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1)  applied differential equation
应用微分方程
2)  differential equation and its application
微分方程及其应用
3)  differential equation
微分方程
1.
Solution of Forecasting-Correcting-Improving Algorithm to Quaternion Differential Equation of SINS Attitude;
基于预测-校正-改进算法解算SINS姿态的四元数微分方程
2.
The simulation solution of dynamics differential equation based on pspice;
基于Pspice的动力学微分方程的模拟解
3.
The relationship between supply and demand in stock markets and differential equations of stock price;
股票市场供求关系与股价及其变化率的微分方程
4)  differential equations
微分方程
1.
Existence of asymptotically almost periodic solutions for some differential equations with piecewise constant argument;
一类具有逐段常变量微分方程的渐近概周期解
2.
Oscillatory and asymptotic behavior of solutions for third order impulsive delay differential equations;
三阶脉冲时滞微分方程解的振动性与渐近性
3.
Oscillation criteria for first order nonlinear differential equations with deviating arguments;
一阶非线性具偏差变元的微分方程的振动准则
5)  linear differential equation
微分方程
1.
Borel directions of solutions to non- homogeneous linear differential equations;
非齐次线性微分方程解的Borel方向分布
2.
Mainly study the complex oscillation for k(≥2) order homogeneous linear differential equations w(k)+Ak-1w(k-1)+Ak-2w(k-2)+…+A0w=0,and obtain some results as Ak-1 satisfies some conditions.
主要研究齐次线性微分方程w(k)+Ak-1w(k-1)+…+A0w=0的复振荡问题。
3.
In this paper, we study the complex oscillation properties of the solutions of higher-order linear differential equations with entire coefficients (where there are two coefficients being of the same and highest order) by using the value distribution theory.
本文利用值分布理论,对高阶整函数系数线性微分方程(其中存在两个系数的级相等且最大)的解的复振荡性质进行了研究,得到了方程解的超级的精确估计。
6)  differential eguation
微分方程
1.
A Method on the General Expression for the Riccati Differential Eguation;
求Riccati微分方程通解的一种方法
2.
In engineering technique development, a lot of important and actual problems needs to beg the solution is partial differential eguation, for necessary data in offering in design in homologous engineering, guarantee the engineering the safety dependable and complete the mission efficiently.
在工程技术发展中,很多重要的实际问题都需要求解偏微分方程,为相应的工程设计提供必要的数据,保证工程安全可靠且高效地完成任务。
补充资料:应用
①使用:应用方法|理论应用于具体实践。②具有实用价值的:应用文|基础理论和应用技术同样重要。
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