An Intelligent Approach for Virtual Chemistry Laboratory

S. Mehta, Monika Bajaj, H. Banati
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引用次数: 3

Abstract

Formal learning has shifted from the confines of institutional walls to our home computers and even to our mobiles. It is often felt that the concept of e-learning can be successfully applied to theoretical subjects but when it comes to teaching of science subjects like chemistry where hands on practical training is must, it is inadequate. This chapter presents a hybrid approach (amalgamation of concepts of machine learning technique with soft computing paradigm) to develop an intelligent virtual chemistry laboratory (IVCL) tool for simulating chemical experiments online. Tool presents an easy to use web based interface, which takes as input the reactants and presents results in the form of - type of reaction occurred and the list of possible products. Technically, the IVCL tool utilizes naïve bayes algorithm to classify the type of reactions and then applies genetic algorithm inspired approach to generate the products. Subsequently it employs system of equations method to balance the reactions. Experimental evaluations reveal that proposed IVCL tool runs with 95% accuracy.
一种虚拟化学实验室的智能化方法
正规的学习已经从学校围墙的限制转移到我们的家用电脑,甚至移动设备上。人们常常认为,电子学习的概念可以成功地应用于理论学科,但当涉及到化学等科学学科的教学时,它是不够的,因为这些学科必须进行实践训练。本章介绍了一种混合方法(机器学习技术与软计算范式概念的融合)来开发用于在线模拟化学实验的智能虚拟化学实验室(IVCL)工具。工具提供了一个易于使用的基于web的界面,它以反应物为输入,并以发生的反应类型和可能产物列表的形式呈现结果。技术上,IVCL工具利用naïve贝叶斯算法对反应类型进行分类,然后应用遗传算法启发的方法生成产物。随后采用方程组法对反应进行平衡。实验评估表明,所提出的IVCL工具的准确率为95%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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