Das sind alle Research-Projekte, an denen das Matrix
World Search Team derzeit beteiligt ist.
CAS @ Home Boinc |
Website |
http://casathome.ihep.ac.cn/ |
About |
"
CAS@home is hosted by the Computing Centre of the Institute of High Energy Physics (IHEP),
Chinese Academy of Sciences. CAS@home is a volunteer computing platform for Chinese scientists
based on the BOINC volunteer computing software. CAS@home collects the volunteer contributions
to computing resources for scientists at the Chinese Academy of Sciences and other Chinese
research institutions, to provide massive free computing resources that help the scientists
complete major scientific computing tasks. Therefore, CAS@home supports multiple applications.
The first application to be launched on CAS@home was developed by scientists at the Institute
of Computing Technology (ICT), Chinese Academy of Sciences. It focused on protein structure
prediction application (software called SCThread). |
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Team |
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CAS @ Home Boinc Team ( Matrix World Search Team ) |
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CAS @ Home Boinc ( Matrix World Search Team ) |
Boinc
Client Download |
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CAS @ Home Boinc |
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Hilfe |
Installations
Anleitung (Hilfe) + Registrierung |
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Citizen Science Grid Boinc |
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Climateprediction.NET Boinc |
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DistributedDataMining Project Boinc |
Website |
http://www.distributeddatamining.org/ |
About |
"
distributedDataMining (dDM) is a scientific computing project that provides the computational
power of internet-connected computers to its scientific partners in order to perform research
in the various fields of Simulation, Data Analysis and Machine Learning. Since 2008, the project
uses the Berkeley Open Infrastructure for Network Computing (BOINC), which is an open source framework
for the distribution of research related tasks to a large number of participating computers. The dDM
project became available to the public in March 2010. As head of the project, Nico Schlitter takes
responsibility for project management, cooperation management and the content published on the project website.
Our project's goal is to allow our research partners to make use of the enormous processing power of personal
computers around the world. Thereby, the computational power spent by the dDM members is used to support the
research of our scientific partners. Currently, we are facing research challenges in the area of Time Series
Analysis and Biological Data Analysis. A former subproject was dealing with Social Network Analysis." |
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Team |
Our
DistributedDataMining Project Boinc Team ( Matrix World Search Team ) |
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this team! >
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DistributedDataMining Project Boinc ( Matrix World Search Team ) |
Boinc
Client Download |
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DistributedDataMining Project Boinc |
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Hilfe |
Installations
Anleitung (Hilfe) + Registrierung |
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DrugDiscovery @ Home Boinc |
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GoofyxGrid @ Home CPU Boinc |
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GoofyxGrid @ Home NCI Boinc |
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GPUGRID.net Boinc |
Website |
https://www.gpugrid.net/ |
About |
"
GPUGRID.net is a volunteer distributed computing project for biomedical research from the Universitat Pompeu Fabra
in Barcelona (Spain). GPUGRID is made of many graphics cards (GPUs) joined together to deliver
high-performance all-atom biomolecular simulations. The molecular simulations performed by our
volunteers are some of the most common types performed by scientists in the field, but they are also some
of the most computationally demanding and usually require a supercomputer. Running GPUGRID on GPUs
innovates volunteer computing by delivering supercomputing class applications on a cost effective infrastructure
which will greatly impact the way biomedical research is performed.Our activities pursue exclusively scientific
and academic goals, with the invaluable help of all the volunteers that donate computing power to the
GPUGRID.net project in order to advance scientific research. We would like to thank them all here." |
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Team |
Our
GPUGRID.net Boinc Team ( Matrix World Search Team ) |
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this team! |
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GPUGRID.net Boinc ( Matrix World Search Team ) |
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Client Download |
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GPUGRID.net Boinc |
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Installations
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MindModeling @ Home (Beta) Boinc |
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NumberFields @ Home Boinc |
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primaboinca Boinc |
Website |
http://www.primaboinca.com/ |
About |
"
This project concerns itself with two hypotheses in number theory. Both are conjectures for
the identification of prime numbers. The first conjecture (Agrawal's Conjecture) was the basis
for the formulation of the first deterministic prime test algorithm in polynomial time (AKS algorithm).
Hendrik Lenstras and Carl Pomerances heuristic for this conjecture suggests that there must be an
infinite number of counterexamples. So far, however, no counterexamples are known. This hypothesis was
tested for n < 1010 without having found a counterexample. The second conjecture (Popovych's conjecture)
adds a further condition to Agrawals conjecture and therefore logically strengthens the conjecture. If this
hypothesis would be correct, the time of a deterministic prime test could be reduced from O(log N)6
(currently most efficient version of the AKS algorithm) to O(log N)3.
"
[mehr
Info] |
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Team |
Our
primaboinca Boinc Team ( Matrix World Search Team ) |
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this team! |
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primaboinca Boinc Team ( Matrix World Search Team ) |
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Client Download |
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primaboinca Boinc |
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Hilfe |
Installations
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SZTAKI Desktop Grid Boinc |
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VGTU project @ Home Boinc |
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World Community Grid Project Boinc |
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Projekte mit ihrem eigenem Client |
Folding
@ Home |
Website |
http://folding.stanford.edu/ |
About |
"Folding@Home
is a distributed computing project which studies
protein folding, misfolding, aggregation, and
related diseases. We use novel computational
methods and large scale distributed computing,
to simulate timescales thousands to millions
of times longer than previously achieved. This
has allowed us to simulate folding for the first
time, and to now direct our approach to examine
folding related disease." |
Our
Team |
Our
Folding @ Home Team (ID TEAM = # 1213) |
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this team! |
Join
Folding @ Home Research (Download Site) |
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Muon1
Distributed Particle Accelerator Design |
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Boinc Test Client Projekte |
RALPH @ Home Boinc **Testing for Rosetta@Home** |
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Albert @ Home Boinc **Testing for Einstein@Home** |
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