BOINC projects: Difference between revisions
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!Operating System | !Operating System | ||
!GPU App | !GPU App | ||
! | !Requires | ||
!Screen saver | !Screen saver | ||
!Sponsor | !Sponsor | ||
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| 2023-02-04 | | 2023-02-04 | ||
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| {{No}} | | {{No}} | ||
| {{ | | {{Yes}}, BUDA | ||
| | | | ||
| University of California, Berkeley | | University of California, Berkeley | ||
| Line 157: | Line 157: | ||
| Computer science | | Computer science | ||
| See below | | See below | ||
| A computational platform for analysis based on data extracted from iThena.Measurements project applications | | A computational platform for analysis based on data extracted from iThena.Measurements project applications. [[IThena.Computational|See more...]] | ||
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| Line 178: | Line 178: | ||
| [https://lhcathome.cern.ch/lhcathome/apps.php Windows, Linux, ARM, MacOS, Free BSD, Android] | | [https://lhcathome.cern.ch/lhcathome/apps.php Windows, Linux, ARM, MacOS, Free BSD, Android] | ||
| {{No}} | | {{No}} | ||
| {{Yes}}, | | {{Yes}}, BUDA | ||
| [https://youtu.be/0qbLDbsNO3w view] | | [https://youtu.be/0qbLDbsNO3w view] | ||
| CERN | | CERN | ||
| Line 191: | Line 191: | ||
| [https://lhcathomedev.cern.ch/lhcathome-dev/apps.php Windows, Linux, ARM, MacOS, Free BSD, Android] | | [https://lhcathomedev.cern.ch/lhcathome-dev/apps.php Windows, Linux, ARM, MacOS, Free BSD, Android] | ||
| {{No}} | | {{No}} | ||
| {{Yes}}, | | {{Yes}}, BUDA | ||
| | | | ||
| CERN | | CERN | ||
| Line 204: | Line 204: | ||
| [https://boinc.thesonntags.com/collatz/apps.php Windows, Linux, ARM, MacOS] | | [https://boinc.thesonntags.com/collatz/apps.php Windows, Linux, ARM, MacOS] | ||
| {{No}} | | {{No}} | ||
| {{ | | {{Yes}}, git | ||
| | | | ||
| Independent | | Independent | ||
| Line 287: | Line 287: | ||
| Mathematics | | Mathematics | ||
| | | | ||
| | | Compile a database of canonical forms of 10th order diagonal Latin squares (DLS) with orthogonal diagonal Latin squares (ODLS). [[ODLK|See more...]] | ||
|- | |- | ||
| Line 360: | Line 360: | ||
| [http://radioactiveathome.org/boinc/apps.php Windows, Linux] | | [http://radioactiveathome.org/boinc/apps.php Windows, Linux] | ||
| {{No}} | | {{No}} | ||
| {{ | | {{Yes}}, Sensor | ||
| | | | ||
| Independent | | Independent | ||
| Line 379: | Line 379: | ||
| [https://podcasts.apple.com/us/podcast/rakesearch/id1492837872?i=1000496377228 Listen] | | [https://podcasts.apple.com/us/podcast/rakesearch/id1492837872?i=1000496377228 Listen] | ||
| Implement an application that picks up separate pairs of mutually orthogonal DLSs, which allows reconstructing the full graphs of their orthogonality. [[Rakesearch|See more...]] | | Implement an application that picks up separate pairs of mutually orthogonal DLSs, which allows reconstructing the full graphs of their orthogonality. [[Rakesearch|See more...]] | ||
|- | |- | ||
| Line 399: | Line 386: | ||
| [https://boinc.bakerlab.org/rosetta/apps.php Windows, Linux, ARM, macOS, Android] | | [https://boinc.bakerlab.org/rosetta/apps.php Windows, Linux, ARM, macOS, Android] | ||
| {{No}} | | {{No}} | ||
| {{ | | {{No}} | ||
| [https://youtu.be/6o5yBfG_vss view] | | [https://youtu.be/6o5yBfG_vss view] | ||
| University of Washington | | University of Washington | ||
| Line 464: | Line 451: | ||
| [https://uspex-at-home.ru/prediction/apps.php Windows, Linux, macOS] | | [https://uspex-at-home.ru/prediction/apps.php Windows, Linux, macOS] | ||
| {{No}} | | {{No}} | ||
| {{Yes}}, | | {{Yes}}, Vbox | ||
| | | | ||
| [https://uspex-team.org/en uspex-team.org] | | [https://uspex-team.org/en uspex-team.org] | ||
| Line 533: | Line 520: | ||
!Operating System | !Operating System | ||
!GPU App | !GPU App | ||
! | !Requires | ||
!Screen saver | !Screen saver | ||
!Sponsor | !Sponsor | ||
| Line 551: | Line 538: | ||
| Software testing | | Software testing | ||
| | | | ||
| 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...]] | ||
|- | |- | ||
| Line 628: | Line 615: | ||
!Operating System | !Operating System | ||
!GPU App | !GPU App | ||
! | !Requires | ||
!Screen saver | !Screen saver | ||
!Sponsor | !Sponsor | ||
| Line 828: | Line 815: | ||
| | | | ||
| | | | ||
| | | searched for MD5 and SHA-1 hash collisions, culminating in the 2008 rogue certificate authority attack. [[HashClash|See more...]] | ||
|- | |- | ||
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| | | Used a Brownian dynamics method to study protein folding. [[TANPAKU|See more...]] | ||
|- | |- | ||
| Line 867: | Line 854: | ||
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| | | Condor and PBS clusters through the Globus Toolkit, chiefly supporting phylogenetic analysis with the GARLI software. [[The Lattice Project|See more...]] | ||
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| Line 984: | Line 971: | ||
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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...]] | ||
|- | |- | ||
| Line 1,143: | Line 1,130: | ||
|- | |- | ||
| [https://web.archive.org/web/20121205084825/http://www.malariacontrol.net/ | | [https://web.archive.org/web/20121205084825/http://www.malariacontrol.net/ malariacontrol.net] | ||
| [https://boinc.berkeley.edu/pubs.php#Malariacontrol.net 26] | | [https://boinc.berkeley.edu/pubs.php#Malariacontrol.net 26] | ||
| 2006-03-01 | | 2006-03-01 | ||
2016-06-21 | |||
| WinXP-98, Linux | | WinXP-98, Linux | ||
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| Line 1,153: | Line 1,141: | ||
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| A project with an application that makes use of network computing for stochastic modelling of the clinical epidemiology and natural history of Plasmodium falciparum malaria. | | A project with an application that makes use of network computing for stochastic modelling of the clinical epidemiology and natural history of Plasmodium falciparum malaria. [[Malariacontrol.net|See more...]] | ||
|- | |- | ||
| Line 1,166: | Line 1,154: | ||
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| A large-scale Protein structure prediction project to contribute to a better understanding of many diseases and pathologies, and to progress in both Medicine and Technology. | | A large-scale Protein structure prediction project to contribute to a better understanding of many diseases and pathologies, and to progress in both Medicine and Technology. [[Proteins@home|See more...]] | ||
|- | |- | ||
| Line 1,179: | Line 1,167: | ||
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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...]] | ||
|- | |- | ||
| Line 1,588: | Line 1,576: | ||
| [https://boinc.berkeley.edu/pubs.php#Ibercivis 18] | | [https://boinc.berkeley.edu/pubs.php#Ibercivis 18] | ||
| 2007-11 | | 2007-11 | ||
2020-08-01 | |||
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| Line 1,595: | Line 1,584: | ||
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| | | Research in physics, material science and biomedicines and is based at several institutes and universities; Zaragoza, CETA-CIEMAT, CSIC, Coimbra. [[Ibercivis|See more...]] | ||
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| Use sophisticated mathematical methods to determine the rectilinear crossing number for small values of n. | | Use sophisticated mathematical methods to determine the rectilinear crossing number for small values of n. [[Rectilinear Crossing Number Project|See more...]] | ||
|- | |- | ||
| Line 1,769: | Line 1,758: | ||
| [https://web.archive.org/web/20090309055929/http://aqua.dwavesys.com/ AQUA@home] | | [https://web.archive.org/web/20090309055929/http://aqua.dwavesys.com/ AQUA@home] | ||
| [https://boinc.berkeley.edu/pubs.php#AQUA@home 4] | | [https://boinc.berkeley.edu/pubs.php#AQUA@home 4] | ||
| | |2008-12-08 | ||
2011-08-01 | |||
| | | | ||
| | | | ||
| {{Yes}}, Vbox | |||
| [https://youtu.be/VyQgGkj_Rss view] | | [https://youtu.be/VyQgGkj_Rss view] | ||
| dwavesys | | dwavesys | ||
|Quantum Computing | |||
| | | | ||
| | |Model the performance of superconducting adiabatic quantum computers. [[AQUA@home|See more...]] | ||
| | |||
|- | |- | ||
| [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 | ||
| Line 1,790: | Line 1,780: | ||
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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...]] | ||
|- | |- | ||
| Line 2,076: | Line 2,066: | ||
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| | | 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...]] | ||
|- | |- | ||
| Line 2,290: | Line 2,280: | ||
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| 2014-01-05 | | 2014-01-05 | ||
2014-03-01 | |||
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| Line 2,297: | Line 2,288: | ||
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| | | 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...]] | ||
|- | |- | ||
| Line 2,362: | Line 2,353: | ||
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| | | Simulate long timescale evolution of atomic scale systems in chemistry and materials science. [[EOn|See more...]] | ||
|- | |- | ||
| Line 2,388: | Line 2,379: | ||
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| | | CHARMM-based protein-ligand docking simulations to search for new pharmaceutical drugs. [[Docking@Home|See more...]] | ||
|- | |- | ||
| Line 2,668: | Line 2,659: | ||
| 2017 | | 2017 | ||
| | | | ||
| {{Yes}} | | | ||
| {{Yes}}, Vbox | |||
| | | | ||
| Matrosov Institute for System Dynamics and Control Theory | | Matrosov Institute for System Dynamics and Control Theory | ||
| Line 2,783: | Line 2,774: | ||
| [https://web.archive.org/web/20081008031648/http://cels-at-home-dev.dyndns.org:80/cels/ Cels@Home] | | [https://web.archive.org/web/20081008031648/http://cels-at-home-dev.dyndns.org:80/cels/ Cels@Home] | ||
| | | | ||
| | |2008-06-23 | ||
2009-09-01 | |||
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| | | | ||
| [https://youtu.be/mzp2QBwvb2U view] | | [https://youtu.be/mzp2QBwvb2U view] | ||
|University of Texas in Austin | |||
| | | | ||
| | | | ||
| Research in cell adhesion. One of the many applications of this is in cancer research, as the point at which cancerous cells quit staying in place is a critical event that makes the disease much harder to treat. [[Cels@Home|See more...]] | |||
| Research in cell adhesion. One of the many applications of this is in cancer research, as the point at which cancerous cells quit staying in place is a critical event that makes the disease much harder to treat. | |||
|- | |- | ||
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| | | simulations of clonal plant growth to inform the ecological design of sustainable prairie ecosystems. [[Virtual Prairie|See more...]] | ||
|- | |- | ||
| Line 3,064: | Line 3,056: | ||
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| Support the research of nano-magnetic molecules. In the future these molecules will be used in the local tumor chemotherapy and to develop tiny memory-modules. | | Support the research of nano-magnetic molecules. In the future these molecules will be used in the local tumor chemotherapy and to develop tiny memory-modules. [[Spinhenge@home|See more...]] | ||
|- | |- | ||
| Line 3,334: | Line 3,326: | ||
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|Academia Sinica Grid Computing | |||
| | | | ||
| | | | ||
| | | Bridging Taiwanese volunteer computers to European e-Science service grid infrastructure. [[Taiwan Desktop Grid|See more...]] | ||
| | |||
|- | |- | ||
| Line 3,454: | Line 3,446: | ||
| Multiple applications | | Multiple applications | ||
| | | | ||
| | | Condor and PBS clusters through the Globus Toolkit, chiefly supporting phylogenetic analysis with the GARLI software. [[The Lattice Project|See more...]] | ||
|- | |- | ||
| Line 3,467: | Line 3,459: | ||
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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...]] | ||
|- | |- | ||
| Line 3,636: | Line 3,628: | ||
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| | | Finding abc-triples related to the ABC conjecture. [[ABC@home|See more...]] | ||
|- | |- | ||
| Line 3,698: | Line 3,690: | ||
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|Technical University of Munich, the Helmholtz Zentrum München and the University of Vienna | |||
| | | | ||
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| Many computational methods in biology and medicine are based on protein sequence analysis, e.g. to predict the function and structure of genes and proteins. SIMAP facilitates these methods by providing pre-calculated protein similarities and protein domains. [[SIMAP|See more...]] | |||
| Many computational methods in biology and medicine are based on protein sequence analysis, e.g. to predict the function and structure of genes and proteins. SIMAP facilitates these methods by providing pre-calculated protein similarities and protein domains. | |||
|- | |- | ||
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| Dedicated to general Classical Dynamics for any scientist or science student. | | Dedicated to general Classical Dynamics for any scientist or science student. [[Leiden Classical|See more...]] | ||
|- | |- | ||
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| [https://boinc.berkeley.edu/pubs.php#SZTAKI 5] | | [https://boinc.berkeley.edu/pubs.php#SZTAKI 5] | ||
| 2005-05-26 | | 2005-05-26 | ||
2018-05-31 | |||
| WinXP-98, Linux, MacOS X (Not Intel), Solaris | | WinXP-98, Linux, MacOS X (Not Intel), Solaris | ||
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| Line 3,727: | Line 3,720: | ||
| Multiple Applications | | Multiple Applications | ||
| | | | ||
| The SZTAKI Desktop Grid and its applications are partly supported by the DEGISCO and the EDGI projects. The work leading to these results has received funding from the European Union Seventh Framework Programme (FP7/2007-2013) under grant agreements n° RI-261561 and n° RI-261556. | | The SZTAKI Desktop Grid and its applications are partly supported by the DEGISCO and the EDGI projects. The work leading to these results has received funding from the European Union Seventh Framework Programme (FP7/2007-2013) under grant agreements n° RI-261561 and n° RI-261556. [[SZTAKI Desktop Grid|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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|Russian Academy of Sciences (Siberian Branch) | |||
|Mathematics | |||
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| Solve hard and practically important problems (discrete functions inversion problems, discrete optimization, bioinformatics, etc) that can be effectively reduced to Boolean satisfiability problem. [[SAT@home|See more...]] | |||
| Solve hard and practically important problems (discrete functions inversion problems, discrete optimization, bioinformatics, etc) that can be effectively reduced to Boolean satisfiability problem. | |||
|- | |- | ||
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| | | Used island-based coevolutionary genetic algorithm to synthesize self-checking digital hardware circuits. [[Distributed Hardware Evolution Project|See more...]] | ||
|- | |- | ||
| Line 3,909: | Line 3,902: | ||
| Multiple applications | | Multiple applications | ||
| | | | ||
| Quantum-mechanical computations on medically relevant biomolecular systems, to help with developing quantum-mechanics-based approaches for computational drug design; and finding safer and greener materials for e-vehicle batteries. | | Quantum-mechanical computations on medically relevant biomolecular systems, to help with developing quantum-mechanics-based approaches for computational drug design; and finding safer and greener materials for e-vehicle batteries. [[QMC@Home|See more...]] | ||
|- | |- | ||
| Line 3,927: | Line 3,920: | ||
| [https://web.archive.org/http://casathome.ihep.ac.cn/ CAS@home] | | [https://web.archive.org/http://casathome.ihep.ac.cn/ CAS@home] | ||
| | | | ||
| | |2010-09-30 | ||
2020-04-27 | |||
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| Line 3,935: | Line 3,929: | ||
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| The main application is the TreeThreader which predicts protein structure. | | The main application is the TreeThreader which predicts protein structure. [[CAS@home|See more...]] | ||
|- | |- | ||
| Line 4,013: | Line 4,007: | ||
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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...]] | ||
|- | |- | ||
| Line 4,026: | Line 4,020: | ||
| Cognitive science | | Cognitive science | ||
| | | | ||
| Computational cognitive process modeling to better understand the human mind. | | Computational cognitive process modeling to better understand the human mind. [[MindModeling@Home|See more...]] | ||
|- | |- | ||
| Line 4,044: | Line 4,038: | ||
| [http://burp.renderfarming.net/ Big and Ugly Rendering Project (BURP)] | | [http://burp.renderfarming.net/ Big and Ugly Rendering Project (BURP)] | ||
| [https://boinc.berkeley.edu/pubs.php#Big 2] | | [https://boinc.berkeley.edu/pubs.php#Big 2] | ||
| | |2004-06-17 | ||
2020 | |||
| Windows, Linux, Mac OS | | Windows, Linux, Mac OS | ||
| | | | ||
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|Janus Kristensen | |||
|3D rendering | |||
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| Render animated videos including [http://bbb3d.renderfarming.net/download.html Big Buck Bunny]. [[Big and Ugly Rendering Project|See more...]] | |||
| Render animated videos including [http://bbb3d.renderfarming.net/download.html Big Buck Bunny]. | |||
|- | |- | ||
| Line 4,078: | Line 4,073: | ||
| Multiple applications | | Multiple applications | ||
| | | | ||
| Aerospace engineering, computational biology, and earthquake engineering. | | Aerospace engineering, computational biology, and earthquake engineering. [[BOINC@TACC|See more...]] | ||
|- | |- | ||
| Line 4,151: | Line 4,146: | ||
| [http://www.cosmologyathome.org/apps.php Windows, Linux, MacOS, Android] | | [http://www.cosmologyathome.org/apps.php Windows, Linux, MacOS, Android] | ||
| {{No}} | | {{No}} | ||
| {{Yes}}, | | {{Yes}}, Vbox | ||
| | | | ||
| Institut d'Astrophysique de Paris | | Institut d'Astrophysique de Paris | ||
| Line 4,359: | Line 4,354: | ||
| [https://ralph.bakerlab.org/apps.php Windows, Linux, ARM, macOS, Android] | | [https://ralph.bakerlab.org/apps.php Windows, Linux, ARM, macOS, Android] | ||
| {{No}} | | {{No}} | ||
| {{Yes}}, | | {{Yes}}, Vbox | ||
| [https://youtu.be/W9fC5lv76T0 view] | | [https://youtu.be/W9fC5lv76T0 view] | ||
| University of Washington | | University of Washington | ||
| Line 4,404: | Line 4,399: | ||
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| Computational astrophysics, computer simulation of stars, galaxies and the Universe. [[Universe@Home|See more...]] | | Computational astrophysics, computer simulation of stars, galaxies and the Universe. [[Universe@Home|See more...]] | ||
|- | |||
|[https://axiom.heliex.net/ Axiom Distributed AI] | |||
| | |||
|2026-01-30 | |||
2026-03-20 | |||
|[https://web.archive.org/web/20260319085629/https://axiom.heliex.net/apps.php Windows, Linux, Mac] | |||
| {{No}} | |||
| {{No}} | |||
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|Axiom Project 2026 | |||
|Artificial Intelligence | |||
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|Distributed neural-network learning techniques influenced by Hebbian learning [[Axiom Distributed AI|See more...]] | |||
|- | |||
| [https://rnma.xyz/boinc/ Ramanujan Machine] | |||
| [https://boinc.berkeley.edu/pubs.php#Ramanujan 2] | |||
| 2021-10-14 | |||
| [https://rnma.xyz/boinc/apps.php Windows, Linux] | |||
| {{No}} | |||
| {{No}} | |||
| | |||
| Independent | |||
| Mathematics | |||
| [https://podcasts.apple.com/us/podcast/project-brief-ramanujan-machine-5-2-2022/id1492837872?i=1000570072053 Listen] | |||
| Conjecturing new mathematical formulas. [[Ramanujan Machine|See more...]] | |||
|} | |} | ||