693fbec0ee027.pdf
DOI:
Mavjud emas
Ashurov, M., & Kholmurodov, S. (2019). Influence of ultraviolet irradiation on the growth and yield of mulberry plantations in Uzbekistan. Journal of Agro-Ecological Research, 12(3), 45–51.
Hasanov, U., & Yuldashev, R. (2020). Application of electrically activated water in agriculture to improve plant resistance. Agroengineering Science, 27(4), 60–67.
Karimov, B., & Juraev, A. (2022). The effect of UV-C irradiation on silkworm (Bombyx mori L.) feeding activity and cocoon productivity. Uzbek Journal of Biology, 4(2), 73–81.
Mukhamadiev, A., Rosaboyev, A., & Usmanov, I. (2023). Qovun urugʻiga bosqichli elektrotexnologik ishlov berish [Stepwise electrotechnological processing of melon seeds]. Namangan: Arjumand Media.
Mukhamadiev, A., Yusupov, D. R., Ismatullaeva, D. A., Abdullaev, M. T., & Khayitov, B. A. (2021a, January 21). Method for disinfecting and revitalizing silkworm eggs (Patent No. IAP 07267). Intellectual Property Agency of Uzbekistan.
Mukhamadiev, A., Yusupov, D., & Ismatullaeva, D. (2021b). Development of sericulture through the use of environmentally friendly electrotechnologies in technological processes, 3, 84–92.
Park, J., & Kim, S. (2017). Electrolyzed water application in agriculture: Effects on plant growth and pathogen control. Agricultural Engineering Review, 25(3), 101–110.
Rakhmatullaev, N., & Toirov, S. (2021). Modern methods of protecting mulberry plantations from fungal diseases using eco-technologies. Proceedings of the National Conference on Agroecology, 5(1), 112–118.
Singh, R., & Srivastava, P. (2016). Mulberry leaf quality and its influence on cocoon production in Bombyx mori L. Indian Journal of Sericulture, 55(1), 34–40.
Timiryazev, K. A. (n.d.). Trudy po fotosintezu i fiziologii rasteniy [Works on photosynthesis and plant physiology]. Moscow: Nauka.
Usmonov, I. I. (2022). Qovun urugʻiga bosqichli elektrotekhnologik ishlov berishning parametrlarini asoslash [Justification of parameters of stepwise electrotechnological processing of melon seeds] [PhD dissertation]. Gulbahor.
Wang, L., & Chen, X. (2020). Impact of ultraviolet radiation on plant secondary metabolites: Case study on mulberry (Morus alba L.) leaves. Plant Physiology Reports, 25(4), 223–230.
Yusupov, D. R. (2021). Disinfection and intensification of silkworm eggs using environmentally friendly electrotechnological methods [PhD dissertation]. Namangan Engineering-Construction Institute
Yusupov, D. R., & Mukhamadiev, A. (2022). Electrotechnological methods for improving mulberry leaf productivity in sericulture. Journal of Silk Science and Technology of Uzbekistan, 2(1), 55–63.
Zhou, Y., & Li, H. (2018). Effects of UV-B radiation on mulberry leaf physiology and silkworm growth. International Journal of Sericulture Research, 56(2), 89–95.