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离散解的英文

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"离散解"怎么读用"离散解"造句

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  • discrete solution

例句与用法

  • Optimal error estimation on semi - discrete solution of parabolic equation
    抛物型方程半离散解的最优误差估计
  • A g / l - s finite element discrete form is proposed . the discrete solution is stable for any combination of finite element spaces
    并建立了方程的g / l - s有限元离散格式,相应地证明了有限元离散解的存在唯一性。
  • Secondly , we discuss the convergence of a sort of discrete bsdes and simulate its solutions . finally , we discuss stabilities of dbsdes and drbsdes in numerical calculations
    最后,讨论了近似误差在反射型倒向随机微分方程离散解的计算过程中的传播稳定性。
  • We first show that the solution operator s ( t ) is lipschitz continuous , then prove the discrete solution operator s _ ( * ) = 5 ( t _ ( * ) ) satisfy the squeezing property , finally , we get the existence of the exponential attractor m . whose fractal dimensionality is finite
    第四章,研究ginzburg - landau方程在三维空间的指数吸引子的存在性。首先证明解算子s ( t )是lipschitz连续的,然后证明离散解算子s _ * = s ( t _ * )满足挤压性,从而得到指数吸引子m的存在性。
  • The thesis first proofed the existence of the finite element numeric solution ; then presented a kind of high accurary and convergence finite element method defined in galerkin finite element space and proofed its convergence ; finally , provided a kind of special linear finite element method also with high convergence
    我门就一般形式的有限元方法证明了解的存在性,并给出一种定义在一般galerkin有限元空间上的对此类问题具有较高收敛速度和精度的有限西砖石油学虎硕l论文元方法,证明其离散解的收敛性。
  • In chapter two , we consider full disceret scheme of mixed finite element methods for the following initial - value problems of linear integro - differential equations of parabolic in this chapter , we give the error analysis of this full discrete scheme and get optimal error estimates for the discrete solutions of u and p
    第二章讨论下述线性抛物型积分微分方程初边值问题混合有限元方法的后差全离散格式。给出了该全离散格式的误差分析,得到了离散解逼近未知函数u以及伴随速度p的关于空间和时间的最优阶误差估计。
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