如果与电极的配置和尺寸不同,系统提供的变换常数可能无效。
If it is not the same configuration and size as the electrodes, the conversion constants furnished with the system may be invalid.
每个单元都有其特定的常数,该常数是电极之间导电溶液的体积的函数。
Each cell arrangement has a particular constant, which is a function of the volume of the conducting solution between the electrodes.
本文提出了金属缓冲溶液中离子选择电极响应曲线平移法测定配合物的稳定常数。
The method of parallel motion of response curve for lead ion-selective electrode in lead buffers is given to determine the stability constant of Pb-NTA complex in ethanol-water solvent.
本文对具有介质电极的高频放电进行了讨论,对频率、介电常数对放电的影响,阻抗匹配等基本问题进行了探讨。
The paper discusses high frequency discharge with dielectric electrode, emphasizing on the basic issues relating to the influence of frequency, dielectric constant on discharge and impedance match.
利用极化曲线测试法分析了不同碳材料和不同方法制备的铂碳复合电极的塔菲尔常数。
With the method of the polarization curves test, the Tafer constants of the platinum carbon composite electrodes made by different carbon materials and different preparation were tested.
研究了电极过程的可逆性、吸附特性及电极反应机制,求得一系列常数和参数。
The reversibility of electrode process, the character of adsorption and the mechanism of electrode reaction were investigated. A Series of constants and parameters were calculated.
提高瓷的介电常数,减小介质层的厚度,保持电极可靠的接触及降低瓷料的焙烧温度是当前的主要研究课题。
Facing main topics are enhancement of dielectric constant of ceramics, decrease of it "s firing temperature. decrease of dielectric layer thickness and keeping reliable contact of electrodes."
测定了配合物的组成及条件生成常数,对电极反应机制也进行了探讨。
The composition, stability constant and diffusion coefficient of the complex are determined. The mechanism of electrode process has also been discussed.
借由使用高介电常数介电质和高功函数的铱电极,我们达成满足国际半导体技术蓝图所需求性能的高性能金属-绝缘体-金属电容。
By using the high-k TiTaO dielectric an1d the high work-function ir electrode, we have exhibited a high performance MIM capacitor that meets the ITRS roadmap requirements for analog capacitors.
借由使用高介电常数介电质和高功函数的铱电极,我们达成满足国际半导体技术蓝图所需求性能的高性能金属-绝缘体-金属电容。
By using the high-k TiTaO dielectric an1d the high work-function ir electrode, we have exhibited a high performance MIM capacitor that meets the ITRS roadmap requirements for analog capacitors.
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