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Results 1 to 25 of 1763

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Optical spectra of amorphous carbon grainsMAGGIPINTO, G; MINAFRA, A; TRITTO, F et al.Astrophysics and space science. 1985, Vol 108, Num 1, pp 101-111, issn 0004-640XArticle

Optical extinction due to intrinsic structural variations of photonic crystalsFEMIUS KOENDERINK, A; LAGENDIJK, Ad; VAS, Willem L et al.Physical review B. Condensed matter and materials physics. 2005, Vol 72, Num 15, pp 153102.1-153102.4, issn 1098-0121Article

Revised Bolometric Corrections and Interstellar Extinction Coefficients for the ACS and WFPC2 Photometric SystemsGIRARDI, Léo; DALCANTON, Julianne; WEISZ, Daniel R et al.Publications of the Astronomical Society of the Pacific. 2008, Vol 120, Num 867, pp 583-591, issn 0004-6280, 9 p.Article

Triplet extinction coefficients of some laser dyes IPAVLOPOULOS, T. G; GOLICH, D. J.Journal of applied physics. 1988, Vol 64, Num 2, pp 521-527, issn 0021-8979Article

SIMULATION DER LICHTSTREUUNG IM NEBEL = SIMULATION DE LA DIFFUSION DE LA LUMIERE DANS LE BROUILLARDFRUNGEL F; KNUTEL W.1973; OPTIK; DTSCH.; DA. 1973; VOL. 37; NO 5; PP. 461-469; ABS. ANGL; BIBL. 8 REF.Serial Issue

Etude tomographique de milieux diffusantsVALLESKALN, A. YA; LEVIN, G. G; STAROSTENKO, O. V et al.Optika i spektroskopiâ. 1985, Vol 58, Num 4, pp 850-853, issn 0030-4034Article

Measuremants of atmospheric turbidity from a network of sun-photometers in Italy during AlpexPRODI, F; LEVIZZANI, V; SENTIMENTI, M et al.Journal of aerosol science. 1984, Vol 15, Num 5, pp 595-613, issn 0021-8502Article

Bidirectional reflectance spectroscopy. IV: The extinction coefficient and the opposition effectHAPKE, B.Icarus (New York, NY). 1986, Vol 67, Num 2, pp 264-280, issn 0019-1035Article

Information content of multispectral lidar measurements with respect to the aerosol size distributionMÜLLER, H; QUENZEL, H.Applied optics. 1985, Vol 24, Num 5, pp 648-654, issn 0003-6935Article

METHODES DE DETERMINATION DU COEFFICIENT D'ABSORPTION DE LA LUMIERE PAR L'EAU DE MERKEL'BALIKHANOV BF; RUSANOV S YU; SHNYREV GD et al.1979; OKEANOLOGIJA; SUN; DA. 1979; VOL. 19; NO 1; PP. 168-174; ABS. ENG; BIBL. 11 REF.Article

PHOTOELECTRIC PHOTOMETRY AT THE HVAR OBSERVATORY. II. INSTRUMENTATION, REDUCTION TECHNIQUES, COLOUR SYSTEM AND EXTINCTIONHARMANEC P; GRYGAR J; HORN J et al.1977; BULL. ASTR. INST. CZECHOSL.; CSK; DA. 1977; VOL. 28; NO 3; PP. 133-143; ABS. RUS; BIBL. 12 REF.Article

KRAMERS-KRONIG ANALYSIS OF RELATIVE REFLECTANCE SPECTRA MEASURED AT AN OBLIQUE ANGLEHALE GM; HOLLAND WE; QUERRY MR et al.1973; APPL. OPT.; U.S.A.; DA. 1973; VOL. 12; NO 1; PP. 48-51; BIBL. 6 REF.Serial Issue

MEASUREMENT OF THE RAYLEIGH SCATTERING PROPERTIES OF SOME GASES WITH A NEPHELOMETERBODHAINE BA.1979; APPL. OPT.; USA; DA. 1979; VOL. 18; NO 1; PP. 121-125; BIBL. 14 REF.Article

SLOPE METHOD FOR DETERMINING EXTINCTION COEFFICIENTSWHANG US; HAMM RN; ARAKAWA ET et al.1973; J. OPT. SOC. AMER.; U.S.A.; DA. 1973; VOL. 63; NO 3; PP. 305-308; BIBL. 6 REF.Serial Issue

The stationary transport problem with angularly averaged measurementsLANGMORE, Ian.Inverse problems. 2008, Vol 24, Num 1, issn 0266-5611, 015024.1-015024.23Article

Evidence of multipolar excitations in surface enhanced Raman scatteringLAURENT, G; FELIDJ, N; AUBARD, J et al.Physical review B. Condensed matter and materials physics. 2005, Vol 71, Num 4, pp 045430.1-045430.6, issn 1098-0121Article

Détection des aérosols stratosphériques par mesure ballon du rayonnement diffusé au limbe: mise au point d'un nouvel instrument et premiers résultats = Stratospheric aerosols detection from balloon measurement of the light scattered by the limb: development of a new instrument and first resultsRamon, Didier; Lenoble, J.1995, 190 p.Thesis

Molar extinction coefficient of the incompletely relaxed excess electron in liquid waterKESZEI, E; JAY-GERIN, J.-P.Radiation physics and chemistry. 1989, Vol 33, Num 3, pp 183-184, issn 0146-5724Article

Tomographic lidar to measure the extinction coefficients of atmospheric aerosolsWEINMAN, J. A.Applied optics. 1984, Vol 23, Num 21, pp 3882-3888, issn 0003-6935Article

Apportioning light extinction coefficients to chemical species in atmospheric aerosolHASAN, H; DZUBAY, T. G.Atmospheric environment. 1983, Vol 17, Num 8, pp 1573-1581, issn 0004-6981Article

Inference of the aerosol Ångström coefficient from SAGE short-wavelength dataLENOBLE, J; PRUVOST, P.Journal of climate and applied meteorology. 1983, Vol 22, Num 10, pp 1717-1725, issn 0733-3021Article

Design optimisation of nano-replicated bilayer wire-grid polariserCHOI, H.-J; KIM, T.-H; KIM, S.-M et al.Electronics letters. 2011, Vol 47, Num 3, pp 200-202, issn 0013-5194, 3 p.Article

Extinction coefficient and skin depth of alkali metals from 10 to 1000 nmMCWHIRTER, J. D.Optics and lasers in engineering. 1997, Vol 28, Num 4, pp 305-309, issn 0143-8166Article

In situ measurements of aerosol extinction profiles and their spectral dependencies at tropospheric levelsJAYARAMAN, A; SUBBARAYA, B. H.Tellus. Series B, Chemical and physical meteorology. 1993, Vol 45, Num 5, pp 473-478, issn 0280-6509Article

Lidar measurement of the vertical aerosol extinction profiles with range-dependent backscatter-to-extinction ratiosKOVALEV, V. A.Applied optics. 1993, Vol 32, Num 30, pp 6053-6065, issn 0003-6935Article

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