Understanding of earth’s climates and climate change is governed by radiative processes in the earth-atmosphere system; in which aerosols with other particulates play a major role. The radiative properties of atmospheric aerosols are critically dependent on their refractive indices as a function of wavelength and also on their size. Theoretical modelling of light scattering by spherically assumed aerosol particles is always desired not only to gain insight to radiative transfer process but also to supplement ground based experiments. In the present study, we attempt to compute extinction efficiency (Qe), scattering efficiency (Qs) and absorption efficiency (Qa) as function of incident wavelength and size of aerosols. These parameters are then used to compute extinction cross-section (σe), scattering cross-section (σs) and absorption cross-section (σa). A mathematical scheme to deduce above parameters is discussed within the far-field (asymptotic) assumption.
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Da: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, Germania
Taschenbuch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Understanding of earth's climates and climate change is governed by radiative processes in the earth-atmosphere system; in which aerosols with other particulates play a major role. The radiative properties of atmospheric aerosols are critically dependent on their refractive indices as a function of wavelength and also on their size. Theoretical modelling of light scattering by spherically assumed aerosol particles is always desired not only to gain insight to radiative transfer process but also to supplement ground based experiments. In the present study, we attempt to compute extinction efficiency (Qe), scattering efficiency (Qs) and absorption efficiency (Qa) as function of incident wavelength and size of aerosols. These parameters are then used to compute extinction cross-section (se), scattering cross-section (ss) and absorption cross-section (sa). A mathematical scheme to deduce above parameters is discussed within the far-field (asymptotic) assumption. 92 pp. Englisch. Codice articolo 9783659555992
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Da: moluna, Greven, Germania
Condizione: New. Codice articolo 385767642
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Da: Revaluation Books, Exeter, Regno Unito
Paperback. Condizione: Brand New. 92 pages. 8.62x5.98x0.35 inches. In Stock. Codice articolo 3659555991
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Da: buchversandmimpf2000, Emtmannsberg, BAYE, Germania
Taschenbuch. Condizione: Neu. This item is printed on demand - Print on Demand Titel. Neuware -Understanding of earth's climates and climate change is governed by radiative processes in the earth-atmosphere system; in which aerosols with other particulates play a major role. The radiative properties of atmospheric aerosols are critically dependent on their refractive indices as a function of wavelength and also on their size. Theoretical modelling of light scattering by spherically assumed aerosol particles is always desired not only to gain insight to radiative transfer process but also to supplement ground based experiments. In the present study, we attempt to compute extinction efficiency (Qe), scattering efficiency (Qs) and absorption efficiency (Qa) as function of incident wavelength and size of aerosols. These parameters are then used to compute extinction cross-section (¿e), scattering cross-section (¿s) and absorption cross-section (¿a). A mathematical scheme to deduce above parameters is discussed within the far-field (asymptotic) assumption.VDM Verlag, Dudweiler Landstraße 99, 66123 Saarbrücken 92 pp. Englisch. Codice articolo 9783659555992
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Da: AHA-BUCH GmbH, Einbeck, Germania
Taschenbuch. Condizione: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - Understanding of earth's climates and climate change is governed by radiative processes in the earth-atmosphere system; in which aerosols with other particulates play a major role. The radiative properties of atmospheric aerosols are critically dependent on their refractive indices as a function of wavelength and also on their size. Theoretical modelling of light scattering by spherically assumed aerosol particles is always desired not only to gain insight to radiative transfer process but also to supplement ground based experiments. In the present study, we attempt to compute extinction efficiency (Qe), scattering efficiency (Qs) and absorption efficiency (Qa) as function of incident wavelength and size of aerosols. These parameters are then used to compute extinction cross-section (se), scattering cross-section (ss) and absorption cross-section (sa). A mathematical scheme to deduce above parameters is discussed within the far-field (asymptotic) assumption. Codice articolo 9783659555992
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Da: preigu, Osnabrück, Germania
Taschenbuch. Condizione: Neu. Mathematical Modelling for Light Scattering by Spherical Aerosols | Parthkumar Bhagvatsinh Dodiya (u. a.) | Taschenbuch | 92 S. | Englisch | 2019 | LAP LAMBERT Academic Publishing | EAN 9783659555992 | Verantwortliche Person für die EU: preigu GmbH & Co. KG, Lengericher Landstr. 19, 49078 Osnabrück, mail[at]preigu[dot]de | Anbieter: preigu. Codice articolo 117162697
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Da: Buchpark, Trebbin, Germania
Condizione: Sehr gut. Zustand: Sehr gut | Sprache: Englisch | Produktart: Bücher | Understanding of earth¿s climates and climate change is governed by radiative processes in the earth-atmosphere system; in which aerosols with other particulates play a major role. The radiative properties of atmospheric aerosols are critically dependent on their refractive indices as a function of wavelength and also on their size. Theoretical modelling of light scattering by spherically assumed aerosol particles is always desired not only to gain insight to radiative transfer process but also to supplement ground based experiments. In the present study, we attempt to compute extinction efficiency (Qe), scattering efficiency (Qs) and absorption efficiency (Qa) as function of incident wavelength and size of aerosols. These parameters are then used to compute extinction cross-section (¿e), scattering cross-section (¿s) and absorption cross-section (¿a). A mathematical scheme to deduce above parameters is discussed within the far-field (asymptotic) assumption. Codice articolo 35260577/2
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