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, Kalinchyk I. V., Zhuk V. O.
Emissions from stationary pollution sources in the Republic of Crimea in 2013-2018 // Journal of Physics: Conference Series. 2020. Vol. 1515, no. 3. Article 032040 (5 p.). https://doi.org/10.1088/1742-6596/1515/3/032040 РИНЦ SCOPUS
Emissions from stationary pollution sources in the Republic of Crimea in 2013-2018 // Journal of Physics: Conference Series. 2020. Vol. 1515, no. 3. Article 032040 (5 p.). https://doi.org/10.1088/1742-6596/1515/3/032040 РИНЦ SCOPUS
Запись создана: 18-05-2020 17:46
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Expansion and biological traits of the non-indigenous Korean rockfish Sebastes schlegelii in the Black Sea // Scientific Reports. 2025. Vol. 15. Art. no. 34173 (13 p.). https://doi.org/10.1038/s41598-025-15266-4 БС 1 SCOPUS 0.874/Q1 WoS 3.900/Q1
Expansion and biological traits of the non-indigenous Korean rockfish Sebastes schlegelii in the Black Sea // Scientific Reports. 2025. Vol. 15. Art. no. 34173 (13 p.). https://doi.org/10.1038/s41598-025-15266-4 БС 1 SCOPUS 0.874/Q1 WoS 3.900/Q1
Запись создана: 02-10-2025 14:25
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New Data on the Age, Size and Feeding of the Shi Drum Umbrina cirrosa (Sciaenidae) off the Black Sea Coast of Crimea // Journal of Ichthyology. 2023. Vol. 63, no. 4. P. 707-717. https://doi.org/10.1134/S0032945223040185 Перевод БС 3 SCOPUS 0.248/Q3 WoS 0.700/Q4
New Data on the Age, Size and Feeding of the Shi Drum Umbrina cirrosa (Sciaenidae) off the Black Sea Coast of Crimea // Journal of Ichthyology. 2023. Vol. 63, no. 4. P. 707-717. https://doi.org/10.1134/S0032945223040185 Перевод БС 3 SCOPUS 0.248/Q3 WoS 0.700/Q4
Запись создана: 15-08-2023 10:32
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European Barracuda Sphyraena sphyraena (Sphyraenidae) in the Black Sea: Comparative Description of a New Find and Naturalization Prospects // Journal of Ichthyology. 2024. Vol. 64, no. 6. P. 962-968. https://doi.org/10.1134/S0032945224700759 БС 3 SCOPUS 0.217/Q3 WoS 0.500/Q4
European Barracuda Sphyraena sphyraena (Sphyraenidae) in the Black Sea: Comparative Description of a New Find and Naturalization Prospects // Journal of Ichthyology. 2024. Vol. 64, no. 6. P. 962-968. https://doi.org/10.1134/S0032945224700759 БС 3 SCOPUS 0.217/Q3 WoS 0.500/Q4
Запись создана: 17-12-2024 17:32
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First Data on the Diet of the Korean Rockfish Sebastes schlegelii (Sebastidae) in the Black Sea // Thalassas. 2025. Vol. 41. Art. no. 125 (8 p.). https://doi.org/10.1007/s41208-025-00878-4 БС 3 SCOPUS 0.286/Q3 WoS 0.700/Q4
First Data on the Diet of the Korean Rockfish Sebastes schlegelii (Sebastidae) in the Black Sea // Thalassas. 2025. Vol. 41. Art. no. 125 (8 p.). https://doi.org/10.1007/s41208-025-00878-4 БС 3 SCOPUS 0.286/Q3 WoS 0.700/Q4
Запись создана: 09-06-2025 09:25
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A new record of the marbled spinefoot Siganus rivulatus (Siganidae) in the Black Sea: evidence of ongoing tropicalization // Environmental Biology of Fishes. 2026. Vol. 109, iss. 3. Art. no. 96 (14 p.). https://doi.org/10.1007/s10641-026-01862-4 БС 2 SCOPUS 0.545/Q2 WoS 1.500/Q3
A new record of the marbled spinefoot Siganus rivulatus (Siganidae) in the Black Sea: evidence of ongoing tropicalization // Environmental Biology of Fishes. 2026. Vol. 109, iss. 3. Art. no. 96 (14 p.). https://doi.org/10.1007/s10641-026-01862-4 БС 2 SCOPUS 0.545/Q2 WoS 1.500/Q3
Запись создана: 23-06-2026 11:07
Tamoykin I. Y., , Kuleshov V. S.
New Data on Brown Meagre Sciaena umbra (Sciaenidae) at the Crimean Shore of the Black Sea Based on Visual Underwater Observations Using Breath-Hold Diving // Inland Water Biology. 2021. Vol. 14, no. 2. P. 215-221. https://doi.org/10.1134/S1995082921020152 Перевод БС 3 SCOPUS 0.331/Q3 WoS 0.481/Q4
New Data on Brown Meagre Sciaena umbra (Sciaenidae) at the Crimean Shore of the Black Sea Based on Visual Underwater Observations Using Breath-Hold Diving // Inland Water Biology. 2021. Vol. 14, no. 2. P. 215-221. https://doi.org/10.1134/S1995082921020152 Перевод БС 3 SCOPUS 0.331/Q3 WoS 0.481/Q4
Запись создана: 12-05-2021 14:42
Tarnovetskii I. Yu., Merkel A. Yu., Kanapatskiy T. A., , Gulin M. B., Toshchakov S., Pimenov N. V.
Decoupling between sulfate reduction and the anaerobic oxidation of methane in the shallow methane seep of the Black Sea // FEMS Microbiology Letters. 2018. Vol. 365, iss. 21. Article no. fny235. https://doi.org/10.1093/femsle/fny235 БС 3 SCOPUS 0.790/Q3 WoS 1.735/Q3
Decoupling between sulfate reduction and the anaerobic oxidation of methane in the shallow methane seep of the Black Sea // FEMS Microbiology Letters. 2018. Vol. 365, iss. 21. Article no. fny235. https://doi.org/10.1093/femsle/fny235 БС 3 SCOPUS 0.790/Q3 WoS 1.735/Q3
Запись создана: 02-11-2018 18:07
Tchernyi V., , Pospelov A., Chensky E.
About Importance of Magnetic Phenomena for the Saturn Rings Origin // Одиннадцатый Московский симпозиум по исследованиям солнечной системы 11MS3 : [тез. докл.], октябрь 5-9, 2020, Институт космических исследований РАН, Москва, Россия. Москва : ИКИ РАН, 2020. С. 284. https://ms2020.cosmos.ru/docs/Abstract_book_full_version_05.pdf РИНЦ
About Importance of Magnetic Phenomena for the Saturn Rings Origin // Одиннадцатый Московский симпозиум по исследованиям солнечной системы 11MS3 : [тез. докл.], октябрь 5-9, 2020, Институт космических исследований РАН, Москва, Россия. Москва : ИКИ РАН, 2020. С. 284. https://ms2020.cosmos.ru/docs/Abstract_book_full_version_05.pdf РИНЦ
Запись создана: 20-05-2021 10:49
Tchernyi V. V.,
Contribution of Magnetism to the Origin of Saturn's Rings // Astrophysical Journal. 2020. Vol. 894, no. 1. Article no. 62 (6 p.). https://doi.org/10.3847/1538-4357/ab8475 БС 1 SCOPUS 2.741/Q1 WoS 5.580/Q1
Contribution of Magnetism to the Origin of Saturn's Rings // Astrophysical Journal. 2020. Vol. 894, no. 1. Article no. 62 (6 p.). https://doi.org/10.3847/1538-4357/ab8475 БС 1 SCOPUS 2.741/Q1 WoS 5.580/Q1
Запись создана: 07-05-2020 17:50
Tchernyi V. V.,
How Saturn could create dense rings after the emergence of its magnetic field. The Tchernyi-Kapranov effect: mechanism of magnetic anisotropic accretion // Physics and Astronomy International Journal. 2023. Vol. 7, iss. 1. P. 54-57. https://doi.org/10.15406/paij.2023.07.00284 РИНЦ –
How Saturn could create dense rings after the emergence of its magnetic field. The Tchernyi-Kapranov effect: mechanism of magnetic anisotropic accretion // Physics and Astronomy International Journal. 2023. Vol. 7, iss. 1. P. 54-57. https://doi.org/10.15406/paij.2023.07.00284 РИНЦ –
Запись создана: 18-05-2023 15:59
Tchernyi V. V.,
Modeling of the Origin of Saturn’s Dense (Visible) Rings Taking into Account Gravitational and Magnetic Fields. The Tchernyi‒Kapranov Effect // Optics and Spectroscopy. 2023. Vol. 131, iss. 5. P. 327-333. https://doi.org/10.1134/S0030400X24700085 БС 2 SCOPUS 0.221/Q4 WoS 0.600/Q4
Modeling of the Origin of Saturn’s Dense (Visible) Rings Taking into Account Gravitational and Magnetic Fields. The Tchernyi‒Kapranov Effect // Optics and Spectroscopy. 2023. Vol. 131, iss. 5. P. 327-333. https://doi.org/10.1134/S0030400X24700085 БС 2 SCOPUS 0.221/Q4 WoS 0.600/Q4
Запись создана: 11-03-2024 09:16
Tchernyi V. V.,
Magnetism of Saturn in the origin of the visible dense rings and in their peculiarities recorded by the Cassini probe // Proceedings of the International Astronomical Union. 2024. Vol. 20, iss. S393 (Planetary Science and Exoplanets in the Era of JWST). P. 1-8. https://doi.org/10.1017/S1743921324002746 SCOPUS
Magnetism of Saturn in the origin of the visible dense rings and in their peculiarities recorded by the Cassini probe // Proceedings of the International Astronomical Union. 2024. Vol. 20, iss. S393 (Planetary Science and Exoplanets in the Era of JWST). P. 1-8. https://doi.org/10.1017/S1743921324002746 SCOPUS
Запись создана: 19-01-2026 13:56
Tchernyi V. V.,
Maxwell Repulsion Force Acting on Diamagnetic Ice Bodies of Saturn’s Visible Dense Rings and Magnetic Anisotropic Accretion in the Origin of Saturn’s Visible Dense Rings // Journal of Experimental and Theoretical Physics. 2025. https://doi.org/10.1134/S1063776125700104 (Online first) БС 2 РИНЦ 0.945 SCOPUS 0.240/Q3 WoS 0.800/Q3
Maxwell Repulsion Force Acting on Diamagnetic Ice Bodies of Saturn’s Visible Dense Rings and Magnetic Anisotropic Accretion in the Origin of Saturn’s Visible Dense Rings // Journal of Experimental and Theoretical Physics. 2025. https://doi.org/10.1134/S1063776125700104 (Online first) БС 2 РИНЦ 0.945 SCOPUS 0.240/Q3 WoS 0.800/Q3
Запись создана: 05-11-2025 13:21
Tchernyi V. V., , Pospelov A. Y.
Diamagnetic expulsion as a possible cause of the origin and stability of saturn’s rings // Physics and Astronomy International Journal. 2018. Vol. 2, iss. 2. P. 121–126. https://doi.org/10.15406/paij.2018.02.00073
Diamagnetic expulsion as a possible cause of the origin and stability of saturn’s rings // Physics and Astronomy International Journal. 2018. Vol. 2, iss. 2. P. 121–126. https://doi.org/10.15406/paij.2018.02.00073
Запись создана: 22-08-2018 11:37
Telesh I. V., , Skarlato S. O.
The interplay of two invaders: can blooms of the potentially toxic dinoflagellates Prorocentrum cordatum be downregulated by the neritic copepods Acartia tonsa? // Protistology. 2020. Vol. 14, no. 3. P. 103-111. https://doi.org/10.21685/1680-0826-2020-14-3-1 БС 3 РИНЦ 0.667 SCOPUS 0.312/Q3
The interplay of two invaders: can blooms of the potentially toxic dinoflagellates Prorocentrum cordatum be downregulated by the neritic copepods Acartia tonsa? // Protistology. 2020. Vol. 14, no. 3. P. 103-111. https://doi.org/10.21685/1680-0826-2020-14-3-1 БС 3 РИНЦ 0.667 SCOPUS 0.312/Q3
Запись создана: 02-10-2020 10:59
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Bioluminescence of Ctenophore Pleurobrachia pileus (O. F. Müller, 1776) in the Summer Period // Biophysics. 2023. Vol. 68, iss. 4. P. 596-606. https://doi.org/10.1134/S000635092304022X Перевод БС 3 SCOPUS 0.182/Q4
Bioluminescence of Ctenophore Pleurobrachia pileus (O. F. Müller, 1776) in the Summer Period // Biophysics. 2023. Vol. 68, iss. 4. P. 596-606. https://doi.org/10.1134/S000635092304022X Перевод БС 3 SCOPUS 0.182/Q4
Запись создана: 18-12-2023 11:07
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Large Luminous Plankton in Bioluminescence Peaks in the Black Sea // Russian Journal of Marine Biology. 2022. Vol. 48, iss. 4. P. 247-255. https://doi.org/10.1134/S1063074022040113 Перевод БС 3 SCOPUS 0.241/Q4 WoS 0.746/Q4
Large Luminous Plankton in Bioluminescence Peaks in the Black Sea // Russian Journal of Marine Biology. 2022. Vol. 48, iss. 4. P. 247-255. https://doi.org/10.1134/S1063074022040113 Перевод БС 3 SCOPUS 0.241/Q4 WoS 0.746/Q4
Запись создана: 26-09-2022 10:37
Levels of activity concentration, migration and dose rates on biota from alpha-radioisotopes of plutonium in the Black Sea ecosystem // Diversity in the Coastal Marine Sciences: Historical Perspectives and Contemporary Research of Geology, Physics, Chemistry, Biology and Remote Sensing / Eds: C. W. Finkl, C. Makowski. Dordrecht, The Netherlands : Springer, 2018. Ch. 16. P. 247-273. (Coastal Research Library ; vol. 23). https://doi.org/10.1007/978-3-319-57577-3_16 SCOPUS WoS
Запись создана: 31-12-2018 10:00
Alpha-emitters 238,239+240Pu in the Black Sea ecosystem after accident on Chernobyl Nuclear Power Plant // Meeting in Nor Amberd: Fifth International Conference, Dedicated to Meeting N. W. Timofeeff-Ressovsky and his Scientific School “Modern Problems of Genetics, Radiobiology, Radioecology, and Evolution”, Nor Amberd, 5–10 Oct. 2021 : Abstracts of Presentations; Memories & Discussions; Lectures. Dubna : JINR, 2021. P. 111. https://indico.jinr.ru/event/1056/attachments/6705/17788/abstracts-book-hyperlynks-n.pdf
Запись создана: 26-09-2021 18:50


