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 阶梯宽度
 “阶梯宽度”译为未确定词的双语例句
 The numerical results of ± J Ising lattices are the followings: 1) the step width of each hysteresis curve is 2J; 对计算结果的分析得出:(a)磁滞回线的阶梯宽度为2J; 短句来源 This paper applied the analysis method of signal and system, has deduced an integrate formula of charging effioiency of step charging power source, From the formula we come to the conclusion that charging efficiency η of a step charging power source is not only relating to the stop number (N), but also to the equivelent resistance of the network, charging electric capacity and the width of the step. This explains the reason of charging frequency of a step charging power source cannot be used higher. 本文运用信号为系统的分析方法,导出了较为完整的阶梯充电电源的充电效率,从而得出阶梯充电电源的充电效η率不仅与N有关,而且与网络等效电阻、充电电容器及阶梯宽度有关的结论,说明了阶梯充电电源充电频率不高的原因。 短句来源
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 Ladder Summer Camp 阶梯夏令营 短句来源 Ladder Sommer Camp 阶梯夏令营 短句来源 The numerical results of ± J Ising lattices are the followings: 1) the step width of each hysteresis curve is 2J; 对计算结果的分析得出:(a)磁滞回线的阶梯宽度为2J; 短句来源 The height, α, and the width, b, of the superledges are about 320—850 and 1500—1800 A respectively. ,宽度b为1500—1800(?) 短句来源 (4)water width of river; 4)水体宽度; 短句来源

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 stairway width
 A stairway shall have 1 sturdy handrail per 12 feet of the stairway width or fraction thereof.
 This paper applied the analysis method of signal and system, has deduced an integrate formula of charging effioiency of step charging power source, From the formula we come to the conclusion that charging efficiency η of a step charging power source is not only relating to the stop number (N), but also to the equivelent resistance of the network, charging electric capacity and the width of the step. This explains the reason of charging frequency of a step charging power source cannot be used higher. And it is... This paper applied the analysis method of signal and system, has deduced an integrate formula of charging effioiency of step charging power source, From the formula we come to the conclusion that charging efficiency η of a step charging power source is not only relating to the stop number (N), but also to the equivelent resistance of the network, charging electric capacity and the width of the step. This explains the reason of charging frequency of a step charging power source cannot be used higher. And it is helpful to the step charging power sources designers. 本文运用信号为系统的分析方法,导出了较为完整的阶梯充电电源的充电效率,从而得出阶梯充电电源的充电效η率不仅与N有关,而且与网络等效电阻、充电电容器及阶梯宽度有关的结论,说明了阶梯充电电源充电频率不高的原因。这对从事设计阶梯充电电源的工程技术人员是有一定的帮助的。
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