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Гиперболические системы с кратными характеристиками и некоторые их приложения equations is a system of differential equations in partial derivatives of the mentioned class. Therefore

Intermediate Systems and Higher-Order Differential ConstraintsA method for constructing solutions of nonlinear partial differential equations with two

On a Mixed Problem for Hilfer Type Fractional Differential Equation with Degeneration type nonlinear partial differential equation of the even order with small positive parameters in mixed

Derivation of fractional differential equations for modeling diffusion in porous media of fractal geometry of mass transfer equation for modeling the contaminant transport in fractured porous aquifer leads to a

On one functional-differential quasilinear hyperbolic equation© 2017, Allerton Press, Inc. For functional-differential quasilinear hyperbolic equation

Uniqueness of the solution of the dirichlet problem for an n-dimensional pseudoparabolic equation double higher partial derivative, we derive sufficient conditions for the uniqueness of the solution

Efficient Iterative Method for Solving Optimal Control Problem Governed by Diffusion Equation with Time Fractional Derivative-quadratic optimal control problem governed by Dirichlet boundary value problem with fractional time derivative

Symmetries and first integrals in the mechanics of infinite-dimensional systems was reported. The equation 1 can be an ordinary differential equation, a partial differential equation

Non-uniqueness of signed measure-valued solutions to the continuity equation in presence of a unique flowWe consider the continuity equation partial derivative(t)mu(t) + div(b mu(t)) = 0, where {mu

Нелинейные эффекты в задаче Пуазейля has been found. The solution is a steady state solution of Navier–Stokes equations and it gives

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