Content of issue 10, volume 27, 2014

1. Geints Yu. E., Zemlyanov A. A. Influence of molecular absorption of the ground atmospheric path on characteristics of the filamentation range of high-power CO2-laser radiation. P. 851–858
Bibliographic reference:
Geints Yu. E., Zemlyanov A. A. Influence of molecular absorption of the ground atmospheric path on characteristics of the filamentation range of high-power CO2-laser radiation. // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 851–858 [in Russian].
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Geynts Yu.E. and Zemlyanov A.A. Influence of Molecular Absorption of a Ground Atmospheric Path on Characteristics of Filamentation Region of High-Power CO2 Laser Radiation. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 01. pp. 9–16.
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2. Tikhomirov B. A. Behavior of the position of 694.380 nm water vapor absorption line in dependence on the hydrogen pressure. P. 859–861
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Tikhomirov B. A. Behavior of the position of 694.380 nm water vapor absorption line in dependence on the hydrogen pressure. // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 859–861 [in Russian].
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3. Korshunov V. A., Zubachev D. S., Merzlyakov E. G., Jacobi Christoph. Results of determination of the middle atmosphere aerosol characteristics by means of two wavelengths lidar sensing and comparison with meteor radio echo measurements. P. 862–868
Bibliographic reference:
Korshunov V. A., Zubachev D. S., Merzlyakov E. G., Jacobi Christoph. Results of determination of the middle atmosphere aerosol characteristics by means of two wavelengths lidar sensing and comparison with meteor radio echo measurements. // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 862–868 [in Russian].
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Korshunov V.A., Zubachev D.S., Merzlyakov E.G., and Jacobi Ch. Aerosol Parameters of Middle Atmosphere Measured by Two-Wavelength Lidar Sensing and Their Comparison with Radio Meteor Echo Measurements. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 01. pp. 82–88.
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4. Poddubnyi V. A., Nagovitsyna E. S. Estimation of errors and verification of the fluid location of atmosphere method. P. 869–877
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Poddubnyi V. A., Nagovitsyna E. S. Estimation of errors and verification of the fluid location of atmosphere method. // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 869–877 [in Russian].
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Poddubny V.A. and Nagovitsyna E.S. Estimate of Errors and Verification of the Method of Fluid Location of the Atmosphere. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 03. pp. 282–290.
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5. Zemlyanov A. A., Bulygin A. D. Vibrations of a charged water drop in the conditions of strong deformations in approach of the ellipsoidal form of the surface. P. 878–881
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Zemlyanov A. A., Bulygin A. D. Vibrations of a charged water drop in the conditions of strong deformations in approach of the ellipsoidal form of the surface. // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 878–881 [in Russian].
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6. Gladkikh V. A., Nevzorova I. V., Odintsov S. L., Fedorov V. A. Structure functions of wind velocity components over inhomogeneous underlying surface. P. 882–890
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Gladkikh V. A., Nevzorova I. V., Odintsov S. L., Fedorov V. A. Structure functions of wind velocity components over inhomogeneous underlying surface. // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 882–890 [in Russian].
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Gladkikh V.A., Nevzorova I.V., Odintsov S.L., and Fedorov V.A. Structure Functions of Wind Velocity Components over an Inhomogeneous Underlying Surface. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 03. pp. 273–281.
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7. Varlamova E. V., Solov'ev V. S. Study of NDVI variations at tundra and taiga areas of Eastern Siberia (Yakutia). P. 891–894
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Varlamova E. V., Solov'ev V. S. Study of NDVI variations at tundra and taiga areas of Eastern Siberia (Yakutia). // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 891–894 [in Russian].
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Varlamova E.V. and Solovyev V.S. Study of NDVI Variations in Tundra and Taiga Areas of Eastern Siberia (Yakutia). // Atmospheric and Oceanic Optics, 2015, V. 28. No. 01. pp. 64–67.
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8. Komarov V. S., Nakhtigalova D. P., Ilin S. N., Lavrinenko A. V., Lomakina N. Ya. Climatic zoning of the Siberia territory according to the total and lower cloudiness conditions as a basis for construction of local cloud atmosphere models. Part 1. Methodical bases. P. 895–898
Bibliographic reference:
Komarov V. S., Nakhtigalova D. P., Ilin S. N., Lavrinenko A. V., Lomakina N. Ya. Climatic zoning of the Siberia territory according to the total and lower cloudiness conditions as a basis for construction of local cloud atmosphere models. Part 1. Methodical bases. // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 895–898 [in Russian].
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9. Komarov V. S., Nakhtigalova D. P., Ilin S. N., Lavrinenko A. V., Lomakina N. Ya. Climatic zoning of the Siberia territory according to the total and lower cloudiness conditions as a basis for construction of local cloud atmosphere models. Part 2. The results of climatic zoning. P. 899–905
Bibliographic reference:
Komarov V. S., Nakhtigalova D. P., Ilin S. N., Lavrinenko A. V., Lomakina N. Ya. Climatic zoning of the Siberia territory according to the total and lower cloudiness conditions as a basis for construction of local cloud atmosphere models. Part 2. The results of climatic zoning. // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 899–905 [in Russian].
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10. Yusupov D. V., Radomskaya V. I., Pavlova L. M., Trutneva N. V., Il’enok S. S. Heavy metals in dust aerosols on the northwest industrial area of Blagoveshchensk (Amur region). P. 906–910
Bibliographic reference:
Yusupov D. V., Radomskaya V. I., Pavlova L. M., Trutneva N. V., Il’enok S. S. Heavy metals in dust aerosols on the northwest industrial area of Blagoveshchensk (Amur region). // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 906–910 [in Russian].
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11. Banakh V. A., Smalikho I. N., Falits A. V., Belan B. D., Arshinov M. Yu., Аntokhin P. N. Joint radiosonde and Doppler lidar measurements of wind in the atmospheric boundary layer. P. 911–916
Bibliographic reference:
Banakh V. A., Smalikho I. N., Falits A. V., Belan B. D., Arshinov M. Yu., Аntokhin P. N. Joint radiosonde and Doppler lidar measurements of wind in the atmospheric boundary layer. // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 911–916 [in Russian].
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Banakh V.A., Smalikho I.N., Falits A.V., Belan B.D., Arshinov M.Yu., and Antokhin P.N. Joint Radiosonde and Doppler Lidar Measurements of Wind in the Atmospheric Boundary Layer. // Atmospheric and Oceanic Optics, 2015, V. 28. No. 02. pp. 185–191.
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12. Lushev V. P., Litvinov A. V., Demidov N. Yu., Kozlov S. N., Reino V. V. Lift dynamics of a cloud of combustion products at fire utilization of charges of solid-fuel power plants at an open test bench. Processes and their identification. P. 917–924
Bibliographic reference:
Lushev V. P., Litvinov A. V., Demidov N. Yu., Kozlov S. N., Reino V. V. Lift dynamics of a cloud of combustion products at fire utilization of charges of solid-fuel power plants at an open test bench. Processes and their identification. // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 917–924 [in Russian].
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13. Lavrinov V. V., Lavrinova L. N., Tuev M. V. Numerical simulation of the algorithm to compute the voltage control for the flexible mirror depending on the representation of information on the wavefront. P. 925–931
Bibliographic reference:
Lavrinov V. V., Lavrinova L. N., Tuev M. V. Numerical simulation of the algorithm to compute the voltage control for the flexible mirror depending on the representation of information on the wavefront. // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 925–931 [in Russian].
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14. Artyshchenko S. V., Golovinski P. A., Chernov R. A. Reconstruction of the wavefront phase with the use of a complex neural network. P. 932–936
Bibliographic reference:
Artyshchenko S. V., Golovinski P. A., Chernov R. A. Reconstruction of the wavefront phase with the use of a complex neural network. // Optika Atmosfery i Okeana. 2014. V. 27. No. 10. P. 932–936 [in Russian].
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