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This Chapman Conference will substantially expand the results of individual source-to-sink research projects by contrasting diverse dispersal systems. An attempt will be made to resolve fundamental differences in the operation of processes that transfer mass across the Earth surface. This effort will develop a global perspective with studies from around the world, and will facilitate the synthesis and integration of S2S research as part of an inclusive international conference, a digital text, and classroom materials.
This Chapman Conference will substantially expand the results of individual source-to-sink research projects by contrasting diverse dispersal systems. An attempt will be made to resolve fundamental differences in the operation of processes that transfer mass across the Earth surface. This effort will develop a global perspective with studies from around the world, and will facilitate the synthesis and integration of S2S research as part of an inclusive international conference, a digital text, and classroom materials.
|MOI URL to presentations=http://csdms.colorado.edu/wiki/Chapman_Source_to_Sink
|MOI URL to presentations=https://csdms.colorado.edu/wiki/Chapman_Source_to_Sink
|MOI_CSDMS_yes_no=Yes
|MOI_CSDMS_yes_no=Yes
|MOI CSDMS meeting=<small>Other</small>
|MOI CSDMS meeting=<small>Other</small>

Latest revision as of 17:17, 19 February 2018


AGU Chapman Conference on Source to Sink Systems Around the World and Through Time
Oxnard California, USA
24 - 27 January 2011

This is a CSDMS related meeting
The general goal of this conference is to articulate the ideas that are the foundation for a holistic understanding of sediment dispersal from land origins to marine accumulation, and to explore the theoretical and observational studies that support them. This Chapman Conference will substantially expand the results of individual source-to-sink research projects by contrasting diverse dispersal systems. An attempt will be made to resolve fundamental differences in the operation of processes that transfer mass across the Earth surface. This effort will develop a global perspective with studies from around the world, and will facilitate the synthesis and integration of S2S research as part of an inclusive international conference, a digital text, and classroom materials.
Other