2) retarded functional differential equations systems
时滞泛函微分方程系统
3) retarded functional differential equations
时滞泛函微分方程
1.
Some stability theorems for retarded functional differential equations;
时滞泛函微分方程的某些稳定性定理
2.
Some new criteria of instability for the zero solution of retarded functional differential equations are obtained.
给出了时滞泛函微分方程的零解不稳定性的新判据,取消了李雅普诺夫泛函V的传统限制:dV/dt≥0,推广了J。
4) Functional differential equation with infinite delay
无限时滞泛函微分方程
1.
Based upon it, we obtain the mild solvability and satability for a kind of functional differential equation with infinite delay.
本文在一关抽象空间中研究无限时滞泛函微分方程。
6) impulsive functional differential equations
脉冲泛函微分方程
1.
The φ_0-stability theory of impulsive functional differential equations (IFDE) is developed by variational Lyapunovmethod.
运用变分Lyapunov方法,给出了脉冲泛函微分方程的φ_0稳定性的一些充分条件。
2.
This paper discusses nonlinear boundary value problem for second order impulsive functional differential equations.
通过上下解和单调迭代技术讨论了二阶脉冲泛函微分方程非线性边值问题极值解的存在性,推广了相关文献的结果。
3.
This paper investagates the existence of extreme solutions of the periodic boundary value problem for second-order impulsive functional differential equations by means of the method of upper and lower solutions coupled with monotone iterative technique.
利用上下解及单调迭代方法,研究了二阶脉冲泛函微分方程周期边值问题极解的存在性。
补充资料:脉冲
1.指电流或电压短暂的起伏变化。各种高频脉冲广泛用在无线电技术中。 2.指变化规律类似电脉冲的现象。如脉冲激光器。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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