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A numerical proof of the Grunbaum conjecture

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arxiv 1609.07248 v2 pith:3X36I3AE submitted 2016-09-23 math.MG

classification math.MG
keywords proofconjecturegrunbaumlambdanormednumericalontoprojection
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abstract

The Hahn-Banach theorem states that onto each line in every normed space, there is a unitary projection, and Kadec and Snobar proved (using John's ellipsoid) that onto each $n$-dimensional subspace of any real normed space, there is a projection with norm at most $\lambda_n \leq \sqrt{n}$. Grunbaum conjectured that $\lambda_2=4/3<\sqrt{2}$ and several attempts have been made to prove this conjecture: Konig and Tomczak-Jaegermann published a proof that was shown incomplete by Chalmers and Lewicki, who gave their own (a bit intricate) proof. Here is a simpler proof, mostly based on their works, and partially on a few numerical studies of extrema of functions of 3 variables.

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