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- Einstein fundamental equation 爱因斯坦基本方程式
- Then a 2D velocity function was used to approximate the velocity distribution of entrained flow to simplify the fundamental equation. 然后用一个二维函数来近似引射流的速度分布,对导出的基本方程进行简化;
- In line with this concept, the author improves the fundamental equation of dynamic stress that ASME published early, derives again, and point out the gateway to reducing the resonance stress of the blade. 本着这一观念对 ASME早期发表的动应力基本方程进行改进 ,重新作了推导 ,并指出了降低叶片共振应力的途径。
- This paper gives the fundamental equation of electric circuit of switched reluctance generator(SRG).The phase flux linkage,indutance and phase current of SRG are discussed based on unsaturated magnetic circuit. 给出了开关磁阻无刷发电机的相电路基本方程,分析了基于不饱和磁路条件的相磁链、相电感和相电流。
- Basing on fundamental equations of three dimensional elasticity,and introducting dirac function,a state equation is established. 基于三维弹性力学的基本方程 ,引入Dirac函数 ,导出了周边固支叠层板的状态方程。
- macroscopic fundamental equation 宏观基本方程(式)
- Improvement of fundamental equation of water hammer 水击基本方程的改进
- Einstein put forward his new theory of relativity. 爱因斯坦提出了相对论的新学说。
- the fundamental equation of wave mechanics. 波动力学的基本方程。
- Einstein was distinguished for his originality. 爱因斯坦以其独创性称著。
- The fundamental equations of the HPM propagation in the atmosphere under the beam flux one-dimension assumption are given. 给出了束流1维近似下微波大气传输的基本方程组。
- Einstein's theory of relativity. 爱因斯坦的相对论。
- thermodynamics fundamental equation 热力学基本方程
- Few men endowed with the brain of an Einstein. 很少有人具有爱因斯坦的智慧。
- displacement fundamental equation 位移型基本方程
- Einstein's theory marked a new epoch in physics. 爱因斯坦理论开创了物理学的新纪元。
- In the Chapter 2, the parameters variable and the control strategy of FNNS are presented based on the analysis of philosophy and fundamental equations and control strategy in DTC. 第二章在分析直接转矩控制的工作原理、基本方程、控制方案的基础上,给出了神经网络及模糊控制系统的参戮变量及控制策略。
- Einstein is distinguished for his originality. 爱因斯坦以其独创性称著。
- Einstein make a great contribution to science. 爱因斯坦对科学作出了伟大的贡献。
- Then we provide a rigorous and sound theoretical basis of variational finite element method and boundary element method for calculating the accurately fundamental equations. 从而为求取较为精确的入水冲击问题基本方程的变分有限元及边界元方法奠定了严密的理论基础.
