1.
INFLUENCE OF DIPOLE-DIPOLE INTERACTION BETWEEN ATOMS ON THE ATOMIC DIPOLE AMPLITUDE-SQUARED SQUEEZING;
原子间相互作用对双原子偶极振幅平方压缩的影响
2.
Study on the Properties of Unequal-Power N_j-th Power amplitude-Squeezing of Multimode Superposition State Light Field with the Superposition of Two Symmetrical Quantum States;
两对称态叠加多模叠加态光场的部分奇次N_j次方振幅压缩
3.
Broad Nonlinear EqualOrder Nth Power YSqueezing ofMSCS Light Field of Superposition State with Two Quantum States of Unequal Mode amplitude;
不等模振幅的两态叠加MSCS光场的广义非线性等阶N次方Y压缩
4.
Experimental generation of bright green light in amplitude_squeezed state via extracavity frequency doubler
用外腔谐振倍频产生明亮绿光振幅压缩态光场
5.
The characteristic of the amplitude Nth power squeezing of binomial like state without vacuum has been investigated.
文章研究了不包含真空态的类二项式迭加态的光场的振幅N次方压缩特性。
6.
The Equal-order Nth Power H-Squeezing in A Sort Amplitude-mixing Superposition Light Field State with Two Nonsymmetry Quantum Sate;
一类振幅混合两态叠加非对称多模叠加态光场的等阶N次方H压缩
7.
Classical intensity and amplitude effect on generalized nonlinear equal-power N th power Y-squeezing
经典强度和振幅的空间分布对三态叠加多模光场N次方Y压缩的影响
8.
The KdV Equation of Rossby Wave in Barotropic Fluid;
正压流体中Rossby波振幅的KdV方程
9.
Research on Method of Vibration Signal Compression for Compressor Based on DCT
基于DCT的压缩机振动信号压缩方法研究
10.
Analysis and Processing of the Vibration of Turbine Compressor Rotor
透平压缩机转子振动原因分析及处理
11.
The Influence of Intensity Gaussian Distribution on Amplitude Squeezing Properties of Multimode Functional Even Coherent State;
强度高斯分布对多模偶相干态高次振幅压缩特性的影响
12.
The Generalized Nonlinear Unequalled-order Higher order Amplitude Squeezing in the Unsymmetrical Multi-mode Schrodinger Cat State Light Field;
非对称MSCS光场的广义非线性不等阶高阶振幅压缩
13.
Method to Reduce Speed Ripples of Compressor PMSM
压缩机用永磁同步电机减振降噪方案
14.
Inquiry Vibration Analysis Method of Reciprocating Compressor Pipeline
往复压缩机管线的振动分析方法探究
15.
plitude-controlled clamp
电压振幅箝位控制电路
16.
The cause of turbine compressor surge was analyzed in air abruption set. A new method of pipeline technical innovation is put forward.
分析了空分装置中透平压缩机产生喘振的原因,提出了管网系统技术改造方案。
17.
The third method is the time-average approach and is particularly applicable to rapid, small amplitude, oscillatory systems.
第三种方法是时间平均法,特别适用于以小振幅快速振动的系统。
18.
Finite Element Method Simulate Piping Vibration of Reciprocating Compressor
有限元方法数值模拟往复压缩机管路的振动