algebraic equation

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  • 代数方程,代数方程式
1. Optimum bias is expressed through a simple algebraic equation.
最优偏置参数能用一个易于求解的代数方程表示。

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2. This reduces the problem to the solution of an algebraic equation.
这减少了问题的解决,一个代数方程。

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3. We now have an algebraic equation where we can solve for B steady state.
我们现在有一个代数方程,可以求解B稳态。

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4. The solving of nonlinear algebraic equation system still needs further study.
非线性代数方程组的求解是一个尚未完全解决的问题。

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5. Based on the fully Cartesian coordinates, a differential/algebraic equation system of multibod.
利用完全笛卡尔坐标描述多刚体系统,建立多刚体系统动力学微分-代数方程。

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6. In solving system of linear algebraic equation with iteration method, the error checking is discussed.
讨论使用迭代法解线性代数方程组的误差检验问题。

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7. Besides, with the calculator the Riccati algebraic equation was solved to obtain the optimum control system.
并使用计算机来求解代数黎卡堤方程,以实现系统的最优控制系统。

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8. The application of numerical value method to structure analysis leads to solving a set of algebraic equation.
结构分析的数值方法最终归结为代数方程组的求解。

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9. To move (a term) from one side of an algebraic equation to the other side, reversing its sign to maintain equality.
移项把(一个项)从代数方程的一边移到另一边。

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10. The equivalauce of roots and solutions between algebraic equation and algebraic equation with time lags is considered.
也考虑了在根与解的问越上代数方程与具有滞后的代数方程的等价性。

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11. Using this method, the differential equation will be developed into a series of algebraic equations. and they are ea…
用这种方法,微分方程将变为一组代数方程.它们很容易求解。最后给出了一数值例子。

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12. According to the theory about logic algebraic equation, the notion of lattice implication algebraic equation was proposed.
根据逻辑代数方程理论,提出了格蕴涵代数方程的概念。

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13. The boundary integral equation in homogeneous media was dispersed into algebraic equations through the use of spline function.
采用样条插值函数将均匀介质的边界积分方程离散为代数方程组。

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14. Governing equation discrete, solving of the conjugated algebraic equation set and SIMPLE method are also discussed in this paper.
同时对方程离散、方程组的耦联求解以及SIMPLE算法等数值计算以及湍流及其模型等问题进行了论述。

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15. This paper presents a new method in which all roots of a higher degree algebraic equation with real coefficients can be found out.
本文介绍了一种求实系数高次代数方程全部根的新方法。

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16. The second step deals with nonlinearity by solving a nonlinear algebraic equation (group) and satisfies constraint by desaturation.
第二步通过求解非线性代数方程(组)来处理非线性并通过解饱和来满足约束。

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17. The algebraic equation from the dual boundary integral equations(DBIE) was solved using the generalized minimum residual method(GMRES).
基于对偶边界积分方程(DBIE)构造代数方程组,采用广义极小残值迭代法(GMRES)求解。

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18. After partial differential equations was changed into cubic algebraic equation, accurate solution of the structure was able to be obtained.
将偏微分控制方程化为三次代数方程,获得结构内力的精确解。

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19. Apply Lagrange equation of the first kind to the system, and get a set of the differential - algebraic equations (DAEs) of its absolute coordinates.
对系统应用第一类拉格朗日方程,得到系统位形坐标的微分—代数方程组。

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20. Ordinary differential equation with constant coefficients transform into algebraic equations that can be used to implement the transfer function concept.
常系数的常微分方程变换为代数方程可以用于实现传递函数的概念。

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21. By using the orthogonality condition of augmented eigenvector of multibody system, the algebraic equation group with unknowns of structure parameter is formed.
利用多体系统增广特征矢量的正交性条件,可建立以系统物理参数为未知数的代数方程组。

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22. This new method is of considerable value in theory and application and also is one of the effective techniques for solving algebraic equation by numerical calculation.
此方法是用数值计算求解代数方程的比较有效的方法之一,具有一定的理论价值和应用价值。

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23. Double Angle formula can transform the circular function equation to a biquadratic algebraic equation, and the analysis solution can be solved by extract equation directly.
用倍角公式可将该三角函数方程转化成一个四次代数方程,然后用求根公式直接求出解析解。

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24. In this paper, the existence and the uniqueness of the solutions of the algebraic equation with time lags are investigated, the dependence of solutions on the time lags is investigated also.
本文研究了具有滞后的代数方程解的存在性,唯一性及解对滞后的依赖性。

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25. The standard singular point is an important structure of the differential-algebraic equation systems(DAEs), by which DAEs are differentiated from the ordinary different equation systems (ODEs).
标准奇异点是微分代数方程系统区别于常微分方程系统的一个标志性的拓扑结构,具有重要的理论研究意义。

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26. Two-step model predictive control is applied, which decomposes the MPC problem into a dynamic optimization problem upon linear model and a static rooting problem of nonlinear algebraic equation.
采用两步法预测控制,即将预测控制问题分解为一基于线性模型的的动态优化问题及一非线性模型的静态求根问题。

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27. The key to power distribution system is to ignore transient process in this sub-system and to draw the network equivalent circuit diagram, therefore its node voltage equation is algebraic equation.
配电子系统的建模关键是忽略其内部的暂态过程并作出了网络的等值电路图,因而依此建立的节点电压方程为代数方程。

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28. The key to power distribution system is to ignore transient process in this sub-system and to draw the network equivalent circuit diagram, therefore its node voltage equation is algebraic equation.
配电子系统的建模关键是忽略其内部的暂态过程并作出了网络的等值电路图,因而依此建立的节点电压方程为代数方程。

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    1. This is an algebraic equation, deduced from experimental results.
      这是一种由实验结果归纳出来的代数方程。
    2. In this paper,A method is introduced to expand the determinat algebraically to result in a scalar polynomial equation for the eigenvalues.
      本文将其伴随矩阵代数展开产生一组代数方程来确定特征值。

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