Java面向对象程序设计在密立根油滴实验中的应用

在电子科技发达的时代背景下,为提高实验数据处理的效率,实现物理实验数据处理的自动化,以密立根油滴实验为例,运用高效率、结构化、模块化的编程语言,采取面向对象的编程技术,用Java编程语言编写了适用于密立根油滴实验数据处理的程序,计算出元电荷量为1.619×10^-19C,和公认值相比,相对误差为1.038%,并通过比较Visual Basic、Matlab、C语言、Java在物理实验数据处理中的优劣势,说明了Java面向对象程序设计在数据处理乃至科学计算中的优势。...

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Published in实验室研究与探索 Vol. 36; no. 7; pp. 135 - 138
Main Author 苏关东 李宫晟 张鹏 张其星 邵麒 张瑛 全贞淳
Format Journal Article
LanguageChinese
Published 中国石油大学(北京)石油工程学院,北京,102249%中国石油大学(北京)理学院,北京,102249%中国石油大学(北京)机械与储运工程学院,北京,102249%华北电力大学电气与电子工程学院,北京,102206 2017
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ISSN1006-7167

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Summary:在电子科技发达的时代背景下,为提高实验数据处理的效率,实现物理实验数据处理的自动化,以密立根油滴实验为例,运用高效率、结构化、模块化的编程语言,采取面向对象的编程技术,用Java编程语言编写了适用于密立根油滴实验数据处理的程序,计算出元电荷量为1.619×10^-19C,和公认值相比,相对误差为1.038%,并通过比较Visual Basic、Matlab、C语言、Java在物理实验数据处理中的优劣势,说明了Java面向对象程序设计在数据处理乃至科学计算中的优势。
Bibliography:In the era of well-developed electronic technology,in order to improve the efficiency of experiment data processing,realize the automation of data processing in physical experiment, this paper takes Millikan oil drop experiment as the carrier,uses efficient,structured and modular programming language and object-oriented programming technology,a Java language program is written to apply to the Millikan oil drop experiment. The elementary charge is calculated as 1. 619 × 10^-19 C and the relative error is only 1. 038%. Through comparisons with Visual Basic,Matlab,C language,Java has advantages in data processing of physical experiment. This paper further expounds the superiority of the Java programming language in data processing of physical experiment and scientific calculation.
SU Guandong1a, LI Gongsheng1a, ZHANG Peng1b, ZHANG Qixing1a, SHAO Qi1c, ZHANG Ying1a, QUAN Zhenchun2( 1 a. College of Petroleum Engineering; 1b. College of Science; 1 c. College of Mechanical and Transportation Engineering, China Univer
ISSN:1006-7167