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web_service [2019/07/04 07:31]
xfel
web_service [2019/07/04 07:33]
xfel
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-===== **Decode SAXS** =====+===== Decode SAXS =====
  
 The webserver to reconstruct 3D protein models from 1D SAXS profile using machine learning methods The webserver to reconstruct 3D protein models from 1D SAXS profile using machine learning methods
 [[http://​liulab.csrc.ac.cn:​10005/​index | DecodeSAXS]] [[http://​liulab.csrc.ac.cn:​10005/​index | DecodeSAXS]]
  
-===== **SASTBX server** =====+===== SASTBX server=====
  
 The basic functions for the modules implemented in the SASTBX are provided here, including: The basic functions for the modules implemented in the SASTBX are provided here, including:
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 to access the service from intra-CSRC network, click this link [[http://​172.16.16.17/​sastbx|SASTBX-SERVER-at-CSRC]] to access the service from intra-CSRC network, click this link [[http://​172.16.16.17/​sastbx|SASTBX-SERVER-at-CSRC]]
  
-===== **Disulfide Bond Engineering Site prediction** ​=====+===== SSBOND Prediction===== 
 +Disulfide Bond Engineering Site prediction
  
 http://​liulab.csrc.ac.cn/​ssbondpre http://​liulab.csrc.ac.cn/​ssbondpre
  
-===== **Protein Structure Assessment using Neighbhorhood Preference** =====+===== NePre ===== 
 +Protein Structure Assessment using Neighbhorhood Preference ​of amino acid packing
  
 http://​liulab.csrc.ac.cn:​10004/​index/​ http://​liulab.csrc.ac.cn:​10004/​index/​
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-===== **Ion distribution in protein molecules** ​===== +=====IDPM===== 
 + Ion distribution in protein molecules
  
 The ion distributions around amino acids in protein molecules are summarized in this server. The distribution in radial direction, angular space, and 3D space can be visualized. ​ The ion distributions around amino acids in protein molecules are summarized in this server. The distribution in radial direction, angular space, and 3D space can be visualized. ​

Richard Feynman

“everything that is living can be understood in terms of the jiggling and wiggling of atoms”.

and now, we want to watch atoms jiggling and wiggling.

X-rays, electrons, fluorescence light, the advances of photon sciences, together with computational modeling, are making this happen.