Reprint

Advances in Delay Differential Equations

Edited by
July 2023
212 pages
  • ISBN978-3-0365-8286-3 (Hardback)
  • ISBN978-3-0365-8287-0 (PDF)

This book is a reprint of the Special Issue Advances in Delay Differential Equations that was published in

Computer Science & Mathematics
Engineering
Physical Sciences
Public Health & Healthcare
Summary

The present reprint contains the 11 articles published in the Special Issue “Advances in Delay Differential Equations” of the MDPI journal Mathematics. The papers cover a wide range of topics connected to the theory of differential equations with delay. These topics include, among others, the construction of solutions, analytical and numerical methods for; dynamical properties of; and applications of DDE to the mathematical modeling of various phenomena and processes in physics, biology, ecology, and medicine.

It is hoped that the reprint will be interesting and useful for those working in the area of differential equations with delays and nonlinear dynamics, as well as for those with the proper mathematical background who are willing to become familiar with recent advances in mathematical modelling, which have now entered almost all areas of science.

Format
  • Hardback
License
© 2022 by the authors; CC BY-NC-ND license
Keywords
stochastic processes; stochastic differential equation; coupled system; nonlocal stochastic integral conditions; Ulam stability; delay integro-differential equation; Gronwall–Bellman inequality; semi-Hyers–Ulam–Rassias stability; delay differential equations; Laplace transform; epidemic model; disease duration; time delay; COVID-19; logistic equation; delay; quasinormal form; asymptotic behavior; dynamics; carbon absorption-emission model; time delay; multiple time scales method; normal form; Hopf bifurcation; delay; asymptotics; large parameter; relaxation oscillations; periodic solutions; HIV; AIDS; PrEP; differential–difference system; discrete delay; France; neutral differential equations; higher-order; oscillation theory; monotonic properties; noncanonical case; dynamics; delay; asymptotics; stability; Andronov–Hopf bifurcation; normal forms; relaxation oscillations; Kuramoto model; time delay; synchronization