AUTOMATION OF THE EQUIPMENT FOR MOLECULAR PHYSICS LABORATORY PRACTICE USING THE ARDUINO BOARD

Andriy V. Ryabko, V. Tolmachov
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Abstract

The article deals with the problem of developing a modern computer Interface to traditional installations for laboratory work on physics and search for new, active forms, methods and learning tools that would fit modern trends in the development of education and facilitate training highly professional physics teachers. Modern facilities for research isoprocesses in gases consist of a vessel, the volume of which can be changed, pressure and temperature sensors, device for processing signal from sensors. But the price for such installation is too high for educational institutions. The results of implementation of the method of use of the platform Arduino in a laboratory workshop on molecular physics as a simple and, at the same time, an effective alternative to factory equipment for the study of gas laws are given in the article. Arduino is a hardware computer platform for amateur design, basic components of which is a microcontroller board with I / O elements and Processing development environment. The article contains a description of the hardware platform Arduino Nano and pressure and temperature sensors BMP180, MS5611-01BA03, DS18B20, which are used in the installation for the study of gas laws. An important methodological aspect of laboratory work with the use of Computer and Arduino is the data processing of the experiment. Need experimentally establish a functional relationship between independent measured gas parameters: pressure, volume and temperature. In the laboratory works on the study of gas laws is proposed to use methods of statistical analysis: direct selection method functions and the method of linearization. The isochoric or isochloric process is thermodynamic process, which occurs at a constant volume. In its gases to carry out simply - it is enough to heat (cool) substance in a vessel that does not change its volume. The article describes how to explore isochoric process with the help of the developed device. The given software is a code for working with pressure and temperature sensor. Proposed methodology proved the feasibility of practical use of hardware and computer platform Arduino at the Laboratory for Molecular Physics.
利用arduino板实现分子物理实验室自动化设备的实践
本文论述了在传统物理实验设备的基础上开发现代计算机接口的问题,探索适应现代教育发展趋势的新的、积极的形式、方法和学习工具,促进培养高素质的物理教师。研究气体等过程的现代设备包括一个可改变容积的容器、压力和温度传感器、处理传感器信号的装置。但对于教育机构来说,这种安装的价格太高了。本文给出了利用Arduino平台在分子物理实验室车间中作为一种简单而有效的替代工厂设备进行气体定律研究的方法的实现结果。Arduino是一个业余设计的硬件计算机平台,其基本组件是带有I / O元件的微控制器板和处理开发环境。本文介绍了安装中用于气体规律研究的硬件平台Arduino Nano和压力温度传感器BMP180、MS5611-01BA03、DS18B20。使用计算机和Arduino进行实验工作的一个重要方法学方面是实验的数据处理。需要通过实验建立独立被测气体参数:压力、体积和温度之间的函数关系。在实验室工作中对气体规律的研究提出了采用统计分析的方法:直接选择法、函数法和线性化法。等时过程或等氯气过程是在定容条件下发生的热力学过程。在其气体中进行简单的——加热(冷却)容器内的物质而不改变其体积就足够了。本文介绍了如何利用所研制的装置探索等时程过程。给出的软件是与压力和温度传感器一起工作的代码。提出的方法证明了硬件和计算机平台Arduino在分子物理实验室实际使用的可行性。
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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