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On a Navier-Stokes type equation and inequality

Giovanni Prouse (1992)

Banach Center Publications

A Navier-Stokes type equation corresponding to a non-linear relationship between the stress tensor and the velocity deformation tensor is studied and existence and uniqueness theorems for the solution, in the 3-dimensional case, of the Cauchy-Dirichlet problem, for a bounded solution and for an almost periodic solution are given. An inequality which in some sense is the limit of the equation is also considered and existence theorems for the solution of the Cauchy-Dirichlet problems and for a periodic...

On periodic in the plane solutions of second order linear hyperbolic systems

Tariel Kiguradze (1997)

Archivum Mathematicum

Sufficient conditions for the problem 2 u x y = P 0 ( x , y ) u + P 1 ( x , y ) u x + P 2 ( x , y ) u y + q ( x , y ) , u ( x + ω 1 , y ) = u ( x , y ) , u ( x , y + ω 2 ) = u ( x , y ) to have the Fredholm property and to be uniquely solvable are established, where ω 1 and ω 2 are positive constants and P j : R 2 R n × n ( j = 0 , 1 ...

On periodic solution of a nonlinear beam equation

Marie Kopáčková (1983)

Aplikace matematiky

the existence of an ω -periodic solution of the equation 2 u t 2 + α 4 u x 4 + γ 5 u x 4 t - γ ˜ 3 u x 2 t + δ u t - β + 0 n u x 2 ( · , ξ ) d ξ + σ 0 n 2 u x t ( · , ξ ) u x ( · , ξ ) d ξ 2 u x 2 = f sarisfying the boundary conditions u ( t , 0 ) = u ( t , π ) = 2 u x 2 t , 0 = 2 u x 2 t , π = 0 is proved for every ω -periodic function f C 0 , ω , L 2 .

On periodic solutions of a special type of the beam equation

Jan Řeháček (1988)

Aplikace matematiky

The paper deals with the existence of time-periodic solutions to the beam equation, in which terms expressing torsion and damping are also considered. The existence of periodic solutions is proved in the cas of time-periodic outer forces by means of an apriori estimate and the Fourier method.

On the age-dependent predator-prey model

Antoni Leon Dawidowicz, Anna Poskrobko, Jerzy Leszek Zalasiński (2011)

Applicationes Mathematicae

The paper deals with the description of a model which is the synthesis of two classical models, the Lotka-Volterra and McKendrick-von Foerster models. The existence and uniqueness of the solution for the new population problem are proved, as well the asymptotic periodicity but under some simplifying assumptions.

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