BOINC projects: Difference between revisions

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move Ramanujan Machine to completed
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add Volpex@Home and Correlizer See more...
 
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| Computer science
| Computer science
| See below
| See below
| A computational platform for analysis based on data extracted from iThena.Measurements project applications/sensors. [[IThena.Computational|See more...]]
| A computational platform for analysis based on data extracted from iThena.Measurements project applications. [[IThena.Computational|See more...]]


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| Mathematics
| Mathematics
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| Compiles a database of canonical forms (CF) of 10th order diagonal Latin squares (DLS) with orthogonal diagonal Latin squares (ODLS). [[ODLK|See more...]]
| Compile a database of canonical forms of 10th order diagonal Latin squares (DLS) with orthogonal diagonal Latin squares (ODLS). [[ODLK|See more...]]


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| Software testing
| Software testing
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| BOINC Alpha Test allows volunteers to test new versions of BOINC client software on a wide range of computers, thereby increasing the stability and reliability of the software versions released to the public.
| BOINC Alpha Test allows volunteers to test new versions of BOINC client software on a wide range of computers, thereby increasing the stability and reliability of the software versions released to the public. [[BOINC Alpha Test|See more...]]


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| An attempt to break 3 original Enigma messages that were intercepted in 1942.
| An attempt to break 3 original Enigma messages that were intercepted in 1942. [[Enigma@Home|See more...]]


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| 2007-03-22
| 2007-03-22
2009
| WinXP-98
| WinXP-98
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| Increase public access to nationally significant scientific literature. Enhance the usefulness of digitized materials by creating a Web repository of scanned literature, keywords, and online resources with tools for searching and analysis. Create an educational tool for learning about plant life. Provide a model for adopting public-resource computing applications within the library community.
| Indexed digitized botanical literature. [[SciLINC|See more...]]


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| Every DepSpid task is processed in two phases: a networking phase (Phase One) in which the DepSpid spider scans a set of web pages and stores results in a temporary database; and a computational phase (Phase Two) which uses the collected data to calculate dependencies between all pages.
| Every DepSpid task is processed in two phases: a networking phase (Phase One) in which the DepSpid spider scans a set of web pages and stores results in a temporary database; and a computational phase (Phase Two) which uses the collected data to calculate dependencies between all pages. [[DepSpid|See more...]]


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| NanoHive-1 is a modular simulator used for modeling the physical world at a nanometer scale. The intended purpose of the simulator is to act as a tool for the study, experimentation, and development of nanotech entities.
| Used the NanoHive-1 nanospace simulator to search for failure modes in diamondoid mechanosynthesis tooltips. [[NanoHive@Home|See more...]]


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| BRaTS@Home is a research project that uses Internet-connected computers to do various calculations in Gravitational Ray Tracing. ''BRaTS'' stands for ''BRaTS Ray Trace Simulator''.
| Perform gravitational lensing ray-tracing simulations of galaxy clusters. [[BRaTS@Home|See more....]]


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| [https://web.archive.org/web/20060702175205/http://www.ufluids.net/ μFluids]
| [https://web.archive.org/web/20060702175205/http://www.ufluids.net/ μFluids@Home]
| [https://boinc.berkeley.edu/wiki/Publications_by_BOINC_projects#.C2.B5Fluids.40Home 3]
| [https://boinc.berkeley.edu/wiki/Publications_by_BOINC_projects#.C2.B5Fluids.40Home 3]
| 2005-09-19
| 2005-09-19
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| Study fluid behavior in microgravity to design satellite propellant management devices.
| Study fluid behavior in microgravity to design satellite propellant management devices. [[UFluids@Home|See more...]]


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| Research, education, and outreach in seismology.
| Used low-cost MEMS accelerometers in laptops, desktops, and USB sensors to build a distributed, community-based earthquake detection network. [[Quake-Catcher Network|See more...]]


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| Research, education, and outreach in seismology.
| Used low-cost MEMS accelerometers in laptops, desktops, and USB sensors to build a distributed, community-based earthquake detection network.


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| Chess960 is a young innovative chess variant. In Chess960, just before the start of every game, the initial configuration of the chess pieces is determined randomly. In this project we try to combine Chess960 and the idea of distributed computing to give this chess variant some basics in theory.
| Used Stockfish to evaluate tens of millions of chess positions, building a labeled dataset intended for training a machine-learned classifier of winning positions. [[Chess960@home|See more...]]


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| [https://web.archive.org/web/20110801052639/http://www.freehal.net/freehal_at_home FreeHAL]
| [https://web.archive.org/web/20110801052639/http://www.freehal.net/freehal_at_home FreeHAL@home]
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| FreeHAL@home is a research project that uses Internet-connected computers to parse and convert big open source semantic nets for use in FreeHAL.
| a completed Artificial intelligence BOINC project that generated and converted semantic networks for the self-learning chatbot FreeHAL. [[FreeHAL@home|See more...]]


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| 2014-01-05
| 2014-01-05
2014-03-01
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| Construct a chess winning position classifier based on simple features. The first goal is to establish how far we can get with relatively cheap methods of position evaluation. The second goal is to use more advanced machine learning techniques to emulate human behaviour of various levels of chess proficiency.
| play large numbers of Chess960 (Fischer Random Chess) games, in an effort to build the beginnings of an opening theory for the variant. [[Chess@Home|See more...]]


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| A common problem in theoretical chemistry, condensed matter physics and materials science is the calculation of the time evolution of an atomic scale system where chemical reactions and/or diffusion occur.
| Simulate long timescale evolution of atomic scale systems in chemistry and materials science. [[EOn|See more...]]


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| [https://web.archive.org/web/20120329124047/http://home.edges-grid.eu/home/ EDGeS@Home]
| [https://web.archive.org/web/20120329124047/http://home.edges-grid.eu/home/ EDGeS@Home]
| [https://boinc.berkeley.edu/pubs.php#EDGeS@Home 12]
| [https://boinc.berkeley.edu/pubs.php#EDGeS@Home 13]
| 2009-10-28
| 2009-10-28
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| To support the execution of selected and validated scientific applications developed by the EGEE and EDGeS community.
| To support the execution of selected and validated scientific applications developed by the EGEE and EDGeS community. [[EDGeS@Home|See more...]]


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| Take into account plant vegetative reproduction e.g. the ability of each perennial grass to colonize space through cloning.
| simulations of clonal plant growth to inform the ecological design of sustainable prairie ecosystems. [[Virtual Prairie|See more...]]


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| [https://web.archive.org/web/20130525113734/http://svahesrv2.bioquant.uni-heidelberg.de/correlizer/ Correlizer]
| [https://web.archive.org/web/20130525113734/http://svahesrv2.bioquant.uni-heidelberg.de/correlizer/ Correlizer]
| [https://boinc.berkeley.edu/pubs.php#Correlizer 5]
| [https://boinc.berkeley.edu/pubs.php#Correlizer 5]
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|2011-08-03
2015
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|BioQuant Centre, University of Heidelberg
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| Studiy the organization of genomes using long-range correlation analysis of completely sequenced chromosomes. [[Correlizer|See more...]]
| Revealing the mysteries of genome organization.


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|Academia Sinica Grid Computing
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| Bridging Taiwanese volunteer computers to European e-Science service grid infrastructure. [[Taiwan Desktop Grid|See more...]]
| Support the drug discovery, earthquake simulation and climate change applications developing in Asia and also to support the applications developed by IDGF.


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| Protein structure prediction has been complemented by other nanoscale molecule simulations. Within the scope of polymer crystallography we are researching conformations of organic hydrocarbons.
| Protein structure prediction has been complemented by other nanoscale molecule simulations. Within the scope of polymer crystallography we are researching conformations of organic hydrocarbons. [[POEM@HOME|See more...]]


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| [https://web.archive.org/web/20160120043345/http://volpexathome.cs.uh.edu/VolPEx/ Volpex@Home]
| [https://web.archive.org/web/20160120043345/http://volpexathome.cs.uh.edu/VolPEx/ Volpex@Home]
| [https://boinc.berkeley.edu/pubs.php#Volpex@Home 9]
| [https://boinc.berkeley.edu/pubs.php#Volpex@Home 9]
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|2011-12
2017
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| Research in creating effective parallel computing on multiple volatile nodes.
| Run communicating parallel programs on failure-prone volunteer PCs through process replication and a shared dataspace. [[Volpex@Home|See more...]]


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| An educational and non-profit volunteer computing project finding abc-triples related to the ABC conjecture.
| Finding abc-triples related to the ABC conjecture. [[ABC@home|See more...]]


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| Research in astronomy. Combine the spectral coverage of GALEX, Pan-STARRS1, and WISE to generate a multi-wavelength UV-optical-NIR galaxy atlas for the nearby Universe.
| Research in astronomy. Combine the spectral coverage of GALEX, Pan-STARRS1, and WISE to generate a multi-wavelength UV-optical-NIR galaxy atlas for the nearby Universe. [[TheSkyNet POGS|See more...]]


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| Solving one of the most famous unsolved puzzles - the three-decade old Kryptos sculpture located on the grounds of the Central Intelligence Agency.
| Solving one of the most famous unsolved puzzles - the three-decade old Kryptos sculpture located on the grounds of the Central Intelligence Agency. [[Kryptos@Home|See more...]]


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| Multiple applications
| Multiple applications
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| Aerospace engineering, computational biology, and earthquake engineering.
| Aerospace engineering, computational biology, and earthquake engineering. [[BOINC@TACC|See more...]]


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