Drilldown: BibEntryCargo
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BibEntryCargo > Year:
March 1, 2018
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Boongaling, Cheamson Garret K.; Faustino-Eslava, Decibel V.; Lansigan, Felino P.; (1) ·
Foglia, Laura; Neumann, Jakob; Tolley, Douglas G.; Orloff, Steve G.; Snyder, Richard L.; Harter, Thomas; (1) ·
Giese, M.; Reimann, T.; Bailly‐Comte, V.; Maréchal, J.‐C.; Sauter, M.; Geyer, T.; (1) ·
Hollaway, M.J.; Beven, K.J.; Benskin, C.McW.H.; Collins, A.L.; Evans, R.; Falloon, P.D.; Forber, K.J.; Hiscock, K.M.; Kahana, R.; Macleod, C.J.A.; Ockenden, M.C.; Villamizar, M.L.; Wearing, C.; Withers, P.J.A.; Zhou, J.G.; Barber, N.J.; Haygarth, P.M.; (1) ·
Malekinezhad, Hossein; Banadkooki, Fatemeh Barzegai; (1) ·
Masud, Mohammad Badrul; McAllister, Tim; Cordeiro, Marcos R.C.; Faramarzi, Monireh; (1) ·
Mtibaa, Slim; Hotta, Norifumi; Irie, Mitsuteru; (1) ·
Yang, Jing; Jakeman, Anthony; Fang, Gonghuan; Chen, Xi; (1) ·
Zhang, Ling; Nan, Zhuotong; Liang, Xu; Xu, Yi; Hernández, Felipe; Li, Lianxia; (1)
Analysis of the efficacy and cost-effectiveness of best management practices for controlling sediment yield: A case study of the Joumine watershed, Tunisia (1) ·
Application of the MacCormack scheme to overland flow routing for high-spatial resolution distributed hydrological model (1) ·
Modeling future water footprint of barley production in Alberta, Canada: Implications for water use and yields to 2064 (1) ·
Modeling guides groundwater management in a basin with river–aquifer interactions (1) ·
Modeling impacts of climate change and human activities on groundwater resources using MODFLOW (1) ·
Modeling land use change impacts on hydrology and the use of landscape metrics as tools for watershed management: The case of an ungauged catchment in the Philippines (1) ·
The challenges of modelling phosphorus in a headwater catchment: Applying a ‘limits of acceptability’ uncertainty framework to a water quality model (1) ·
Turbulent and Laminar Flow in Karst Conduits Under Unsteady Flow Conditions: Interpretation of Pumping Tests by Discrete Conduit‐Continuum Modeling (1) ·
Uncertainty analysis of a semi-distributed hydrologic model based on a Gaussian Process emulator (1)
116–128 (1) ·
156–177 (1) ·
1918–1933 (1) ·
1–16 (1) ·
208–222 (1) ·
289–300 (1) ·
421–431 (1) ·
607–624 (1) ·
84–95 (1)
http://calag.ucanr.edu/archive/?article=ca.2018a0011 (1) ·
https://iwaponline.com/jwcc/article/9/1/156/37965/Modeling-impacts-of-climate-change-and-human (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S0022169418300568 (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S0022169418300726 (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S0048969717330085 (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S0048969717330759 (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S026483771630895X (1) ·
https://linkinghub.elsevier.com/retrieve/pii/S1364815217301378 (1) ·
https://onlinelibrary.wiley.com/doi/abs/10.1002/2017WR020658 (1)
10.1002/2017WR020658 (1) ·
10.1016/j.envsoft.2017.11.037 (1) ·
10.1016/j.jhydrol.2018.01.048 (1) ·
10.1016/j.jhydrol.2018.01.063 (1) ·
10.1016/j.landusepol.2017.12.042 (1) ·
10.1016/j.scitotenv.2017.10.290 (1) ·
10.1016/j.scitotenv.2017.11.004 (1) ·
10.2166/wcc.2017.147 (1) ·
10.3733/ca.2018a0011 (1)
Showing below up to 9 results in range #1 to #9.