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CCPs

CCP home page is the Collaborative Computational Projects home page. For convenience, some of the information on that page is summarised here.

What are CCPs?

The Collaborative Computational Projects (CCPs) bring together leading UK expertise in key fields of computational research to tackle large-scale scientific software development, maintenance and distribution. Each project represents many years of intellectual and financial investment. The aim is to capitalise on this investment by encouraging widespread and long term use of the software, and by fostering new initiatives such as High End Computing consortia.

What do CCPs do?

The CCPs enrich UK computational science and engineering research in various ways. They provide a software infrastructure on which important individual research projects can be built. They support both the R&D and exploitation phases of computational research projects. They ensure the development of software which makes optimum use of the whole range of hardware available to the scientific community, from the desktop to the most powerful national supercomputing facilities.

Current CCPs

  1. CCP4 Macromolecular crystallography
  2. CCP5 The computer simulation of condensed matter
  3. CCP9 Computational electronic structure of condensed matter
  4. CCP12 - no link - High performance computing in engineering
  5. CCP-ASEArch Algorithms and software for emerging architectures
  6. CCP-BioSim Biomolecular simulation at the life sciences interface
  7. CCP-EM - no link - Electron cryo-microscopy
  8. CCPi Tomographic imaging
  9. CCPN NMR
  10. CCP-NC NMR crystallography
  11. CCPP Computational plasma physics
  12. CCPQ Quantum dynamics in atomic, molecular and optical physics
  13. CCP-SAS Analysis of structural data in chemical bio0logy and soft condensed matter
  14. CCPForge Collaborative software development environment tool


Former CCPs

  1. CCP1 The electronic structure of molecules (defunct link)
  2. CCP3 Computational studies of surfaces (defunct link)
  3. CCP6 Molecular quantum dynamics
  4. CCP13 Software for fibre and polymer diffraction
  5. CCP14 Powder diffraction