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Abdi‐Oskouei, M.; Carmichael, G.; Christiansen, M.; Ferrada, G.; Roozitalab, B.; Sobhani, N.; Wade, K.; Czarnetzki, A.; Pierce, R. B.; Wagner, T.; Stanier, C.; (1) · Arnault, Joël; Jung, Gerlinde; Haese, Barbara; Fersch, Benjamin; Rummler, Thomas; Wei, Jianhui; Zhang, Zhenyu; Kunstmann, Harald; (1) · Barnhart, Katherine R.; Tucker, Gregory E.; Doty, Sandra G.; Shobe, Charles M.; Glade, Rachel C.; Rossi, Matthew W.; Hill, Mary C.; (1) · Beck, Hylke E.; Pan, Ming; Lin, Peirong; Seibert, Jan; Dijk, Albert I. J. M.; Wood, Eric F.; (1) · Bertin, Xavier; Martins, Kévin; Bakker, Anouk; Chataigner, Teddy; Guérin, Thomas; Coulombier, Thibault; Viron, Olivier; (1) · Damveld, J. H.; Borsje, B. W.; Roos, P. C.; Hulscher, S. J. M. H.; (1) · Deng, Fanghui; Dixon, Timothy H.; Xie, Surui; (1) · Duarte, Pedro; Sundfjord, Arild; Meyer, Amelie; Hudson, Stephen R.; Spreen, Gunnar; Smedsrud, Lars H.; (1) · Echevarria, E. R.; Hemer, M. A.; Holbrook, N. J.; Marshall, A. G.; (1) · Elmilady, H.; Wegen, M.; Roelvink, D.; Spek, A.; (1) · Fuchs, Kathrin; Merbold, Lutz; Buchmann, Nina; Bretscher, Daniel; Brilli, Lorenzo; Fitton, Nuala; Topp, Cairistiona F. E.; Klumpp, Katja; Lieffering, Mark; Martin, Raphaël; Newton, Paul C. D.; Rees, Robert M.; Rolinski, Susanne; Smith, Pete; Snow, Val; (1) · Hanggoro, Wido; Harmoko, Iis Widya; Makmur, Erwin Eka Syahputra; (1) · Hermans, Tim H. J.; Le Bars, Dewi; Katsman, Caroline A.; Camargo, Carolina M. L.; Gerkema, Theo; Calafat, Francisco M.; Tinker, Jonathan; Slangen, Aimée B. A.; (1) · Liu, Qingxiang; Babanin, Alexander V.; Rogers, W. Erick; Zieger, Stefan; Young, Ian R.; Bidlot, Jean‐Raymond; Durrant, Tom; Ewans, Kevin; Guan, Changlong; Kirezci, Cagil; Lemos, Gil; MacHutchon, Keith; Moon, Il‐Ju; Rapizo, Henrique; Ribal, Agustinus; Semedo, Alvaro; Wang, Juanjuan; (1) · Ma, Chaoqun; Wang, Tijian; Jiang, Ziqiang; Wu, Hao; Zhao, Ming; Zhuang, Bingliang; Li, Shu; Xie, Min; Li, Mengmeng; Liu, Jane; Wu, Rongsheng; (1) · Osipov, Sergey; Stenchikov, Georgiy; Tsigaridis, Kostas; LeGrande, Allegra N.; Bauer, Susanne E.; (1) · Reeves, I. R. B.; Moore, L. J.; Goldstein, E. B.; Murray, A. B.; Carr, J. A.; Kirwan, M. L.; (3) · Rind, D.; Orbe, C.; Jonas, J.; Nazarenko, L.; Zhou, T.; Kelley, M.; Lacis, A.; Shindell, D.; Faluvegi, G.; Romanou, A.; Russell, G.; Tausnev, N.; Bauer, M.; Schmidt, G.; (1) · Saksa, Philip C.; Bales, Roger C.; Tague, Christina L.; Battles, John J.; Tobin, Benjamin W.; Conklin, M.H.; (1) · Tucker, Gregory E.; Hobley, Daniel E. J.; McCoy, Scott W.; Struble, Will T.; (1) · Ukhov, A.; Mostamandi, S.; Krotkov, N.; Flemming, J.; Silva, A.; Li, C.; Fioletov, V.; McLinden, C.; Anisimov, A.; Alshehri, Y. M.; Stenchikov, G.; (1) · Vasco, Anderson Nascimento; Aguiar Netto, Antenor de Oliveira; Britto, Fábio Brandão; Silva, Marinoé Gonzaga da; (1) · Zhang, Xuezhen; Ding, Nana; Han, Songjun; Tang, Qiuhong; (1) · سبزواری, تورج; طالبی, علی; (1)
Title:
A Joint Soil‐Vegetation‐Atmospheric Modeling Procedure of Water Isotopologues: Implementation and Application to Different Climate Zones With WRF‐Hydro‐Iso (1) · Drivers of Interannual Sea Level Variability on the Northwestern European Shelf (1) · Energy Transfers and Reflection of Infragravity Waves at a Dissipative Beach Under Storm Waves (1) · Fuels treatment and wildfire effects on runoff from Sierra Nevada mixed‐conifer forests (1) · GISS Model E2.2: A Climate Model Optimized for the Middle Atmosphere—Model Structure, Climatology, Variability, and Climate Sensitivity (1) · Global Fully Distributed Parameter Regionalization Based on Observed Streamflow From 4,229 Headwater Catchments (1) · Global Wave Hindcasts Using the Observation‐Based Source Terms: Description and Validation (1) · Horizontal and Vertical Sediment Sorting in Tidal Sand Waves: Modeling the Finite‐Amplitude Stage (1) · Impacts of Seagrass Dynamics on the Coupled Long‐Term Evolution of Barrier‐Marsh‐Bay Systems (3) · Importance of Bias Correction in Data Assimilation of Multiple Observations Over Eastern China Using WRF‐Chem/DART (1) · Influence of the Pacific‐South American Modes on the Global Spectral Wind‐Wave Climate (1) · Inverting Topography for Landscape Evolution Model Process Representation: 3. Determining Parameter Ranges for Select Mature Geomorphic Transport Laws and Connecting Changes in Fluvial Erodibility to Changes in Climate (1) · Irrigation‐Induced Potential Evapotranspiration Decrease in the Heihe River Basin, Northwest China, as Simulated by the WRF Model (1) · Modeling the Shape and Evolution of Normal‐Fault Facets (1) · Morphodynamic Evolution of a Fringing Sandy Shoal: From Tidal Levees to Sea Level Rise (1) · Multimodel Evaluation of Nitrous Oxide Emissions From an Intensively Managed Grassland (1) · SIMULASI HUJAN EKSTRIM PADA KEJADIAN BANJIR DI MATARAM TANGGAL 10 JANUARI 2009 MENGGUNAKAN WRF-EMS (1) · Sensitivity of Meteorological Skill to Selection of WRF‐Chem Physical Parameterizations and Impact on Ozone Prediction During the Lake Michigan Ozone Study (LMOS) (1) · Study of SO Pollution in the Middle East Using MERRA‐2, CAMS Data Assimilation Products, and High‐Resolution WRF‐Chem Simulations (1) · Surface Deformation and Induced Seismicity Due to Fluid Injection and Oil and Gas Extraction in Western Texas (1) · Swat model for in potential contamination a tributary of the rio São Francisco, Brazil (1) · The Role of the SO Radiative Effect in Sustaining the Volcanic Winter and Soothing the Toba Impact on Climate (1) · Warm Atlantic Water Explains Observed Sea Ice Melt Rates North of Svalbard (1) · پهنه بندی خطر زمین لغزش حوزه های آبخیز با استفاده از ترکیب دو مدل SINMAP و TOPMODEL (1)
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http://puslitbang.bmkg.go.id/jmg/index.php/jmg/article/view/120 (1) · https://doi.org/10.22092/ijwmse.2020.126528.1670 (1) · https://onlinelibrary.wiley.com/doi/10.1029/2019JB018962 (1) · https://onlinelibrary.wiley.com/doi/10.1029/2019JC015662 (1) · https://onlinelibrary.wiley.com/doi/10.1029/2019JC015714 (1) · https://onlinelibrary.wiley.com/doi/10.1029/2019JD031485 (1) · https://onlinelibrary.wiley.com/doi/10.1029/2019JD031726 (1) · https://onlinelibrary.wiley.com/doi/10.1029/2019JF005430 (1) · https://onlinelibrary.wiley.com/doi/10.1029/2019JG005416 (2) · https://onlinelibrary.wiley.com/doi/10.1029/2020JC016325 (1) · https://onlinelibrary.wiley.com/doi/10.1029/2020JC016354 (1) · https://onlinelibrary.wiley.com/doi/10.1029/2021MS002493 (1) · https://onlinelibrary.wiley.com/doi/10.1029/2021MS002562 (1) · https://onlinelibrary.wiley.com/doi/abs/10.1002/eco.2151 (1) · https://onlinelibrary.wiley.com/doi/abs/10.1029/2019JD031058 (1) · https://onlinelibrary.wiley.com/doi/abs/10.1029/2019JD031465 (1) · https://onlinelibrary.wiley.com/doi/abs/10.1029/2019JD031971 (1) · https://onlinelibrary.wiley.com/doi/abs/10.1029/2019JD031993 (1) · https://onlinelibrary.wiley.com/doi/abs/10.1029/2019JD032204 (1) · https://onlinelibrary.wiley.com/doi/abs/10.1029/2019JF005287 (1) · https://onlinelibrary.wiley.com/doi/abs/10.1029/2019JF005305 (1) · https://onlinelibrary.wiley.com/doi/abs/10.1029/2019JF005397 (1) · https://onlinelibrary.wiley.com/doi/abs/10.1029/2019JG005261 (1) · https://onlinelibrary.wiley.com/doi/abs/10.1029/2019JG005416 (1) · https://www.scientiaplena.org.br/sp/article/view/3779 (1)
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