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1

Mencuccini, M., J. Grace, J. Moncrieff i K. G. McNaughton, red. Forests at the land-atmosphere interface. Wallingford: CABI, 2004. http://dx.doi.org/10.1079/9780851996776.0000.

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2

M, Mencuccini, red. Forests at the land-atmosphere interface. Oxon, UK: CABI Publishing, 2004.

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3

Wood, Eric F., red. Land Surface — Atmosphere Interactions for Climate Modeling. Dordrecht: Springer Netherlands, 1991. http://dx.doi.org/10.1007/978-94-009-2155-9.

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4

Zhou, Tianjun, Yongqiang Yu, Yimin Liu i Bin Wang, red. Flexible Global Ocean-Atmosphere-Land System Model. Berlin, Heidelberg: Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-642-41801-3.

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5

Land & light workshop: Painting mood & atmosphere in oils. Cincinnati, OH: North Light Books, 2005.

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6

Enting, I. G. Future emissions and concentrations of carbon dioxide: Key ocean/atmosphere/land analyses. Australia: CSIRO, 1994.

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7

F, Wood Eric, red. Land surface, atmosphere interactions for climate modeling: Observations, models, and analysis. Dordrecht: Kluwer Academic Publishers, 1990.

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8

L, Kinter J., i United States. National Aeronautics and Space Administration., red. Integration of space and in-situ observations to study atmosphere, ocean, and land processes, 1 September 1987 - 31 August 1992. [Washington, DC: National Aeronautics and Space Administration, 1992.

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9

L, Kinter James, i United States. National Aeronautics and Space Administration., red. Integration of space and in-situ observations to study atmosphere, ocean, and land processes, 1 September 1987 - 31 August 1992. [Washington, DC: National Aeronautics and Space Administration, 1992.

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10

Nagy, Laszlo, Bruce R. Forsberg i Paulo Artaxo, red. Interactions Between Biosphere, Atmosphere and Human Land Use in the Amazon Basin. Berlin, Heidelberg: Springer Berlin Heidelberg, 2016. http://dx.doi.org/10.1007/978-3-662-49902-3.

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11

Abraham, Schnapf, red. Monitoring earth's ocean, land, and atmosphere from space-- sensors, systems, and applications. New York, N.Y: American Institute of Aeronautics and Astronautics, 1985.

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12

Center for Satellite Applications and Research (U.S.). STAR looks at the Earth: Satellite measurements of the atmosphere, oceans, and land. [Washington, D.C.]: National Environmental Satellite, Data, and Information Service, National Oceanic and Atmospheric Administration, U.S. Department of Commerce, 2012.

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13

1949-, Heimann Martin, Holmén Kim, Piatanesi A, Früh W. -G, Malinowski S. P i European Geophysical Society, red. I. Climate-ocean-atmosphere and carbon cycle: Carbon cycle over land and oceans. Oxford, England: Pergamon, 1999.

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14

National Research Council (U.S.). Committee on Challenges in Representing Physical Processes in Coupled Atmosphere-Land-Ocean Models. i National Academies Press (U.S.), red. Improving the scientific foundation for atmosphere-land-ocean simulations: Report of a workshop. Washington, D.C: National Academies Press, 2005.

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15

Labgaa, Rachid R. A model of the CO2 exchanges between biosphere and atmosphere in the tundra. Santa Barbara, CA: Earth-Space Research Group, CRSEO -- Ellison Hall, University of California Santa Barbara, 1994.

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16

P, Ciais, i Climate Monitoring and Diagnostics Laboratory (U.S.), red. An analytical error estimate for the ocean and land uptake of COb2s using [delta]p13sC observations in the atmosphere. Boulder, Colo: Climate Monitoring and Diagnostics Laboratory, U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, 1995.

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17

Schnapf, Abraham. Monitoring Earth's Ocean, Land, and Atmosphere from Space-Sensors, Systems, and Applications. New York: American Institute of Aeronautics and Astronautics, 1985. http://dx.doi.org/10.2514/4.865725.

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18

L, Smith William, Yasuoka Yoshifumi, Society of Photo-optical Instrumentation Engineers. i Uchū Kaihatsu Jigyōdan (Japan), red. Hyperspectral remote sensing of the land and atmosphere: 9-12 October 2000, Sendai, Japan. Bellingham, Wash., USA: SPIE, 2001.

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19

Okazaki, Atsushi. Development of stable water isotope incorporated atmosphere-land coupled model and comparison with climate proxies. Tokyo]: Division of Climate System Research, Atmosphere and Ocean Research Institute, The University of Tokyo, 2018.

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20

National Research Council (U.S.). Climate Research Committee., red. GOALS, Global Ocean-Atmosphere-Land System, for predicting seasonal-to-interannual climate: A program of observation, modeling, and analysis. Washington, D.C: National Academy Press, 1994.

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21

C, Johnson Gregory, i Pacific Marine Environmental Laboratory (U.S.), red. CTD measurements during 1999 and 2000 as part of the Global Ocean-Atmosphere-Land System (GOALS)/Pan American Climate Studies (PACS). Seattle, Wash: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Oceanic and Atmospheric Research Laboratories, Pacific Marine Environmental Laboratory, 2001.

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22

United States. National Aeronautics and Space Administration., red. Differentiating the role of land surface variability and cloudiness variability on global energy transport within the atmosphere and oceans. [Washington, DC: National Aeronautics and Space Administration, 1993.

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23

E, McTaggart K., i Pacific Marine Environmental Laboratory (U.S.), red. CTD measurements during 1995 and 1996 as part of the Global Ocean-Atmosphere-Land System (GOALS) Pan American Climate Studies (PACS). Seattle, Wash: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Pacific Marine Environmental Laboratory, 1997.

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24

E, McTaggart K., i Pacific Marine Environmental Laboratory (U.S.), red. CTD measurements during 1995 and 1996 as part of the Global Ocean-Atmosphere-Land System (GOALS) Pan American Climate Studies (PACS). Seattle, Wash: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Pacific Marine Environmental Laboratory, 1997.

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25

E, McTaggart K., i Pacific Marine Environmental Laboratory (U.S.), red. CTD measurements during 1995 and 1996 as part of the Global Ocean-Atmosphere-Land System (GOALS) Pan American Climate Studies (PACS). Seattle, Wash: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Pacific Marine Environmental Laboratory, 1997.

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26

1952-, Clifford Stephen Mark, Haberele Robert M i Lunar and Planetary Institute, red. MECA Workshop on Atmospheric H₂O Observations of Earth and Mars: Physical processes, measurements, and interpretations. Houston, Tex: The Institute ; [Springfield, Va., 1988.

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27

Mölder, Meelis. Parameterization of the interaction between the atmosphere and the land surface by means of roughness lengths: An experimental study over various surfaces. Uppsala: Sveriges lantbruksuniversitet, Institutionen för ekologi och miljövård, 1993.

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28

J, Turner S., Walker B. H. 1940- i International Geosphere-Biosphere Programme, red. The land-atmosphere interface: Report of a combined modelling workshop of IGBP Coordinating Panels 3, 4, and 5 Brussels, Belgium 8-11 June, 1989. Stockholm: IGBP, 1990.

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29

Lee, Williams T. H., Nicks Arlin D i United States. National Aeronautics and Space Administration., red. Status report on hydrologic models for land-atmosphere retrospective: Studies of the use of Landsat and AVHRR data : semi-annual report for the period 1 October 1987 - 31 March 1988. [Washington, DC: National Aeronautics and Space Administration, 1988.

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30

Ghassem, Asrar, United States. National Aeronautics and Space Administration. i International Satellite Land-Surface Climatology Project., red. Land surface-atmosphere interactions: Research results from selected studies initiated through a NASA Research Announcement in 1985 for interdiscip linary studies and as part of NASA's program in the International Satellite LandSurface Climatology project initiative. Amsterdam: Elsevier, 1990.

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31

Vadrevu, Krishna Prasad, Toshimasa Ohara i Chris Justice, red. Land-Atmospheric Research Applications in South and Southeast Asia. Cham: Springer International Publishing, 2018. http://dx.doi.org/10.1007/978-3-319-67474-2.

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32

Dale, Virginia H., red. Effects of Land-Use Change on Atmospheric CO2 Concentrations. New York, NY: Springer New York, 1994. http://dx.doi.org/10.1007/978-1-4613-8363-5.

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33

Arellano, Jordi Vilà-Guerau de. Atmospheric boundary layer: Integrating air chemistry and land interactions. New York, NY: Cambridge University Press, 2015.

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34

Chris, Justice, Scholes Bob, Frost Peter i International Geosphere-Biosphere Programme, red. African Savannas and the global atmosphere: Research agenda : report of a joint IGBP/START/IGAC/GCTE/GAIM/DIS workshop on African Savannas, land use and global change: interactions of climate, productivity and emissions, 2-5 June 1993, Victoria Falls, Zimbabwe. Stockholm: IGBP, 1994.

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35

1960-, Brown Katrina, red. Land use and the causes of global warming. Chichester [England]: Wiley, 1994.

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36

Roesch, Andreas Carl. Comparison and sensitivity studies of the land-surface schemes in the ECHAM general circulation model and the Europa-modell. Hamburg: Max-Planck-Institut für Meteorologie, 1997.

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37

Becker, F. The International Satellite Land-Surface Climatology Project (ISLSCP). Berlin: ISLSCP-Secretariat, 1988.

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38

S, Levine Joel, red. Global biomass burning: Atmospheric, climatic, and biospheric implications. Cambridge, Mass: MIT Press, 1991.

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39

Dara, Entekhabi, i United States. National Aeronautics and Space Administration., red. The implementation and validation of improved land surface hydrology in an atmospheric general circulation model. [Cambridge, Mass.]: Ralph M. Parsons Laboratory, Hydrology and Water Resource Systems, 1991.

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40

Forests at the Land-Atmosphere Interface. CABI, 2004.

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41

Iap Global Ocean-Atmosphere-Land System Model. Science Pr, 2000.

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42

Passive Microwave Remote Sensing of Land--atmosphere Interactions. Brill Academic Publishers, 1995.

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43

Pampaloni, P. Passive Microwave Remote Sensing of Land--atmosphere Interactions. Brill Academic Publishers, 1995.

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44

Palmer, Paul I. The Atmosphere: A Very Short Introduction. Oxford University Press, 2017. http://dx.doi.org/10.1093/actrade/9780198722038.001.0001.

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Streszczenie:
The atmosphere is the thin, diffuse fluid that envelops the Earth’s surface. Despite its apparent fragility, the existence of this fluid is vital for human and other life on Earth. The Atmosphere: A Very Short Introduction describes the physical and chemical characteristics of different layers in the atmosphere, and shows how the atmosphere’s interactions with land, ocean, and ice affect these properties. It also looks at how movement in the atmosphere, driven by heat from the Sun, transports heat from lower latitudes to higher latitudes. Finally, it presents an overview of the types of measurements used to understand different parts of the atmosphere, and identifies future challenges in the light of climate change.
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45

Improving the Scientific Foundation for Atmosphere-Land-Ocean Simulations. Washington, D.C.: National Academies Press, 2005. http://dx.doi.org/10.17226/11266.

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46

Emery, William, Adriano Camps i Marc Rodriguez-Cassola. Introduction to Satellite Remote Sensing: Atmosphere, Ocean and Land Applications. Elsevier Science & Technology Books, 2017.

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47

National Aeronautics and Space Administration (NASA) Staff. Variability and Predictability of Land-Atmosphere Interactions: Observational and Modeling Studies. Independently Published, 2018.

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48

Wood, E. F. Land Surface -- Atmosphere Interactions for Climate Modeling: Observations, Models and Analysis. Springer London, Limited, 2012.

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49

Gentine, Pierre, i Bert Holtslag. Land-Atmosphere Interactions: Coupling Between the Water, Energy and Carbon Cycles. Wiley & Sons, Limited, John, 2017.

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50

Gentine, Pierre, i Bert Holtslag. Land-Atmosphere Interactions: Coupling Between the Water, Energy and Carbon Cycles. Wiley & Sons, Incorporated, John, 2017.

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