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BibEntryCargo > Volume : 11 or 21 & Note: Auto downloaded ref at: 2019-12-31

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Bart, Ryan R.; Tague, Christina L.; Moritz, Max A.; Jones, Julia A.; (1) · Bercovici, David; (1) · Beven, Keith; (1) · Borge, Amund F.; Westermann, Sebastian; Solheim, Ingvild; Etzelmüller, Bernd; (1) · Bozau, Elke; (1) · Coulthard, Tom J.; Lewin, John; Macklin, Mark G.; (1) · Croley, Thomas E.; He, Chansheng; (1) · Dyke, A.S.; Andrews, J.T.; Clark, P.U.; England, J.H.; Miller, G.H.; Shaw, J.; Veillette, J.J.; (1) · Eitelberg, David A.; van Vliet, Jasper; Verburg, Peter H.; (1) · Euskirchen, E S; Bennett, A P; Breen, A L; Genet, H; Lindgren, M A; Kurkowski, T A; McGuire, A D; Rupp, T S; (1) · Farley, Kathleen A.; Tague, Christina; Grant, Gordon E.; (1) · Garcia, E. S.; Tague, C. L.; (1) · Gowan, Evan J.; Niu, Lu; Knorr, Gregor; Lohmann, Gerrit; (1) · Grant, Gordon E; Tague, Christina L; Allen, Craig D; (1) · Greve, R.; Hutter, K.; (1) · Haberkorn, Anna; Wever, Nander; Hoelzle, Martin; Phillips, Marcia; Kenner, Robert; Bavay, Mathias; Lehning, Michael; (1) · Hu, Feng Sheng; Brubaker, Linda B.; Gavin, Daniel G.; Higuera, Philip E.; Lynch, Jason A.; Rupp, T. Scott; Tinner, Willy; (1) · Jesußek, Anna; Hansen, Carsten; Wilde, Siegfried; (1) · Kain, John S.; Weiss, S. J.; Levit, J. J.; Baldwin, M. E.; Bright, D. R.; (1) · Kirby, J.T.; Dalrymple, R.A.; (1) · Legg, Sonya; Hallberg, Robert W.; Girton, James B.; (1) · Liu, M.; Rajagopalan, K.; Chung, S. H.; Jiang, X.; Harrison, J.; Nergui, T.; Guenther, A.; Miller, C.; Reyes, J.; Tague, C.; Choate, J.; Salathé, E. P.; Stöckle, C. O.; Adam, J. C.; (1) · Lorber, Matthew N.; Mulkey, Lee A.; (1) · Moličová, Helena; Grimaldi, Michel; Bonell, Mike; Hubert, Pierre; (1) · Morrice, John A.; Valett, H. Maurice; Dahm, Clifford N.; Campana, Michael E.; (1) · Mottram, Ruth; B. Simonsen, Sebastian; Høyer Svendsen, Synne; Barletta, Valentina R.; Sandberg Sørensen, Louise; Nagler, Thomas; Wuite, Jan; Groh, Andreas; Horwath, Martin; Rosier, Job; Solgaard, Anne; Hvidberg, Christine S.; Forsberg, Rene; (1) · Runkel, Robert L.; (1) · Rupp, T. Scott; Chen, Xi; Olson, Mark; McGuire, A. David; (1) · Rückamp, Martin; Greve, Ralf; Humbert, Angelika; (1) · Short, David; Dawes, Warrick R.; White, Ian; (1) · Syvitski, J.P.M.; Alcott, J.M.; (1) · Syvitski, James P. M.; (1) · Tague, Christina; Farrell, Michael; Grant, Gordon; Lewis, Sarah; Rey, Serge; (1) · Thiem, Ø.; Berntsen, J.; Eldevik, T.; Alendal, G.; (1) · Tolman, Hendrik L.; (1) · Ward, Dylan J.; (1) · Zhang, Yinglong; Baptista, António M.; (1) · Zia, Asim; Bomblies, Arne; Schroth, Andrew W; Koliba, Christopher; Isles, Peter D F; Tsai, Yushiou; Mohammed, Ibrahim N; Bucini, Gabriela; Clemins, Patrick J; Turnbull, Scott; Rodgers, Morgan; Hamed, Ahmed; Beckage, Brian; Winter, Jonathan; Adair, Carol; Galford, Gillian L; Rizzo, Donna; Van Houten, Judith; (1)
Title:
12 Non-stationarity of basin scale sediment delivery in response to climate change (1) · A Third-Generation Model for Wind Waves on Slowly Varying, Unsteady, and Inhomogeneous Depths and Currents (1) · A new metric for determining the importance of transient storage (1) · A review of global potentially available cropland estimates and their consequences for model-based assessments (1) · A theoretical model of cooling viscous gravity currents with temperature-dependent viscosity (1) · Alluvial Characteristics, Groundwater–Surface Water Exchange and Hydrological Retention in Headwater Streams (1) · An Evaluation of Three Pesticide Runoff Loading Models1 (1) · An Integrated View of Greenland Ice Sheet Mass Changes Based on Models and Satellite Observations (1) · An approximate model for nonlinear dispersion in monochromatic wave propagation models, by J.T. Kirby and R.A. Dalrymple (1) · Climate regime and soil storage capacity interact to effect evapotranspiration in western United States mountain catchments (1) · Comparative simulations of the evolution of the Greenland ice sheet under simplified Paris Agreement scenarios with the models SICOPOLIS and ISSM (1) · Comparison of entrainment in overflows simulated by z-coordinate, isopycnal and non-hydrostatic models (1) · Consequences of changes in vegetation and snow cover for climate feedbacks in Alaska and northwest Canada (1) · Coupled impacts of climate and land use change across a river–lake continuum: insights from an integrated assessment model of Lake Champlain’s Missisquoi Basin, 2000–2040 (1) · Dip, layer spacing, and incision rate controls on the formation of strike valleys, cuestas, and cliffbands in heterogeneous stratigraphy (1) · Distributed snow and rock temperature modelling in steep rock walls using Alpine3D (1) · Effect of Tree-to-Shrub Type Conversion in Lower Montane Forests of the Sierra Nevada (USA) on Streamflow (1) · Examination of Convection-Allowing Configurations of the WRF Model for the Prediction of Severe Convective Weather: The SPC/NSSL Spring Program 2004 (1) · Gas exploration beyond the shelf break: An oceanographic challenge (1) · Geology datasets in North America, Greenland and surrounding areas for use with ice sheet models (1) · How Climate and Vegetation Influence the fire Regime of the Alaskan Boreal Biome: The Holocene Perspective (1) · Hydrogeologic controls on summer stream temperatures in the McKenzie River basin, Oregon (1) · Identifikation und Regionalisierung von Nitratabbauprozessen in einem Grundwasserleiter – Möglichkeiten und Nutzen für die Wassergewinnung (1) · Kommentar zur Technischen Mitteilung „Prozessmodellierung hochsalinarer Wässer mit einem erweiterten PHREEQC-Datensatz“ in Grundwasser 18 (2), 93–98 (2013) (1) · Polythermal three-dimensional modelling of the Greenland ice sheet with varied geothermal heat flux (1) · RIVER3: Simulation of river discharge and sediment transport (1) · SELFE: A semi-implicit Eulerian–Lagrangian finite-element model for cross-scale ocean circulation (1) · Sediment discharge variability in Arctic rivers: implications for a warmer future (1) · Sensitivity of Simulated Boreal Fire Dynamics to Uncertainties in Climate Drivers (1) · Strong degradation of palsas and peat plateaus in northern Norway during the last 60 years (1) · TOPMODEL: A critique (1) · The Laurentide and Innuitian ice sheets during the Last Glacial Maximum (1) · The practicability of using Richards' equation for general purpose soil-water dynamics models (1) · Using TOPMODEL towards identifying and modelling the hydrological patterns within a headwater, humid, tropical catchment (1) · Vulnerability of water supply from the Oregon Cascades to changing climate: Linking science to users and policy (1) · Watering the forest for the trees: an emerging priority for managing water in forest landscapes (1) · Watershed Surface and Subsurface Spatial Intraflows Model (1) · What is the importance of climate model bias when projecting the impacts of climate change on land surface processes? (1)
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http://ascelibrary.org/doi/10.1061/%28ASCE%291084-0699%282006%2911%3A1%2812%29 (1) · http://doi.wiley.com/10.1002/hyp.6538 (1) · http://doi.wiley.com/10.1029/94GL01124 (1) · http://doi.wiley.com/10.1111/gcb.12733 (1) · http://doi.wiley.com/10.1890/120209 (1) · http://journals.ametsoc.org/doi/10.1175/EI189.1 (1) · http://journals.ametsoc.org/doi/abs/10.1175/WAF906.1 (1) · http://link.springer.com/10.1007/s00767-016-0326-z (1) · http://link.springer.com/10.1007/s00767-016-0337-9 (1) · http://link.springer.com/10.1007/s11027-005-9015-4 (1) · http://stacks.iop.org/1748-9326/11/i=10/a=105003?key=crossref.ce26c4af711256673d5417c2d1e2610b (1) · http://stacks.iop.org/1748-9326/11/i=11/a=114026?key=crossref.46f2304a408b74e1eb473acc5fa39830 (1) · https://dx.plos.org/10.1371/journal.pone.0161805 (1) · https://journals.ametsoc.org/doi/abs/10.1175/1520-0485%281991%29021%3C0782%3AATGMFW%3E2.0.CO%3B2 (1) · https://linkinghub.elsevier.com/retrieve/pii/009830049400062Y (1) · https://linkinghub.elsevier.com/retrieve/pii/016041209500065S (1) · https://linkinghub.elsevier.com/retrieve/pii/037838398790041X (1) · https://linkinghub.elsevier.com/retrieve/pii/S0277379101000956 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0928202507111317 (1) · https://linkinghub.elsevier.com/retrieve/pii/S0959378010000956 (1) · https://linkinghub.elsevier.com/retrieve/pii/S1364815204002464 (1) · https://linkinghub.elsevier.com/retrieve/pii/S1463500304001064 (1) · https://linkinghub.elsevier.com/retrieve/pii/S1463500307001436 (1) · https://linkinghub.elsevier.com/retrieve/pii/S1873965218301403 (1) · https://onlinelibrary.wiley.com/doi/abs/10.1002/%28SICI%291099-1085%2819970315%2911%3A3%3C253%3A%3AAID-HYP439%3E3.0.CO%3B2-J (1) · https://onlinelibrary.wiley.com/doi/abs/10.1002/%28SICI%291099-1085%28199707%2911%3A9%3C1069%3A%3AAID-HYP545%3E3.0.CO%3B2-O (1) · https://onlinelibrary.wiley.com/doi/abs/10.1002/%28SICI%291099-1085%28199707%2911%3A9%3C1169%3A%3AAID-HYP551%3E3.0.CO%3B2-W (1) · https://polarresearch.net/index.php/polar/article/view/2150 (1) · https://pubs.geoscienceworld.org/gsa/lithosphere/article/11/5/697/572976/Dip-layer-spacing-and-incision-rate-controls-on (1) · https://www.agronomy.org/publications/jeq/abstracts/11/3/JEQ0110030519 (1) · https://www.biogeosciences.net/11/2601/2014/ (1) · https://www.cambridge.org/core/product/identifier/S0260305500015524/type/journal_article (1) · https://www.earth-syst-sci-data.net/11/375/2019/ (1) · https://www.hydrol-earth-syst-sci-discuss.net/11/2277/2014/ (1) · https://www.journals.uchicago.edu/doi/10.2307/1468428 (1) · https://www.mdpi.com/2072-4292/11/12/1407 (1) · https://www.the-cryosphere.net/11/1/2017/ (1) · https://www.the-cryosphere.net/11/585/2017/ (1)
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