1. Ovchinnikov A. S., Bocharnikova O. V., Pantjushina T. V., Shenceva E. V. Productivity of paprika by drip irrigation. Melioratsiya i vodnoe khozyaistvo = Melioration and Water Management, 2007, no. 2, pp. 45-47 (in Russian).
2. Akulinina M. A. Drip irrigation of cucumber in the dry steppe zone of light chestnut soils of the Lower Volga region. Volgograd, 2010. 23 p. (in Russian). Vestsі Natsyyanal'nai akademіі navuk Belarusі. Seryya agrarnykh navuk. 2025. T. 63, № 1. S. 7-22
3. Shentseva E. V. Improving agricultural technology for growing eggplants under drip irrigation using tunnel shelters to obtain early production. Saratov, 2012. 23 p. (in Russian).
4. Bogdanenko M. P. Technology for cultivating onion seedlings under drip irrigation in the Lower Volga region. Saratov, 2012. 24 p. (in Russian).
5. Stepuro M. F., Panifedova L. M. Using mathematical modeling methods in assessing fertilizer systems and optimizing mineral nutrition of cabbage. Zemlyarobstva i akhova raslin [Agriculture and Plant Protection], 2012, no. 3, pp. 34-37 (in Russian).
6. Stepuro M. F. Application of mathematical modeling methods in assessing fertilizer systems and optimizing mineral nutrition of table carrots. Zemlyarobstva i akhova raslin [Agriculture and Plant Protection], 2012, no. 4, pp. 59-62 (in Russian).
7. Stepuro M. F. Scientific justification of agricultural practices in intensive technologies for cultivating vegetable crops in the conditions of Belarus. Zhodino, 2013. 51 p. (in Russian).
8. Dubenok N. N., Ovchinnikov A. S., Martynova A. A., Dusar’ S. A. Low-intensity sprinkling of table carrots. Moscow, Prospekt Publ., 2022. 208 p. (in Russian).
9. Pen’kova R. I. Resource-saving technologies for cultivating carrots under drip irrigation in the conditions of the Lower Volga region. Volgograd, 2023. 20 p. (in Russian).
10. Vakhonin N. K. Conceptual basis for modeling yield in the decision-making system for regulating water regime. Melioratsiya [Land Reclamation], 2014, no. 2 (72), pp. 7-15 (in Russian).
11. Vakhonin N. K. Modeling of yields in a precision farming system. Melioratsiya [Land Reclamation], 2015, no. 1 (73), pp. 131-136 (in Russian).
12. Krasovskii G. I., Filaretov G. F. Experimental planning. Minsk, Publishing house of the Belarusian State University, 1982. 303 p. (in Russian).
13. Kane M. M. Analysis of source data for statistical processing of scientific research results. Minsk, Vysheishaya shkola Publ., 2024. 118 p. (in Russian).
14. Aver’yanov S. F., Shabanov V. V. Some mathematical models of the plant-environment system. Fizicheskoe i matematicheskoe modelirovanie v melioratsii: nauchnye trudy [Physical and mathematical modeling in land reclamation: scientific works]. Moscow, 1973, pp. 293-295 (in Russian).
15. Afanasik G. I. Modeling the process of crop yield formation. Melioratsiya torfyanikov i ikh sel’skokhozyaistvennoe ispol’zovanie: sbornik statei [Reclamation of peatlands and their agricultural use: collection of articles]. Minsk, 1977, iss. 3, pp. 122-127 (in Russian).
16. Romko A. V. Justification of the water and nutritional regime of reclaimed lands in the humid zone using an integrated agrogeosystem model. Moscow, 2007. 26 p. (in Russian).
17. Popov V. A. Mathematical expression of the law of the limiting factor and its application to the problems of reclamation agriculture. Melioratsiya i vodnoe khozyaistvo = Melioration and Water Management, 1997, no. 2, pp. 30-34 (in Russian).
18. Shtepa B. G., Nosenko V. F., Vinnikova N. V., Danil’chenko N. V., Ostapov I. S., Fomin G. E., Afanas’ev V. A. Irrigation mechanization. Moscow, Agropromizdat Publ., 1990. 336 p. (in Russian).
19. Kondakov N. I. Logical dictionary-reference book. 2nd ed. Moscow, Nauka Publ., 1976. 720 p. (in Russian).
20. Prokhorov Yu. V. (ed.). Mathematical encyclopedic dictionary. Moscow, Sovetskaya Entsiklopediya Publ., 1988. 847 p. (in Russian).
21. Kolganov A. V. (ed.). Land reclamation encyclopedia. Vol. 2. Moscow, Rosinformagrotekh Publ., 2004. 444 p. (in Russian).
22. Prokhorov A. M. (ed.). Physical encyclopedic dictionary. Moscow, Sovetskaya Entsiklopediya Publ., 1984. 944 p. (in Russian).
23. Likhatsevich A. P. The use of the physical principle for the construction of experimental mathematical models of the studied processes in reclamation science. Melioratsiya i vodnoe khozyaistvo = Melioration and Water Management, 2021, no. 6, pp. 30-36 (in Russian). https://doi.org/10.32962/0235-2524-2021-6-30-36
24. Vorob’ev S. A., Kashtanov A. N., Lykov A. M., Makarov I. P. Agriculture. Moscow, Agropromizdat Publ., 1991. 572 p. (in Russian).
25. Kiryushin V. I. Ecological foundations of agriculture. Moscow, Kolos Publ., 1996. 366 p. (in Russian).
26. Vas’ko V. T. Theoretical foundations of crop production. 2nd ed. St. Petersburg, PROFI-Inform Publ., 2004. 198 p. (in Russian).
27. Shein E. V., Goncharov V. M. Agrophysics. Rostov-on-Don, Feniks Publ. 2006. 397 p. (in Russian).
28. Sheudzhen A. Kh., Kurkaev V. T., Kotlyarov N. S. Agrochemistry. 2nd ed. Maykop, Afisha Publ., 2006. 1075 p. (in Russian).
29. Pigorev I. Y., Naumkin V. N., Naumkin A. V., Khlopyannikov A. M., Khlopyannikova G. V. About role of scientific concepts in agriculture. Vestnik Kurskoi gosudarstvennoi sel’skokhozyaistvennoi akademii [Bulletin of the Kursk State Agricultural Academy], 2018, no. 1, pp. 4-10 (in Russian).
30. Likhatsevich A. P., Latushkina G. V., Levkevich A. A., Malyshko A. V., Titova M. N. Selection of the water regime indicator in the mathematical model of sugar beet yield. Melioratsiya [Land Reclamation], 2022, no. 4 (102), pp. 45-54 (in Russian).