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Victorian Dryland Salinity Assessment 2000 – dc21cac_water_resources_new.xls
Australian Bureau of Agricultural and Resource Economics and Sciences
Consolidation of data relating to potential impacts of shallow water tables and salinity on water resource features SeeVictorian Dryland Salinity Assessment 2000 – dc16cac_agric_cost.xls
Australian Bureau of Agricultural and Resource Economics and Sciences
Estimation of agricultural gross margins lost as the result of shallow water tables and salinity in each Catchment Management Authority region SeeVictorian Dryland Salinity Assessment 2000 – dc10cac_flora_dist_final.xls
Australian Bureau of Agricultural and Resource Economics and Sciences
Classification of threatened flora records located in the potential shallow water table zone SeeVictorian Dryland Salinity Assessment 2000 – dc09cac_flora_final.xls
Australian Bureau of Agricultural and Resource Economics and Sciences
Classification of threatened flora records located in the potential shallow water table zone SeeVictorian Dryland Salinity Assessment 2000 – d02cac_fauna_final.xls
Australian Bureau of Agricultural and Resource Economics and Sciences
Classification of threatened fauna records located in the potential shallow water table zone SeeTasmanian Museum and Art Gallery Faunal Collection
Tasmanian Museum and Art Gallery
The Tasmanian Museum and Art Gallery is the leading repository of natural history collections in Tasmania. The zoological collections serve as taxonomic reference...Mean transpiration in September from the plant canopy for the present day scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially...Mean transpiration in November from the plant canopy for the present day scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially...Mean transpiration in November from the plant canopy for the pre 1788 scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially...Mean transpiration in May from the plant canopy for the pre 1788 scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially...Mean transpiration in March from the plant canopy for the present day scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially...Mean transpiration in March from the plant canopy for the present day scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially...Mean transpiration in March from the plant canopy for the pre 1788 scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially...Mean transpiration in June from the plant canopy for the present day scenario
Australian Bureau of Agricultural and Resource Economics and Sciences
Mean annual (00) and monthly (01a|12) transpiration (mm) from the plant canopy for the period 1980-1999.Interpretation:Canopy transpiration is far more spatially...