提取科学研究中的计算机建模[j]。化学科学

E. Ibezim, P. Duchowicz, N. Ibezim, M. Sanservino, E. Castro
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引用次数: 0

摘要

在基础科学,尤其是精确科学中,建模已经成为一种成熟的研究工具。具体地说,在化学学科中,它有很大的用处。它的使用可以追溯到17世纪,包括计算化学、化学信息学、分子力学、化学动力学、分子动力学、分子图形学和算法等广泛领域。建模已广泛应用于发现新的化合物和解释迄今为止无法通过实验室实验程序解释的一些化学性质。在建模中,确定总能量以预测分子结构的方法包括从头算法、密度泛函法和半经验/经验方法。几种计算机软件已被用于基于化学的建模,包括HUMO-LUMO, ATMOL, GAUSSIAN, IBMOL和POLYAYTOM。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computer - based modeling in extract sciences research -I. Chemical Sciences
Modeling has come of age as a research tool in the basic sciences, especially the exact sciences. Specifically, in the discipline of chemistry, it has been of great utility. Its use dates back to the 17th Century and includes such wide areas as computational chemistry, chemoinformatics, molecular mechanics, chemical dynamics, molecular dynamics, molecular graphics and algorithms. Modeling has been employed extensively in discovering newer chemical compounds and in explaining some chemical properties hitherto unexplained by laboratory experimental procedures. In modeling, some ways of determining the total energy to predict molecular structures include the ab initio method, density functional method and the semi-empirical/empirical methods. Several computer softwares have been employed in chemistrybased modeling including the HUMO-LUMO, ATMOL, GAUSSIAN, IBMOL, and POLYAYTOM,
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