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Irrigators will not be able to keep up with crop water demands.
The three irrigation regimes were 25% of the crop water requirements, 50% of the crop water requirements and 100% of the crop water requirements.
Soil fauna significantly increased crop water use efficiency.
Crop water use efficiency was not statistically significant.
These values were multiplied by crop coefficients and water application efficiency for determining crop water requirement.
The crop water requirements depend on biophysical factors such as climate, soils and crops grown.
Maximum yield could be obtained with the fulfillment of complete crop water requirements.
Doorenbos and Pruitt (1977) developed methods for computing evapotranspiration and hence crop water requirements.
Actually, irrigation water is largely determined by rainfall and crop water requirement in the irrigation district.
Using available location-specific crop acreage data, a weighted crop water stress function is computed.
Selecting proper planting density can optimize light interception and increase crop water productivity.
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