Content of issue 08, volume 8, 1995

pdf 1. Velichko T. I., Mikhailenko S. N., Tyuterev Vl. G. Spectroscopic parameters and potential function of HCl molecule. P. 1131-1135
Bibliographic reference:
Velichko T. I., Mikhailenko S. N., Tyuterev Vl. G. Spectroscopic parameters and potential function of HCl molecule. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1131-1135.
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pdf 2. Zuev V. V., Kataev M. Yu., Makogon M. M., Mitsel' A. A. Differential absorption lidar method. Current status of research. P. 1136-1164
Bibliographic reference:
Zuev V. V., Kataev M. Yu., Makogon M. M., Mitsel' A. A. Differential absorption lidar method. Current status of research. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1136-1164.
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pdf 3. Zemlyanov A. A., Kabanov A. M. Energy thresholds and temporal characteristics of explosive boiling up and vaporization of aerosol particles in a CO2-laser radiation field. P. 1165-1169
Bibliographic reference:
Zemlyanov A. A., Kabanov A. M. Energy thresholds and temporal characteristics of explosive boiling up and vaporization of aerosol particles in a CO2-laser radiation field. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1165-1169.
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pdf 4. Sagalakov A. M., Shaiduk A. M. Propagation of limited laser beams in the inflammable aerosol. P. 1170-1174
Bibliographic reference:
Sagalakov A. M., Shaiduk A. M. Propagation of limited laser beams in the inflammable aerosol. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1170-1174.
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pdf 5. Marichev V. N. Determination of the integral content of atmospheric trace gases from zenith measurements of the spectral sky brightness. P. 1175-1179
Bibliographic reference:
Marichev V. N. Determination of the integral content of atmospheric trace gases from zenith measurements of the spectral sky brightness. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1175-1179.
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pdf 6. Kozlov V. K., Turkin V. V. Sounding of underlying surface using a fluorescent lidar. P. 1180-1184
Bibliographic reference:
Kozlov V. K., Turkin V. V. Sounding of underlying surface using a fluorescent lidar. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1180-1184.
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pdf 7. Arshinov M. Yu., Belan B. D., Kovalevskii V. K., Tolmachev G. N. Results of climatic-ecological monitoring at TOR station. III. Atmospheric aerosol. P. 1185-1190
Bibliographic reference:
Arshinov M. Yu., Belan B. D., Kovalevskii V. K., Tolmachev G. N. Results of climatic-ecological monitoring at TOR station. III. Atmospheric aerosol. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1185-1190.
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pdf 8. Volkov S. N., Nadeev A. I. Efficiency of Raman lidar sounding of temperature profiles and scattering ratio with adaptive smoothing of signals. P. 1191-1194
Bibliographic reference:
Volkov S. N., Nadeev A. I. Efficiency of Raman lidar sounding of temperature profiles and scattering ratio with adaptive smoothing of signals. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1191-1194.
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pdf 9. Afanas'ev A. L., Patrushev G. Ya., Rostov A. P. Preliminary results of the experimental study of a model for the spectral tensor of the wind velocity field in the ground atmosphere. P. 1195-1198
Bibliographic reference:
Afanas'ev A. L., Patrushev G. Ya., Rostov A. P. Preliminary results of the experimental study of a model for the spectral tensor of the wind velocity field in the ground atmosphere. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1195-1198.
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pdf 10. Popov A. A. Applicability limits of the method of physical optics in the problems of light scattering by large crystals. II. Scattering by a rectangular plate. P. 1199-1205
Bibliographic reference:
Popov A. A. Applicability limits of the method of physical optics in the problems of light scattering by large crystals. II. Scattering by a rectangular plate. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1199-1205.
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pdf 11. Prokopov A. V. Some aspects of the theory of astronomical refraction in the earth's atmosphere. P. 1206-1212
Bibliographic reference:
Prokopov A. V. Some aspects of the theory of astronomical refraction in the earth's atmosphere. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1206-1212.
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pdf 12. Fabrikov A. V., Aldoshina O. I., Mamaeva A. V. Estimation of time delays by the method of adaptive filtering with spline smoothing of signals. P. 1213-1217
Bibliographic reference:
Fabrikov A. V., Aldoshina O. I., Mamaeva A. V. Estimation of time delays by the method of adaptive filtering with spline smoothing of signals. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1213-1217.
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pdf 13. Dyomin V. V., Sokolov V. V. Holographic recording of optically soft microparticles. Calculational procedure. P. 1218-1226
Bibliographic reference:
Dyomin V. V., Sokolov V. V. Holographic recording of optically soft microparticles. Calculational procedure. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1218-1226.
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pdf 14. Andreev S. D., Ivlev L. S. Modeling of optical characteristics of near-ground atmospheric aerosol in the 0.3-15 μm wavelength range. II. Model of aerosol composition and structure. P. 1227-1235
Bibliographic reference:
Andreev S. D., Ivlev L. S. Modeling of optical characteristics of near-ground atmospheric aerosol in the 0.3-15 μm wavelength range. II. Model of aerosol composition and structure. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1227-1235.
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pdf 15. Andreev S. D., Ivlev L. S. Modeling of optical characteristics of near-ground atmospheric aerosol in the 0.3-15 μm wavelength range. III. Results of modeling. P. 1136-1143
Bibliographic reference:
Andreev S. D., Ivlev L. S. Modeling of optical characteristics of near-ground atmospheric aerosol in the 0.3-15 μm wavelength range. III. Results of modeling. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1136-1143.
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pdf 16. Veretennikov V. V. Determination of aerosol microstructure from particle shadow correlation function by the method of the Fourier-Bessel series expansion. P. 1244-1147
Bibliographic reference:
Veretennikov V. V. Determination of aerosol microstructure from particle shadow correlation function by the method of the Fourier-Bessel series expansion. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1244-1147.
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pdf 17. Firsov K. M., Smirnov A. B. Representation of transmission functions by exponential series. P. 1248-1252
Bibliographic reference:
Firsov K. M., Smirnov A. B. Representation of transmission functions by exponential series. // Atmospheric and oceanic optics. 1995. V. 8. No. 08. P. 1248-1252.
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18. Information. P. 1253-1256