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nMoldyn

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  No analysis available

nMOLDYN is an interactive analysis program for Molecular Dynamics simulations. It is especially designed for the computation and analysis of neutron scattering spectra, but also computes other quantities.

0 lines of code

0 current contributors

0 since last commit

2 users on Open Hub

Activity Not Available
0.0
 
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Mostly written in language not available
Licenses: No declared licenses

cudpp

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  Analyzed about 11 hours ago

CUDPP is the CUDA Data Parallel Primitives Library. CUDPP is a library of data-parallel algorithm primitives such as parallel prefix-sum (”scan”), parallel sort and parallel reduction. Primitives such as these are important building blocks for a wide variety of data-parallel algorithms, including ... [More] sorting, stream compaction, and building data structures such as trees and summed-area tables. CUDPP runs on processors that support CUDA. For detailed information, see the CUDPP Documentation. A good place to start is the simpleCUDPP Example. [Less]

33.9K lines of code

0 current contributors

about 9 years since last commit

2 users on Open Hub

Inactive
5.0
 
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MFEM

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  Analyzed 1 day ago

Lightweight, general, scalable C++ library for finite element methods

427K lines of code

0 current contributors

6 days since last commit

1 users on Open Hub

Very High Activity
0.0
 
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JPPF

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  Analyzed about 23 hours ago

JPPF enables computation-intensive applications to run on any number of computers, in order to greatly reduce their processing time. This is done by splitting applications into smaller parts that can be executed simultaneously on different machines.

170K lines of code

1 current contributors

about 4 years since last commit

1 users on Open Hub

Inactive
5.0
 
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Parallel executor

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  Analyzed 1 day ago

PAEXEC distributes performing the given tasks across several CPUs or machines in a network.

6.03K lines of code

1 current contributors

over 1 year since last commit

1 users on Open Hub

Very Low Activity
0.0
 
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Java Algebra System

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  Analyzed about 6 hours ago

The Java Algebra System (JAS) is an object oriented, type safe and multi-threaded approach to computer algebra. JAS provides a well designed software library using generic types for algebraic computations implemented in the Java programming language. The library can be used as any other Java ... [More] software package or it can be used interactively or interpreted through an jython (Java Python) front end. The focus of JAS is at the moment on commutative and solvable polynomials, Groebner bases and applications. By the use of Java as implementation language JAS is 64-bit and multi-core cpu ready [Less]

403K lines of code

1 current contributors

over 2 years since last commit

1 users on Open Hub

Inactive
5.0
 
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Licenses: gpl, lgpl21_or...

ShoveRand

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  Analyzed about 11 hours ago

Pseudo-Random Number Generation library for GPGPU. ShoveRand provides both implementations of Pseudo-Random Number Generators for GP-GPU and also a framework allowing developers to easily add their own PRNGs to ShoveRand.

1.48K lines of code

0 current contributors

about 13 years since last commit

1 users on Open Hub

Inactive
0.0
 
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Licenses: No declared licenses

openmm

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  Analyzed 1 day ago

OpenMM is a toolkit for molecular simulation using high performance GPU code.

1.04M lines of code

22 current contributors

2 days since last commit

1 users on Open Hub

Moderate Activity
0.0
 
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Licenses: No declared licenses

ViennaCL

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  Analyzed about 20 hours ago

ViennaCL is a free open-source linear algebra library for computations on many-core architectures (GPUs, MIC) and multi-core CPUs. The library is written in C++ and supports CUDA, OpenCL, and OpenMP.

129K lines of code

1 current contributors

over 6 years since last commit

1 users on Open Hub

Inactive
0.0
 
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ug

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  Analyzed 1 day ago

UG is a flexible software tool for the numerical solution of partial differential equations on unstructured meshes, with a focus on multigrid methods. It has a very powerful grid manager, which supports two- and three-dimensional grids with mixed element types. The grids can be adaptively refinement ... [More] using either classic red/green-refinement, or pure red refinement with hanging nodes. All this is fully parallelized and can run on large distributed machines. UG supports many different discretization schemes. UG can be used through its built-in shell, using a special scripting language. It can also be used as a library from other finite element codes. [Less]

260K lines of code

0 current contributors

almost 11 years since last commit

1 users on Open Hub

Inactive
0.0
 
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