常微分方程
- 网络differential equation;Ordinary Differential Equation;ode
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常微分方程技术及其在固体力学计算中的应用
Ode techniques and applications in Computational Mechanics
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深入探究了常微分方程在微积分创立过程中的原始形态和研究状况。
( 2 ) The primitive formation of ODE in the process of founding calculus are studied .
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N-体问题实际上是一个常微分方程组,它描绘了N个天体的运动规律。
N - body problem is a system of O. D. E.
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变系数n次一阶常微分方程解的稳定性
The Stability of First Constant Differential Equation with Variable Coefficient
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区间值函数和Fuzzy值函数常微分方程解的存在区间及解的延拓性
Existence Interval and Continuation of Solution of Ordinary Differential Equations for Interval Valued Functions and Fuzzy Valued Functions
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一阶常微分方程的MATLAB辅助教学
CAI Teaching of a First-Order Ordinary Differential Equation with MATLAB
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MM教育方式下常微分方程教学实验研究
Teaching Experiments and Study of Ordinary Differential Equation in MM Education Mode
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研究了一类非线性常微分方程的非平凡解及其死核问题,证明了在参数p的某些取值范围内,该问题存在非平凡解且具有死核;
The existence of a nontrivial solution and its dead core problem for a class of nonlinear ordinary differential equations are studied .
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直接算符演算法的新进展&关于n阶变系数线性常微分方程的解法
The New Advance on the Direct Method of Operational Calculus-On the Solution of nth-Order Linear Ordinary Differential Equations with Variable Coefficients
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对stiff和高振荡常微分方程组的数值解一文的改善
An improvement on numerical integrations for stiff and highly oscillatory differential-equations
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用EXCEL解二阶常微分方程
Solving Second-Order Ordinary Differential Equations by Microsoft Excel
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进一步利用锥上的不动点原理给出了n阶常微分方程局部边值问题和非局部边值问题的正解的存在性。
Furthermore , we establish the existence of positive solutions of n-order local and non-local boundary value problems by fixed point theorem .
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常微分方程数值求解的FFT方法
The Method to Solve Normal Differential Equations by FFT
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Banach空间中一类常微分方程极解的存在性
Existence of Extermal Solution for Ordinary Differential Equation in Banach Spaces
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Banach空间常微分方程最小最大拟解对的存在性
The coupled maximal and minimal quasi-solution of the differential equation in Banach space
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关于常微分方程Hopf分支点的一种数值计算方法
A Numerical Method for Hopf Bifurcation Point in Ordinary Differential Equations
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一类求解stiff常微分方程组非线性显式及隐式单步法
A class of nonlinear explicit and implicit one-step methods for solving stiff systems of Odes
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二阶常微分方程及Thomas-Fermi方程的边值问题
The boundary value problems for second order ordinary differential equations and Thomas-Fermi equation
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Maple在常微分方程教学中的应用
Application of Maple Software to the Teaching of Ordinary Differential Equations
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以微分中值定理和Taylor级数为依据得出了常微分方程初值问题数值解法的一个一般公式。
By differential mean value theorems and Taylor series , we deduce a unified formula in this paper .
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具转向点常微分方程半线性奇摄动问题的Il′in格式
Il ′ in Difference Scheme of a Semilinear Singular Perturbation Problem for Ordinary Differential Equation with the Turning Points
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Banach空间中二阶常微分方程的两点边值问题的广义拟解对
Generalized Quasi-Solutions Pair of Two-Point Boundary Value Problems of Second Order Ordinary Differential Equations In Banach Spaces
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关于数值求解常微分方程的二阶导数方法的最高可达阶及其Stiff稳定性
On the Attainable Highest Order and Stiffly Stability of Second Derivative Methods for Numerical Solution of Ordinary Differential Equations
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研究了一个以周期函数为系数的非线性常微分方程系统ESB模型。
A nonlinear ordinary differential equation system is studied with periodic coeffients which is the extended simplified Brusselator model .
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su(1,1)谱生成代数与二阶常微分方程的谱
SU ( 1 , 1 ) Spectrum Generating Algebra and The Spectrum of Ordinary Differential Equation of the Second Order
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提出一种新的类Lorenz系统,它具有三维二次型的自治常微分方程组形式。
This article introduced a new Lorenz-like system of three-dimensional quadratic autonomous ordinary differential equations .
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用Liapunov直接方法估计非线性扰动常微分方程的解
The Estimation of Solution of Nonlinear Perturbed Ode Via Liapunov Direct Methods
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通过Laplace变换和余弦变换得出E、S的Fourier分量c、c的常微分方程及其解析形式。
By means of Laplace transformation and cosine transformation , two ordinary differential equations with respect to and , the Fourier components of E and S , are obtained .
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用常微分方程模型分析预防和隔离措施对SARS发病率的影响
Analyzing the Measures of the Precaution and Segregation to Effect the Incidence of the SARS by the Model of the Differential Equations
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在不涉及紧型条件的情形下,证明了Banach空间中一类常微分方程的最小、最大拟解对的存在性。
In the condition of not involving compactness type , the existence of extremal solution for ordinary differential equation in Banach space was proved .