2018
DOI: 10.18255/1818-1015-2018-6-680-691
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On Some Problems for a Simplex and a Ball in R<sup>n</sup>

Abstract: Let \(C\) be a convex body and let \(S\) be a nondegenerate simplex in \({\mathbb R}^n\). Denote by \(\tau S\) the image of \(S\) under homothety with a center of homothety in the center of gravity of \(S\) and the ratio \(\tau\). We mean by \(\xi(C;S)\) the minimal \(\tau>0\) such that \(C\) is a subset of the simplex \(\tau S\). Define \(\alpha(C;S)\) as the minimal \(\tau>0\) such that \(C\) is contained in a translate of \(\tau S\). Earlier the author has proved the equalities \(\xi(C;S)=(n+1)\max\li… Show more

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Cited by 5 publications
(4 citation statements)
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“…We turn to presentation of some computational formulae for the quantities α(B n ; S ) and ξ(B n ; S ) proven in [27]. Let x (1) , .…”
Section: Notation and Preliminariesmentioning
confidence: 99%
See 2 more Smart Citations
“…We turn to presentation of some computational formulae for the quantities α(B n ; S ) and ξ(B n ; S ) proven in [27]. Let x (1) , .…”
Section: Notation and Preliminariesmentioning
confidence: 99%
“…The general formula (1.10) for ξ(K; S ) in the case K = B x (0) ; ϱ provides the following (see [27]). Theorem 3.2.…”
Section: Notation and Preliminariesmentioning
confidence: 99%
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“…Некоторые оценки для конкретных были позднее улучшены (см., например, [3,4]). Интерполяция линейными функциями на евклидовом шаре в ℝ и смежные вопросы рассматривались в [5,6], [2].…”
Section: Introductionunclassified