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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> | ||
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<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-label">Projects documented</div> | <div class="bs-stat-label">Projects documented</div> | ||
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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 | ||
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|* [[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 a distributed 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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