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1)  complex potential solution
复势解
1.
Based on the continuous conditions of stress and displacement on the boundary surface,complex potential solutions for an uniform infinite plate with an elliptical inclusion under pulling stress are obtained in this paper.
运用Muskhelishvili复势理论,采用级数法推导了单向拉伸状态下含有椭圆夹杂的均匀无限大平板的基本解;根据界面上应力和位移的连续条件,得到了单向拉伸状态下含有椭圆夹杂的无限大平板的复势解
2)  complex potential
复势
1.
The complex potential approach is used to reduce the problem to Hilbert problem.
应用复势的方法,该问题被化为Hilbert问题,从而分别给出了材料内及裂纹内封闭形式的场解。
2.
In thin paper, ths traditional problems of Complex potential, complex Velocity, elevating force and force moment in the flow around rocket tail profile have been studied by usingthe theory of boundory value problem of analytic functions.
用解析函数边值问题,解决火箭尾翼剖面绕流的复势,复速度,升为及力矩等问题。
3.
The problem was reduced to a Hilbert problem, and then closed_form expressions were obtained, respectively, for the complex potentials in piezoelectric media, the electric field inside the inclusion and the tip fields near the inclusion.
应用Stroh理论 ,研究了两压电介质之间的刚性介电线夹杂问题· 首先该问题被化为Hilbert问题 ,然后分别给出了压电介质内的复势函数解、夹杂内的电场解和夹杂尖端场的解析表达式· 结果表明 ,在夹杂尖端附近 ,所有的场变量均呈现奇异性和振荡性 ,且其强度取决于介质的材料常数和无限场远处的应变· 此外 ,结果还表明 ,当从夹杂内部趋近夹杂尖端时 ,夹杂内的电场也呈现奇异性和振荡
3)  pyrolysis/carbon potential
裂解/碳势
4)  analytical potential
解析势
5)  Solvable potential
可解势
6)  disintegrative dominance
降解优势
1.
The delayed-onset muscle soreness induced by overloaded work is the result of disintegrative dominance,the aggravated disintegration and depolymerization of contractile proteins relative to their synthesis and polymerization,leading to alteration or disruption of contractile structure.
在承受超过习惯负荷的工作以后所诱发的延迟性肌肉酸痛是由于工作停止以后肌肉收缩蛋白的降解、解聚强于组装、聚合的降解优势导致收缩结构改变或解体。
补充资料:村村势势
1.犹言土头土脑。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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