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<div class="bs-stat bs-stat-teal"> | <div class="bs-stat bs-stat-teal"><div class="bs-stat-number">335</div> | ||
<div class="bs-stat-number">335</div> | |||
<div class="bs-stat-label">[[BOINC projects|Projects listed]]</div> | <div class="bs-stat-label">[[BOINC projects|Projects listed]]</div> | ||
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<div class="bs-stat bs-stat-purple"> | <div class="bs-stat bs-stat-purple"><div class="bs-stat-number">99</div> | ||
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<div class="bs-stat-label">Projects documented</div> | <div class="bs-stat-label">Projects documented</div> | ||
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<span class="bs-definition-label">What is a BOINC project?</span> | <span class="bs-definition-label">What is a BOINC project?</span> | ||
'''A BOINC project''' is a website and associated server set up by an individual or group to distribute applications to [https://boinc.berkeley.edu/ BOINC] volunteer computing devices. Those devices deliberately attach to receive, process, and return results for further scientific research | '''A BOINC project''' is a website and associated server set up by an individual or group to distribute applications to [https://boinc.berkeley.edu/ BOINC] volunteer computing devices. Those devices deliberately attach to receive, process, and return results for further scientific research at no cost to the researcher, and no cost to the volunteer beyond electricity. | ||
''BOINC'' stands for '''Berkeley Open Infrastructure for Network Computing''', developed at the University of California, Berkeley. Any researcher can create a BOINC project; any person can donate their idle CPU or GPU time to one. | ''BOINC'' stands for '''Berkeley Open Infrastructure for Network Computing''', developed at the University of California, Berkeley. Any researcher can create a BOINC project; any person can donate their idle CPU or GPU time to one. | ||
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<div class="bs-cta-title">📺 BOINC Project Screensaver Archive</div> | <div class="bs-cta-title">📺 BOINC Project Screensaver Archive</div> | ||
<div class="bs-cta-body">Before modern power management made them obsolete, every BOINC project shipped a real-time animated screensaver showing the computation in progress, including protein chains folding, star fields sweeping and climate models spinning. All 71 known screensaver recordings, spanning projects from SETI@home to Pirates@Home, are now preserved in one place.</div> | <div class="bs-cta-body">Before modern power management made them obsolete, every BOINC project shipped a real-time animated screensaver showing the computation in progress, including protein chains folding, star fields sweeping and climate models spinning. All 71 known screensaver recordings, spanning projects from SETI@home to Pirates@Home, are now preserved in one place — with one exception: the NanoHive@Home screensaver, which survives only as a static image, its animation never recorded.</div> | ||
<big>'''[[BOINC project screensavers|View the BOINC Screensaver Archive →]]'''</big> | <big>'''[[BOINC project screensavers|View the BOINC Screensaver Archive →]]'''</big> | ||
</div> | </div> | ||
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|* [[Big and Ugly Rendering Project]] distributed video rendering | |* [[Big and Ugly Rendering Project]] distributed video rendering | ||
|* [[BOINC@TACC]] | |* [[BOINC@TACC]] routes computing jobs from TACC supercomputers to volunteer devices | ||
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|* [[CAS@home]] | |* [[BRaTS@Home]] perform gravitational lensing ray-tracing simulations of galaxy clusters | ||
|* [[CAS@home]] hosted by the Chinese Academy of Sciences, best known for running the TreeThreader protein structure | |||
|- | |- | ||
|* [[ | |* [[Correlizer]] studiy the organization of genomes using long-range correlation analysis of chromosomes | ||
|* [[Chess@Home]] build a labeled dataset intended for training a machine-learned classifier of winning position | |* [[Chess@Home]] build a labeled dataset intended for training a machine-learned classifier of winning position | ||
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|* [[Docking@Home]] CHARMM-based protein-ligand docking simulations to search for new pharmaceutical drugs | |* [[Docking@Home]] CHARMM-based protein-ligand docking simulations to search for new pharmaceutical drugs | ||
| | |* [[EDGeS@Home]] bridged desktop grids and service grids to support scientific applications | ||
|- | |- | ||
|* [[eOn]] simulate long timescale evolution of atomic scale systems in chemistry and materials science | |* [[eOn]] simulate long timescale evolution of atomic scale systems in chemistry and materials science | ||
|* [[Enigma@Home]] break unsolved German Kriegsmarine Enigma M4 radio messages from the Second World War | |* [[Enigma@Home]] break unsolved German Kriegsmarine Enigma M4 radio messages from the Second World War | ||
|- | |||
|* [[FreeHAL@home]] generate and convert semantic networks for the self-learning chatbot FreeHAL | |||
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|* [[GoofyxGrid@Home NCI]] non-covalent interaction analysis | |* [[GoofyxGrid@Home NCI]] non-covalent interaction analysis | ||
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|* [[Leiden Classical]] submit personal classical mechanics and molecular dynamics simulations | |* [[Leiden Classical]] submit personal classical mechanics and molecular dynamics simulations | ||
|* [[NanoHive@Home]] used the NanoHive-1 nanospace simulator to search for failure modes in tooltips | |* [[NanoHive@Home]] used the NanoHive-1 nanospace simulator to search for failure modes in tooltips | ||
|- | |||
|* [[Malariacontrol.net]] simulate the transmission dynamics and health effects of malaria | |||
|* [[MindModeling@Home]] computational cognitive modeling to study human performance and learning | |||
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| * [[nanoHUB@Home]] nanotechnology simulation | | * [[nanoHUB@Home]] nanotechnology simulation | ||
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|* [[POEM@HOME]] all-atom free-energy simulations to predict protein structure and folding | |* [[POEM@HOME]] all-atom free-energy simulations to predict protein structure and folding | ||
|* [[proteins@home]] tackled the inverse protein folding problem | |||
|* [[ | |||
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| * [[Predictor@home]] protein folding and the first BOINC project | | * [[Predictor@home]] protein folding and the first BOINC project | ||
| * [[Pirates@Home]] help to develop Einstein@Home screensaver and test BOINC software | | * [[Pirates@Home]] help to develop Einstein@Home screensaver and test BOINC software | ||
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| | | [[Quake-Catcher Network|* Quake-Catcher Network]] used accelerometers in laptops and USB sensors to build an earthquake detection network | ||
| * [[QMC@Home]] develop and apply Quantum Monte Carlo (QMC) methods for use in quantum chemistry | | * [[QMC@Home]] develop and apply Quantum Monte Carlo (QMC) methods for use in quantum chemistry | ||
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| * [[Virtual Prairie]] simulations of clonal plant growth to inform the ecological design of sustainable prairie ecosystems | | * [[Virtual Prairie]] simulations of clonal plant growth to inform the ecological design of sustainable prairie ecosystems | ||
| * [[ | | * [[Volpex@Home]] run communicating parallel programs through process replication and a shared dataspace | ||
|- | |- | ||
| | |* [[WEP-M+2 Project]] mersenne-related prime search | ||
|* [[uFluids@Home]] support research into satellite propellant management and lab-on-a-chip devices | |* [[uFluids@Home]] support research into satellite propellant management and lab-on-a-chip devices | ||
|} | |} | ||