Differential Equations in Applied Mathematics

Numerous significant ideas in applied mathematics have been formulated within the framework of ordinary or partial differential equations, which provides a language for the illustration of these ideas. Through the years, mathematicians and scientists have developed extensions of these methodologies...

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Опубліковано: MDPI - Multidisciplinary Digital Publishing Institute 2024
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Онлайн доступ:ONIX_20240514_9783725801466_138
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collection Directory of Open Access Books
description Numerous significant ideas in applied mathematics have been formulated within the framework of ordinary or partial differential equations, which provides a language for the illustration of these ideas. Through the years, mathematicians and scientists have developed extensions of these methodologies across almost all areas of science and technology. This Special Issue provides an opportunity to showcase recent developments in the many branches of ordinary or partial differential equations in applied mathematics that are related to stochastic, fuzzy, functional, and fractional differential or difference equations in the fields of sciences and engineering.
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language eng
publishDate 2024
publishDateRange 2024
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publisher MDPI - Multidisciplinary Digital Publishing Institute
publisherStr MDPI - Multidisciplinary Digital Publishing Institute
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spelling doab-20.500.12854ir-1375372024-05-14T13:26:26Z Differential Equations in Applied Mathematics Zhang, Tianwei Internet game addiction nonlinear diffusion PDE model super- and sub-solutions traveling wave existence and stability nonlinear S–L system periodic solution existence coincidence degree theory elastic plate crossing bridge rigidity parameter inverse problem solution existence boundary value problem comparison result monotone iterative technique lower and upper solutions competitive AG-ecosystem distributed lags time scales Goodwin growth cycle model nonisochronous center parameter seasonal perturbation linked twist maps chaotic dynamics discrete spatial diffusion discrete time stochastic weighted pseudo-θ-almost periodicity finite-time guaranteed cost controller finite difference method Hadamard fractional calculus ?-Laplacian operator boundary value conditions dynamical behavior complete metric space asynchronous control average dwell time exponential stability mode dependent time delay quadratic vector fields quadratic systems phase portraits tuberculosis age structure global stability sensitivity analysis coupled networks passivity-based control stochastic synchronization thema EDItEUR::P Mathematics and Science::PB Mathematics::PBW Applied mathematics Numerous significant ideas in applied mathematics have been formulated within the framework of ordinary or partial differential equations, which provides a language for the illustration of these ideas. Through the years, mathematicians and scientists have developed extensions of these methodologies across almost all areas of science and technology. This Special Issue provides an opportunity to showcase recent developments in the many branches of ordinary or partial differential equations in applied mathematics that are related to stochastic, fuzzy, functional, and fractional differential or difference equations in the fields of sciences and engineering. 2024-05-14T13:26:19Z 2024-05-14T13:26:19Z 2024 book ONIX_20240514_9783725801466_138 9783725801466 9783725801459 https://directory.doabooks.org/handle/20.500.12854/137537 eng application/octet-stream Attribution-NonCommercial-NoDerivatives 4.0 International https://mdpi.com/books/pdfview/book/8703 https://mdpi.com/books/pdfview/book/8703 MDPI - Multidisciplinary Digital Publishing Institute 10.3390/books978-3-7258-0145-9 10.3390/books978-3-7258-0145-9 46cabcaa-dd94-4bfe-87b4-55023c1b36d0 9783725801466 9783725801459 194 open access
spellingShingle Internet game addiction
nonlinear diffusion PDE model
super- and sub-solutions
traveling wave
existence and stability
nonlinear S–L system
periodic solution
existence
coincidence degree theory
elastic plate
crossing bridge
rigidity parameter
inverse problem
solution existence
boundary value problem
comparison result
monotone iterative technique
lower and upper solutions
competitive AG-ecosystem
distributed lags
time scales
Goodwin growth cycle model
nonisochronous center
parameter seasonal perturbation
linked twist maps
chaotic dynamics
discrete spatial diffusion
discrete time
stochastic
weighted pseudo-θ-almost periodicity
finite-time guaranteed cost controller
finite difference method
Hadamard fractional calculus
?-Laplacian operator
boundary value conditions
dynamical behavior
complete metric space
asynchronous control
average dwell time
exponential stability
mode dependent
time delay
quadratic vector fields
quadratic systems
phase portraits
tuberculosis
age structure
global stability
sensitivity analysis
coupled networks
passivity-based control
stochastic synchronization
thema EDItEUR::P Mathematics and Science::PB Mathematics::PBW Applied mathematics
Differential Equations in Applied Mathematics
title Differential Equations in Applied Mathematics
title_full Differential Equations in Applied Mathematics
title_fullStr Differential Equations in Applied Mathematics
title_full_unstemmed Differential Equations in Applied Mathematics
title_short Differential Equations in Applied Mathematics
title_sort differential equations in applied mathematics
topic Internet game addiction
nonlinear diffusion PDE model
super- and sub-solutions
traveling wave
existence and stability
nonlinear S–L system
periodic solution
existence
coincidence degree theory
elastic plate
crossing bridge
rigidity parameter
inverse problem
solution existence
boundary value problem
comparison result
monotone iterative technique
lower and upper solutions
competitive AG-ecosystem
distributed lags
time scales
Goodwin growth cycle model
nonisochronous center
parameter seasonal perturbation
linked twist maps
chaotic dynamics
discrete spatial diffusion
discrete time
stochastic
weighted pseudo-θ-almost periodicity
finite-time guaranteed cost controller
finite difference method
Hadamard fractional calculus
?-Laplacian operator
boundary value conditions
dynamical behavior
complete metric space
asynchronous control
average dwell time
exponential stability
mode dependent
time delay
quadratic vector fields
quadratic systems
phase portraits
tuberculosis
age structure
global stability
sensitivity analysis
coupled networks
passivity-based control
stochastic synchronization
thema EDItEUR::P Mathematics and Science::PB Mathematics::PBW Applied mathematics
topic_facet Internet game addiction
nonlinear diffusion PDE model
super- and sub-solutions
traveling wave
existence and stability
nonlinear S–L system
periodic solution
existence
coincidence degree theory
elastic plate
crossing bridge
rigidity parameter
inverse problem
solution existence
boundary value problem
comparison result
monotone iterative technique
lower and upper solutions
competitive AG-ecosystem
distributed lags
time scales
Goodwin growth cycle model
nonisochronous center
parameter seasonal perturbation
linked twist maps
chaotic dynamics
discrete spatial diffusion
discrete time
stochastic
weighted pseudo-θ-almost periodicity
finite-time guaranteed cost controller
finite difference method
Hadamard fractional calculus
?-Laplacian operator
boundary value conditions
dynamical behavior
complete metric space
asynchronous control
average dwell time
exponential stability
mode dependent
time delay
quadratic vector fields
quadratic systems
phase portraits
tuberculosis
age structure
global stability
sensitivity analysis
coupled networks
passivity-based control
stochastic synchronization
thema EDItEUR::P Mathematics and Science::PB Mathematics::PBW Applied mathematics
url ONIX_20240514_9783725801466_138