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New Developments In Functional And Fractional Differential Equations And In Lie Symmetry Ioannis P Stavroulakis And Hossein Jafari

  • SKU: BELL-50680850
New Developments In Functional And Fractional Differential Equations And In Lie Symmetry Ioannis P Stavroulakis And Hossein Jafari
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New Developments In Functional And Fractional Differential Equations And In Lie Symmetry Ioannis P Stavroulakis And Hossein Jafari instant download after payment.

Publisher: MDPI
File Extension: PDF
File size: 4.29 MB
Pages: 156
Author: Ioannis P. Stavroulakis and Hossein Jafari
ISBN: 9783036511597, 3036511598
Language: English
Year: 2021

Product desciption

New Developments In Functional And Fractional Differential Equations And In Lie Symmetry Ioannis P Stavroulakis And Hossein Jafari by Ioannis P. Stavroulakis And Hossein Jafari 9783036511597, 3036511598 instant download after payment.

Delay, difference, functional, fractional, and partial differential equations have many applications in science and engineering. In this Special Issue, 29 experts co-authored 10 papers dealing with these subjects. A summary of the main points of these papers follows:
Several oscillation conditions for a first-order linear differential equation with non-monotone delay are established in Oscillation Criteria for First Order Differential Equations with Non-Monotone Delays, whereas a sharp oscillation criterion using the notion of slowly varying functions is established in A Sharp Oscillation Criterion for a Linear Differential Equation with Variable Delay. The approximation of a linear autonomous differential equation with a small delay is considered in Approximation of a Linear Autonomous Differential Equation with Small Delay; the model of infection diseases by Marchuk is studied in Around the Model of Infection Disease: The Cauchy Matrix and Its Properties.
Exact solutions to fractional-order Fokker-Planck equations are presented in New Exact Solutions and Conservation Laws to the Fractional-Order Fokker-Planck Equations, and a spectral collocation approach to solving a class of time-fractional stochastic heat equations driven by Brownian motion is constructed in A Collocation Approach for Solving Time-Fractional Stochastic Heat Equation Driven by an Additive Noise.

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