LEADER 04332nam 22006015 450 001 9910299407003321 005 20240229212956.0 010 $a3-319-70796-5 024 7 $a10.1007/978-3-319-70796-9 035 $a(CKB)4100000001794827 035 $a(DE-He213)978-3-319-70796-9 035 $a(MiAaPQ)EBC5228503 035 $a(PPN)22395800X 035 $a(EXLCZ)994100000001794827 100 $a20180117d2018 u| 0 101 0 $aeng 135 $aurnn#008mamaa 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aSpringer Series in Light Scattering $eVolume 1: Multiple Light Scattering, Radiative Transfer and Remote Sensing /$fedited by Alexander Kokhanovsky 205 $a1st ed. 2018. 210 1$aCham :$cSpringer International Publishing :$cImprint: Springer,$d2018. 215 $a1 online resource (IX, 363 p. 121 illus., 62 illus. in color.) 225 1 $aSpringer Series in Light Scattering,$x2509-2790 311 $a3-319-70795-7 320 $aIncludes bibliographical references at the end of each chapters and index. 327 $aInvariant imbedding theory for the vector radiative transfer equation -- Multiple scattering of light in ordered particulate media -- Fast stochastic radiative transfer models for trace gas and cloud property retrievals under cloudy conditions -- Neural networks and support vector maschines and their application to aerosol and cloud remote sensing: a review -- Stereogrammetric shapes of mineral dust particles. 330 $aMany natural and biological media vary randomly in time and space. The examples are terrestrial atmosphere and ocean, biological liquids and tissues to name but a few. The main purpose of Springer Series in Light Scattering is to present recent advances in studies of light propagation, scattering, emission and absorption in random media. The topic is very broad and incorporates such diverse areas as atmospheric optics, ocean optics, optics of close-packed media, radiative transfer, light scattering, absorption, and scattering by single scatterers as well as by systems of particles, biomedical optics, optical properties of cosmic dust, remote sensing of atmosphere and ocean, etc. This branch of optical physics is of importance for material science, environmental science, climate change, and also for optical engineering. Although main developments in the solutions of radiative transfer and random media optics problems have been achieved in the 20th century by efforts of many scientists including V. Ambartsumian, S. Chandrasekhar, P. Debye, H. C. van de Hulst, G. Mie, and V. Sobolev, the optics of random media still present many puzzles to be solved such as radiative transfer in closely packed media, 3D radiative transfer as applied to the solution of inverse problems, optics of terrestrial and planetary surfaces, etc. It also has a broad range of applications in many fields of modern science and technology such as biomedical optics, atmospheric and oceanic optics, and astrophysics. The Series raises novel scientific questions, integrates data analysis, and offers new insights in optics of light scattering media. 410 0$aSpringer Series in Light Scattering,$x2509-2790 606 $aOptics 606 $aElectrodynamics 606 $aAtmospheric science 606 $aAir$xPollution 606 $aClassical Electrodynamics$3https://scigraph.springernature.com/ontologies/product-market-codes/P21070 606 $aAtmospheric Sciences$3https://scigraph.springernature.com/ontologies/product-market-codes/G36000 606 $aAtmospheric Protection/Air Quality Control/Air Pollution$3https://scigraph.springernature.com/ontologies/product-market-codes/U35010 615 0$aOptics. 615 0$aElectrodynamics. 615 0$aAtmospheric science. 615 0$aAir$xPollution. 615 14$aClassical Electrodynamics. 615 24$aAtmospheric Sciences. 615 24$aAtmospheric Protection/Air Quality Control/Air Pollution. 676 $a535.43 702 $aKokhanovsky$b Alexander$4edt$4http://id.loc.gov/vocabulary/relators/edt 801 0$bMiAaPQ 801 1$bMiAaPQ 801 2$bMiAaPQ 906 $aBOOK 912 $a9910299407003321 996 $aSpringer Series in Light Scattering$92089783 997 $aUNINA