Content of issue 01, volume 29, 2016

1. Vasilenko I. A., Naumenko O. V., Kalinin K. V., Bykov A. D. Modeling of the rotation-vibration energy levels of the D218O, HD18O, D217O and HD17O molecules by the method of effective Hamiltonian. P. 5-13
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Vasilenko I. A., Naumenko O. V., Kalinin K. V., Bykov A. D. Modeling of the rotation-vibration energy levels of the D218O, HD18O, D217O and HD17O molecules by the method of effective Hamiltonian. // Optika Atmosfery i Okeana. 2016. V. 29. No. 01. P. 5-13. DOI: 10.15372/AOO20160101 [in Russian].
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Vasilenko I.A., Naumenko O.V., Kalinin K.V. and Bykov A.D. Simulation of the Vibrational-Rotational Energy Levels of D218O, HD18O, D217O, and HD17O Molecules by the Effective Hamiltonian Approach. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 03. pp. 216–224.
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2. Banakh V. A., Sukharev A. A. Distortions of laser beams caused by a shock wave near the turret of a supersonic aircraft. P. 14-22
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Banakh V. A., Sukharev A. A. Distortions of laser beams caused by a shock wave near the turret of a supersonic aircraft. // Optika Atmosfery i Okeana. 2016. V. 29. No. 01. P. 14-22. DOI: 10.15372/AOO20160102 [in Russian].
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Banakh V.A. and Sukharev A.A. Laser Beam Distortions Caused by a Shock Wave near the Turret of a Supersonic Aircraft. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 03. pp. 225–233.
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3. Nosov V. V., Lukin V. P., Nosov E. V., Torgaev A. V. Turbulence structure over heated surfaces. Numerical solutions. P. 23-30
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Nosov V. V., Lukin V. P., Nosov E. V., Torgaev A. V. Turbulence structure over heated surfaces. Numerical solutions. // Optika Atmosfery i Okeana. 2016. V. 29. No. 01. P. 23-30. DOI: 10.15372/AOO20160103 [in Russian].
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Nosov V.V., Lukin V.P., Nosov E.V. and Torgaev A.V. Turbulence Structure over Heated Surfaces: Numerical Solutions. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 03. pp. 234–243.
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4. Gorchakov G. I., Kopeikin V. M., Karpov A. V., Titov A. A., Buntov D. V., Kuznetsov G. A., Gushchin R. A., Dazenko O. I., Kurbatov G. A., Seregin A. O., Sokolov A. V. Specific charge variations of saltating sand in wind sand flux over desertified area. P. 31-39
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Gorchakov G. I., Kopeikin V. M., Karpov A. V., Titov A. A., Buntov D. V., Kuznetsov G. A., Gushchin R. A., Dazenko O. I., Kurbatov G. A., Seregin A. O., Sokolov A. V. Specific charge variations of saltating sand in wind sand flux over desertified area. // Optika Atmosfery i Okeana. 2016. V. 29. No. 01. P. 31-39. DOI: 10.15372/AOO20160104 [in Russian].
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Gorchakov G.I., Kopeikin V.M., Karpov A.V., Titov A.A., Buntov D.V., Kuznetsov G.A., Gushchin R.A., Dazenko O.I., Kurbatov G.A., Seregin A.O. and Sokolov A.V. Variations in the Specific Charge of Saltating Sand in a Windsand Flux over a Desertified Area. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 03. pp. 244–251.
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5. Konoshonkin A. V., Kustova N. V., Shishko V. A., Borovoy A. G. Method of solving the problem of the light backscattering by ice crystals of cirrus clouds within the physical optics approximation for a lidar with zenith scanning. P. 40-50
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Konoshonkin A. V., Kustova N. V., Shishko V. A., Borovoy A. G. Method of solving the problem of the light backscattering by ice crystals of cirrus clouds within the physical optics approximation for a lidar with zenith scanning. // Optika Atmosfery i Okeana. 2016. V. 29. No. 01. P. 40-50. DOI: 10.15372/AOO20160105 [in Russian].
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Konoshonkin A.V., Kustova N.V., Shishko V.A. and Borovoi A.G. The Technique for Solving the Problem of Light Backscattering by Ice Crystals of Cirrus Clouds by the Physical Optics Method for a Lidar with Zenith Scanning. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 03. pp. 252–262.
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6. Apeksimov D. V., Zemlyanov A. A., Iglakova A. N., Kabanov A. M., Kuchinskaya O. A., Matvienko G. G., Oshlakov V. K., Petrov A. V. Multiple filamentation of laser beams with different diameters in the air at a 100-meter path. P. 51-55
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Apeksimov D. V., Zemlyanov A. A., Iglakova A. N., Kabanov A. M., Kuchinskaya O. A., Matvienko G. G., Oshlakov V. K., Petrov A. V. Multiple filamentation of laser beams with different diameters in the air at a 100-meter path. // Optika Atmosfery i Okeana. 2016. V. 29. No. 01. P. 51-55. DOI: 10.15372/AOO20160106 [in Russian].
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Apeksimov D.V., Zemlyanov A.A., Iglakova A.N., Kabanov A.M., Kuchinskaya O.I., Matvienko G.G., Oshlakov V.K. and Petrov A.V. Multiple Filamentation of Laser Beams of Different Diameters in Air along a 150-meter Path. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 03. pp. 263–266.
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7. Berezin I. A., Timofeev Yu. M., Virolainen Ya. A., Volkova K. A. Intercomparison of ground-based MW measurements of precipitable water vapor with radiosounding data. P. 56-63
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Berezin I. A., Timofeev Yu. M., Virolainen Ya. A., Volkova K. A. Intercomparison of ground-based MW measurements of precipitable water vapor with radiosounding data. // Optika Atmosfery i Okeana. 2016. V. 29. No. 01. P. 56-63. DOI: 10.15372/AOO20160107 [in Russian].
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Berezin I.A., Timofeyev Yu.M., Virolainen Ya.A. and Volkova K.A. Comparison of Ground-Based Microwave Measurements of Precipitable Water Vapor with Radiosounding Data. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 03. pp. 274–281.
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8. Pavlov V. E., Orlov S. S., Pashnev V. V. Brightness of day sky as a source of information on albedo of underlying surface in infrared region. P. 64=69
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Pavlov V. E., Orlov S. S., Pashnev V. V. Brightness of day sky as a source of information on albedo of underlying surface in infrared region. // Optika Atmosfery i Okeana. 2016. V. 29. No. 01. P. 64=69. DOI: 10.15372/AOO20160108 [in Russian].
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Pavlov V.E., Orlov S.S. and Pashnev V.V. Daytime Sky Radiance as a Source of Information on Surface Albedo in IR Spectral Region. Part I. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 03. pp. 282–287.
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9. Lysenko S. A., Kugeiko M. M., Khomich V. V. Multifrequency lidar sounding of atmospheric pollution by respirable particulated matter with separation into respirable fractions. P. 70-79
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Lysenko S. A., Kugeiko M. M., Khomich V. V. Multifrequency lidar sounding of atmospheric pollution by respirable particulated matter with separation into respirable fractions. // Optika Atmosfery i Okeana. 2016. V. 29. No. 01. P. 70-79. DOI: 10.15372/AOO20160109 [in Russian].
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Lisenko S.A., Kugeiko M.M. and Khomich V.V. Multifrequency Lidar Sounding of Air Pollution by Particulate Matter with Separation into Respirable Fractions. // Atmospheric and Oceanic Optics, 2016, V. 29. No. 03. pp. 288–297.
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10. Fedotov Yu. V., Bullo O. A., Belov M. L., Gorodnichev V. A. Stability of results of plant state detection by laser fluorescence method. P. 80-84
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Fedotov Yu. V., Bullo O. A., Belov M. L., Gorodnichev V. A. Stability of results of plant state detection by laser fluorescence method. // Optika Atmosfery i Okeana. 2016. V. 29. No. 01. P. 80-84. DOI: 10.15372/AOO20160110 [in Russian].
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11. Lavrinenko A. V. Joint supershort-term forecast of meteorological fields using dynamic-stochastic algorithm for the case of related processes. P. 85-87
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Lavrinenko A. V. Joint supershort-term forecast of meteorological fields using dynamic-stochastic algorithm for the case of related processes. // Optika Atmosfery i Okeana. 2016. V. 29. No. 01. P. 85-87. DOI: 10.15372/AOO20160111 [in Russian].
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12. Information. P. 88