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Building SI2 Communities
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Building Communities for SI2
Participant Project Background
Adaptive multi-level sovlers targeting multipe GPUs
A High Performance Scientific Cloud Computing Environment for Materials Simulations
A Tracing Virtual Machine for Statistical Computing
Comments from David Hudak
Comprehensive Sustained Innovation in Acceleration of Molecular Dynamics Simulation and Analysis on Graphics Processing Units
Computational Infrastructure for Geodynamics (CIG)
Computational Science Research Software for Manufacturing Simulations - Software Infrastructure Challenges
CyberGIS Software Integration for Sustained Geospatial Innovation
Enabling Science and Engineering Workflows on Dynamically Federated Cloud Infrastructure using CometCloud, Rutgers University
Extensible Languages for Sustainable Development of High Performance Software in Materials Science
Extensive CPU and GPU based molecular dynamics for Influenza risk assessment and drug design
GenOLAP – Reducing the Complexity of Comparative Genomics with Online Analytical Processing
Green High Peformance Computing, Rutgers University
High Performance Electronic Structure Theory
Lagrangian Coherent Structures for Accurate Flow Structure Analysis
NMI Build and Test Lab
Open Gateway Computing Environments (OGCE) Project
Pegasus Workflow Management System
Quantum Chemistry for Solids — Vibrational Many-Body Methods
Real Time Large-Scale Parallel, Intelligent CO2 Data Assimilation System
RUSpaces - Addressing Data Challenges at Extreme Scale, Rutgers University
Software for integral equation solvers on manycore and heterogeneous architectures
The Einstein Toolkit
XSEDE Science Gateways
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Building Communities for SI2
Participant Project Background
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Title:
Participant Project Background
Author:
Jay Roloff
Sep 14, 2011
Last Changed by:
Jay Roloff
Sep 28, 2011
Tiny Link:
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https://wiki.ncsa.illinois.edu/x/RoIzAQ
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Building SI2 Communities (1)
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Building Communities for SI2
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Building Communities for SI2
Children (24)
Page:
Adaptive multi-level sovlers targeting multipe GPUs
Page:
A High Performance Scientific Cloud Computing Environment for Materials Simulations
Page:
A Tracing Virtual Machine for Statistical Computing
Page:
Comments from David Hudak
Page:
Comprehensive Sustained Innovation in Acceleration of Molecular Dynamics Simulation and Analysis on Graphics Processing Units
Page:
Computational Infrastructure for Geodynamics (CIG)
Page:
Computational Science Research Software for Manufacturing Simulations - Software Infrastructure Challenges
Page:
CyberGIS Software Integration for Sustained Geospatial Innovation
Page:
Enabling Science and Engineering Workflows on Dynamically Federated Cloud Infrastructure using CometCloud, Rutgers University
Page:
Extensible Languages for Sustainable Development of High Performance Software in Materials Science
Show all...
Page:
Extensive CPU and GPU based molecular dynamics for Influenza risk assessment and drug design
Page:
GenOLAP – Reducing the Complexity of Comparative Genomics with Online Analytical Processing
Page:
Green High Peformance Computing, Rutgers University
Page:
High Performance Electronic Structure Theory
Page:
Lagrangian Coherent Structures for Accurate Flow Structure Analysis
Page:
NMI Build and Test Lab
Page:
Open Gateway Computing Environments (OGCE) Project
Page:
Pegasus Workflow Management System
Page:
Quantum Chemistry for Solids — Vibrational Many-Body Methods
Page:
Real Time Large-Scale Parallel, Intelligent CO2 Data Assimilation System
Page:
RUSpaces - Addressing Data Challenges at Extreme Scale, Rutgers University
Page:
Software for integral equation solvers on manycore and heterogeneous architectures
Page:
The Einstein Toolkit
Page:
XSEDE Science Gateways
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Jay Roloff
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