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Modeling the soil-water-crop-atmosphere system to improve crop and water productivity of IGNP Stage II
Modeling the soil-water-crop-atmosphere system to improve crop and water productivity of IGNP Stage II
Decision making and planning in agriculture by calibrating, validating and scenario simulating the crop model (DSSAT) : Progress Annual Report
Decision making and planning in agriculture by calibrating, validating and scenario simulating the crop model (DSSAT) according to rainfed climate sub activity annual progress report of the CRP Dryland System "Improving ...
Assessment of Crop Water Productivity in IGNP Area
Working paper on assessment of crop water productivity in IGNP area
Physical and economic water productivity of different crops and cropping systems quantified (ICARDA)
The Indira Gandhi Nahar Pariyojana (IGNP) is an enormous multi-purpose irrigation and settlement project, implementation of which started in the late 1960s. The goal was to transport and use over l06 billion cubic meter ...
Modeling soil-water-crop-atmosphere system to improve crop and water productivity of IGNP stage - II
Poster on modeling soil-water-crop-atmosphere system to improve crop and water productivity of IGNP stage - II
Assessing irrigation system performance in the IGNP Stage - i
Poster on assessing irrigation system performance in the IGNP Stage - I
Handbook on ET-based irrigation scheduling methodology
Handbook on ET-based irrigation scheduling methodology
Optimizing Micro Watershed Management for Runoff Harvesting, Natural Resource Conservation at Variou s Slope Gradients and Vegetative Covers using SWAT Modeling Approach
Report on application of SWAT model for soil conservation planning. A study was undertaken to evaluate the soil erosion parameters using semi-distributed
basin scale SWAT model in different watersheds of Chakwal and Attock ...
Improving Crop and Water Productivity in Indira Gandhi Canal Command Area
Report on application of crop models for understanding and optimizing physical and economic water productivity in the IGNP stages I and II