Plant canopy light absorption model with application to wheat
Author:
Publisher
The Optical Society
Reference9 articles.
1. A model for simulating photosynthesis in plant communities
2. A Dynamic Grain Sorghum Growth Model
3. The calculation of the directional reflectance of a vegetative canopy
4. Spectral Distribution of Solar Radiation at the Earth's Surface
5. Increasing Crop Production Through More Controlled Photosynthesis
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1. Engineering plants to reflect light: strategies for engineering water-efficient plants to adapt to a changing climate;Plant Biotechnology Journal;2015-04-29
2. Spectral high-throughput assessments of phenotypic differences in biomass and nitrogen partitioning during grain filling of wheat under high yielding Western European conditions;Field Crops Research;2013-02
3. Retrieving wheat Green Area Index during the growing season from optical time series measurements based on neural network radiative transfer inversion;Remote Sensing of Environment;2011-03
4. Coupling canopy functioning and radiative transfer models for remote sensing data assimilation;Agricultural and Forest Meteorology;2001-06
5. Absorption profiles of shortwave radiation in a vegetation canopy;Agricultural and Forest Meteorology;1992-12
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