首页> 外文期刊>International Journal of Quantum Chemistry >APPLICATION OF LOCALIZED MOLECULAR ORBITALS TO THE SOLUTION OF SEMIEMPIRICAL SELF-CONSISTENT FIELD EQUATIONS
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APPLICATION OF LOCALIZED MOLECULAR ORBITALS TO THE SOLUTION OF SEMIEMPIRICAL SELF-CONSISTENT FIELD EQUATIONS

机译:局部分子轨道在半自洽场方程的求解中的应用

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摘要

When conventional matrix algebra is used to solve the semiempirical self-consistent field equations for large systems, the time required rises as the third power of the size of the system A consequence of this is that self-consistent calculations of large systems such as enzymes ate impractical. By using localized molecular orbitals instead of matrix methods, the time required for these systems can be made almost proportional to the size of the system. In partial geometry optimizations, the time required depends only upon the size of the fragment being optimized and is almost independent of the size of the whole system. (C) 1996 John Wiley & sons, Inc. [References: 11]
机译:当使用常规矩阵代数求解大型系统的半经验自洽场方程时,所需时间随系统大小的三次方而增加。其结果是,大型系统(例如酶)的自洽计算会吃掉不切实际的。通过使用局部分子轨道代替矩阵方法,可以使这些系统所需的时间几乎与系统的大小成比例。在部分几何优化中,所需时间仅取决于要优化的片段的大小,并且几乎与整个系统的大小无关。 (C)1996 John Wiley&sons,Inc. [参考:11]

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