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The GROMOS Biomolecular Simulation Program Package

The Journal of Physical Chemistry A · 1999 · Vol. 103(19) · pp. 3596–3607
Walter R. P. ScottPhilippe H. HünenbergerIlario G. TironiAlan E. MarkSalomon R. BilleterJens FennenAndrew E. TordaThomas HuberPéter KrügerWilfred F. van Gunsteren

Abstract

We present the newest version of the GROningen MOlecular Simulation program package, GROMOS96. GROMOS96 has been developed for the dynamic modelling of (bio)molecules using the methods of molecular dynamics, stochastic dynamics, and energy minimization as well as the path-integral formalism. An overview of its functionality is given, highlighting methodology not present in the last major release, GROMOS87. The organization of the code is outlined, and reliability, testing, and efficiency issues involved in the design of this large (73 000 lines of FORTRAN77 code) and complex package are discussed. Finally, we present two applications illustrating new functionality: local elevation simulation and molecular dynamics in four spatial dimensions.

Protein Structure and DynamicsSpectroscopy and Quantum Chemical StudiesQuantum, superfluid, helium dynamicsMolecular dynamicsComputer scienceFormalism (music)Code (set theory)Computational scienceChemistryProgramming languageComputational chemistry
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