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| align="center" | [https://arrow.apache.org arrow] | | align="center" | [https://arrow.apache.org arrow] | ||
| align="center" | tools | | align="center" | tools | ||
| align="center" | 0.11.1, 0.15.1, 0.16.0, 0.17.1, 2.0.0, 5.0.0, 7.0.0, 8.0.0, 9.0.0, 10.0.1, 11.0.0, 12.0.1, 13.0.0, 14.0.0, 14.0.1, 15.0.1, 16.1.0 | | align="center" | 0.11.1, 0.15.1, 0.16.0, 0.17.1, 1.0.0, 2.0.0, 5.0.0, 7.0.0, 8.0.0, 9.0.0, 10.0.1, 11.0.0, 12.0.1, 13.0.0, 14.0.0, 14.0.1, 15.0.1, 16.1.0 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Apache Arrow is a cross-language development platform for in-memory data. Homepage: https://arrow.apache.org URL: https://arrow.apache.org Compatible modules: python/3.11, python/3.10 Keyword:tools<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Apache Arrow is a cross-language development platform for in-memory data. Homepage: https://arrow.apache.org URL: https://arrow.apache.org Compatible modules: python/3.11, python/3.10 Keyword:tools<br /><br /><br /></div> | ||
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| align="center" | bio | | align="center" | bio | ||
| align="center" | 3.0.4 | | align="center" | 3.0.4 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: BayesAss: Bayesian Inference of Recent Migration Using Multilocus Genotypes Homepage: http://www.rannala.org/?page_id=245 Keyword:bio<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: BayesAss: Bayesian Inference of Recent Migration Using Multilocus Genotypes Homepage: http://www.rannala.org/?page_id=245 URL: http://www.rannala.org/?page_id=245 Keyword:bio<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [http://www.rannala.org/inference-of-recent-migration bayesass3-snps] | | align="center" | [http://www.rannala.org/inference-of-recent-migration bayesass3-snps] | ||
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| align="center" | - | | align="center" | - | ||
| align="center" | 1.03 | | align="center" | 1.03 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: bgc implements Bayesian estimation of genomic clines to quantify introgression at many loci. Models are available for linked loci, genotype uncertainty and sequence errors. Models for genotype uncertainty and sequence error can be used to estimate genomic cline parameters from next-generation sequence data. Homepage: https://sites.google.com/site/bgcsoftware/<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: bgc implements Bayesian estimation of genomic clines to quantify introgression at many loci. Models are available for linked loci, genotype uncertainty and sequence errors. Models for genotype uncertainty and sequence error can be used to estimate genomic cline parameters from next-generation sequence data. Homepage: https://sites.google.com/site/bgcsoftware/ URL: https://sites.google.com/site/bgcsoftware/<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [https://bitbucket.org/gavinband/bgen/src/default/ bgen] | | align="center" | [https://bitbucket.org/gavinband/bgen/src/default/ bgen] | ||
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| align="center" | phys | | align="center" | phys | ||
| align="center" | 1.2.5 | | align="center" | 1.2.5 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Boltzmann Transport Properties (BoltzTraP) is a program for calculating the semi-classic transport coefficients. Homepage | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Boltzmann Transport Properties (BoltzTraP) is a program for calculating the semi-classic transport coefficients. Homepage: http://www.icams.de/content/departments/cmat/boltztrap/ Keyword:phys<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [https://www.boost.org/ boost] | | align="center" | [https://www.boost.org/ boost] | ||
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| align="center" | [https://www.comsol.com comsol] | | align="center" | [https://www.comsol.com comsol] | ||
| align="center" | phys | | align="center" | phys | ||
| align="center" | 5.3a, 5.4, 5.5, 5.6, 6.0.0.405, 6.1, 6.1.0.357, 6.2.0.415 | | align="center" | 5.3a, 5.4, 5.5, 5.6, 6.0.0.405, 6.1, 6.1.0.357, 6.2, 6.2.0.415 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: COMSOL Multiphysics is a general-purpose software platform, based on advanced numerical methods, for modeling and simulating physics-based problems. Homepage: https://www.comsol.com URL: https://www.comsol.com Keyword:phys<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: COMSOL Multiphysics is a general-purpose software platform, based on advanced numerical methods, for modeling and simulating physics-based problems. Homepage: https://www.comsol.com URL: https://www.comsol.com Keyword:phys<br /><br /><br /></div> | ||
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| align="center" | 3.0.0, 3.2.2 | | align="center" | 3.0.0, 3.2.2 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Free Pascal is a mature, versatile, open source Pascal compiler. Homepage: https://www.freepascal.org URL: https://www.freepascal.org Keyword:tools<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Free Pascal is a mature, versatile, open source Pascal compiler. Homepage: https://www.freepascal.org URL: https://www.freepascal.org Keyword:tools<br /><br /><br /></div> | ||
|- | |||
| align="center" | [https://github.com/fplll/fplll fplll] | |||
| align="center" | - | |||
| align="center" | 5.4.5 | |||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: fplll contains implementations of several lattice algorithms. The implementation relies on floating-point orthogonalization, and the 1982 paper from Lenstra, Lenstra Jr. and Lovasz (LLL) is central to the code, hence the name. Homepage: https://github.com/fplll/fplll URL: https://github.com/fplll/fplll<br /><br /><br /></div> | |||
|- | |- | ||
| align="center" | [http://omics.informatics.indiana.edu/FragGeneScan/ fraggenescan] | | align="center" | [http://omics.informatics.indiana.edu/FragGeneScan/ fraggenescan] | ||
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| align="center" | - | | align="center" | - | ||
| align="center" | 3.3.2, 3.3.8 | | align="center" | 3.3.2, 3.3.8 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: GLFW is an Open Source, multi-platform library for OpenGL, OpenGL ES and Vulkan development on the desktop Homepage: https://www.glfw.org URL: https://www.glfw.org | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: GLFW is an Open Source, multi-platform library for OpenGL, OpenGL ES and Vulkan development on the desktop Homepage: https://www.glfw.org URL: https://www.glfw.org<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [https://ccb.jhu.edu/software/glimmerhmm glimmerhmm] | | align="center" | [https://ccb.jhu.edu/software/glimmerhmm glimmerhmm] | ||
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| align="center" | tools | | align="center" | tools | ||
| align="center" | 0.3.1 | | align="center" | 0.3.1 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: This is GLOST, the Greedy Launcher Of Small Tasks. Homepage: https://github.com/cea-hpc/glost Keyword:tools<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: This is GLOST, the Greedy Launcher Of Small Tasks. Homepage: https://github.com/cea-hpc/glost URL: https://github.com/cea-hpc/glost Keyword:tools<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [https://www.gnu.org/software/glpk/ glpk] | | align="center" | [https://www.gnu.org/software/glpk/ glpk] | ||
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| align="center" | chem | | align="center" | chem | ||
| align="center" | 2021.7-0.5.1 | | align="center" | 2021.7-0.5.1 | ||
| Documentation: [[GROMACS]]<div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Modified GROMACS for small-angle scattering calculations (SAXS/WAXS/SANS). This is a | | Documentation: [[GROMACS]]<div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Modified GROMACS for small-angle scattering calculations (SAXS/WAXS/SANS). This is a CPU only build, containing both MPI and threadMPI builds. - CC-Wiki: GROMACS Homepage: https://cbjh.gitlab.io/gromacs-swaxs-docs/ URL: https://cbjh.gitlab.io/gromacs-swaxs-docs/ Keyword:chem<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [https://www.gnu.org/software/gsl/ gsl] | | align="center" | [https://www.gnu.org/software/gsl/ gsl] | ||
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| align="center" | [https://github.com/gsl-lite/gsl-lite gsl-lite] | | align="center" | [https://github.com/gsl-lite/gsl-lite gsl-lite] | ||
| align="center" | - | | align="center" | - | ||
| align="center" | 0.40.0 | | align="center" | 0.40.0, 0.41.0 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: A single-file header-only version of ISO C++ Guidelines Support Library (GSL) for C++98, C++11, and later Homepage: https://github.com/gsl-lite/gsl-lite URL: https://github.com/gsl-lite/gsl-lite<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: A single-file header-only version of ISO C++ Guidelines Support Library (GSL) for C++98, C++11, and later Homepage: https://github.com/gsl-lite/gsl-lite URL: https://github.com/gsl-lite/gsl-lite<br /><br /><br /></div> | ||
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| align="center" | [https://portal.hdfgroup.org/display/support hdf5-mpi] | | align="center" | [https://portal.hdfgroup.org/display/support hdf5-mpi] | ||
| align="center" | io | | align="center" | io | ||
| align="center" | 1.8.18, 1.10.3, 1.10.6, 1.10.7, 1.12.1, 1.12.2, 1.14.2 | | align="center" | 1.8.18, 1.10.3, 1.10.6, 1.10.7, 1.12.1, 1.12.2, 1.14.2, 1.14.4 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: HDF5 is a data model, library, and file format for storing and managing data. It supports an unlimited variety of datatypes, and is designed for flexible and efficient I/O and for high volume and complex data. Homepage: https://portal.hdfgroup.org/display/support URL: https://portal.hdfgroup.org/display/support Compatible modules: python/3.10, python/3.11 Extensions: blosc2-2. | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: HDF5 is a data model, library, and file format for storing and managing data. It supports an unlimited variety of datatypes, and is designed for flexible and efficient I/O and for high volume and complex data. Homepage: https://portal.hdfgroup.org/display/support URL: https://portal.hdfgroup.org/display/support Compatible modules: python/3.10, python/3.11, python/3.12 Extensions: blosc2-2.7.0, cached-property-1.5.2, h5py-3.11.0, ndindex-1.8, numexpr-2.10.1, py-cpuinfo-9.0.0, tables-3.9.2 Keyword:io<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [https://support.hdfgroup.org/products/java/hdfview/ hdfview] | | align="center" | [https://support.hdfgroup.org/products/java/hdfview/ hdfview] | ||
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| align="center" | [https://sourceforge.net/projects/matio/ matio] | | align="center" | [https://sourceforge.net/projects/matio/ matio] | ||
| align="center" | io | | align="center" | io | ||
| align="center" | 1.5.19, 1.5.26 | | align="center" | 1.5.2, 1.5.19, 1.5.26 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: matio is an C library for reading and writing Matlab MAT files. Homepage: https://sourceforge.net/projects/matio/ URL: https://sourceforge.net/projects/matio/ Keyword:io<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: matio is an C library for reading and writing Matlab MAT files. Homepage: https://sourceforge.net/projects/matio/ URL: https://sourceforge.net/projects/matio/ Keyword:io<br /><br /><br /></div> | ||
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| align="center" | math | | align="center" | math | ||
| align="center" | 4.0.3, 5.1.0 | | align="center" | 4.0.3, 5.1.0 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: METIS is a set of serial programs for partitioning graphs, partitioning finite element meshes, and producing fill reducing orderings for sparse matrices. The algorithms implemented in METIS are based on the multilevel recursive-bisection, multilevel k-way, and multi-constraint partitioning schemes. Homepage: http://glaros.dtc.umn.edu/gkhome/metis/metis/overview Keyword:math<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: METIS is a set of serial programs for partitioning graphs, partitioning finite element meshes, and producing fill reducing orderings for sparse matrices. The algorithms implemented in METIS are based on the multilevel recursive-bisection, multilevel k-way, and multi-constraint partitioning schemes. Homepage: http://glaros.dtc.umn.edu/gkhome/metis/metis/overview URL: http://glaros.dtc.umn.edu/gkhome/metis/metis/overview Keyword:math<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [http://glaros.dtc.umn.edu/gkhome/metis/metis/overview metis-64idx] | | align="center" | [http://glaros.dtc.umn.edu/gkhome/metis/metis/overview metis-64idx] | ||
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| align="center" | bio | | align="center" | bio | ||
| align="center" | 2.0.1 | | align="center" | 2.0.1 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Minimac3 is a lower memory and more computationally efficient implementation of the genotype imputation algorithms in minimac and minimac2. Minimac3 is designed to handle very large reference panels in a more computationally efficient way with no loss of accuracy. Homepage: http://genome.sph.umich.edu/wiki/Minimac3 Keyword:bio<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Minimac3 is a lower memory and more computationally efficient implementation of the genotype imputation algorithms in minimac and minimac2. Minimac3 is designed to handle very large reference panels in a more computationally efficient way with no loss of accuracy. Homepage: http://genome.sph.umich.edu/wiki/Minimac3 URL: http://genome.sph.umich.edu/wiki/Minimac3 Keyword:bio<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [https://genome.sph.umich.edu/wiki/Minimac4 minimac4] | | align="center" | [https://genome.sph.umich.edu/wiki/Minimac4 minimac4] | ||
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| align="center" | [https://nbisweden.github.io/MrBayes/ mrbayes] | | align="center" | [https://nbisweden.github.io/MrBayes/ mrbayes] | ||
| align="center" | bio | | align="center" | bio | ||
| align="center" | 3.2.6, 3.2.7a | | align="center" | 3.2.6, 3.2.7a, 3.2.7 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: MrBayes is a program for Bayesian inference and model choice across a wide range of phylogenetic and evolutionary models. Homepage: https://nbisweden.github.io/MrBayes/ URL: https://nbisweden.github.io/MrBayes/ Keyword:bio<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: MrBayes is a program for Bayesian inference and model choice across a wide range of phylogenetic and evolutionary models. Homepage: https://nbisweden.github.io/MrBayes/ URL: https://nbisweden.github.io/MrBayes/ Keyword:bio<br /><br /><br /></div> | ||
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| align="center" | bio | | align="center" | bio | ||
| align="center" | 3.23, 4.0.0beta2 | | align="center" | 3.23, 4.0.0beta2 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: MUMmer is a system for rapidly aligning entire genomes, whether in complete or draft form. AMOS makes use of it. Homepage: http://mummer.sourceforge.net/ Keyword:bio<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: MUMmer is a system for rapidly aligning entire genomes, whether in complete or draft form. AMOS makes use of it. Homepage: http://mummer.sourceforge.net/ URL: http://mummer.sourceforge.net/ Keyword:bio<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [https://graal.ens-lyon.fr/MUMPS/ mumps-metis] | | align="center" | [https://graal.ens-lyon.fr/MUMPS/ mumps-metis] | ||
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| align="center" | [http://opencv.org/ opencv] | | align="center" | [http://opencv.org/ opencv] | ||
| align="center" | vis | | align="center" | vis | ||
| align="center" | 3.4.3, 4.1.0, 4.2.0, 4.4.0, 4.5.1, 4.5.5, 4.6.0, 4.7.0, 4.8.0, 4.8.1, 4.9.0 | | align="center" | 3.4.3, 4.1.0, 4.2.0, 4.4.0, 4.5.1, 4.5.5, 4.6.0, 4.7.0, 4.8.0, 4.8.1, 4.9.0, 4.10.0 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: OpenCV (Open Source Computer Vision Library) is an open source computer vision and machine learning software library. OpenCV was built to provide a common infrastructure for computer vision applications and to accelerate the use of machine perception in the commercial products. Homepage: http://opencv.org/ URL: http://opencv.org/ Compatible modules: python/3.10, python/3.11 Keyword:vis<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: OpenCV (Open Source Computer Vision Library) is an open source computer vision and machine learning software library. OpenCV was built to provide a common infrastructure for computer vision applications and to accelerate the use of machine perception in the commercial products. Homepage: http://opencv.org/ URL: http://opencv.org/ Compatible modules: python/3.10, python/3.11, python/3.12 Keyword:vis<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [http://opencv.org/ opencv_contrib] | | align="center" | [http://opencv.org/ opencv_contrib] | ||
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| align="center" | [https://docs.openmc.org/en/stable/ openmc] | | align="center" | [https://docs.openmc.org/en/stable/ openmc] | ||
| align="center" | - | | align="center" | - | ||
| align="center" | 0.13.2, 0.13.3 | | align="center" | 0.13.2, 0.13.3, 0.15.0 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: OpenMC is a community-developed Monte Carlo neutron and photon transport simulation code. It is capable of performing fixed source, k-eigenvalue, and subcritical multiplication calculations on models built using either a constructive solid geometry or CAD representation. OpenMC supports both continuous-energy and multigroup transport. The continuous-energy particle interaction data is based on a native HDF5 format that can be generated from ACE files produced by NJOY. Parallelism is enabled via a hybrid MPI and OpenMP programming model. Homepage: https://docs.openmc.org/en/stable/ URL: https://docs.openmc.org/en/stable/ Compatible modules: python/3. | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: OpenMC is a community-developed Monte Carlo neutron and photon transport simulation code. It is capable of performing fixed source, k-eigenvalue, and subcritical multiplication calculations on models built using either a constructive solid geometry or CAD representation. OpenMC supports both continuous-energy and multigroup transport. The continuous-energy particle interaction data is based on a native HDF5 format that can be generated from ACE files produced by NJOY. Parallelism is enabled via a hybrid MPI and OpenMP programming model. Homepage: https://docs.openmc.org/en/stable/ URL: https://docs.openmc.org/en/stable/ Compatible modules: python/3.10, python/3.11, python/3.12<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [http://openmm.org openmm] | | align="center" | [http://openmm.org openmm] | ||
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| align="center" | [https://proj.org proj] | | align="center" | [https://proj.org proj] | ||
| align="center" | geo | | align="center" | geo | ||
| align="center" | 4.9.3, 5.1.0, 5.2.0, 6.0.0, 6.3.0, 6.3.2, 7.0.0, 7.0.1, 7.2.1, 8.0.0, 9.0.0, 9.0.1, 9.2.0 | | align="center" | 4.9.3, 5.1.0, 5.2.0, 6.0.0, 6.3.0, 6.3.2, 7.0.0, 7.0.1, 7.2.1, 8.0.0, 9.0.0, 9.0.1, 9.2.0, 9.4.1 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Program proj is a standard Unix filter function which converts geographic longitude and latitude coordinates into cartesian coordinates Homepage: https://proj.org URL: https://proj.org Compatible modules: python/3.10, python/3.11 Extensions: pyproj-3.6.1 Keyword:geo<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Program proj is a standard Unix filter function which converts geographic longitude and latitude coordinates into cartesian coordinates Homepage: https://proj.org URL: https://proj.org Compatible modules: python/3.10, python/3.11, python/3.12 Extensions: pyproj-3.6.1 Keyword:geo<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [https://github.com/mhagdorn/proj4-fortran proj4-fortran] | | align="center" | [https://github.com/mhagdorn/proj4-fortran proj4-fortran] | ||
| align="center" | geo | | align="center" | geo | ||
| align="center" | 1.0 | | align="center" | 1.0 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: proj4-fortran is a f77 and f90 wrappers for proj4, a cartograohic projections library. Homepage | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: proj4-fortran is a f77 and f90 wrappers for proj4, a cartograohic projections library. Homepage: https://github.com/mhagdorn/proj4-fortran Keyword:geo<br /><br /><br /></div> | ||
|- | |- | ||
| align="center" | [https://www.vicbioinformatics.com/software.prokka.shtml prokka] | | align="center" | [https://www.vicbioinformatics.com/software.prokka.shtml prokka] | ||
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| align="center" | [https://repast.github.io/ repasthpc] | | align="center" | [https://repast.github.io/ repasthpc] | ||
| align="center" | bio | | align="center" | bio | ||
| align="center" | 2.2.0, 2.3.0 | | align="center" | 2.0, 2.2.0, 2.3.0 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: The Repast Suite is a family of advanced, free, and open source agent-based modeling and simulation platforms that have collectively been under continuous development for over 15 years: Repast for High Performance Computing 2.2.0, released on 30 September 2016, is a lean and expert-focused C++-based modeling system that is designed for use on large computing clusters and supercomputers. Homepage: https://repast.github.io/ URL: https://repast.github.io/ Keyword:bio<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: The Repast Suite is a family of advanced, free, and open source agent-based modeling and simulation platforms that have collectively been under continuous development for over 15 years: Repast for High Performance Computing 2.2.0, released on 30 September 2016, is a lean and expert-focused C++-based modeling system that is designed for use on large computing clusters and supercomputers. Homepage: https://repast.github.io/ URL: https://repast.github.io/ Keyword:bio<br /><br /><br /></div> | ||
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| align="center" | 20160702 | | align="center" | 20160702 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: smith-waterman-gotoh alignment algorithm. Homepage: https://github.com/ekg/smithwaterman URL: https://github.com/ekg/smithwaterman<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: smith-waterman-gotoh alignment algorithm. Homepage: https://github.com/ekg/smithwaterman URL: https://github.com/ekg/smithwaterman<br /><br /><br /></div> | ||
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| align="center" | [https://www.pacb.com/support/software-downloads/ smrtlink-sequel2] | |||
| align="center" | - | |||
| align="center" | 13.1.0.221970 | |||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: PacBios open-source SMRT Analysis software suite is designed for use with Single Molecule, Real-Time (SMRT) Sequencing data. You can analyze, visualize, and manage your data through an intuitive GUI or command-line interface. You can also integrate SMRT Analysis in your existing data workflow through the extensive set of APIs provided Homepage: https://www.pacb.com/support/software-downloads/ URL: https://www.pacb.com/support/software-downloads/<br /><br /><br /></div> | |||
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| align="center" | [http://korflab.ucdavis.edu/software.html snap] | | align="center" | [http://korflab.ucdavis.edu/software.html snap] | ||
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| align="center" | [http://mdx.plm.automation.siemens.com/star-ccm-plus starccm] | | align="center" | [http://mdx.plm.automation.siemens.com/star-ccm-plus starccm] | ||
| align="center" | phys | | align="center" | phys | ||
| align="center" | 11.06.011-R8, 12.04.011-R8, 12.06.011-R8, 13.04.010-R8, 13.06.012-R8, 14.02.012-R8, 14.04.013-R8, 14.06.013-R8, 15.04.010-R8, 16.02.008-R8, 16.02.009-R8, 16.04.007-R8, 16.04.012-R8, 16.06.008-R8, 17.02.007-R8, 17.02.008-R8, 17.04.007-R8, 17.04.008-R8, 17.06.007-R8, 17.06.008-R8, 18.02.008-R8, 18.04.008-R8, 18.06.006-R8 | | align="center" | 11.06.011-R8, 12.04.011-R8, 12.06.011-R8, 13.04.010-R8, 13.06.012-R8, 14.02.012-R8, 14.04.013-R8, 14.06.013-R8, 15.04.010-R8, 16.02.008-R8, 16.02.009-R8, 16.04.007-R8, 16.04.012-R8, 16.06.008-R8, 17.02.007-R8, 17.02.008-R8, 17.04.007-R8, 17.04.008-R8, 17.06.007-R8, 17.06.008-R8, 18.02.008-R8, 18.04.008-R8, 18.06.006-R8, 19.04.007-R8 | ||
| Documentation: [[StarCCM]]<div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Predicting the real-world performance of a product requires simulation tools that span a variety of engineering disciplines. STAR-CCM+ is an all-in-one solution that delivers accurate and efficient multidisciplinary technologies in a single integrated user interface. This version uses double precision. Homepage: http://mdx.plm.automation.siemens.com/star-ccm-plus URL: http://mdx.plm.automation.siemens.com/star-ccm-plus Keyword:phys<br /><br /><br /></div> | | Documentation: [[StarCCM]]<div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Predicting the real-world performance of a product requires simulation tools that span a variety of engineering disciplines. STAR-CCM+ is an all-in-one solution that delivers accurate and efficient multidisciplinary technologies in a single integrated user interface. This version uses double precision. Homepage: http://mdx.plm.automation.siemens.com/star-ccm-plus URL: http://mdx.plm.automation.siemens.com/star-ccm-plus Keyword:phys<br /><br /><br /></div> | ||
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| align="center" | [http://mdx.plm.automation.siemens.com/star-ccm-plus starccm-mixed] | | align="center" | [http://mdx.plm.automation.siemens.com/star-ccm-plus starccm-mixed] | ||
| align="center" | phys | | align="center" | phys | ||
| align="center" | 11.06.011, 12.04.011, 12.06.011, 13.04.010, 13.06.012, 14.02.012, 14.04.013, 14.06.013, 15.04.010, 16.02.008, 16.02.009, 16.04.007, 16.04.012, 16.06.008, 17.02.007, 17.02.008, 17.04.007, 17.04.008, 17.06.007, 17.06.008, 18.02.008, 18.04.008, 18.06.006 | | align="center" | 11.06.011, 12.04.011, 12.06.011, 13.04.010, 13.06.012, 14.02.012, 14.04.013, 14.06.013, 15.04.010, 16.02.008, 16.02.009, 16.04.007, 16.04.012, 16.06.008, 17.02.007, 17.02.008, 17.04.007, 17.04.008, 17.06.007, 17.06.008, 18.02.008, 18.04.008, 18.06.006, 19.04.007 | ||
| Documentation: [[StarCCM]]<div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Predicting the real-world performance of a product requires simulation tools that span a variety of engineering disciplines. STAR-CCM+ is an all-in-one solution that delivers accurate and efficient multidisciplinary technologies in a single integrated user interface. This version uses mixed precision. Homepage: http://mdx.plm.automation.siemens.com/star-ccm-plus URL: http://mdx.plm.automation.siemens.com/star-ccm-plus Keyword:phys<br /><br /><br /></div> | | Documentation: [[StarCCM]]<div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Predicting the real-world performance of a product requires simulation tools that span a variety of engineering disciplines. STAR-CCM+ is an all-in-one solution that delivers accurate and efficient multidisciplinary technologies in a single integrated user interface. This version uses mixed precision. Homepage: http://mdx.plm.automation.siemens.com/star-ccm-plus URL: http://mdx.plm.automation.siemens.com/star-ccm-plus Keyword:phys<br /><br /><br /></div> | ||
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| align="center" | [https://github.com/xtensor-stack/xtensor xtensor] | | align="center" | [https://github.com/xtensor-stack/xtensor xtensor] | ||
| align="center" | - | | align="center" | - | ||
| align="center" | 0.24.2 | | align="center" | 0.24.2, 0.25.0 | ||
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: xtensor is a C++ library meant for numerical analysis with multi-dimensional array expressions. Homepage: https://github.com/xtensor-stack/xtensor URL: https://github.com/xtensor-stack/xtensor<br /><br /><br /></div> | | <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: xtensor is a C++ library meant for numerical analysis with multi-dimensional array expressions. Homepage: https://github.com/xtensor-stack/xtensor URL: https://github.com/xtensor-stack/xtensor<br /><br /><br /></div> | ||
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