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Stability and bounded of solutions to non-autonomous delay differential equations of third order
C Tunç - Nonlinear Dynamics, 2010 - Springer
In this paper, we obtain some sufficient conditions to guarantee the uniform asymptotic
stability of zero solution and bounded of all solutions to non-autonomous delay differential …
stability of zero solution and bounded of all solutions to non-autonomous delay differential …
[PDF][PDF] Some stability and boundedness conditions for non-autonomous differential equations with deviating arguments
C Tunç - Electronic Journal of Qualitative Theory of Differential …, 2010 - kurims.kyoto-u.ac.jp
In this article, the author studies the stability and boundedness of solutions for the non-
autonomous third order differential equation with a deviating argument, r: x′′′(t)+ a (t) …
autonomous third order differential equation with a deviating argument, r: x′′′(t)+ a (t) …
Uniform stability, boundedness and asymptotic behaviour of solutions of some third order nonlinear delay differential equations.
In this paper, sufficient conditions are established for uniform asymptotic stability of the trivial
solutions, uniform boundedness, uniform ultimate boundedness and asymptotic behaviour …
solutions, uniform boundedness, uniform ultimate boundedness and asymptotic behaviour …
Boundedness results for a certain third order nonlinear differential equation
Sufficient conditions for the existence of solutions to boundedness and ultimate
boundedness problems associated to a certain third order nonlinear differential equation are …
boundedness problems associated to a certain third order nonlinear differential equation are …
Global asymptotic stability and boundedness of certain multi‐delay functional differential equations of third order
JR Graef, C Tunç - Mathematical Methods in the Applied …, 2015 - Wiley Online Library
In this paper, the authors give sufficient conditions for the boundedness and global
asymptotic stability of solutions to certain nonlinear multi‐delay functional differential …
asymptotic stability of solutions to certain nonlinear multi‐delay functional differential …
On the stability of solutions to a certain fourth-order delay differential equation
C Tunç - Nonlinear Dynamics, 2008 - Springer
The paper gives sufficient conditions to ensure the asymptotic stability of the zero solution of
a certain fourth-order delay differential equation. By constructing a Lyapunov functional, we …
a certain fourth-order delay differential equation. By constructing a Lyapunov functional, we …
Global asymptotic stability of certain third‐order nonlinear differential equations
L Zhang, L Yu - Mathematical Methods in the Applied Sciences, 2013 - Wiley Online Library
In this paper, we give some sufficient conditions to guarantee global asymptotic stability of
the zero solution of the third‐order nonlinear differential equation: x′′′+ g (x, x′, x′′)+ …
the zero solution of the third‐order nonlinear differential equation: x′′′+ g (x, x′, x′′)+ …
[HTML][HTML] Stability and boundedness in delay system of differential equations of third order
C Tunc - Journal of the Association of Arab Universities for Basic …, 2017 - Elsevier
In this paper, a class of non-linear vector differential equations of third order with delay is
considered. The stability, boundedness and ultimately boundedness of solutions are …
considered. The stability, boundedness and ultimately boundedness of solutions are …
[HTML][HTML] On the stability and boundedness of solutions to certain second order di erential equation
In this paper, we investigate by means of second method of Lyapunov, sufficient conditions
that guarantee uniform-asymptotic stability of the trivial solution and ultimate boundedness …
that guarantee uniform-asymptotic stability of the trivial solution and ultimate boundedness …
[PDF][PDF] Ultimate boundedness of solutions of some system of third-order nonlinear differential equation
AA Abdurasid, KD Aduloju, MT Raji, OR Vincent… - Kragujevac J …, 2025 - imi.pmf.kg.ac.rs
X+ Ψ (X) X+ Φ (X) X+ H (X)= P (t, X, X, X), where t∈ R+, X: R+→ Rn, H: Rn→ Rn, P: R+×
Rn× Rn× Rn→ Rn, Ψ, Φ: R n→ Rn× n are continuous in their respective arguments, H is …
Rn× Rn× Rn→ Rn, Ψ, Φ: R n→ Rn× n are continuous in their respective arguments, H is …