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Stability in totally nonlinear neutral differential equations with variable delay using fixed point theory

机译:利用定点理论的具有时滞的完全非线性中立型微分方程的稳定性

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The totally nonlinear neutral differential equation (d/ dt) (x(t))=?a(t)g(x(t?τ (t))) + (d/ dt)( G(t,x(t?τ (t)))), with variable delay τ(t) ≥ 0 is investigated. We find suitable conditions for t, a, g and G so that for a given continuous initial function 0 a mapping P for the above equation can be defined on a carefully chosen complete metric space S0ψ and in which P possesses a unique fixed point. The final result is an asymptotic stability theorem for the zero solution with a necessary and sufficient condition. The obtained theorem improves and generalizes previous results due to Becker and Burton [6]. An example is given to illustrate our main result.
机译:完全非线性中立微分方程(d / dt)(x(t))=?a(t)g(x(t?τ(t)))+(d / dt)(G(t,x(t? τ(t)))),具有可变延迟&#964(t)&#8805 0。我们找到t,a,g和G的合适条件,以便对于给定的连续初始函数0,可以在精心选择的完整度量空间SO上定义上述方程式的映射P,其中P具有唯一的固定点。最终结果是一个零解的渐近稳定定理,具有充分必要的条件。由于贝克尔和伯顿[6],所获得的定理改进并概括了先前的结果。给出一个例子来说明我们的主要结果。

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