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{{#seo:
|title=BOINC projects
|description=All BOINC Projects - a directory and reference for all BOINC volunteer computing projects, past and present.
|keywords=BOINC, volunteer computing, distributed computing, BOINC projects, BOINC projects list
|image=boinc-projects-seo.png
}}
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<div class="bs-stat-number">335</div>
<div class="bs-stat-label">[[BOINC projects|Projects listed]]</div>
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<div class="bs-stat-number">51</div>
<div class="bs-stat-number">77</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">334</div>
<div class="bs-stat-number">71</div>
<div class="bs-stat-label">Projects listed</div>
<div class="bs-stat-label">[[BOINC project screensavers|Screensavers archived]]</div>
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<div class="bs-cta-body">The [[BOINC projects|List of all BOINC projects]] table is the heart of this wiki — a structured, sortable reference covering project name, research field, institution, supported platforms, active status, GPU support, and more. It is the primary reason this resource exists and the most complete registry of BOINC projects available anywhere.</div>
<div class="bs-cta-body">The [[BOINC projects|List of all BOINC projects]] table is the heart of this wiki — a structured, sortable reference covering project name, research field, institution, supported platforms, active status, GPU support, and more. It is the primary reason this resource exists and the most complete registry of BOINC projects available anywhere.</div>
<big>'''[[BOINC projects|View the complete list of BOINC projects →]]'''</big>
<big>'''[[BOINC projects|View the complete list of BOINC projects →]]'''</big>
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<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>
<big>'''[[BOINC project screensavers|View the BOINC Screensaver Archive →]]'''</big>
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| * [[Rakesearch]] Latin square searches
| * [[Rakesearch]] Latin square searches
| * [[SPT]] Subspace Polynomial Traversal
| * [[SPT]] Symmetric Prime Tuples
|}
|}
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| * [[Albert@Home]] developement site for Einstein@Home
| * [[Albert@Home]] developement site for Einstein@Home
| * [[Amicable Numbers]] amicable pair enumeration
| * [[Amicable Numbers]] amicable pair enumeration
|-
|* [[AQUA@home]] model the performance of superconducting adiabatic quantum computers
|
|-
|-
| * [[Axiom Distributed AI]] distributed AI model training
| * [[Axiom Distributed AI]] distributed AI model training
| * [[BlackHoles@Home]] black hole binary merger waveforms
| * [[BlackHoles@Home]] black hole binary merger waveforms
|-
|* [[Big and Ugly Rendering Project]] distributed video rendering
|* [[CAS@home]]  hosted by the Chinese Academy of Sciences, best known for running the TreeThreader protein structure
|-
|* [[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
|-
| * [[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
| * [[GoofyxGrid@Home NCI]] non-covalent interaction analysis
| * [[Docking@Home]] CHARMM-based protein-ligand docking simulations to search for new pharmaceutical drugs
|-
|* [[GoofyxGrid@Home NCI]] non-covalent interaction analysis
|* [[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
|* [[Leiden Classical]] submit personal classical mechanics and molecular dynamics simulations
|-
|-
| * [[nanoHUB@Home]] nanotechnology simulation
| * [[nanoHUB@Home]] nanotechnology simulation
| * [[Parlea]] RNA 3D structure motif analysis
| * [[Parlea]] RNA 3D structure motif analysis
|-
|* [[Malariacontrol.net]] simulate the transmission dynamics and health effects of malaria
|* [[MindModeling@Home]] computational cognitive modeling to study human performance and learning
|-
| * [[Predictor@home]] protein folding and the first BOINC project
| * [[Pirates@Home]] help to develop Einstein@Home screensaver and test BOINC software
|-
| * [[proteins@home]] tackled the inverse protein folding problem
| * [[QMC@Home]] develop and apply Quantum Monte Carlo (QMC) methods for use in quantum chemistry
|-
|* [[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]] developement site for Rosetta@home
| * [[RALPH@home]] developement site for Rosetta@home
| * [[Ramanujan Machine]] conjectured mathematical identities
| * [[Ramanujan Machine]] conjectured mathematical identities
|-
| * [[RNA World (beta)]] RNA folding and molecular evolution
| * [[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
|-
|* [[Spinhenge@home]] simulating spin dynamics in nanoscale molecular magnets
|* [[SZTAKI Desktop Grid]] MTA SZTAKI in Budapest, running mathematics, physics, and digital humanities applications
|-
|* [[TANPAKU]] used a Brownian dynamics method to study protein folding
|* [[Proteins@home|T.Brada Experimental Grid]] the PADLS Total subproject aimed to find new pseudo-associative DLS
|-
|* [[The Lattice Project]] Condor and PBS clusters, chiefly supporting phylogenetic analysis with the GARLI software
|* [[MLC@Home]] understanding and interpreting complex machine learning models
|-
|-
| * [[Universe@Home]] stellar evolution modelling
| * [[Universe@Home]] stellar evolution modelling
| * [[WEP-M+2 Project]] Mersenne-related prime search
| * [[WEP-M+2 Project]] mersenne-related prime search
|-
|[[RNA World (beta)]] RNA folding and molecular evolution
|* [[SETI@home]] search for extraterrestrial intelligence
|}
|}
<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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<div class="bs-step-title">1. Download BOINC</div>
<div class="bs-step-title">1. Download BOINC</div>
<div class="bs-step-body">Get the free BOINC client from [https://boinc.berkeley.edu/download.php boinc.berkeley.edu]. Available for Windows, macOS, Linux, and Android.</div>
<div class="bs-step-body">Get the free [https://boinc.berkeley.edu/download.php BOINC client]. Available for Windows, macOS, Linux, and Android.</div>
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<div class="bs-step-title">3. Attach & contribute</div>
<div class="bs-step-title">3. Attach & contribute</div>
<div class="bs-step-body">Register on the project's website, attach via the BOINC client, and your idle computer begins processing work units automatically.</div>
<div class="bs-step-body">Attach via the BOINC client, and your idle computer begins processing work units automatically.</div>
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