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Stéphane

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CINÉTIQUE CHIMIQUE
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CINÉTIQUE CHIMIQUE

Stéphane

CINÉTIQUE CHIMIQUE Alternate Text
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CINÉTIQUE CHIMIQUE

Stéphane

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32 pages

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Droit constitutionnel et CEDH
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Droit constitutionnel et CEDH

Stéphane

Droit constitutionnel et CEDH Alternate Text
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Droit et juridique

Droit constitutionnel et CEDH

Stéphane

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20 pages

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Explication sur Les Animaux malades de la peste
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Explication sur Les Animaux malades de la peste

Stéphane

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Explication sur Les Animaux malades de la peste

Stéphane

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4 pages

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Multispectral and multiangular measurement and modeling of leaf reflectance and transmittance Laurent Bousquet1 Thomas Lavergne2 Thierry Deroin3 Jean Luc Widlowski2 Ismaël Moya4 and Stéphane Jacquemoud1 Etudes Spatiales et Planétologie Institut de Physique du Globe de Paris et Université Paris Paris France jussieu fr jussieu fr Institute for Environment and Sustainability European Commission DG Joint Research Centre Ispra Italy thomas it jean luc it Muséum National d Histoire Naturelle Paris France fr Laboratoire de Météorologie Dynamique Ecole polytechnique Palaiseau France ismael polytechnique fr ABSTRACT Radiative transfer models are useful to non destructive estimation of vegetation biochemical content both at leaf level and canopy level They generally regard the leaf as a plane parallel absorbing and scattering medium the absorption coefficients of which are often estimated by model inversion This study aims at predicting leaf optical properties without resort to model inversion A typical dicotyledon leaf the biochemical content and anatomy of which have been measured in the laboratory acts as a model for D geometrical reconstruction The assigned absorption coefficients and refractive indices of constituents are compared to values published in the literature Radiative transfer simulations in the leaf model are run with the D Monte Carlo ray tracing model RAYTRAN Simulated reflectance and transmittance reproduce well typical leaf spectral features The anisotropy in the bidirectional simulations is also close to measurements However the model simulations overestimate the measured reflectances at large illumination zenith angles This may be due to the prescription of too high values for the cell wall refractive index and excessive air layers between the leaf palisade and the upper epidermis in the D leaf model
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Multispectral and multiangular measurement and modeling of leaf reflectance and transmittance Laurent Bousquet1 Thomas Lavergne2 Thierry Deroin3 Jean Luc Widlowski2 Ismaël Moya4 and Stéphane Jacquemoud1 Etudes Spatiales et Planétologie Institut de Physique du Globe de Paris et Université Paris Paris France jussieu fr jussieu fr Institute for Environment and Sustainability European Commission DG Joint Research Centre Ispra Italy thomas it jean luc it Muséum National d'Histoire Naturelle Paris France fr Laboratoire de Météorologie Dynamique Ecole polytechnique Palaiseau France ismael polytechnique fr ABSTRACT Radiative transfer models are useful to non destructive estimation of vegetation biochemical content both at leaf level and canopy level They generally regard the leaf as a plane parallel absorbing and scattering medium the absorption coefficients of which are often estimated by model inversion This study aims at predicting leaf optical properties without resort to model inversion A typical dicotyledon leaf the biochemical content and anatomy of which have been measured in the laboratory acts as a model for D geometrical reconstruction The assigned absorption coefficients and refractive indices of constituents are compared to values published in the literature Radiative transfer simulations in the leaf model are run with the D Monte Carlo ray tracing model RAYTRAN Simulated reflectance and transmittance reproduce well typical leaf spectral features The anisotropy in the bidirectional simulations is also close to measurements However the model simulations overestimate the measured reflectances at large illumination zenith angles This may be due to the prescription of too high values for the cell wall refractive index and excessive air layers between the leaf palisade and the upper epidermis in the D leaf model

Stéphane

Multispectral and multiangular measurement and modeling of leaf reflectance and transmittance Laurent Bousquet1 Thomas Lavergne2 Thierry Deroin3 Jean Luc Widlowski2 Ismaël Moya4 and Stéphane Jacquemoud1 Etudes Spatiales et Planétologie Institut de Physique du Globe de Paris et Université Paris Paris France jussieu fr jussieu fr Institute for Environment and Sustainability European Commission DG Joint Research Centre Ispra Italy thomas it jean luc it Muséum National d Histoire Naturelle Paris France fr Laboratoire de Météorologie Dynamique Ecole polytechnique Palaiseau France ismael polytechnique fr ABSTRACT Radiative transfer models are useful to non destructive estimation of vegetation biochemical content both at leaf level and canopy level They generally regard the leaf as a plane parallel absorbing and scattering medium the absorption coefficients of which are often estimated by model inversion This study aims at predicting leaf optical properties without resort to model inversion A typical dicotyledon leaf the biochemical content and anatomy of which have been measured in the laboratory acts as a model for D geometrical reconstruction The assigned absorption coefficients and refractive indices of constituents are compared to values published in the literature Radiative transfer simulations in the leaf model are run with the D Monte Carlo ray tracing model RAYTRAN Simulated reflectance and transmittance reproduce well typical leaf spectral features The anisotropy in the bidirectional simulations is also close to measurements However the model simulations overestimate the measured reflectances at large illumination zenith angles This may be due to the prescription of too high values for the cell wall refractive index and excessive air layers between the leaf palisade and the upper epidermis in the D leaf model Alternate Text
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Etudes supérieures

Multispectral and multiangular measurement and modeling of leaf reflectance and transmittance Laurent Bousquet1 Thomas Lavergne2 Thierry Deroin3 Jean Luc Widlowski2 Ismaël Moya4 and Stéphane Jacquemoud1 Etudes Spatiales et Planétologie Institut de Physique du Globe de Paris et Université Paris Paris France jussieu fr jussieu fr Institute for Environment and Sustainability European Commission DG Joint Research Centre Ispra Italy thomas it jean luc it Muséum National d'Histoire Naturelle Paris France fr Laboratoire de Météorologie Dynamique Ecole polytechnique Palaiseau France ismael polytechnique fr ABSTRACT Radiative transfer models are useful to non destructive estimation of vegetation biochemical content both at leaf level and canopy level They generally regard the leaf as a plane parallel absorbing and scattering medium the absorption coefficients of which are often estimated by model inversion This study aims at predicting leaf optical properties without resort to model inversion A typical dicotyledon leaf the biochemical content and anatomy of which have been measured in the laboratory acts as a model for D geometrical reconstruction The assigned absorption coefficients and refractive indices of constituents are compared to values published in the literature Radiative transfer simulations in the leaf model are run with the D Monte Carlo ray tracing model RAYTRAN Simulated reflectance and transmittance reproduce well typical leaf spectral features The anisotropy in the bidirectional simulations is also close to measurements However the model simulations overestimate the measured reflectances at large illumination zenith angles This may be due to the prescription of too high values for the cell wall refractive index and excessive air layers between the leaf palisade and the upper epidermis in the D leaf model

Stéphane

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6 pages

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Je veux Faire acquérir une connaissance les chromosomes sont constitués d A D N Développer des capacités Je ne sais pas lesquelles mais j ai envie de faire un TP chose peu courante en 3ème Développer des attitudes Je ne sais pas encore lesquelles
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Je veux Faire acquérir une connaissance les chromosomes sont constitués d'A D N Développer des capacités Je ne sais pas lesquelles mais j'ai envie de faire un TP chose peu courante en 3ème Développer des attitudes Je ne sais pas encore lesquelles

Stéphane

Je veux Faire acquérir une connaissance les chromosomes sont constitués d A D N Développer des capacités Je ne sais pas lesquelles mais j ai envie de faire un TP chose peu courante en 3ème Développer des attitudes Je ne sais pas encore lesquelles Alternate Text
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Je veux Faire acquérir une connaissance les chromosomes sont constitués d'A D N Développer des capacités Je ne sais pas lesquelles mais j'ai envie de faire un TP chose peu courante en 3ème Développer des attitudes Je ne sais pas encore lesquelles

Stéphane

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10 pages

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LMD MASTER
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LMD MASTER

Stéphane

LMD MASTER Alternate Text
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Etudes supérieures

LMD MASTER

Stéphane

Book

9 pages

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LMD MASTER
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LMD MASTER

Stéphane

LMD MASTER Alternate Text
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Etudes supérieures

LMD MASTER

Stéphane

Book

9 pages

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LMD MASTER
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LMD MASTER

Stéphane

LMD MASTER Alternate Text
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Etudes supérieures

LMD MASTER

Stéphane

Book

12 pages

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LMD MASTER
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LMD MASTER

Stéphane

LMD MASTER Alternate Text
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Etudes supérieures

LMD MASTER

Stéphane

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12 pages

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Projet PEPITES : Processus Ecologiques et Processus d Innovation technique et sociale en agriculture de conservation
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Projet PEPITES : Processus Ecologiques et Processus d'Innovation technique et sociale en agriculture de conservation

Stéphane

Projet PEPITES : Processus Ecologiques et Processus d Innovation technique et sociale en agriculture de conservation Alternate Text
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Jardinage

Projet PEPITES : Processus Ecologiques et Processus d'Innovation technique et sociale en agriculture de conservation

Stéphane

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56 pages

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Devoir d histoire 2nde13 – Explication d un document d histoire
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Devoir d'histoire 2nde13 – Explication d'un document d'histoire

Stéphane

Devoir d histoire 2nde13 – Explication d un document d histoire Alternate Text
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Religions

Devoir d'histoire 2nde13 – Explication d'un document d'histoire

Stéphane

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2 pages

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Reglage moto Promosport_1_
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Reglage moto Promosport_1_

Stéphane

Reglage moto Promosport_1_ Alternate Text
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Vie pratique

Reglage moto Promosport_1_

Stéphane

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5 pages

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Article L211-14 du Code Rural
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Article L211-14 du Code Rural

Stéphane

Article L211-14 du Code Rural Alternate Text
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Art, musique et cinéma

Article L211-14 du Code Rural

Stéphane

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7 pages

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