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Geometric Estimates in Linear Interpolation on a Cube and a Ball

Mikhail Nevskii

Abstract

The paper contains a survey of the results obtained by the author in recent years. These results concern the application in multivariate polynomial interpolation of some geometric constructions and methods. In particular, we give estimates of the projector's norms through the characteristics of sets associated with homothety. The known exact values and nowaday best estimates of these norms are given. Also we formulate some open problems. The survey is dedicated to Professor Yuri Brudnyi in connection with the upcoming 90th anniversary of his birth. Contents: Introduction. 1. Notation and preliminaries. 2. The values of $α(Q_n;S)$ and $ξ(Q_n;S)$. 3. The values of $α(B_n;S)$ and $ξ(B_n;S)$. 4. Estimates for $θ_n(Q_n)$. 5. Legendre polynomials and the measure of $E_{n,γ}$. 6. Inequalities $θ_n(Q_n)>c\sqrt{n}$ and $θ_n(B_n)>c\sqrt{n}$. 7. The norm $\|P\|_{B}$ for an inscribed regular simplex. 8. A theorem on a simplex and its minimal ellipsoid. 9. The value of $θ_n(B_n)$. 10. Interpolation by wider polynomial spaces.

Geometric Estimates in Linear Interpolation on a Cube and a Ball

Abstract

The paper contains a survey of the results obtained by the author in recent years. These results concern the application in multivariate polynomial interpolation of some geometric constructions and methods. In particular, we give estimates of the projector's norms through the characteristics of sets associated with homothety. The known exact values and nowaday best estimates of these norms are given. Also we formulate some open problems. The survey is dedicated to Professor Yuri Brudnyi in connection with the upcoming 90th anniversary of his birth. Contents: Introduction. 1. Notation and preliminaries. 2. The values of and . 3. The values of and . 4. Estimates for . 5. Legendre polynomials and the measure of . 6. Inequalities and . 7. The norm for an inscribed regular simplex. 8. A theorem on a simplex and its minimal ellipsoid. 9. The value of . 10. Interpolation by wider polynomial spaces.
Paper Structure (11 sections, 281 equations, 7 figures, 1 table)