• This course consists of several major parts such as ordinary differential equation vectors and analytic geometry derivatives integration and series.

    课程内容包括微分方程、空间解析几何向量代数、多元函数微分学、多元函数积分无穷级数板块

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  • Quantity and space both play a role in analytic geometry, differential geometry, and algebraic geometry.

    数量空间解析几何微分几何和代数几何中发挥作用

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  • It is very difficult to get analytic solution except some very specific cases for the model owing to nonlinear partial differential equation.

    由于非饱和流动数学模型归结为非线性微分方程,除了一些特殊的情况外,很难得到解析

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  • In this paper, the exact analytic method is suggested to solve variable coefficient differential equations under arbitrary, boundary condition.

    本文首次提出精确解析,用以求解任意系数微分方程在任意边界条件下的解。

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  • In this chapter, existence of analytic solutions of an iterative differential equation with state-dependent delays is studied by using a similar method.

    同样使用优级数法讨论一类时滞迭代微分方程解析存在性。

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  • Based on the analysis of CRCP differential cell, a general analytic solution considering nonlinear bond-slip relation between steel bar and concrete and that between concrete and base is deducted.

    通过CRCP微分单元分析,推导了考虑钢筋混凝土混凝土与地基间非线性粘结-滑移关系的温度应力通用解析

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  • On the assumption that the media is an ideal fluid, the analytic solution for differential equations of disturbing flow is obtained.

    理想气体假设下给出了扰动流运动微分方程组解析

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  • In this paper , the undermined function method has been used to study the analytic solution of nonlinear orbit differential equation. In a case four kinds analytic solution are given.

    利用待定函数研究非线性轨道微分方程解析,求出了一类情形下解析

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  • Basing on a partition of region d, we generalize the differential mean-value theorems for analytic functions and conjugate analytic functions to a high order case.

    分割区域d基础将解析函数共轭解析函数微分中值定理推广形式。

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  • A variable length simple pendulum model is introduced, elementary analysis and perturbation analytic solution of nonlinear differential equation for parametric resonance are presented.

    采用可变长度单摆力学模型对秋千振荡给出初等分析,采用微近似法导出了秋千的非线性参数共振解析, 并进行了讨论。

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  • The differential equations that describe the artificial satellite motion are very complicated, and it is impossible to get the analytic express of solution.

    描述人造卫星运动微分方程非常复杂可能给出解的解析表达式。

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  • The differential equations that describe the artificial satellite motion are very complicated, and it is impossible to get the analytic express of solution.

    描述人造卫星运动微分方程非常复杂可能给出解的解析表达式。

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