Content of issue 02, volume 26, 2013

  1. Cheremisin A.A., Marichev V.N., Novikov P.V. Polar stratospheric cloud transfer from Arctic regions to Tomsk in January, 2010. P. 93-99
    Bibliographic reference:
    Cheremisin A.A., Marichev V.N., Novikov P.V. Polar stratospheric cloud transfer from Arctic regions to Tomsk in January, 2010. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 93-99 [in Russian].
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    Cheremisin A.A., Marichev V.N., and Novikov P.V. Transport of Polar Stratospheric Clouds from the Arctic to Tomsk in January 2010. // Atmospheric and Oceanic Optics, 2013, V. 26. No. 06. pp. 492–498.
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  2. Chesnokova T.Yu., Zhuravleva T.B., Ptashnik I.V., Chentsov A.V. Simulation of solar radiative fluxes in the atmosphere using different models of water vapor continual absorption in typical condition of Western Siberia. P. 100-107
    Bibliographic reference:
    Chesnokova T.Yu., Zhuravleva T.B., Ptashnik I.V., Chentsov A.V. Simulation of solar radiative fluxes in the atmosphere using different models of water vapor continual absorption in typical condition of Western Siberia. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 100-107 [in Russian].
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    Chesnokova T.Yu., Zhuravleva T.B., Ptashnik I.V., and Chentsov A.V. Simulation of Solar Radiative Fluxes in the Atmosphere Using Different Models of Water Vapor Continuum Absorption in Typical Conditions of Western Siberia. // Atmospheric and Oceanic Optics, 2013, V. 26. No. 06. pp. 499–506.
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  3. Krutikov V.A., Kuskov A.I., Tartakovsky V.A., Ivanova E.V. Basic statistical characteristics of the temperature field in the ground atmospheric layer above the Russia and contiguous states. P. 108-112
    Bibliographic reference:
    Krutikov V.A., Kuskov A.I., Tartakovsky V.A., Ivanova E.V. Basic statistical characteristics of the temperature field in the ground atmospheric layer above the Russia and contiguous states. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 108-112 [in Russian].
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  4. Kukushkin A.S. Long-term and seasonal variability of transparency distribution in surface waters of the north-western Black Sea. P. 113-123
    Bibliographic reference:
    Kukushkin A.S. Long-term and seasonal variability of transparency distribution in surface waters of the north-western Black Sea. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 113-123 [in Russian].
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  5. Filimonov V.S., Aponasenko A.D. Seasonal dynamics of suspended matter in waters of lake Khanka. P. 124-131
    Bibliographic reference:
    Filimonov V.S., Aponasenko A.D. Seasonal dynamics of suspended matter in waters of lake Khanka. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 124-131 [in Russian].
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    Filimonov V.S. and Aponasenko A.D. Seasonal Dynamics of Suspended Matter in Waters of Lake Khanka. // Atmospheric and Oceanic Optics, 2013, V. 26. No. 06. pp. 524–531.
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  6. Komarov V.S., Lomakina N.Ya., Ilin S.N., Nakhtigalova D.P. Long-term changes of humidity conditions within the atmospheric boundary layer over Siberia. Part 1. Changes of annual average humidity. P. 132-139
    Bibliographic reference:
    Komarov V.S., Lomakina N.Ya., Ilin S.N., Nakhtigalova D.P. Long-term changes of humidity conditions within the atmospheric boundary layer over Siberia. Part 1. Changes of annual average humidity. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 132-139 [in Russian].
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  7. Komarov V.S., Lomakina N.Ya., Ilin S.N., Nakhtigalova D.P. Long-term changes of humidity conditions within the atmospheric boundary layer over Siberia. Part 2. Changes of seasonal average humidity. P. 140-149
    Bibliographic reference:
    Komarov V.S., Lomakina N.Ya., Ilin S.N., Nakhtigalova D.P. Long-term changes of humidity conditions within the atmospheric boundary layer over Siberia. Part 2. Changes of seasonal average humidity. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 140-149 [in Russian].
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  8. Golovko V.V., Kutsenogii K.P., Istomin V.L. Aggregate composition of anemophilic plant pollen, entering the atmosphere. P. 150-154
    Bibliographic reference:
    Golovko V.V., Kutsenogii K.P., Istomin V.L. Aggregate composition of anemophilic plant pollen, entering the atmosphere. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 150-154 [in Russian].
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  9. Kalchikhin V.V., Kobzev A.A., Korolkov V.A., Tikhomirov A.A. On the choice of the measuring area for dual-channel optical rain gauge. P. 155-159
    Bibliographic reference:
    Kalchikhin V.V., Kobzev A.A., Korolkov V.A., Tikhomirov A.A. On the choice of the measuring area for dual-channel optical rain gauge. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 155-159 [in Russian].
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  10. Sadykov N.R., Sсorkin N.A. Influence of non-stationary electric field on an array of weakly interactting carbon nanotubes. P. 160-165
    Bibliographic reference:
    Sadykov N.R., Sсorkin N.A. Influence of non-stationary electric field on an array of weakly interactting carbon nanotubes. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 160-165 [in Russian].
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    Sadykov N.R. and Skorkin N.A. Influence of a Nonstationary Electric Field on an Array of Weakly Interacting Carbon Nanotubes. // Atmospheric and Oceanic Optics, 2013, V. 26. No. 06. pp. 532–538.
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  11. Abdullaev S.F., Shukurov T., Marupov R., Nazarov B.I. Research of samples of soil and dust aerosol by method of IR spectroscopy. P. 166-171
    Bibliographic reference:
    Abdullaev S.F., Shukurov T., Marupov R., Nazarov B.I. Research of samples of soil and dust aerosol by method of IR spectroscopy. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 166-171 [in Russian].
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  12. Kozhevnikova A.V., Tarasenkov M.V., Belov V.V. Parallel computing for solving problems of reconstruction of the earth surface reflection coefficient from satellite data. P. 172-174
    Bibliographic reference:
    Kozhevnikova A.V., Tarasenkov M.V., Belov V.V. Parallel computing for solving problems of reconstruction of the earth surface reflection coefficient from satellite data. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 172-174 [in Russian].
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    Kozhevnikova A.V., Tarasenkov M.V., and Belov V.V. Parallel Computations for Solving Problems of the Reconstruction of the Reflection Coefficient of the Earth’s Surface by Satellite Data. // Atmospheric and Oceanic Optics, 2013, V. 26. No. 04. pp. 326–328.
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  13. Lukin V.P. Adaptive system for forming laser beams in atmosphere with the use of incoherent images as reference sources. P. 175-181
    Bibliographic reference:
    Lukin V.P. Adaptive system for forming laser beams in atmosphere with the use of incoherent images as reference sources. // Optika Atmosfery i Okeana. 2013. V. 26. No. 02. P. 175-181 [in Russian].
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    Lukin V.P. Adaptive System for the Formation of Laser Beams in the Atmosphere by Use of Incoherent Images as Reference Sources. // Atmospheric and Oceanic Optics, 2013, V. 26. No. 04. pp. 345–351.
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  14.  . P. 182-184