动态分析-流程对比分析-流程持续时间分析——在这一报告(图15)中,您可以看到将来流程的速度是手工流程的二倍。
Dynamic Analysis - process Comparison Analysis - process Duration Comparison a "In this report (Figure 15), you can see that the To-Be process is twice as fast as the manual process."
通过位置相关函数、速度时空演化图、驰豫时间和序参量的计算,研究优先随机慢化对交通流的影响。
By computing the spatial correlation function, the evolution plots of velocity, the relaxation time and the order parameter, the effect of top-priority of randomization on traffic flow is studied.
之后,把速度平面上各点的速度乘以时间平面图上反射时间的一半,得出深度平面图。
After that, take velocity of each point on the plan, multiply by half reflection time on time plan obtaining depth map.
并对如何提高编程速度、缩短程时间,提高可靠性和容错能力进行了详细的论述。同时给出了智能编程算法、智能编程器的设计方案及其原理图。
Moreover the article discusses the details of how to increase the programming speed and how to decrease the programming time, raise the reliability and fault-tolerant capability.
应用经食管超声心动图获得二维图像,全方向M型超声显示并测量房间隔运动时的厚度、波幅时间及速度。
Two dimensional image was obtained by transesophageal echocardiography. The thickness, wave time and velocity were showed during atrial septal motion by omni directional M mode echocardiography (OME).
关于一个从静止状态自由下落物体在经过各连续时间间隔后的位置和速度(图略)在下面进行讨论。
The position and speed of a body falling freely from rest after successive intervals of time (figure not shown) is dealt with in what follows.
以异质性计算模型为依据,分析运行图异质性的影响因素,包括不同速度差、不同列车比例、区间长度、天窗类型、缓冲时间等。
According to calculate method, the paper analyzed the influencing factors about heterogeneity, including velocity difference, proportion difference, interval length, buffer time.
此软件的应用,大大提高了整个公司的开发设计能力,我们将缩短了开发时间,以最快的速度提供给客户直观的覆盖面模拟效果图。
The using of this software increased the development ability of our company, we have curtailed the time of exploit, and offer our customer the direct covering simulated pictures at the shortest time.
目的通过组织速度图舒张时间、肺静脉频谱及二尖瓣环E/A比值评价冠心病患者左室舒张功能。
Objective To evaluate the clinical value of tissue Doppler imaging(TDI) and pulmonary venous flow spectrum in the assessment of left ventricular diastolic function by E/A ratio.
数值模拟了不同海拔高度、不同来流速度、不同弹丸头部半径、不同半锥角条件下弹丸的烧蚀情况,给出了弹丸按时间顺序排列的烧蚀外形图。
At the conditions of different altitudes, velocity, shapes, the deformation of projectile are numerical simulated. The ablation profiles of the projectile are given in chronological orders.
数值模拟了不同海拔高度、不同来流速度、不同弹丸头部半径、不同半锥角条件下弹丸的烧蚀情况,给出了弹丸按时间顺序排列的烧蚀外形图。
At the conditions of different altitudes, velocity, shapes, the deformation of projectile are numerical simulated. The ablation profiles of the projectile are given in chronological orders.
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