Content of issue 12, volume 33, 2020

1. Vinogradova A. A., Vasil'ev A. V., Ivanova Yu. A. Black carbon air pollution near the Wrangel Island: comparison of Eurasian and American sources and their contributions. P. 907–912
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Vinogradova A. A., Vasil'ev A. V., Ivanova Yu. A. Black carbon air pollution near the Wrangel Island: comparison of Eurasian and American sources and their contributions. // Optika Atmosfery i Okeana. 2020. V. 33. No. 12. P. 907–912. DOI: 10.15372/AOO20201201 [in Russian].
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Vinogradova A.A., Vasileva A.V. and Ivanova Yu.A. Air Pollution by Black Carbon in the Region of Wrangel Island: Comparison of Eurasian and American Sources and Their Contributions // Atmospheric and Oceanic Optics, 2021, V. 34. No. 02. pp. 97–103.
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2. Pozhitkov R. Yu. The content of particulate matter PM2.5 and PM10 in the surface air layer of Tyumen in June 2020. P. 913–917
Bibliographic reference:
Pozhitkov R. Yu. The content of particulate matter PM2.5 and PM10 in the surface air layer of Tyumen in June 2020. // Optika Atmosfery i Okeana. 2020. V. 33. No. 12. P. 913–917. DOI: 10.15372/AOO20201202 [in Russian].
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3. Filei A. A. Retrieval of the cloud top height from using Meteor-M No. 2-2 MSU-MR measurements. P. 918–925
Bibliographic reference:
Filei A. A. Retrieval of the cloud top height from using Meteor-M No. 2-2 MSU-MR measurements. // Optika Atmosfery i Okeana. 2020. V. 33. No. 12. P. 918–925. DOI: 10.15372/AOO20201203 [in Russian].
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4. Belan B. D., Ivlev G. A., Sklyadneva T. K. Study of the relationship between ultraviolet radiation and the factors affecting it. Part II. A role of the underlying surface albedo. P. 926–931
Bibliographic reference:
Belan B. D., Ivlev G. A., Sklyadneva T. K. Study of the relationship between ultraviolet radiation and the factors affecting it. Part II. A role of the underlying surface albedo. // Optika Atmosfery i Okeana. 2020. V. 33. No. 12. P. 926–931. DOI: 10.15372/AOO20201204 [in Russian].
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Belan B.D., Ivlev G.A. and Sklyadneva T.K. The Relationship between the Ultraviolet Radiation and Meteorological Factors and Atmospheric Turbidity: Part II. Role of Surface Albedo // Atmospheric and Oceanic Optics, 2021, V. 34. No. 02. pp. 128–133.
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5. Sin’kevich A. A., Popov V. B., Abshaev A. M., Boe B. A., Pawar S. D., Mikhailovskii Yu. P., Toropova M. L., Gopalakrishnan V., Gekkieva Zh. M. Radar characteristics of Cu during their transition to thunderstorm in different regions of the world. P. 932–936
Bibliographic reference:
Sin’kevich A. A., Popov V. B., Abshaev A. M., Boe B. A., Pawar S. D., Mikhailovskii Yu. P., Toropova M. L., Gopalakrishnan V., Gekkieva Zh. M. Radar characteristics of Cu during their transition to thunderstorm in different regions of the world. // Optika Atmosfery i Okeana. 2020. V. 33. No. 12. P. 932–936. DOI: 10.15372/AOO20201205 [in Russian].
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Sin’kevich A.A., Popov V.B., Abshaev A.M., Boe B.A., Pawar S.D., Mikhailovskii Yu.P., Toropova M.L., Gopalakrishnan V. and Gekkieva Zh.M. Radar Characteristics of Convective Clouds during Transition to the Cumulonimbus Stage in Different Regions of the World // Atmospheric and Oceanic Optics, 2021, V. 34. No. 02. pp. 134–139.
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6. Zhuravleva T. B. Simulation of solar radiation brightness fields in the presence of optically anisotropic crystal clouds: algorithm and test results. P. 937–943
Bibliographic reference:
Zhuravleva T. B. Simulation of solar radiation brightness fields in the presence of optically anisotropic crystal clouds: algorithm and test results. // Optika Atmosfery i Okeana. 2020. V. 33. No. 12. P. 937–943. DOI: 10.15372/AOO20201206 [in Russian].
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Zhuravleva T.B. Simulation of Brightness Fields of Solar Radiation in the Presence of Optically Anisotropic Ice-Crystal Clouds: Algorithm and Test Results // Atmospheric and Oceanic Optics, 2021, V. 34. No. 02. pp. 140–147.
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7. Gaponenko O. N. The calculation of the spatiotemporal light field of a point like isotropic source with the help of integral characteristics of scattering. P. 944–948
Bibliographic reference:
Gaponenko O. N. The calculation of the spatiotemporal light field of a point like isotropic source with the help of integral characteristics of scattering. // Optika Atmosfery i Okeana. 2020. V. 33. No. 12. P. 944–948. DOI: 10.15372/AOO20201207 [in Russian].
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Gaponenko O.N. Application of Integral Scattering Characteristics for Calculating the Spatiotemporal Light Field of a Point Isotropic Light Source // Atmospheric and Oceanic Optics, 2021, V. 34. No. 02. pp. 148–153.
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8. Gubenko I. M., Rubinshtein K. G. Analysis of comprehensive forecast of lightning activity. P. 949–957
Bibliographic reference:
Gubenko I. M., Rubinshtein K. G. Analysis of comprehensive forecast of lightning activity. // Optika Atmosfery i Okeana. 2020. V. 33. No. 12. P. 949–957. DOI: 10.15372/AOO20201208 [in Russian].
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9. Sosnin E. A., Kuznetsov V. S., Panarin V. A., Skakun V. S., Tarasenko V. F., Ivlev G. A., Kozlov A. V. Formation of nitrogen oxides in a laboratory discharge simulating blue jets. P. 958–961
Bibliographic reference:
Sosnin E. A., Kuznetsov V. S., Panarin V. A., Skakun V. S., Tarasenko V. F., Ivlev G. A., Kozlov A. V. Formation of nitrogen oxides in a laboratory discharge simulating blue jets. // Optika Atmosfery i Okeana. 2020. V. 33. No. 12. P. 958–961. DOI: 10.15372/AOO20201209 [in Russian].
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10. Trigub M. V., Vasnev N. A., Kitler V. D., Evtushenko G. S. Use of bistatic laser monitor for high-speed imaging of combustion processes. P. 962–966
Bibliographic reference:
Trigub M. V., Vasnev N. A., Kitler V. D., Evtushenko G. S. Use of bistatic laser monitor for high-speed imaging of combustion processes. // Optika Atmosfery i Okeana. 2020. V. 33. No. 12. P. 962–966. DOI: 10.15372/AOO20201210 [in Russian].
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Trigub M.V., Vasnev N.A., Kitler V.D. and Evtushenko G. S. The Use of a Bistatic Laser Monitor for High-Speed Imaging of Combustion Processes // Atmospheric and Oceanic Optics, 2021, V. 34. No. 02. pp. 154–159.
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11. Saveljeva E. S., Zuev V. V. Role of Arctic sea ice loss in autumn in the polar vortex splitting in winters 1984/1985, 1998/1999, and 2012/2013. P. 967–970
Bibliographic reference:
Saveljeva E. S., Zuev V. V. Role of Arctic sea ice loss in autumn in the polar vortex splitting in winters 1984/1985, 1998/1999, and 2012/2013. // Optika Atmosfery i Okeana. 2020. V. 33. No. 12. P. 967–970. DOI: 10.15372/AOO20201211 [in Russian].
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12. Personalia. P. 971
13. Information. P. 972-975
14. Subject Index. P. 976-985
15. Author Index. P. 986-988