1) low-velocity intense source
低速强源
1.
A slow atomic beam has been obtained with a low-velocity intense source (LVIS) and used to transfer atoms into an ultra-high-vacuum (UHV) MOT.
从低速强源中获得慢原子束,向超高真空磁光阱进行原子转移。
2) power supply for electrolyzation strengthening treatment of high-speed-steel
高速钢电解强化电源
3) Low velocity
低速
1.
Low blood flow velocity measurements using Doppler ultrasound technique;
利用超声多普勒技术测量低速血流
2.
The regularity analysis of low velocity free rotation of single axis air bearing table
单轴气浮台低速自由转动规律分析
3.
On the basis of a lot of experimental investigation the paper has demonstrated the occurrence of the starting pressure at porous flow and nonlinear non-darcy rule during low velocity flow through porous media using the method analyzing the experimental data characteristic.
在大量实验研究的基础上 ,笔者针对低速非达西渗流曲线普遍近似于线性通过坐标原点的表观现象 ,采用实验数据特征分析的方法 ,进一步论证了存在渗流启动压力和低速渗流时出现非线性的低速非达西渗流规
4) low speed
低速
1.
Influence of aspect ratio on flow field performance of linear bowed stator in compressor at low speed;
低速条件下展弦比对弯叶片扩压静叶栅流场性能的影响
2.
Speed control for semi-conductor low speed reluctance motor;
半导体换流低速磁阻电动机的速度控制
3.
Fault Diagnosis of the Bearing with Low Speed and Incomplete Revolve and High Load;
超低速旋转不完全重载大轴承故障与诊断探讨
5) Low-speed
低速
1.
Study on Friction Force Model of Cylinder in Low-speed Motion;
气缸低速运动摩擦力模型的研究
2.
The experimental investigation of the sound of splashes of low-speed water entry;
低速物体入水溅落声特性研究
3.
Research on Low-Speed and High-Torque Permanent Magnetic Synchronous Machine Using in Gearless Elevator;
无齿轮电梯用低速大转矩永磁同步电动机的研究
6) Source intensity
源强
1.
Evaluation of source intensity of underground tank explosion accident;
地下储罐爆炸事故源强估算
2.
In this paper the uncertainties of the source intensity of chemical harzadous sudden acci dents on environmental risk assessment have been discussed.
应用几率密度函数可解决事故预测时源强估算的不确定性问题。
3.
This paper is to suggest an estimating method on source intensity of two - phase flash explosion.
文章采用分子运动论的方法计算液体闪蒸过程与气化过程的速率,并具体对液氨的闪蒸爆炸事故源强作了估算与讨论,还与其它估算方法作了对比分析,结果正确,理论性更强,更符合实际情况。
补充资料:低速炸药
分子式:
分子量:
CAS号:
性质:见炸药。
分子量:
CAS号:
性质:见炸药。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条