Difference between revisions of "NFS@home"

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    <project>
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{{Projects
        <name>NFS@home</name>
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|1=NFS@home
        <url>http://escatter11.fullerton.edu/nfs/</url>
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|2=http://escatter11.fullerton.edu/nfs/
        <general_area>Mathematics, computing, and games</general_area>
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|3=NFS@Home is a research project that uses Internet-connected computers to do the lattice sieving step in the Number Field Sieve factorization of large integers. As a young school student, you gained your first experience at breaking an integer into prime factors, such as 15 = 3 * 5 or 35 = 5 * 7. NFS@Home is a continuation of that experience, only with integers that are hundreds of digits long.
        <specific_area>Factorization of large integers</specific_area>
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|4=Macintosh, Linux, FreeBSD, Windows
        <description><![CDATA[NFS@Home is a research project that uses Internet-connected computers to do the lattice sieving step in the Number Field Sieve factorization of large integers. As a young school student, you gained your first experience at breaking an integer into prime factors, such as 15 = 3 * 5 or 35 = 5 * 7. NFS@Home is a continuation of that experience, only with integers that are hundreds of digits long.]]></description>
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|5=not available
        <home>California State University Fullerton</home>
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}}
    <platforms>
 
        <name>i686-apple-darwin</name>
 
        <name>i686-pc-linux-gnu</name>
 
        <name>windows_intelx86</name>
 
        <name>windows_x86_64</name>
 
        <name>windows_x86_64[notphenomiix6]</name>
 
        <name>x86_64-apple-darwin</name>
 
        <name>x86_64-pc-freebsd</name>
 
        <name>x86_64-pc-linux-gnu</name>
 
    </platforms>
 
      <image>https://boinc.berkeley.edu/images/NFS_Logo.jpg</image>
 
      <summary>Study the factorization of large integers</summary>
 
    </project>
 

Revision as of 22:55, 3 June 2016

Project name: NFS@home
Project URL: http://escatter11.fullerton.edu/nfs/
Description: NFS@Home is a research project that uses Internet-connected computers to do the lattice sieving step in the Number Field Sieve factorization of large integers. As a young school student, you gained your first experience at breaking an integer into prime factors, such as 15 = 3 * 5 or 35 = 5 * 7. NFS@Home is a continuation of that experience, only with integers that are hundreds of digits long.
Platforms: Macintosh, Linux, FreeBSD, Windows
Calculates using GPUs: not available
Has an OpenGL screen saver: {{{6}}}