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Titlebook: Evapotranspiration in the Soil-Plant-Atmosphere System; Viliam Novák Book 2012 Springer Science+Business Media Dordrecht. 2012 Evapotransp

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Ceramics, Glasses, and Glazed Materials II,d solute) from the soil using the soil root layer. Evaporation is the typical movement of water to the soil surface (or close to it) from which water is evaporating. The properties of different plants’ root systems and their changes during ontogenesis is described, as well as the influence of differ
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Electrochemistry for Ecologistsion in the photosynthetic process is small in comparison with transpiration, which is enormous, and transpirating water passes through the plant and stomata to the atmosphere. To preserve itself, the plant can regulate transpiration by stomata opening and closing. Water movement through the plant is
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Joshua A. Hammons,Jan Ilavsky,Fan Zhangtion (from other surfaces). An approximative method of evapotranspiration structure calculation is presented. It is based on the empirically estimated relationship between the canopy leaf area index (LAI) and relative potential transpiration, i.e., on the ratio of potential transpiration and potenti
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Electrochemistry in Ionic Liquidsous evaporating surfaces. The method denoted as combination method is based in principle on the Penman-Monteith equation with modifications in calculation canopy resistance (using the Obuchov-Monin approach) and using empirical formulas to calculate evapotranspiration structure. Calculation is done
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Electrochemistry in Organic Synthesisanspiration. The weak point of traditional methods is the necessity to measure soil-plant-atmosphere system (SPAS) data at separate sites and upscale the information for regional evapotranspiration calculation. Many authors tried to use these data from the earliest days of the remote sensing techniq
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https://doi.org/10.1007/978-94-007-3840-9Evapotranspiration; evaporation; soil hydrology; transpiration; water and energy transport; hydrogeology;
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