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放电时间的英文

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"放电时间"怎么读用"放电时间"造句

英文翻译手机手机版

  • discharge time
  • time of discharge

例句与用法

  • What are the advantages of li - polymer battery
    碱锰电池是否真比锌碳电池的放电时间长?
  • Electrical discharge time constant of a detector
    检波器的放电时间常数
  • What are the voltage of difference cell types and the usage area
    电池电池组放电时间短的可能原因有哪些
  • To the discharge in the air gap , with the increase of applied voltage , the discharge area is larger , and the time interval is smaller , and discharge pulses frequency is higher
    对于间隙中的放电情况,施加电压越高,放电区域越大,放电时间间隔越小,放电脉冲频率越高;电压进一步升高,放电转化为稳定的辉光放电。
  • The surface of pylen nonwoven fabric was treated by argon plasma treatment , and the effects of the plasma power , plasma treating time and pressure on the mechanical properties of pylen nonwoven fabric were studied
    摘要研究了应用氩气等离子体表面改性技术对丙纶非织造织物进行处理的技术,探讨了处理时放电功率、放电时间、反应压力等对丙纶非织造织物的力学性能的影响。
  • It use new materials that making the resistance of the battery less , and it also use the up - to - date technology , so that making the battery have such lodging characters . consequently , alkali - manganese battery will be using broadly in the future
    碱锰电池是当代新型的高能电池,它具有容量大、放电时间长、放电电压平稳等特点,故而是较高档次又应用非常广泛的化学电源。
  • The performance aim requires the discharge time is longer than 5 minutes at 10c , the middle voltage is more than 1 . 0v . the discharge capacity is above 60 % at 20a and 0 . the life time of discharging at 10a and 2a alternately is over 200 cycles
    在研制电池的性能目标中,要求电池ioc放电时间在5分钟以上,中值电压高于1 . 0v ;电池具有0 20a放电性能,放电容量达到标称容量的60以上;电池循环寿命长, 2a 、 10a交替放电循环寿命超过200次。
  • In present study , single fibre recording in vivo from dorsal root on chronically compressed drg model was used . we analyzed the characters of isi series of oscillation firing of type a neurons induced by veratridine , an inhibitor of inactivation gate of sodium channel . so we can establish a basis for understanding the relationship between the inactivation gate of sodium channel and the firing pattern , so as to explore the relationship between the firing pattern and pain
    本研究在大鼠背根节慢性压迫模型上,利用在体单纤维记录方法,观察与分析na通道失活门抑制剂藜芦碱引起受损背根节a类神经元放电isi序列发生的变化特征,为了解na通道失活门与放电型式的关系以及进一步探索放电时间型式与疼痛的关系奠定基础。
  • The sequence of two patterns presence is changed alternately , that is , one pattern will appear at the second pulse of total pattern in this half cycle if it appears at first pulse in last half cycle . the stability of square pattern was studied by considering the interaction among the wall charges . the discharge moments of individual filament alternate from long one to short in the square pattern , which can been explained by using the breakdown and quench model through considering the wall discharge accumulated on the dielectric layers
    实验研究了正方网格斑图与混合气体的比例及外加电压的关系,给出了班图类型随上述条件变化的相图;实验采用光学方法对正方网格斑图进行了时空动力学测量,发现正方网格斑图是由两套正方网格斑图相互嵌套而成,其中一套的微放电丝位于另一套正方形单元的中心,这两套微放电丝交替进行放电;考虑到壁电荷之间的相互作用,研究了正方网格斑图的稳定性;实验发现正方网格斑图的微放电丝放电时间间隔是长短交替变化的,考虑到电介质表面积累的壁电荷的作用,使用击穿?熄灭方程很好的解释了该现象。
  • Finally , based on the results of theory and simulation , a model of reluctance coil launcher is realized . it is proved that the new launcher overcomes the shortcomings of the traditional coil launcher whose discharge time is difficult to control and structure is complex . the excellent performance of the launcher is proved by the experiment data
    最后,根据理论分析和仿真结果,搭建了一种磁阻型线圈发射系统,实验结果说明该发射系统克服了传统磁阻型发射器放电时间难于控制和线圈结构复杂的缺点,实验数据很好地验证了新型发射器的理论设计和仿真结果,为今后的学习积累了实验数据和实践经验,为进一步的研究探索提供了指导。
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