Property:Allows value

From CSDMS
Showing 32 pages using this property.
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Unix  +, Linux  +, Mac OS  +,
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Technical contact  +, Project manager  +, Model developer  +
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ESRI  +, IDL  +, Matlab  +
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Terrestrial Working Group  +, Coastal Working Group  +, Marine Working Group  +,
C
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Terrestrial  +, Hydrology  +, Coastal  +,
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1) High-resolution Topography  +, 2) Ecopath with Ecosim  +, 3) Promote diversity and inclusion  +,
1) Deep Neural Network, Part I  +, 2) GCAM and Demeter  +, 3) Ecological Network Analysis/EcoNet  +,
1) Integrated Ecological Models  +, 2) Coupling Hydrological Models with Data Services  +, 3) Deep Neural Network, Part II  +,
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1 of 1  +, 1 of 2  +, 2 of 2  +,
0.5 hrs  +, 1.0 hrs  +, 1.5 hrs  +,
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Active  +, Only maintenance  +, As is, no updates are provided  +
2020  +, 2021  +, 2022  +,
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1) Git good with FAIR enough practices  +, 2) Do the work: Building a more equitable research unit  +, 3) An Introduction to using Google Earth Engine  +,
1) Introduction to R programming and R applications in landscape ecology  +, 2) Inclusive Mentoring  +, 3) Decision Framing  +,
1) Landscape Evolution Modeling with TerrainBento and Landlab  +, 2) Exploring river and delta channel networks with RivGraph  +, 3) Digital Twins in Earth Sciences  +,
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Terrestrial Working Group  +, Coastal Working Group  +, Marine Working Group  +,
D
Yes  +, No  +
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1) Environmental seismology and distributed acoustic sensing (DAS)  +, 2) Variable resolution mesh based flow direction and hydrologic modeling: An introduction to HexWatershed  +, 3) The Art of Modeling  +,
1) Modeling Water Movement and Reservoir Operations with mosartwmpy  +, 3) Introduction to Landlab  +, 4) Xarray for Scalable Scientific Data Analysis  +,
1) Component Creation with Landlab  +, 2) Rapid hypothesis testing and analysis with the open-source delta model pyDeltaRCM  +, 4) Publishing Reproducible Computational Research with the Whole Tale  +,
1) What can CSDMS do for you? A clinic on CSDMS Products and Services  +, 2) Best practices open source Python-based infrastructure  +, 3) Using GPUs to Solve Science Problems Faster  +,
1) Introduction to Landlab  +, 2) Coupling models of lithospheric deformation and surface processes (ASPECT)  +, 3) Finite Volume Methods for Surface Dynamics Modeling  +,
1) How to Route Flow in a Landscape with Landlab?  +, 2) Integrating Agent-Based Models into Landlab via pyNetLogo  +, 3) Building solvers for sustainable performance  +,
Poster  +, Epub  +, Poster & Epub  +
1) Solving the sea level equation  +, 2) Vegetation as ecogeomorphic features  +, 3) Introduction to agent-based modeling for socio-environmental systems  +,
1) Fora.ai: A participatory modeling platform to reshape how we collaborate for climate and social impact  +, 2) Introduction & Building with Google Earth Engine: Batteries Included  +, 3) Parameterizing human dynamics in geomorphic models: learning from coastal barrier evolution models  +,
1) Using Fill-Spill-Merge to understand and analyze landscape depressions  +, 2) Mesh independent flow direction modeling using HexWatershed 3.0  +, 3) New features and basic usage of the GeoClaw software for depth-averaged flow  +,
Poster  +, Epub  +, Poster & Epub  +