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BibEntryCargo > Year: August 2023 & Pages : 1479–1491 or None

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A personal perspective of 20 years of regional groundwater resource modelling of the Permo-Triassic Sandstone aquifers in England (1) · Assessment of the impact of winter snowfall on the occurrence of forest fires in the east coast, Korea (1) · Building trust in continental-scale modelling in agriculture (1) · Calibration and validation of APSIM maize simulation model for different date of sowing (1) · Capture Timescale of an Uncontrolled Mississippi–Atchafalaya Bifurcation with Future Lower River Strategy Implications (1) · Collaborative intelligence for modelling marine social-ecological systems (1) · Combining ERA5 data and CYGNSS observations for the joint retrieval of global significant wave height of ocean swell and wind wave: a deep convolutional neural network approach (1) · Comparing the observed and predicted actual evapotranspiration in lumped conceptual hydrological models (1) · Compound drought and extreme temperature impacts on Australian wheat yields under climate change (1) · Cycles‐L: A Coupled, 3‐D, Land Surface, Hydrologic, and Agroecosystem Landscape Model (1) · Effect of soil water on flowering and pod-set in chickpea: implications for modelling and managing frost and heat stress (1) · Experimental and numerical elucidation of the fate and transport of antibiotics in aquatic environment: A review (1) · Impacts of drought on crop yield in the semiarid region (1) · Lake‐Area Expansion Alters Downwind Precipitation Patterns on the Tibetan Plateau: Insights From the Most Dramatically Expanded Lake (1) · Long-range impact-based forecasts for agricultural drought early warning in Australia (1) · Modelagem de base processual aplicada ao crescimento e produtividade do eucalipto (1) · Modeling the effect of soil fertility management options on maize yield stability under variable climate in a sub-humid zone in Ghana (1) · Modeling the effects of interior headland restoration on estuarine sediment transport processes in a marine-dominant estuary (1) · Modelling future gross primary productivity in Australia (1) · Modelling the integration of long fallows into cropping systems for adaptation to climate change in the Mediterranean environment of Western Australia (1) · Numerical modeling of wave attenuation: implications of representing vegetation found in coastal saltmarshes in the Chesapeake Bay (1) · Parameterizing Subglacial Discharge in Modeling Buoyancy Driven Flow in Tidewater Glacier Fjords (1) · Redesigning a nutrient model to enable faster model development (1) · Simulated efficiency of DMPP applications in reducing N2O emissions from Australian N-fertilized rainfed wheat cropping systems (1) · Simulating crop rotations to improve estimates of nutrient losses using APSIM in HPC (1) · Simulation modelling to develop an index of inherent risk of nitrogen losses to water from New Zealand�s agricultural lands (1) · Soil health modelling with APSIM (1) · Soil with high plant available water capacity can mitigate the agricultural drought effects on wheat biomass dynamic change (1) · The potential of using an inverse modelling approach to predict soil PAWC for summer crops in Australia (1) · Trophic fingerprinting of a pristine but rapidly deteriorating downstream region of a Western Ghats River (1) · Use of APSIM Next Generation to identify in-field practices to reduce N leaching under intensive vegetable production systems (1) · Use of SCRUM-APSIM to predict soil water and soil nitrogen dynamics in arable crop rotations (1) · Water and nitrogen use and productivity of dryland mixed farming system under climate change (1)
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https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2022WR033453 (1) · https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2023JC019924 (1) · https://agupubs.onlinelibrary.wiley.com/doi/10.1029/2023JD039274 (1) · https://bioone.org/journals/journal-of-coastal-research/volume-39/issue-6/JCOASTRES-D-22-00127.1/Capture-Timescale-of-an-Uncontrolled-MississippiAtchafalaya-Bifurcation-with-Future-Lower/10.2112/JCOASTRES-D-22-00127.1.full (1) · https://journal.agrimetassociation.org/index.php/jam/article/view/2212 (1) · https://link.springer.com/10.1007/s00190-023-01768-4 (1) · https://link.springer.com/10.1007/s10661-023-11482-5 (1) · https://link.springer.com/10.1007/s10661-023-11501-5 (1) · https://link.springer.com/10.1007/s10661-023-11533-x (1) · https://link.springer.com/10.1007/s13593-023-00903-x (1) · https://locus.ufv.br//handle/123456789/32039 (1) · https://mssanz.org.au/modsim2023/files/avendano334.pdf (1) · https://mssanz.org.au/modsim2023/files/chen30.pdf (1) · https://mssanz.org.au/modsim2023/files/cichota245.pdf (1) · https://mssanz.org.au/modsim2023/files/cichota622.pdf (1) · https://mssanz.org.au/modsim2023/files/dodd.pdf (1) · https://mssanz.org.au/modsim2023/files/he.pdf (1) · https://mssanz.org.au/modsim2023/files/huth.pdf (1) · https://mssanz.org.au/modsim2023/files/khaembah.pdf (1) · https://mssanz.org.au/modsim2023/files/li657.pdf (1) · https://mssanz.org.au/modsim2023/files/liu311.pdf (1) · https://mssanz.org.au/modsim2023/files/ma370.pdf (1) · https://mssanz.org.au/modsim2023/files/richetti.pdf (1) · https://mssanz.org.au/modsim2023/files/schepen.pdf (1) · https://mssanz.org.au/modsim2023/files/spillias.pdf (1) · https://mssanz.org.au/modsim2023/files/wang134.pdf (1) · https://mssanz.org.au/modsim2023/files/xiang.pdf (1) · https://mssanz.org.au/modsim2023/files/xing579.pdf (1) · https://mssanz.org.au/modsim2023/files/yang410.pdf (1) · https://mssanz.org.au/modsim2023/files/zou336.pdf (1) · https://www.frontiersin.org/articles/10.3389/fmars.2023.1217830/full (1) · https://www.frontiersin.org/articles/10.3389/fsufs.2023.1132732/full (1) · https://www.lyellcollection.org/doi/10.1144/qjegh2022-090 (1)
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