化学电源,chemical power
1)chemical power化学电源
1.Discriminative model analysis of chemical power’s combining management化学电源组合管理的判别模型分析
2.The paper,has summarized the categories and the development processes of chemical power and its application in the field of electrical equipment,electrical power,telecommunications and some advanced technologies,and pointed out the cheerful prospects and development direction of chemical power.综述了化学电源发展的基础、化学电源的种类、发展过程及在电器、电力、电讯、尖端科技等方面的应用,并指出了它的美好前景和发展方向。
3.The necessary of public elective course-chemical power was illuminated from the situation of social power application and the development of novel technology.本文从分析现代社会能源应用现状与高科技发展的形势等方面阐述了高等院校开设公共选修课《化学电源》的必要性,探讨了如何提高该课程的教学效果,强调应加强学生的环保意识和社会责任感的培养。
英文短句/例句

1.Infiltration of the Concept of Green Chemistry into Chemical Power Sources Teaching《化学电源》课程教学中绿色化学理念的渗透
2.An Application of PBL in Teaching Chemical Power SourcePBL教学法在电化学工程专业化学电源工艺学教学中的应用
3.Applications of Electron Spin Resonance and Mass Spectroscopy to the Study of Batteries;电子自旋共振和质谱在化学电源研究中的应用
4.Superiority and potential of Mn-based materials in chemical power sources(Ⅰ)锰基化合物在化学电源中的优势与潜力(Ⅰ)
5.The model evident study of technical indicators for classification of chemical power化学电源技术指标分类的模型实证研究
6.Lithium battery is the general name of chemical power sources by using lithium as negative material.锂电池是以含锂材料作负极的化学电源系列的总称。
7.Investigation on Reaction Mechanism of the Electrode in Advanced Power Sources and the Application of in Situ FTIR Spectroscopy;高能化学电源电极反应机理及其现场红外光谱研究
8.Analysis and design of EMC in electrochemistry rectifying power supply电化学整流电源电磁兼容分析与设计
9.The Balancing Circuit in the Source of Electrochemical Rectification;对电化学整流电源中均流问题的探讨
10.The Regulation Economics Analyses of Optimizing Chinese Power Mix Structure;中国电源结构优化的规制经济学分析
11.The Approach to Transforming the Media of Broadcast and Television into the Pedagogical Resourse;广播电视传媒转化为教学资源的途径
12.Novel Energy Source Materials-Study on the Electerode Materials for Electrochemical Capacitor and Lithium Ion Battery;新型能源材料—电化学电容器与锂离子电池电极材料的研究
13.Study of Pulsed Power for Electrothermal-Chemical Launcher and Electrical Characteristic of Plasma Generator;电热化学炮用脉冲电源及等离子体发生器电特性的研究
14.Preparation and Optoelectronic Properties of ZnO Thin Films by Single Source Chemical Vapor Deposition;单源化学气相法制备ZnO薄膜及其光电性质研究
15.Integration and Optimization of Education Resources in Open Education of Regional RTVU;基层电大远程开放教育教学资源的整合与优化
16.The Research into Chemistry Electronic Resource Development Based on the New Curriculum Standard;基于新课程标准的化学电子资源库的开发
17.Mathematical model for Optimal Distribution of Electric Power Resources;电力资源优化配置数学模型的建立与探讨
18.Synthesis of LiFePO_4 cathode material by different Li sources and its Electrochemical performance不同锂源制备LiFePO_4正极材料及其电化学性能研究
相关短句/例句

electrochemical power sources化学电源
1.Electrode reaction mechanism of new electrochemical power sources;新型化学电源的电极反应原理
2.Spectroelectrochemical methods for studies of electrochemical power sources;谱学电化学方法及其在化学电源研究中的应用
3.Some new progresses in the development of new high energy density electrochemical power sources have been briefly reviewed.简要介绍国际上新型高能化学电源的一些研究现状 ,并主要结合课题组的研究工作 ,就锂离子电池纳米相电极材料 ,金属氢化物电极表面电化学性能及其相关电极过程和化学电源研究中谱学电化学方法的应用等进行了总结和回顾 。
3)chemical power source化学电源
1.Therefore,it is the design and production researcher’s duty and the user’s major concern to judge the reliability of the chemical power source according to its diagnostic quantity change.因而根据化学电源的特征量的变化去判断它的可靠性,是研究设计和生产者的责任,也是使用者最为关心的问题。
2.This paper summarizes the use of rare earth materials in the green chemical power sources including melal hydride /nickel secondary battery, fuel cells and lithium-ion batteries The effects of rare earth on the structures and properties of related materials are presented概述了稀土材料在氢化物-镍二次电池、燃料电池、锂离子电池等绿色化学电源中的应用,介绍了稀土对相关材料结构和性能的影响和作用。
3.It also makes the failure mode researches, FTA analysis and Failure Mode Effect and Criticality Analysis (FMECA) based on practical use of the chemical power source.结合化学电源的使用效果,完成了化学电源的故障模式研究和电池故障树(FTA)分析和故障模式影响及危害分析(FMECA)。
4)chemical power sources化学电源
1.Energy situation and the opportunity of chemical power sources;能源形势与化学电源的机遇
2.Information plays an important role both in the course of basic research and industrialization for chemical power sources.信息的获取在化学电源的研究和生产过程中起到至关重要的作用。
5)electrochemical power source化学电源
1.Comparison study on electrochemical power source for electric buses;电动公交车用化学电源的比较研究
6)electrochemistry rectifying power电化学电源
1.Based on Visual Basic and Windows 2000, object-oriented programming method was used to develop the application program of intelligent-design of electrochemistry rectifying power.利用Visual Basic,基于Windows 2000平台,采用面向对象的程序设计方法,开发出具有智能设计功能的电化学电源应用程序。
延伸阅读

化学电源  一种将化学反应的吉布斯函数变化直接转化为电能的装置,习惯上称为电池。它由正、负极和电解质组成,正、负极之间通常放有隔膜,以防止两电极间电子直接接触而产生内部短路。无负荷时,两个电极之间的电位差为电池的开路电压,它决定于电池系统的热力学性质。如两个电极都是可逆的,这就是电池电动势。电池与外电路连接时(有负载时)的工作电压总是低于开路电压,其差值取决于电极过程动力学和电池内部的欧姆电位降损失。进行还原反应的电极,电化学上叫阴极;进行氧化反应的电极,电化学上叫阳极。由图可以看出,阴极是电池的正极,阳极是电池的负极。在各种能源装置中,化学电源的主要特点是机动、使用方便、无噪声、对环境适应性强,十分之一克直至吨级的电池有基本相同的转换效率,广泛用于通讯、国防以及人们日常生活等各个领域。         比能量、比功率、贮存寿命和蓄电池的充放电循环次数等是化学电源的重要指标,是选用化学电源的主要依据。据统计,目前电池品种已超过一百,常用的也有四十多种,但还远不能满足科学技术发展的要求。化学电源一直是电化学研究中的一个重要方向。    化学电源种类繁多,大体上可分为原电池、蓄电池和燃料电池三大类。