which allows students to successfully solve problems related to design and construction. This article discusses the directions of development of geometric-graphic training in modern conditions, as well as its influence on the formation of professional competencies among students. Describes a study conducted in the 2022–2023 academic year at the Ural State University of Transport (Ekaterinburg) in order to identify the shortcomings of the existing methodology for geometric-graphic training and develop proposals for its adjustment. Modern pedagogical activities are based on information technologies, e-learning systems, and interactive teaching methods. Much is said about the requirements for students to successfully study the discipline (initial preparation, ability to work with information, quick acquisition of skills in specialized programs), but it is also worth highlighting the qualities necessary for a teacher to ensure a successful educational process: the ability to conduct an electronic training course , communication with students indirectly through special educational platforms, the ability to adapt to new challenges of the modern world (introduction of e-learning, the COVID-19 pandemic, presentation of material using examples understandable to modern students). Modern demands on engineers and designers are high - they need to have a wide range of knowledge and skills to effectively carry out design work. Competent use of graphics programs and applications, as well as the ability to work with 3D models are just some of the key competencies in this area. The development of geometric-graphic training allows students to master these skills already at the training stage, which gives them an advantage when searching for work and increases their competitiveness in the labor market.

Keywords:
higher education, geometric and graphic preparation, descriptive geometry, engineering graphics, computer graphics
References

1. Belavina T.V. Rol' discipliny «Inzhenernaya i komp'yuternaya grafika» v razvitii prostranstvennogo myshleniya u studentov inzhenernyh special'nostey [Tekst] / T.V. Belavina, M.R. Salyahova // Gumanitarnye nauki v XXI veke. — 2023. — № 22. S. 30–41. — URL: https://www.elibrary.ru/download/ elibrary_50526657_75914895.pdf (data obrascheniya:06.10.2023)

2. Boyashova E.P. Osobennosti distancionnogo obucheniya geometro-graficheskim disciplinam s ispol'zovaniem metodov konstruktivnogo geometricheskogo modelirovaniya [Tekst] / E.P. Boyashova // Geometriya i grafika. — 2021. — T. 9. — № 3. — S. 46–56. — DOI:https://doi.org/10.12737/2308-4898-2021-9-3-46-56

3. Vyshnepol'skiy V.I. Metodicheskie sistemy podgotovki i provedeniya olimpiad i razvitiya intellektual'nyh sposobnostey studentov v RTU MIREA [Tekst] / V.I. Vyshnepol'skiy, N.S. Kadykova, A.V. Efremov, K.T. Egiazaryan // Geometriya i grafika. — 2023. — T. 11. № 1. — S. 44–60. — DOI:https://doi.org/10.12737/2308-4898-2023-111-44-60

4. Ignat'ev S.A. Povyshenie naglyadnosti predstavleniya izuchaemyh v nachertatel'noy geometrii ob'ektov [Tekst] / S.A. Ignat'ev, E.H. Muratbakeev, M.V. Voronina // Geometriya i grafika. — 2022. — T. 10. — № 1. S. 44–53. — DOI:https://doi.org/10.12737/2308-4898-2022-10-1-44-53

5. Ignat'ev S.A. Tehnologii testirovaniya v ocenke predmetnoy gotovnosti studentov k izucheniyu geometro-graficheskih disciplin vuza [Tekst] / S.A. Ignat'ev, Z.O. Tret'yakova, A.I. Folomkin. // Geometriya i grafika. — 2019. — T. 7. — № 4. — S. 65–75. — DOI:https://doi.org/10.12737/2308-4898-2020-65-75

6. Ignat'ev S.A. Elektronnaya obuchayuschaya sreda MOODLE kak effektivnoe sredstvo organizacii obucheniya nachertatel'noy geometrii v usloviyah pandemii COVID-19 [Tekst] / S.A. Ignat'ev, A.I. Folomkin, Z.O. Tret'yakova, K.O. Glazunov // Geometriya i grafika. — 2020. — T. 8. — № 3. — S. 52–66. — DOI:https://doi.org/10.12737/2308-4898-2020-52-66

7. Kozlova I.A. Graficheskie discipliny i informatizaciya inzhenernogo obrazovaniya [Tekst] / I.A. Kozlova, R.B. Slavin, B.M. Slavin // Geometriya i grafika. 2022. — T. 10. — № 4. — S. 35–45. — DOI:https://doi.org/10.12737/23084898-2022-10-4-35-45

8. Mal'ceva G.A. Issledovanie olimpiad po graficheskim disciplinam dlya razvitiya intellektual'nyh i tvorcheskih sposobnostey studentov [Elektronnyy resurs] / G.A. Mal'ceva, O.V. Brazgovka, N.V. Knapnugel', D.V. Sorokin // Mir nauki. Pedagogika i psihologiya. 2023. — T. 11. — № 3. — URL: https://mir-nauki.com/ PDF/34PDMN323.pdf (data obrascheniya: 06.10.2023).

9. Milyukov P.A. Rol' nachertatel'noy geometrii v razvitie graficheskoy kul'tury novyy vzglyad na graficheskie obrazy [Tekst] / P.A. Milyukov // Pedagogicheskiy zhurnal. — 2023. — T. 13. — № 5. — S. 351–361. DOI:https://doi.org/10.34670/AR.2023.28.51.038

10. Nazarova Zh.A. Graficheskaya podgotovka studentov s primeneniem form distancionnogo obucheniya [Tekst] / Zh.A. Nazarova // Geometriya i grafika. 2022. — T. 10. — № 4. — S. 59–66. — DOI:https://doi.org/10.12737/23084898- 2022-10-4-59-66

11. Nazarova Zh.A. Nachertatel'naya geometriya — neot'emlemaya sostavlyayuschaya sovremennogo tehnicheskogo obrazovaniya ili perezhitki proshlogo? [Tekst] / Zh.A. Nazarova // Sovremennye naukoemkie tehnologii. — 2022. — № 1. — S. 166–170. — DOI: 10.17513/ snt.39027

12. Nazarova Zh.A. Perspektivy razvitiya graficheskoy podgotovki studentov tehnicheskih vuzov [Tekst] / Zh.A. Nazarova // Omskiy nauchnyy vestnik. — 2023. № 2. — S. 67–72. — DOI:https://doi.org/10.25206/1813-8225-2023-18667-72

13. Paliy N.V. Sistemnyy podhod k obucheniyu studentov vozmozhnostyam sovremennogo sistemnogo proektirovaniya [Tekst] / N.V. Paliy // Geometriya i grafika. 2023. — T. 11. — № 4. — S. 52–60. — DOI:https://doi.org/10.12737/23084898-2024-11-4-52-60

14. Savel'ev Yu.A. Vychislitel'naya grafika v reshenii netradicionnyh inzhenernyh zadach [Tekst] / Yu.A. Savel'ev, E.Yu. Cherkasova // Geometriya i grafika. 2020. — T. 8. — № 1. — S. 33–44. — DOI:https://doi.org/10.12737/23084898-2020-33-44

15. Savel'ev Yu.A. Komp'yuternaya metodika izucheniya nachertatel'noy geometrii. Tehnicheskoe zadanie [Tekst] / Yu.A. Savel'ev, E.V. Babich // Geometriya i grafika. — 2018. — T. 6. — № 1. — S. 67–74. — DOIhttps://doi.org/10.12737/article_5ad09d62e8a792.47611365

16. Sal'kov N.A. Osnovnye prichiny plohogo usvoeniya nachertatel'noy geometrii [Tekst] / N.A. Sal'kov // Geometriya i grafika. — 2021. — T. 9. — № 2. — S. 3–11. DOI:https://doi.org/10.12737/2308-4898-2021-9-2-3-11

17. Sal'kov N.A. Rol' nachertatel'noy geometrii v tehnicheskom obrazovanii [Tekst] / N.A. Sal'kov // Zhurnal estestvenno-nauchnyh issledovaniy. — 2023. — T. 8. № 2. — S. 27–33.

18. Semagina Yu.V. Nachertatel'naya geometriya segodnya: problemy i perspektivy [Tekst] / Yu.V. Semagina, E.S. Kozik, M.A. Vanchinova // Geometriya i grafika. — 2023. — T. 11. — № 4. — S. 43–51. — DOIhttps://doi.org/10.12737/2308-4898-2024-11-4-43-51

19. Slavin R.B. Razrabotka sistemy poluavtomaticheskogo modelirovaniya trehmernyh izobrazheniy [Tekst] / R.B. Slavin, N.S. Kargin, B.M. Slavin // Geometriya i grafika. — 2023. — T. 11. — № 2. — S. 47–55. — DOIhttps://doi.org/10.12737/2308-4898-2023-11-2-47-55

20. Stolbova I.D. K voprosu o gotovnosti prepodavatel'skih kadrov k cifrovomu obucheniyu [Tekst] / I.D. Stolbova, K.G. Nosov, L.S. Tarasova // Geometriya i grafika. — 2022. — T. 10. — № 1. — S. 24–35. — DOI:https://doi.org/10.12737/23-08-4898-2022-10-1-24-35

21. Suhomlinova V.V. Graficheskaya podgotovka kak stupen' v priobreteniya professii [Tekst] / V.V. Suhomlinova // Sostoyanie i perspektivy razvitiya agropromyshlennogo kompleksa: Yubileynyy sbornik nauchnyh trudov XV Mezhdunarod. nauch.-praktich. konf. (Rostov-na-Donu, 2–4 marta 2022 g.) / Redkollegiya: I.M. Donnik [i dr.]. — Rostov n/D: Izd-vo DGTU-PRINT, 2022. — S. 391–393. — DOI: 10.23947/ interagro.2022.391-393

22. Turkina L.V. Vitagenno-orientirovannyy podhod v razvitii prostranstvennogo myshleniya pri izuchenii nachertatel'noy geometrii [Tekst] / L.V. Turkina // Mezhdunarodnyy zhurnal eksperimental'nogo obrazovaniya. — 2023. — № 3. — S. 32–37.

23. Turutina T.F. Primenenie informacionnyh tehnologiy v metodike proverki graficheskoy gramotnosti buduschih specialistov [Tekst] / T.F. Turutina, D.V. Tret'yakov // Geometriya i grafika. — 2020. T. 8. — № 1. — S. 45–56. — DOI:https://doi.org/10.12737/2308-48982020-45-56

24. Fisunova L.V. Sovremennaya podgotovka buduschih inzhenerov agropromyshlennogo kompleksa na primere izucheniya nachertatel'noy geometrii [Tekst] / L.V. Fisunova, M.D. Shirshova // Nedelya molodezhnoy nauki — 2023: Sb. tr. Vseros. nauch.-praktich. konf. (Tyumen', 1–31 marta 2023 g.). — Tyumen': Gos. agrarnyy un-t Severnogo Zaural'ya. — 2023. — S. 1165–1171.

25. Hüseynov Z.Q.O. Rİyazİyyat təlİmİ prosesİndə məntİqİ təfəkkürün və fəza təsəvvürünün formalaşmasinda qurma məsələsİ həllİnİn rolu [Tekst] / Z.Q.O. Hüseynov, S.N.O. Əfəndİ // Elmi Xəbərlər. Sosial və Humanitar Elmlər Bölməsi. 2022. V. 18. I. 3, rr. 87–90.DOIhttps://doi.org/10.54758/16801245_2022_18_3_87

26. Borboeva G.M. Geometriyalyk figuralardyn “yңgayluu” sүrөttөlүshү meykindik oy zhүgүrtүүnү kalyptandyruu karazhaty katary [Tekst] / G.M. Borboeva, A. Sulayman Kyzy, B.K. Ismanova // Vestnik Oshskogo gosudarstvennogo universiteta. — 2023. — № 1. — S. 151–157. DOI:https://doi.org/10.52754/16948610_2023_1_18

27. Tөrөgel'dieva K.M. Maalymattyk tehnologiyalardy koldonuu menen zhogorku klasstyn okuuchularynyn meykindiktik oy zhүgүrtүүsүn kalyptandyruu zhana өnүktүrүү [Tekst] / K.M. Tөrөgel'dieva, G.T. Zhumanova // Nauka, novye tehnologii i innovacii Kyrgyzstana. — 2022. — № 5. — S. 182–186. — DOI: 10.26104/ NNTIK.2019.45.557

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