Modules avx512: Difference between revisions

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| align="center" | [http://bowtie-bio.sourceforge.net/bowtie2/index.shtml bowtie2]
| align="center" | [http://bowtie-bio.sourceforge.net/bowtie2/index.shtml bowtie2]
| align="center" | bio
| align="center" | bio
| align="center" | 2.3.4.3, 2.3.5, 2.3.5.1, 2.4.1, 2.4.2, 2.4.4
| align="center" | 2.3.4.3, 2.3.5, 2.3.5.1, 2.4.1, 2.4.2, 2.4.4, 2.5.1
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Bowtie 2 is an ultrafast and memory-efficient tool for aligning sequencing reads to long reference sequences. It is particularly good at aligning reads of about 50 up to 100s or 1,000s of characters, and particularly good at aligning to relatively long (e.g. mammalian) genomes. Bowtie 2 indexes the genome with an FM Index to keep its memory footprint small: for the human genome, its memory footprint is typically around 3.2 GB. Bowtie 2 supports gapped, local, and paired-end alignment modes. Homepage: http://bowtie-bio.sourceforge.net/bowtie2/index.shtml URL: http://bowtie-bio.sourceforge.net/bowtie2/index.shtml Keyword:bio<br /><br /><br /></div>
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Bowtie 2 is an ultrafast and memory-efficient tool for aligning sequencing reads to long reference sequences. It is particularly good at aligning reads of about 50 up to 100s or 1,000s of characters, and particularly good at aligning to relatively long (e.g. mammalian) genomes. Bowtie 2 indexes the genome with an FM Index to keep its memory footprint small: for the human genome, its memory footprint is typically around 3.2 GB. Bowtie 2 supports gapped, local, and paired-end alignment modes. Homepage: http://bowtie-bio.sourceforge.net/bowtie2/index.shtml URL: http://bowtie-bio.sourceforge.net/bowtie2/index.shtml Keyword:bio<br /><br /><br /></div>
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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" | 2.0, 2.2.0, 2.3.0
| align="center" | 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" | bio
| align="center" | bio
| align="center" | 3.0.2, 3.2.0, 3.2.1, 3.2.2, 4.0.0
| align="center" | 3.0.2, 3.2.0, 3.2.1, 3.2.2, 4.0.0
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Trinotate is a comprehensive annotation suite designed for automatic functional annotation of transcriptomes, particularly de novo assembled transcriptomes, from model or non-model organisms. Homepage: https://trinotate.github.io/ URL: https://trinotate.github.io/ Extensions: CGI-4.51, Text::NSP-1.31 Keyword:bio<br /><br /><br /></div>
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: Trinotate is a comprehensive annotation suite designed for automatic functional annotation of transcriptomes, particularly de novo assembled transcriptomes, from model or non-model organisms. Homepage: https://trinotate.github.io/ URL: https://trinotate.github.io/ Extensions: CGI-4.57, Text::NSP-1.31 Keyword:bio<br /><br /><br /></div>
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| align="center" | [https://triqs.github.io/triqs triqs]
| align="center" | [https://triqs.github.io/triqs triqs]
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| align="center" | chem
| align="center" | chem
| align="center" | 6.3.0, 6.3.3, 6.4.0, 6.4.1, 6.5.0, 6.5.1
| align="center" | 6.3.0, 6.3.3, 6.4.0, 6.4.1, 6.5.0, 6.5.1
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: xtb - Extended tight-binding semi-empirical quantum mechanics Homepage: https://github.com/grimme-lab/xtb URL: https://github.com/grimme-lab/xtb Compatible modules: python/3.8, python/3.9, python/3.10 Extensions: ase-3.22.1, Pint-0.19.2, pydantic-1.9.1, qcelemental-0.24.0, xtb-6.5.0 Keyword:chem<br /><br /><br /></div>
| <div class="mw-collapsible mw-collapsed" style="white-space: pre-line;"><br />Description: xtb - Extended tight-binding semi-empirical quantum mechanics Homepage: https://github.com/grimme-lab/xtb URL: https://github.com/grimme-lab/xtb Compatible modules: python/3.8, python/3.9, python/3.10 Extensions: ase-3.22.1, Pint-0.19.2, pydantic-1.9.1, qcelemental-0.24.0, xtb-6.5.1 Keyword:chem<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]

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