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Àâòîð Òèï Êàòåãîðèÿ Ïóáëèêàöèÿ Ðåäàêöèÿ
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Karakashev, S.I.; Georgiev, P.; Balashev, K. On the growth of pneumatic foams. Eur. Phys. J. E 2013, 36, doi:10.1140/epje/i2013-13013-4. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Karakashev, S.I.; Georgiev, P.; Balashev, K. Foam production - Ratio between foaminess and rate of foam decay. Journal of Colloid and Interface Science 2012, 379, 144-147, doi:10.1016/j.jcis.2012.04.048. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Karakashev, S.I. , How to determine the adsorption energy of the surfactant\'s hydrophilic head? How to estimate easily the surface activity of every simple surfactant? Journal of Colloid and Interface Science 2014, 432, 98-104, doi:10.1016/j.jcis.2014.06.040. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Alexandrova, L.; Karakashev, S.I.; Grigorov, L.; Phan, C.M.; Smoukov, S.K. Wetting properties of phospholipid dispersion on tunable hydrophobic SiO2-glass plates. Adv Colloid Interface Sci 2015, 220, 1-7, doi:10.1016/j.cis.2014.08.003. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ  íàó÷íî ñïèñàíèå Ñòàòèè Karakashev, S.I. Anomalous drainage of nanofilms from concentrated NaCl solutions of tetraethylene glycol octyl ether (C8E4). Chemistry 2015, 24, 922-929. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Karakashev, S.I.; Manev, E.D. Hydrodynamics of thin liquid films: Retrospective and perspectives. Adv Colloid Interface Sci 2015, 222, 398-412, doi:10.1016/j.cis.2014.07.010. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Karakashev, S.I.; Smoukov, S.K. Fast estimation of the equilibrium adsorption constants of ionic surfactants with account for ion-specific effects. Colloids Surf. A Physicochem. Eng. Asp. 2015, 467, 143-148, doi:10.1016/j.colsurfa.2014.11.016. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Sett, S.; Karakashev, S.I.; Smoukov, S.K.; Yarin, A.L. Ion-specific effects in foams. Adv Colloid Interface Sci 2015, 225, 98-113, doi:10.1016/j.cis.2015.08.007. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Shahir, A.A.; Nguyen, A.V.; Karakashev, S.I. A quantification of immersion of the adsorbed ionic surfactants at liquid|fluid interfaces. Colloids Surf. A Physicochem. Eng. Asp. 2016, 509, 279-292, doi:10.1016/j.colsurfa.2016.08.082. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Asadzadeh Shahir, A.; Arabadzhieva, D.; Petkova, H.; Karakashev, S.I.; Nguyen, A.V.; Mileva, E. Effect of Under-Monolayer Adsorption on Foamability, Rheological Characteristics, and Dynamic Behavior of Fluid Interfaces: Experimental Evidence for the Guggenheim Extended Interface Model. Journal of Physical Chemistry C 2017, 121, 11472-11487, doi:10.1021/acs.jpcc.7b02483. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Karakashev, S.I. Hydrodynamics of foams. Exp Fluids 2017, 58, doi:10.1007/s00348-017-2332-z. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Karakashev, S.I.; Smoukov, S.K. CMC prediction for ionic surfactants in pure water and aqueous salt solutions based solely on tabulated molecular parameters. Journal of Colloid and Interface Science 2017, 501, 142-149, doi:10.1016/j.jcis.2017.04.046. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Karakashev, S.I.; Stîckelhuber, K.W.; Tsekov, R.; Grozev, N.; Simeonova, S.; Raykundaliya, N.; Heinrich, G. Bubble rubbing on hydrophobic solid surfaces. Colloids Surf. A Physicochem. Eng. Asp. 2018, 555, 638-645, doi:10.1016/j.colsurfa.2018.07.037. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Sankaran, A.; Karakashev, S.I.; Sett, S.; Grozev, N.; Yarin, A.L. On the nature of the superspreaders. Adv Colloid Interface Sci 2019, 263, 1-18, doi:10.1016/j.cis.2018.10.006. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Karakashev, S.I. Ion-specific effects on equilibrium adsorption layers of ionic surfactants. Applied Chemical Engineering 2020, 3, 53-67, doi:10.24294/ace.v3i2.603. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Guven, O.; Batjargal, K.; Ozdemir, O.; Karakashev, S.I.; Grozev, N.A.; Boylu, F.; Chelik, M.S. Experimental procedure for the determination of the critical coalescence concentration (Ccc) of simple frothers. Minerals 2020, 10, 1-12, doi:10.3390/min10070617. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Alexandrova, L.A.; Grigorov, L.S.; Grozev, N.A.; Karakashev, S.I. Investigation of interfacial free energy of three-phase contact on a glass sphere in case of cationic-anionic surfactant aqueous mixtures. Coatings 2020, 10, doi:10.3390/COATINGS10060573. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Karakashev, S.I.; Grozev, N.A.; Ozdemir, O.; Batjargal, K.; Guven, O.; Ata, S.; Bournival, G.; Boylu, F.; Chelik, S. M.; On the frother\'s strength and its performance. Minerals Engineering 2021, 171, doi:10.1016/j.mineng.2021.107093. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Pan, Y.; Bournival, G.; Karakashev, S.I.; Yang, B.; Wang, L.; Ata, S. Effect of electrolyte and flotation collector on foam films in the presence of frothers. Chemical Engineering Science 2022, 264, doi:10.1016/j.ces.2022.118176. 11.11.2024
Ïðîô. ä-ð Ñòîÿí Èâàíîâ Êàðàêàøåâ Ñ èìïàêò ôàêòîð Ñòàòèè Karakashev, S.I.; Grozev, N.A.; Hristova, S.; Mircheva, K.; Ozdemir, O. Electrostatic Forces in Control of the Foamability of Nonionic Surfactant. Coatings 2023, 13, doi:10.3390/coatings13010037. 11.11.2024
Ïðîô. ä-ð Åâäîêèÿ Áîÿíîâà Áîðèñîâà Ñ èìïàêò ôàêòîð Ñòóäèè Áúëãàðñêàòà ëèòåðàòóðíà ïîåòèêà è ñòèëèñòèêà â ïåðèîäà 1970 – 2020. Â: Åçèêîâ ñâÿò Orbis linuarium, 13, 22, ¹2. https://doi.org/10.37708/ezs.swu.bg.v22i2.13. SCOPUS, ERIH PLUS, ÐÈÍÖ 11.11.2024
Ïðîô. ä-ð Åâäîêèÿ Áîÿíîâà Áîðèñîâà  íàó÷íî ñïèñàíèå Ñòóäèè Åäèí îïèò çà èñòîðèÿ íà èäåèòå â áúëãàðñêîòî ëèòåðàòóðîçíàíèå â ïîñëåäíîòî ïîëóâåêîâèå – Â: Ëèòåðàòóðàòà, 2024 ã. êí.34, ñ.420-518 11.11.2024
Ïðîô. ä-ð Åâäîêèÿ Áîÿíîâà Áîðèñîâà  íàó÷íî ñïèñàíèå Ñòàòèè Ïèñìîòî êàòî ìàñêà è êàòî èñòîðèÿ â äâà áàëêàíñêè ðîìàíà: „Ïðîêúëíàòèÿò äâîð“ íà Èâî Àíäðè÷ è „Ñëó÷àÿò Äæåì“ íà Âåðà Ìóòàô÷èåâà, Â: Âðåìå è ïàìåò, ñåðèÿ Îáùåñòâåíè êîìóíèêàöèè, êí.14, 2024, 11.11.2024
Ïðîô. ä-ð Åâäîêèÿ Áîÿíîâà Áîðèñîâà  íàó÷íî ñïèñàíèå Ñòóäèè Ñòèõîâà íîðìà è ñòèõîòâîðíà ïñèõîòè÷íîñò.(â ñúàâò. ñ Ï. Øóëèêîâ) Â: http://liternet.bg/e-zine, áð.3(100) Åëåêòðîííî ñïèñàíèå LiterNet 11.11.2024
Ñò. ïðåï. . Áîæèäàð Ñòîÿíîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B.; Stoyanov, B. BOOST: Medical Image Steganography Using Nuclear Spin Generator. Entropy 2020, 22, 501. IF 2020 = 2.524. doi: 10.3390/e22050501. Öèòèðà ñå â: Y Peng, C Fu, Y Zheng, Y Tian, G Cao, J Chen, Medical steganography: Enhanced security and image quality, and new SQ assessment, Signal Processing, 2024 - Elsevier, Volume 223, October 2024, Article 109546. Available at: https://doi.org/10.1016/j.sigpro.2024.109546 11.11.2024
Ñò. ïðåï. . Áîæèäàð Ñòîÿíîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B.; Stoyanov, B. BOOST: Medical Image Steganography Using Nuclear Spin Generator. Entropy 2020, 22, 501. IF 2020 = 2.524. doi: 10.3390/e22050501. Öèòèðà ñå â: H Saidi, O Tibermacine, A Elhadad, High-capacity data hiding for medical images based on the mask-RCNN model, Scientific Reports, 2024 - nature.com, Article number: 7166 (2024), Published: 26 March 2024, Available at: https://www.nature.com/articles/s41598-024-55639-9 11.11.2024
Ñò. ïðåï. . Áîæèäàð Ñòîÿíîâ Ñòîÿíîâ Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Stoyanov, B.; Stoyanov, B. BOOST: Medical Image Steganography Using Nuclear Spin Generator. Entropy 2020, 22, 501. IF 2020 = 2.524. doi: 10.3390/e22050501. Öèòèðà ñå â: S Pramanik, A new method for locating data hiding in image steganography, Multimedia Tools and Applications, 2024 - Springer, Volume 83, pages 34323–34349, (2024), Available at: https://link.springer.com/article/10.1007/s11042-023-16762-3 11.11.2024
Ñò. ïðåï. . Áîæèäàð Ñòîÿíîâ Ñòîÿíîâ  ñáîðíèê Öèòèðàíèÿ Ïëàìåí Ì. Ìèõàéëîâ, Áîæèäàð Ñ. Ñòîÿíîâ, Åâãåíè Ãð. Ñòîéêîâ, ÇÀÑÍÅÌÀÍÅ ÍÀ ØÓÌÅÍÑÊÀÒÀ ÊÐÅÏÎÑÒ Ñ ÄÐÎÍ È ÎÐÒÎÐÅÊÒÈÔÈÖÈÐÀÍÅ – ÎÖÅÍÊÀ ÍÀ ÒÎ×ÍÎÑÒÒÀ, Ñïèñàíèå \"ÃÅÎÄÅÇÈß, ÊÀÐÒÎÃÐÀÔÈß, ÇÅÌÅÓÑÒÐÎÉÑÒÂÎ\", ISSN 0324-1610, ÁÐÎÉ 5-6’2017 ã., ñòð. 9-13. Öèòèðàíî îò ßí÷åâ Ê. Öèôðîâîòî ïðåäñòàâÿíå íà âèðòóàëíè èçîáðàæåíèÿ. Øóìåí: Íàó÷íà êîíôåðåíöèÿ ñ ìåæäóíàðîäíî ó÷àñòèå ÌÀÒÒÅÕ 2024, ISSN 1314-3921, ïîä ïå÷àò. 11.11.2024
Ñò. ïðåï. . Áîæèäàð Ñòîÿíîâ Ñòîÿíîâ  ñáîðíèê Öèòèðàíèÿ Ïëàìåí Ì. Ìèõàéëîâ, Áîæèäàð Ñ. Ñòîÿíîâ, Åâãåíè Ãð. Ñòîéêîâ, ÇÀÑÍÅÌÀÍÅ ÍÀ ØÓÌÅÍÑÊÀÒÀ ÊÐÅÏÎÑÒ Ñ ÄÐÎÍ È ÎÐÒÎÐÅÊÒÈÔÈÖÈÐÀÍÅ – ÎÖÅÍÊÀ ÍÀ ÒÎ×ÍÎÑÒÒÀ, Ñïèñàíèå \"ÃÅÎÄÅÇÈß, ÊÀÐÒÎÃÐÀÔÈß, ÇÅÌÅÓÑÒÐÎÉÑÒÂÎ\", ISSN 0324-1610, ÁÐÎÉ 5-6’2017 ã., ñòð. 9-13. Öèòèðàíî îò ßí÷åâ Ê. Ïðåîáðàçóâàíå íà äàííèòå îò ñêåíåðà âúâ âèðòóàëíè èçîáðàæåíèÿ. Øóìåí: Íàó÷íà êîíôåðåíöèÿ ñ ìåæäóíàðîäíî ó÷àñòèå ÌÀÒÒÅÕ 2024. , ISSN 1314-3921, ïîä ïå÷àò. 11.11.2024
Ñò. ïðåï. . Áîæèäàð Ñòîÿíîâ Ñòîÿíîâ Äðóãè Äîêëàäè Áîæèäàð Ñòîÿíîâ, Åìàíóèë Ñòîÿíîâ, Äîêëàä íà òåìà \"ÈÍÒÅÐÄÈÑÖÈÏËÈÍÀÐÅÍ ÏÎÄÕÎÄ ÇÀ ÄÀÒÈÐÀÍÅ ÍÀ ÊÐÚÃËÀÒÀ ÖÚÐÊÂÀ ÎÒ ÏÐÅÑËÀÂ\", XVI ãîäèøíà êîíôåðåíöèÿ íà Ñúþçà íà àñòðîíîìèòå â Áúëãàðèÿ, 14-16 þíè 2023 ã., ÍÀÎÏ \"Íèêîëàé Êîïåðíèê\" ãð. Âàðíà, Ïðîãðàìàòà íà êîíôåðåíöèÿòà å äîñòúïíà â: http://sab.astro.bas.bg/doc/BAS-16_2023_program_2.pdf 11.11.2024
Ñò. ïðåï. . Áîæèäàð Ñòîÿíîâ Ñòîÿíîâ Äðóãè Äîêëàäè Ëåêöèÿ â äåìîíñòðàöèîíåí ñåìèíàð \"Ïðåíàñÿíå íà äîáðè ïðàêòèêè çà íåèíâàçèâíè ìåòîäè â àðõåîëîãè÷åñêèòå ïðîó÷âàíèÿ\", 30.03.2023, Èñòîðè÷åñêè ìóçåé - ãð. Èñïåðèõ. Ïðîãðàìàòà íà ñåìèíàðà å äîñòúïíà íà: https://helisbg.com/äåìîíñòðàöèîíåí-ñåìèíàð/ 11.11.2024
Äîö. ä-ð . Âàíÿ Àòàíàñîâà Âàñèëåâà Äðóãè Ó÷åáíèöè Âàñèëåâà, Â., „Çàùèòåíè òåðèòîðèè â Áúëãàðèÿ è òóðèçúì“, 207 ñòð., Õèìåðà, Øóìåí, 2024 ã. 11.11.2024
Ñò. ïðåï. . Áîæèäàð Ñòîÿíîâ Ñòîÿíîâ  ðåôåðèðàíè èçäàíèÿ Ñòàòèè Áîæèäàð ÑÒÎßÍÎÂ, Åìàíóèë ÑÒÎßÍÎÂ, Éîðäàí ÀÐÍÀÓÄÎÂ, Ïðèëîæåíèå íà ôîòîãðàìåòðèÿòà â àíàëèçà íà åïèãðàôñêè ïàìåòíèöè ÷ðåç ðàçñëîÿâàíå íà ìèêðîðåëåôà, Ïðåñëàâñêà êíèæîâíà øêîëà, òîì 24, 2024 ã., ISSN 2603-4522 (Print), ISSN 2603-4530 (Online), ïîä ïå÷àò. 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Äðóãè Äîêëàäè Ivanov I., R. Davidova, M. Kaschieva. 2024. Status of the ornithofauna in urban areas. The 20th annual meeting “Durable agriculture – agriculture of the future”, University of Craiova, Romania, November 14-15, 2024. 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Äðóãè Äîêëàäè Davidova R. 2024. Communities structure and relation to water pH of testate amoebae (Amoebozoa, Rhizaria) in reservoirs used for fish farming in Northeastern Bulgaria. The 20th annual meeting “Durable agriculture – agriculture of the future”, University of Craiova, Romania, November 14-15, 2024. 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Arnaudov V., Davidova R., Vasilev V. 2020. Biology, ecology, and control of the plum seed wasp Eurytoma schreineri Schreiner (Hymenoptera: Eurytomidae). AGROFOR Int. J., 5 (1): 54–60. Öèòèðàíà â: Wannassi T., A. Sayadi, K. Abbes, S. Djebbi, C. Naccache, M. Khemakhem, B. Chermiti, 2024. Prevalence of Wolbachia infection in feld natural population of the apricot seed wasp Eurytoma samsonowi (Hymenoptera: Eurytomidae), International Microbiology, DOI10.1007/s10123-024-00593-9, Web of Science Q3 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Davidova, R., S. Sevginov, 2018. Diversity and distribution of testate amoebae (Amoebozoa, Rhiza-ria) in reservoirs, northeastern Bulgaria. Acta Scientifica Naturalis, 5(2), 90–99. Öèòèðàíà â: Sysoev V., D. Seleznev, F. Reshetnikov, V. Zakonnov, D. Tikhonenkov, 2024, Metalimnion as an ecotone in stratified freshwater lakes: A case study on benthic testate amoebae in Lake Valdayskoe, Freshwater Biology. 69 (5), pp.754-768. DOI10.1111/fwb.14243, Web of Science, Q1 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Davidova R., Boycheva M. 2015. Testate amoebae fauna (Amoebozoa, Rhizaria) from the benthal of Kamchia Reservoir (Eastern Bulgaria). Acta Zool. Bulg. 67, 375-384. Öèòèðàíà â: Sysoev V., D. Seleznev, H. Tran, F. Reshetnikov, D. Tikhonenkov, 2024. Can the morphological traits of benthic testate amoebae in a freshwater lake be indicators of depth and environmental conditions? Limnology, DOI: 10.1007/s10201-024-00758-5, Web of science, Q3 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Davidova R., Boycheva M. 2015. Testate amoebae fauna (Amoebozoa, Rhizaria) from the benthal of Kamchia Reservoir (Eastern Bulgaria). Acta Zool. Bulg. 67, 375-384. Öèòèðàíà â: Sysoev V., D. Seleznev, F. Reshetnikov, D. Tikhonenkov, 2024. Assessment of the correlation between environmental variables and the spatial distribution and species structure of testate amoebae (Arcellinida and Euglyphida) in a stratified freshwater lake, Freshwater Biology, DOI: 10.1111/fwb.14344, Web of science, Q1 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Davidova R., V. Vasilev, 2013. Seasonal dynamics of the testate amoebae fauna (Protozoa: Arcellinida and Euglyphida) in Durankulak Lake (Northeastern Bulgaria). Acta Zoologica Bulgarica 65: 27-36. Öèòèðàíà â: Sysoev V., D. Seleznev, F. Reshetnikov, V. Zakonnov, D. Tikhonenkov, 2024, Metalimnion as an ecotone in stratified freshwater lakes: A case study on benthic testate amoebae in Lake Valdayskoe, Freshwater Biology. 69 (5), pp.754-768. DOI10.1111/fwb.14243, Web of science, Q1 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà  íàó÷íî ñïèñàíèå Öèòèðàíèÿ Arnaudov, V., S. Raykov, R. Davidova, H. Hristov, V. Vasilev, P. Petkov, 2012. Monitoring of pest populations – an important element of integrated pest management of field crops. Agricultural Science and Technology, 4 (1): 77-80. Öèòèðàíà â: Razini A., A. Ahadiyat, A. Sheikhigarjan, Y. Fathipour, 2024. Demographic Performance of Scrobipalpa ocellatella (Boyd) (Lepidoptera: Gelechiidae) on Eight Prevalent Sugar Beet Cultivars. Journal of Agricultural Science and Technology. 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà  íàó÷íî ñïèñàíèå Öèòèðàíèÿ Arnaudov, V., S. Raykov, R. Davidova, H. Hristov, V. Vasilev, P. Petkov, 2012. Monitoring of pest populations – an important element of integrated pest management of field crops. Agricultural Science and Technology, 4 (1): 77-80. Öèòèðàíà â: Kalirajan, M., Mageshen, V.R., Aswitha, K., Saranya, M., 2024. AI-Based Regulation of Water Supply and Pest Management in Farming. In: Chouhan, S.S., Saxena, A., Singh, U.P., Jain, S. (eds) Artificial Intelligence Techniques in Smart Agriculture. Springer, Singapore. https://doi.org/10.1007/978-981-97-5878-4_12 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà  íàó÷íî ñïèñàíèå Öèòèðàíèÿ Arnaudov, V., S. Raykov, R. Davidova, H. Hristov, V. Vasilev, P. Petkov, 2012. Monitoring of pest populations – an important element of integrated pest management of field crops. Agricultural Science and Technology, 4 (1): 77-80. Öèòèðàíà â: Suheri M., R. Anwar, N. Haneda, J. Hwa, S. Sukeno, 2024. Management control of the red coffee borer, Zeuzera spp. (Lepidoptera: Cossidae) on Eucalyptus pellita F. Muell. using entomophatogenic fungi. Serangga 2024, 29 (1): 15-28. 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Arnaudov, V., S. Raykov, R. Davidova, H. Hristov, V. Vasilev, P. Petkov, 2012. Monitoring of pest populations – an important element of integrated pest management of field crops. Agricultural Science and Technology, 4 (1): 77-80. Öèòèðàíà â: Mahot H., L. Bagny-Beilhe, R. Mahob, AD. Begoude, A. Kuate, G. Membang, N. Ewane, A. Kemga, C. Bilong, D. Hall, K. Fiaboe, R. Hanna, 2024. Pheromone traps and climate variations influence populations of Sahlbergella singularis (Hemiptera: Miridae) and associated damage of cocoa in Cameroon, February 2024, Environmental Entomology 53, 2: 249-258, DOI:10.1093/ee/nvad117, Web of Science Q2 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Äðóãè Öèòèðàíèÿ Arnaudov, V., S. Raykov, R. Davidova, H. Hristov, V. Vasilev, P. Petkov, 2012. Monitoring of pest populations – an important element of integrated pest management of field crops. Agricultural Science and Technology, 4 (1): 77-80. Öèòèðàíà â: Poletto, T., 2024. Enhancing Dalbulus maidis (Hemiptera: Cicadellidae) control: an integrated approach combining Cordyceps javanica (Ascomycota: Hypocreales) and insecticides. 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Davidova, R., 2010. Testate amoebae communities (Protozoa: Arcellinida and Euglyphida) in Rabisha Reservoir (Northwestern Bulgaria). Acta zool. bulg., 62 (2): 259-269. Öèòèðàíà â: Sysoev V., D. Seleznev, H. Tran, F. Reshetnikov, D. Tikhonenkov, 2024. Can the morphological traits of benthic testate amoebae in a freshwater lake be indicators of depth and environmental conditions? Limnology, DOI: 10.1007/s10201-024-00758-5, Web of science, Q3 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Davidova, R., 2010. Testate amoebae communities (Protozoa: Arcellinida and Euglyphida) in Rabisha Reservoir (Northwestern Bulgaria). Acta zool. bulg., 62 (2): 259-269. Öèòèðàíà â: Sysoev V., D. Seleznev, F. Reshetnikov, D. Tikhonenkov, 2024. Assessment of the correlation between environmental variables and the spatial distribution and species structure of testate amoebae (Arcellinida and Euglyphida) in a stratified freshwater lake, Freshwater Biology, DOI: 10.1111/fwb.14344, Web of science, Q1 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Davidova, R., 2010. Testate amoebae communities (Protozoa: Arcellinida and Euglyphida) in Rabisha Reservoir (Northwestern Bulgaria). Acta zool. bulg., 62 (2): 259-269. Öèòèðàíà â: Sysoev V., D. Seleznev, F. Reshetnikov, V. Zakonnov, D. Tikhonenkov, 2024, Metalimnion as an ecotone in stratified freshwater lakes: A case study on benthic testate amoebae in Lake Valdayskoe, Freshwater Biology. 69 (5), pp.754-768. DOI10.1111/fwb.14243, Web of science, Q1 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Davidova, R., V. Golemansky and M. Todorov, 2008. Diversity and biotopic distribution of testate amoebae (Arcellinida and Euglyphida) in Ticha Dam (Northeastern Bulgaria). Acta Zool. Bulg., Suppl. 2: 7-18. Öèòèðàíà â: Dufour O., E. Hoffman, R. Sleith, L. Katz, A. Weiner, T. Sehein, 2024. Testate Amoebae (Arcellinida, Amoebozoa) Community Diversity in New England Bogs and Fens Assessed Through Lineage-Specific Amplicon Sequencing., European Journal of Protistology, Volume 92, DOI: 10.1016/j.ejop.2023.126049, Web of Science Q4. 11.11.2024
Ïðîô. ä-ð . Ðîñèöà Äèìèòðîâà Äàâèäîâà Ñ èìïàêò ôàêòîð Öèòèðàíèÿ Davidova, R., V. Golemansky and M. Todorov, 2008. Diversity and biotopic distribution of testate amoebae (Arcellinida and Euglyphida) in Ticha Dam (Northeastern Bulgaria). Acta Zool. Bulg., Suppl. 2: 7-18. Öèòèðàíà â: Sysoev V., D. Seleznev, H. Tran, F. Reshetnikov, D. Tikhonenkov, 2024. Can the morphological traits of benthic testate amoebae in a freshwater lake be indicators of depth and environmental conditions? Limnology, DOI: 10.1007/s10201-024-00758-5, Web of science, Q3 11.11.2024
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