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retire LODA
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<div class="bs-stat bs-stat-teal"><div class="bs-stat-number">335</div>
<div class="bs-stat bs-stat-teal"><div class="bs-stat-number">{{#invoke:ProjectCounts|total|Active BOINC Projects|Private BOINC Projects|Completed BOINC Projects}}</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-number">99</div>
<div class="bs-stat bs-stat-purple"><div class="bs-stat-number">{{PAGESINCATEGORY:BOINC projects|pages}}</div>
<div class="bs-stat-label">Projects documented</div>
<div class="bs-stat-label">Projects documented</div>
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<div class="bs-stat-number">72</div>
<div class="bs-stat-number">{{#invoke:ProjectCounts|recordings}}
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<div class="bs-stat-label">[[BOINC project screensavers|Screensavers archived]]</div>
<div class="bs-stat-label">[[BOINC project screensavers|Screensavers archived]]</div>
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{| class="bs-project-table"
{| class="bs-project-table"
|* [[Gerasim@home]] multi-project. number field sieve factorisation
|* [[BitBOINC]] search for the private keys of selected, long-unclaimed Bitcoin puzzle addresses
|* [[Eternity II]] search for improved arrangements of the 256-piece Eternity II edge-matching puzzle
|-
|* [[Gerasim@home]] multi-project, most recently number field sieve factorisation
|
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|-
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{| class="bs-project-table"
{| class="bs-project-table"
|-
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| * [[BOINC Alpha Test]] test new versions of the BOINC client software on a wide range of hardware and operating systems
|
| * [[BOINC Central]] BOINC infrastructure project
| * [[BOINC Central]] BOINC infrastructure project
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{| class="bs-project-table"
{| class="bs-project-table"
|-
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| colspan="2" | * [[Cpdnboinc dev]] cpdn development and testing server
| * [[Cpdnboinc dev]] cpdn development and testing server
|* [[BOINC Alpha Test]] test new versions of the BOINC client software on a wide range of hardware and operating systems
|}
|}
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<div class="bs-group bs-group-gray mw-collapsible mw-collapsed">
<div class="bs-group bs-group-gray mw-collapsible mw-collapsed">
<div class="bs-group-toggle mw-collapsible-toggle">⏸ Retired projects (expand)</div>
<div class="bs-group-toggle mw-collapsible-toggle">⏸ Retired projects (expand)</div>
<div class="mw-collapsible-content">
<div class="mw-collapsible-content">
<div class="bs-group-note">These projects have suspended operations or are no longer accepting new work units. Their pages are preserved here for historical reference and research continuity.</div>
<div class="bs-group-note">These projects have suspended operations or are no longer accepting new work units. Their pages are preserved here for historical reference and research continuity.</div>
{| class="bs-project-table"
{| class="bs-project-table"
|-
|-
| * [[ABC@home]] searched for abc-triples related to the abc conjecture in number theory
| * [[ABC@home]] searched for abc-triples related to the abc conjecture in number theory
| * [[Albert@Home]] developement site for Einstein@Home
| * [[Albert@Home]] development site for Einstein@Home
 
|-
|-
|* [[Amicable Numbers]] amicable pair enumeration
| * [[Amicable Numbers]] amicable pair enumeration
|* [[AQUA@home]] model the performance of superconducting adiabatic quantum computers
| * [[AQUA@home]] model the performance of superconducting adiabatic quantum computers
 
|-
|-
| * [[Axiom Distributed AI]] distributed AI model training
| * [[Axiom Distributed AI]] distributed AI model training
| * [[Big and Ugly Rendering Project]] distributed video rendering
|-
| * [[BlackHoles@Home]] black hole binary merger waveforms
| * [[BlackHoles@Home]] black hole binary merger waveforms
| * [[BOINC@TACC]] routes computing jobs from TACC supercomputers to volunteer devices
|-
|-
|* [[Big and Ugly Rendering Project]] distributed video rendering
| * [[BRaTS@Home]] perform gravitational lensing ray-tracing simulations of galaxy clusters
|* [[BOINC@TACC]] routes computing jobs from TACC supercomputers to volunteer devices
| * [[CAS@home]] hosted by the Chinese Academy of Sciences, best known for running the TreeThreader protein structure
 
|-
|-
|* [[BRaTS@Home]] perform gravitational lensing ray-tracing simulations of galaxy clusters
| * [[Cels@Home]] modeled cell adhesion and cell migration in the extracellular matrix
|* [[CAS@home]] hosted by the Chinese Academy of Sciences, best known for running the TreeThreader protein structure
| * [[Chess@Home]] build a labeled dataset intended for training a machine-learned classifier of winning position
 
|-
|-
|* [[Correlizer]] studiy the organization of genomes using long-range correlation analysis of chromosomes
| * [[Chess960@home]] built a database of Chess960 (Fischer Random Chess) games to study sound opening play
|* [[Chess@Home]] build a labeled dataset intended for training a machine-learned classifier of winning position
| * [[Collatz Conjecture]] testing the 3x+1 conjecture
|-
 
|* [[CAS@home|Cels@Home]]  hosted by the Chinese Academy of Sciences, best known for running the TreeThreader protein structure
|* [[Collatz Conjecture]] testing the 3x+1 conjecture
|-
|-
| * [[Correlizer]] study the organization of genomes using long-range correlation analysis of chromosomes
| * [[Cosmology@Home]] astronomical research
| * [[Cosmology@Home]] astronomical research
| * [[Distributed Hardware Evolution Project]] synthesize self-checking digital hardware circuits
 
|-
|-
| * [[Data freezer]] long-term data archival research
| * [[Data freezer]] long-term data archival research
| * [[DepSpid]] build a database of dependency relationships between web servers and domain
| * [[DepSpid]] build a database of dependency relationships between web servers and domain
|-
|-
|* [[Docking@Home]] CHARMM-based protein-ligand docking simulations to search for new pharmaceutical drugs
| * [[Distributed Hardware Evolution Project]] synthesize self-checking digital hardware circuits
|* [[EDGeS@Home]] bridged desktop grids and service grids to support scientific applications
| * [[Docking@Home]] CHARMM-based protein-ligand docking simulations to search for new pharmaceutical drugs
 
|-
|-
|* [[eOn]] simulate long timescale evolution of atomic scale systems in chemistry and materials science
| * [[EDGeS@Home]] bridged desktop grids and service grids to support scientific applications
|* [[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
| * [[EOn|eOn]] simulate long timescale evolution of atomic scale systems in chemistry and materials science
|
| * [[FreeHAL@home]] generate and convert semantic networks for the self-learning chatbot FreeHAL
 
|-
|-
|* [[GoofyxGrid@Home NCI]] non-covalent interaction analysis
| * [[GoofyxGrid@Home NCI]] non-covalent interaction analysis
|* [[HashClash]] search for MD5 and SHA-1 hash collisions, culminating in the 2008 rogue certificate authority attack
| * [[HashClash]] search for MD5 and SHA-1 hash collisions, culminating in the 2008 rogue certificate authority attack
 
|-
|-
|* [[GoofyxGrid@Home NCI|Ibercivis]] simulations in nuclear fusion, protein docking, materials science, and number theory
| * [[Ibercivis]] Spanish multi-app platform spanning nuclear fusion, protein docking, materials science and number theory
|* [[Kryptos@Home]] attempt to decrypt K4, the unsolved fourth passage of the Kryptos sculpture at CIA headquarters
| * [[Kryptos@Home]] attempt to decrypt K4, the unsolved fourth passage of the Kryptos sculpture at CIA headquarters
 
|-
|-
|* [[Leiden Classical]] submit personal classical mechanics and molecular dynamics simulations
| * [[Leiden Classical]] submit personal classical mechanics and molecular dynamics simulations
|* [[LODA]] integer sequence program synthesis
| * [[LODA]] integer sequence program synthesis
 
|-
|-
|* [[Malariacontrol.net]] simulate the transmission dynamics and health effects of malaria
| * [[Malariacontrol.net]] simulate the transmission dynamics and health effects of malaria
|* [[MindModeling@Home]] computational cognitive modeling to study human performance and learning
| * [[MindModeling@Home]] computational cognitive modeling to study human performance and learning
 
|-
|-
|
| * [[MLC@Home]] understanding and interpreting complex machine learning models
|* [[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
 
|-
|-
| * [[nanoHUB@Home]] nanotechnology simulation
| * [[NanoHUB@Home|nanoHUB@Home]] nanotechnology simulation
| * [[Parlea]] RNA 3D structure motif analysis
| * [[Parlea]] RNA 3D structure motif analysis
|-
|-
|* [[POEM@HOME]] all-atom free-energy simulations to predict protein structure and folding
| * [[Pirates@Home]] help to develop Einstein@Home screensaver and test BOINC software
|* [[proteins@home]] tackled the inverse protein folding problem
| * [[POEM@HOME]] all-atom free-energy simulations to predict protein structure and folding
 
|-
|-
| * [[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
| * [[Proteins@home|proteins@home]] tackled the inverse protein folding problem
 
|-
|-
| [[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
| * [[Quake-Catcher Network]] used accelerometers in laptops and USB sensors to build an earthquake detection network
|-
|-
|* [[QuChemPedIA@home]] run density functional theory (DFT) quantum chemistry calculations
| * [[QuChemPedIA@home]] run density functional theory (DFT) quantum chemistry calculations
|* [[Rectilinear Crossing Number Project]] determine the rectilinear crossing number of the complete graph K18
| * [[RALPH@home]] development site for Rosetta@home
 
|-
|-
| * [[RALPH@home]] developement site for Rosetta@home
| * [[Ramanujan Machine]] conjectured mathematical identities
| * [[Ramanujan Machine]] conjectured mathematical identities
| * [[Rectilinear Crossing Number Project]] determine the rectilinear crossing number of the complete graph K18
|-
|-
| * [[RNA World (beta)]] RNA folding and molecular evolution
| * [[RNA World (beta)]] RNA folding and molecular evolution
| * [[SAT@home]] solve hard instances of the Boolean satisfiability problem
|-
| * [[SciLINC]] indexed digitized botanical literature
| * [[SETI@home]] search for extraterrestrial intelligence
| * [[SETI@home]] search for extraterrestrial intelligence
|-
|-
|* [[SAT@home]] solve hard instances of the Boolean satisfiability problem
| * [[SIMAP]] pre-calculated protein sequence similarities for a database used by bioinformaticians
|* [[SciLINC]] indexed digitized botanical literature
| * [[Spinhenge@home]] simulating spin dynamics in nanoscale molecular magnets
 
|-
|-
|* [[SIMAP]] pre-calculated protein sequence similarities for a database used by bioinformaticians
| * [[SPT]] Symmetric Prime Tuples
|
| * [[SZTAKI Desktop Grid]] MTA SZTAKI in Budapest, running mathematics, physics, and digital humanities applications
 
|-
|-
|* [[Spinhenge@home]] simulating spin dynamics in nanoscale molecular magnets
| * [[Taiwan Desktop Grid]] bridging Taiwanese volunteer computers to European e-Science service grid infrastructure
|* [[SZTAKI Desktop Grid]] MTA SZTAKI in Budapest, running mathematics, physics, and digital humanities applications
| * [[TANPAKU]] used a Brownian dynamics method to study protein folding
 
|-
|-
|* [[SPT]] Symmetric Prime Tuples
| * [[T.Brada Experimental Grid]] Symmetric Prime Tuples and PADLS Total mathematical sub-projects
|* [[Taiwan Desktop Grid]] bridging Taiwanese volunteer computers to European e-Science service grid infrastructure
| * [[The Lattice Project]] Condor and PBS clusters, chiefly supporting phylogenetic analysis with the GARLI software
 
|-
|-
|* [[TANPAKU]] used a Brownian dynamics method to study protein folding
| * [[TheSkyNet POGS|theSkyNet POGS]] measure the resolved stellar mass, star formation rate and dust content of nearby galaxies
|* [[Proteins@home|T.Brada Experimental Grid]] the PADLS Total subproject aimed to find new pseudo-associative DLS
| * [[UFluids@Home|µFluids@Home]] support research into satellite propellant management and lab-on-a-chip devices
 
|-
|-
|* [[The Lattice Project]] Condor and PBS clusters, chiefly supporting phylogenetic analysis with the GARLI software
| * [[Universe@Home]] stellar evolution modelling
|* [[theSkyNet POGS]] measure the resolved stellar mass, star formation rate and dust content of nearby galaxies
| * [[Virtual Prairie]] simulations of clonal plant growth to inform the ecological design of sustainable prairie ecosystems
|-
 
|* [[MLC@Home]] understanding and interpreting complex machine learning models
|* [[Universe@Home]] stellar evolution modelling
|-
|-
| * [[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
| * [[Volpex@Home]] run communicating parallel programs through process replication and a shared dataspace
|-
| * [[WEP-M+2 Project]] mersenne-related prime search
|* [[WEP-M+2 Project]] mersenne-related prime search
 
|* [[uFluids@Home]] support research into satellite propellant management and lab-on-a-chip devices
|}
|}
<div class="bs-group-footer">''See the [[BOINC projects|master BOINC projects table]] for definitive active/inactive status on all documented projects.''</div>
<div class="bs-group-footer">''See the [[BOINC projects|master BOINC projects table]] for definitive active/inactive status on all documented projects.''</div>
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     HOW TO PARTICIPATE
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[[Category:BOINC projects]]
[[Category:Volunteer computing]]
[[Category:Volunteer computing]]
[[Category:Distributed computing]]
[[Category:Distributed computing]]