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Stretching Time and Length Scales in Biomolecular Modelling: Minisymposium Abstract

机译:生物分子建模中的拉伸时间和长度尺度:小核苏联摘要

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摘要

Molecular modelling/simulation techniques have in three decades evolved to a powerful tool and scientific discipline of its own now used in many areas of physics, chemistry, and biology with applications from materials science to biotechnology. These techniques have naturally become applicable for more and complex systems largely thanks to the rapid development in computer technology. However in recent years a variety of new advanced and innovative techniques have been presented to push the time and length scales further towards nano/meso scale applications and soft matter. More efficient computational schemes have been proposed to treat long-ranged interactions, parallel algorithms are proposed to run on high-end fast computers, pc-clusters and heterogeneous GRID environment. Ab initio and hybrid QM/MM methods are becoming routine and developed to treat large systems. Multi-scale modelling schemes across several physical descriptions of matter from quantum mechanical systems with nuclei and electrons all the way to nano/meso/micro/macro levels are maturing rapidly. This minisymposium will highlight several of these latest techniques.
机译:分子建模/仿真技术在发展到一个强大的工具,其自身的科学学科目前在物理,化学的许多领域使用,生物与材料科学与生物技术应用的三个十年。这些技术很自然地为越来越复杂的系统成为适用很大程度上要归功于计算机技术的飞速发展。然而近年来各种新的和先进创新的技术已经被提出,进一步推动了时间和长度尺度对纳米/中尺度应用和软物质。更高效的计算方案被提出来治疗长程相互作用,并行算法提出了高端高速计算机,PC集群和异构的网格环境中运行。从头算和混合QM / MM方法正在成为日常和开发用于治疗大系统。多尺度从量子力学系统的原子核和电子一路纳米/内消旋/微造型跨越物质的几个物理描述方案/宏水平快速成熟。这minisymposium将突出几个的这些最新技术。

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