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Nonoscillation and Oscillation Theory for Functional Differential Equations

nonoscillatory properties of first-order delay and neutral delay differential equations, second-order delay and ordinary differential equations, higher;

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Oscillation Theory for Functional Differential Equations

Examines developments in the oscillatory and nonoscillatory properties of solutions for functional differential equations, presenting basic;

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Foundations of Iso-Differential Calculus

approximation. Chapter 5 discusses the oscillation theory. The oscillation theory is defined as the iso-self-adjoint second-order iso-difference;

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Asymptotic Integration And Stability

-contained manner. It deals with new results on existence, uniqueness and multiplicity, smoothness, asymptotic development, and stability;

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Stability of Differential Equations with Aftereffect

of functional differential equations and introduce some new flexible methods for investigating the asymptotic behaviour of solutions to a range;

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Oscillation Theory Of Partial Differential Equations

of differential equations under consideration.This textbook on oscillation theory of partial differential equations is useful for both specialists and;

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Oscillations and Resonances

parameter. These allow one to match the asymptotics of various properties with each other in transition regions and to get unified formulas for the;

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Nonlinear Analysis, Differential Equations, and Applications

R3BP, complex zeros of solutions to second order differential equations, a higher-order Ginzburg-Landau-type equation, multi-symplectic;

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Stability Theory of Differential Equations

of boundedness, stability, and asymptotic behavior of linear and nonlinear differential equations. It remains a classic guide, featuring material from;

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Recent Studies in Differential Equations

regularity of solutions for some nonlinear second order differential equations, showing the existence of mild solutions and giving sufficient;

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Ordinary Differential Equations And Boundary Value Problems - Volume I

throughout the book.The authors begin with a study of initial value problems for systems of differential equations including the Picard and Peano;

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Asymptotic Behavior

order delay partial dynamic equations on time scales. Oscillation theory of differential equations, originated from the monumental paper of C;

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Functional and Impulsive Differential Equations of Fractional Order

The book presents qualitative results for different classes of fractional equations, including fractional functional differential equations;

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Functional and Impulsive Differential Equations of Fractional Order

The book presents qualitative results for different classes of fractional equations, including fractional functional differential equations;

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Recent Advances in Delay Differential and Difference Equations

Delay differential and difference equations serve as models for a range of processes in biology, physics, engineering and control theory;

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Differential Equations

, the text advances to the behavior of the characteristics of a first-order equation, boundary problems for second-order linear equations;

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Differential Equations

, June 1989. This work presents advances in control, oscillation, and stability theories, spanning a variety of subfields and covering evolution;

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Higher-Order Differential Equations and Elasticity

differential equations of the second and higher orders. It also considers special differential equations with solutions like envelopes not included;

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Lectures on the Asymptotic Behavior of Solutions of Differential Equations

equations. Anyone who has some acquaintance with differential equations in Banach spaces and Functional Analysis can read this book. It is primarily;

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Differential Equations & Applications, Volume 5

Approach to the Backward Recurrence Time; A Multiplicity Result of Singular Boundary Value Problems for Second Order Impulsive Differential;

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Asymptotic Expansions for Ordinary Differential Equations

text, author Wolfgang Wasow concentrates on the mathematical ideas underlying various asymptotic methods for ordinary differential equations;

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Frontiers in Functional Equations and Analytic Inequalities

Technique Measure zero stability problem for the Drygas functional equation with complex involution Fourier Transforms and Ulam Stabilities;

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Frontiers in Functional Equations and Analytic Inequalities

Fixed Point Technique Measure zero stability problem for the Drygas functional equation with complex involution Fourier Transforms and Ulam;

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Variational, Topological, and Partial Order Methods with Their Applications

new and interesting results on fundamental methods in nonlinear functional analysis, namely variational, topological and partial order methods;

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Volterra and Functional Differential Equations

in 1981, on various topics, including Liapunov stability, Volterra equations, integral equations, and functional differential equations.;

Vergelijkbare producten zoals Volterra and Functional Differential Equations

Volterra and Functional Differential Equations

in 1981, on various topics, including Liapunov stability, Volterra equations, integral equations, and functional differential equations.;

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