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单电极的英文

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"单电极"怎么读用"单电极"造句

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  • single electrode

例句与用法

  • The metal with the greater single-electrode potential will sacrifice itself to protect the other .
    具有较大单电极电位的金属为保护另一种金属,自身将不断消耗。
  • Coal ldh ( ai : co = l : 2 ) as electrode has a stable structure and good cyclic performance . specific capacitance of its single electrode attains 400f / g
    Ai双氢氧化物结构较稳定,循环性能较好,单电极比容量达到400fig 。
  • Electrochemical measurements show that specific capacitance of single electrode is increased by 15 % and its impedance is only tens of m
    双氢氧化物经水热处理后单电极比容量提高了15 ,达460f4 ,电极内阻仅数十毫欧姆。
  • The specific capacitance of singal electrode could reach 325f / g when the charge - discharge current was 2ma / cm2 , and cycled over 5000 times
    在2ma cm ~ 2的充放电电流下测得的单电极比容量可达325 . 21f g ,循环寿命达5000次。
  • Electrochemical studies revealed the the electrode prepared with such material exhibited a high specific capacitance of 341 f / g . the charge storage mechnism and the attribute to the measured capacitance were investigated
    电化学测试表明,由材料制得的电极具有典型的电化学电容特性,单电极比电容量可高达341f / g ,主要以超电容形式存在。
  • In attempt to directly compare the sound response characters of the same bf neurons or different bf neurons and their interactive relation , the double recording microelectrodes were penetrated into two different neurons in iso - frequnency laminas or hetero - frequency laminas . taking advantage of frequency tonotopical arrangement in 1c of bats , it was explored how the neurons integrated different parallel processes of the same sound information . in the case of which , we hoped to explore the relation between the sound response characters of the central auditory neurons and neural modulation in background noise for the further understanding of the mechanism in the central auditory neurons extracting sound signals
    本研究以大棕蝠( bigbrownbat , eptesicusfuscus )为模型,利用ic声调组构排列成同频层这一结构特点,突破单电极记录和检测神经元的方法,同时推进两单电极至一个同频层或两个同频层的两个不同神经元,试图从细胞水平直接比较两个具有相同和不同最佳频率的神经元声信号的加工处理特征、以及它们之间的相互关系,以期窥探它们在对同一声信号处理过程中的整合奥秘,并以此为基础分析和探讨背景噪声条件下中枢神经元声反应特征与神经调制的关系,以期进一步了解中枢听神经元声信号提取的机制。
  • The aim of this study is to investigate theoretically the possibility for activation of small mammalian myelinated nerve fibers without activating larger ones when stimulating a nerve fiber bundle with a monopolar point electrode using biphasic pulses , which can reduce the electrochemical damage resulted from stimulation pulses to nerve fibers . a simulation system for studying the electrical properties of mammalian myelinated nerve fibers was built based on a simple infinite and homogeneous volume conductor model . by use of an asymmetric but charge - balanced stimulation waveform , the sensitivity of excitation and blocking threshold of nerve fibers to fiber diameter , electrode - fiber distance was calculated . the results show that selective activation of small mammalian myelinated fibers may be possible in a region at some distance from the electrode using biphasic pulses
    本研究的目的是要从理论上探讨利用单电极双向脉冲刺激实现哺乳动物神经纤维选择性刺激, (即当刺激一束神经时,不兴奋粗神经而兴奋细神经)的可能性.双向脉冲刺激可以降低刺激脉冲对神经纤维产生的电化学损伤.为研究哺乳动物有髓神经纤维的电特性,建立了一个基于简单的无穷大、各向同性的容积导体模型的仿真系统.利用该仿真系统,采用“不对称但电荷平衡”的双向脉冲刺激,计算了神经纤维的兴奋和阻断阈值与纤维直径、纤维-电极间距离的关系.结果表明:在距电极一定距离内采用该双向脉冲刺激模式确实可以实现哺乳动物有髓神经纤维的选择性兴奋
  • In the first part of this paper , mn ( iii ) / mn ( ii ) couple in h2so4 was firstly applied as the positive couple to this system , i . e . redox flow cell . its chemical , electrochemical properties , redox kinetics and related parameters were characterized and discussed by rotating disc electrode ( rde ) , cyclic voltammetry ( cv ) , a . c . impedance ( a . c . imp ) , chronoamperometry , tafel curve , and galvanostatic charge / discharge techniques . conclusions have been drawn as follows : 1 . the electrochemical kinetics of mn ( iii ) / mn ( ii ) redox couple in 6 . 3m h2so4 solution were studied by means of rotating disc electrode ( rde ) technique on platinum electrode
    本文第一部分首次成功地将酸性介质中的mn ( iii ) / mn ( ii )电对应用于氧化还原液流电池这一新型储能装置的正极活性材料,通过旋转圆盘( rde ) 、循环伏安( cv ) 、交流阻抗( a . c . imp ) 、恒电位阶跃、 tafel实验以及mn ( iii ) / mn ( ii )单电极的恒流充放电实验,我们得出以下结论: 1 .在旋转圆盘电极上,不同转速范围,不同的极化过电位, mn ( ) / mn ( )体系氧化还原电极过程的控制步骤不同,电荷传递、扩散传质可分别或联合成为控制步骤。
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