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<center> {{HoverImage|Bullhorn2_black.png|Bullhorn2_grey.png|125px|link=Science_spotlights#Built_It_From_Scratch.21}}<br><br><big><big>Simulations show steeper catchments and more concave channels if overland flow is modeled as more realistic hydrographs. '''Jordan Adams''', graduate student at Tulane University, developed open-source code to better model runoff and erosion from rainstorms. [[Science_spotlights# | <center> {{HoverImage|Bullhorn2_black.png|Bullhorn2_grey.png|125px|link=Science_spotlights#Built_It_From_Scratch.21}}<br><br><big><big>Simulations show steeper catchments and more concave channels if overland flow is modeled as more realistic hydrographs. '''Jordan Adams''', graduate student at Tulane University, developed open-source code to better model runoff and erosion from rainstorms. [[Science_spotlights#Capturing_overland_flow-driven_erosion:_the_OverlandFlow_component_in_Landlab|More...]]<br><br>[mailto:csdmsweb@colorado.edu Nominate a science announcement]</big></big><br><br><br></center> | ||
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Revision as of 17:10, 12 July 2017
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Simulations show steeper catchments and more concave channels if overland flow is modeled as more realistic hydrographs. Jordan Adams, graduate student at Tulane University, developed open-source code to better model runoff and erosion from rainstorms. More...
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