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本帖最后由 金鹏 于 2015-6-19 09:10 编辑
新包扎堆推出啊 可惜都是N卡独占,赵雨桐童鞋离开了剩下这些人玩不转A卡了?

moving 9836 to ADVHi all,
I'm moving projects 9832-5 to ADV. They are refined versions of past projects 9810-9817 and 9820-9827. The science is the same as before: Re: new GPU project 9836 for betaThanks to everybody for testing p9832-5. I didn't see any errors on my side, and I'm moving them to ADV.
Project 9836 is now ready for beta. I'm changing the topic of this thread instead of starting a new one, because p9836 is pretty similar to 9832-5. The scientific description is the same, only the base credit is a bit different:
project 9836
base credit 7611
20K atoms
Deadline 14.0 days, timeout 10.0 days, k-factor 0.75.
Only NVidia GPUs, Linux/Win moving 9832-5 to ADVHi all,
I'm moving projects 9832-5 to ADV. They are refined versions of past projects 9810-9817 and 9820-9827. The science is the same as before: new GPU projects 9832-9835 for betaDear beta-testers,
Here are several new projects, 9832-5. They are refined versions of past projects 9810-9817 and 9820-9827. The science is the same as before:
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Go big by going… small! We want to study really large proteins and protein complexes, maybe as large as ribosomes or ion channels in neurons. One possible way to reach this goal is to run computations for each part of a big complex separately, and then assemble the resulting models together. We think we know how to do so, but first we need to test our approach on simpler systems.
Insulin is a small protein used by the pancreas to signal to the whole organism whether to consume more glucose or not. Disruptions in the processes of secreting and sensing insulin lead to various diseases, including diabetes mellitus, metabolic syndrome and polycystic ovary syndrome. Insulin can form dimers (complexes consisting of two insulin molecules), hexamers (complexes of six insulin molecules) and even larger aggregates resembling those formed under Alzheimer’s, but only the monomer is physiologically active. In this project, we want to: (1) run computations for the insulin monomer and the insulin dimer; (2) use the model of the insulin monomer from step 1 and our new method to build a model of the insulin dimer; (3) compare the model of the dimer built by our new method (from step 2) with the model of the dimer obtained directly from the simulations for the dimer (from step 1), and see whether our new method works.
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projects 9832 9833 9834 9835
base credit 6985 7013 6996 7031
Both projects:
20K atoms in each project
Deadline 14.0 days, timeout 10.0 days, k-factor 0.75.
Only NVidia GPUs, Linux/Win
Looking forward to your feedback!
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