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О СВОЙСТВАХ МНОГОЧЛЕНОВ ЭРМИТА-ПАДЕ ЭКСПОНЕНЦИАЛЬНЫХ ФУНКЦИЙ polynomials for exponential system {e λp z } k p=0 with arbitrary different complex λ0,λ1,...,λk . Proven

On the structure of finite coverings of compact connected groups which approximates the given covering mapping. As an application, it is shown that a covering mapping

Weierstrass polynomials and coverings of compact groups that each of the mappings is defined up to equivalence by a finite collection of Weierstrass polynomials

A Strongly Consistent Finite Difference Scheme for Steady Stokes Flow and its Modified Equations the differential ideal generated by the polynomials in the Stokes equations with the difference ideal generated

Algebraic Construction of a Strongly Consistent, Permutationally Symmetric and Conservative Difference Scheme for 3D Steady Stokes Flow by the polynomials in the Stokes equations with the difference ideal generated by the polynomials in the constructed

Multistage pseudo-spectral method (method of collocations) for the approximate solution of an ordinary differential equation of the first order of Chebyshev polynomials is considered. A new approach to constructing systems of linear algebraic equations

ALGORITHM FOR PROCESSING INTERFEROGRAMS OF CYLINDRICAL MIRRORS on an approximation of the interferograms in a basis composed of products of Legendre polynomials.

Generalized Collocation Method for Integro-Differential Equations in an Exceptional Case coefficient that has finite-order zeros. To solve the equation approximately in a distribution space, we

A new approach to the formation of systems of linear algebraic equations for solving ordinary differential equations by the collocation method; [Новый подход к формированию систем линейных алгебраических уравнений для решения обыкновенных дифференциальных уравнений методом коллокаций] as an expansion in Chebyshev polynomials. It is proposed instead of the usual approach, which consists

НЕРАВЕНСТВО ТИПА СЕГЁ ДЛЯ ПРОИЗВОДНЫХ РАЦИОНАЛЬНЫХ ФУНКЦИЙ НА ОТРЕЗКЕ function and the rates of the best uniform piecewise polynomial approximations.

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